Symbol:
IPCEF1
Name:
interaction protein for cytohesin exchange factors 1
RGD ID:
1603404
HGNC Page
HGNC:21204
Description:
Predicted to enable peroxidase activity. Predicted to be involved in response to oxidative stress. Predicted to be located in cytoplasm and plasma membrane.
Type:
protein-coding
RefSeq Status:
VALIDATED
Previously known as:
interaction protein for cytohesin exchange factors 1 Interaction protein for cytohesin exchange factors 1; interactor protein for cytohesin exchange factors 1; KIAA0403; phosphoinositide binding protein PIP3-E; phosphoinositide-binding protein PIP3-E; PIP3-E; PIP3E; RP3-402L9.2
RGD Orthologs
Alliance Orthologs
More Info
more info ...
More Info
Species
Gene symbol and name
Data Source
Assertion derived from
less info ...
Orthologs 1
Mus musculus (house mouse):
Ipcef1 (interaction protein for cytohesin exchange factors 1)
HGNC
Ensembl, HGNC, HomoloGene, Inparanoid, NCBI, OrthoDB, PhylomeDB
Rattus norvegicus (Norway rat):
Ipcef1 (interaction protein for cytohesin exchange factors 1)
HGNC
Ensembl, HomoloGene, Inparanoid, NCBI, OrthoDB, OrthoMCL, PhylomeDB
Chinchilla lanigera (long-tailed chinchilla):
Ipcef1 (interaction protein for cytohesin exchange factors 1)
NCBI
Ortholog
Pan paniscus (bonobo/pygmy chimpanzee):
IPCEF1 (interaction protein for cytohesin exchange factors 1)
NCBI
Ortholog
Canis lupus familiaris (dog):
IPCEF1 (interaction protein for cytohesin exchange factors 1)
HGNC
NCBI
Ictidomys tridecemlineatus (thirteen-lined ground squirrel):
Ipcef1 (interaction protein for cytohesin exchange factors 1)
NCBI
Ortholog
Sus scrofa (pig):
IPCEF1 (interaction protein for cytohesin exchange factors 1)
HGNC
Ensembl, NCBI, OrthoDB, Panther
Chlorocebus sabaeus (green monkey):
IPCEF1 (interaction protein for cytohesin exchange factors 1)
NCBI
Ortholog
Heterocephalus glaber (naked mole-rat):
Ipcef1 (interaction protein for cytohesin exchange factors 1)
NCBI
Ortholog
Other homologs 2
Rattus norvegicus (Norway rat):
Tmem65 (transmembrane protein 65)
HGNC
OMA
Alliance orthologs 3
Rattus norvegicus (Norway rat):
Ipcef1 (interaction protein for cytohesin exchange factors 1)
Alliance
DIOPT (Ensembl Compara|HGNC|Hieranoid|InParanoid|OMA|OrthoFinder|OrthoInspector|SonicParanoid)
Mus musculus (house mouse):
Ipcef1 (interaction protein for cytohesin exchange factors 1)
Alliance
DIOPT (HGNC|Hieranoid|InParanoid|OMA|OrthoFinder|OrthoInspector|SonicParanoid)
Danio rerio (zebrafish):
ipcef1 (interaction protein for cytohesin exchange factors 1)
Alliance
DIOPT (OMA|OrthoFinder|PhylomeDB|ZFIN)
Allele / Splice:
See ClinVar data
Latest Assembly:
GRCh38 - Human Genome Assembly GRCh38
Position:
Human Assembly Chr Position (strand) Source Genome Browsers JBrowse NCBI UCSC Ensembl GRCh38 6 154,154,496 - 154,356,803 (-) NCBI GRCh38 GRCh38 hg38 GRCh38 GRCh38.p14 Ensembl 6 154,154,496 - 154,356,803 (-) Ensembl GRCh38 hg38 GRCh38 GRCh37 6 154,475,631 - 154,677,937 (-) NCBI GRCh37 GRCh37 hg19 GRCh37 Build 36 6 154,517,438 - 154,719,592 (-) NCBI NCBI36 Build 36 hg18 NCBI36 Celera 6 155,210,000 - 155,412,269 (-) NCBI Celera Cytogenetic Map 6 q25.2 NCBI HuRef 6 152,038,861 - 152,240,888 (-) NCBI HuRef CHM1_1 6 154,739,273 - 154,941,543 (-) NCBI CHM1_1 T2T-CHM13v2.0 6 155,356,475 - 155,558,805 (-) NCBI T2T-CHM13v2.0
JBrowse:
View Region in Genome Browser (JBrowse)
Model
Only show annotations with direct experimental evidence (0 objects hidden)
IPCEF1 Human 1,1-dichloroethene decreases expression ISO Ipcef1 (Mus musculus) 6480464 vinylidene chloride results in decreased expression of IPCEF1 mRNA CTD PMID:26682919 IPCEF1 Human 1-chloro-2,4-dinitrobenzene decreases expression EXP 6480464 Dinitrochlorobenzene results in decreased expression of IPCEF1 mRNA CTD PMID:17374397 IPCEF1 Human 17beta-estradiol multiple interactions EXP 6480464 [Estradiol co-treated with TGFB1 protein] results in decreased expression of IPCEF1 mRNA CTD PMID:30165855 IPCEF1 Human 2,2',4,4',5,5'-hexachlorobiphenyl multiple interactions ISO Ipcef1 (Mus musculus) 6480464 [2 more ... CTD PMID:25510870 IPCEF1 Human 2,2',5,5'-tetrachlorobiphenyl multiple interactions ISO Ipcef1 (Mus musculus) 6480464 [2 more ... CTD PMID:25510870 IPCEF1 Human 2,3',4,4',5-Pentachlorobiphenyl increases expression ISO Ipcef1 (Mus musculus) 6480464 2 more ... CTD PMID:31388691 IPCEF1 Human 2,3,7,8-tetrachlorodibenzodioxine decreases expression ISO Ipcef1 (Rattus norvegicus) 6480464 Tetrachlorodibenzodioxin results in decreased expression of IPCEF1 mRNA CTD PMID:34747641 IPCEF1 Human 3,4-methylenedioxymethamphetamine increases expression ISO Ipcef1 (Mus musculus) 6480464 N-Methyl-3 and 4-methylenedioxyamphetamine results in increased expression of IPCEF1 mRNA CTD PMID:20188158 IPCEF1 Human 4,4'-sulfonyldiphenol increases expression EXP 6480464 bisphenol S results in increased expression of IPCEF1 mRNA CTD PMID:30616060 IPCEF1 Human 4,4'-sulfonyldiphenol increases methylation EXP 6480464 bisphenol S results in increased methylation of IPCEF1 gene CTD PMID:31601247 IPCEF1 Human 4-\{[(5,5,8,8-tetramethyl-5,6,7,8-tetrahydronaphthalen-2-yl)carbonyl]amino\}benzoic acid decreases expression EXP 6480464 Am 580 results in decreased expression of IPCEF1 mRNA CTD PMID:16982809 IPCEF1 Human acetamide increases expression ISO Ipcef1 (Rattus norvegicus) 6480464 acetamide results in increased expression of IPCEF1 mRNA CTD PMID:31881176 IPCEF1 Human aflatoxin B1 increases methylation EXP 6480464 Aflatoxin B1 results in increased methylation of IPCEF1 gene CTD PMID:27153756 IPCEF1 Human aldehydo-D-glucose decreases expression EXP 6480464 Glucose results in decreased expression of IPCEF1 mRNA CTD PMID:32942007 IPCEF1 Human all-trans-retinoic acid increases expression EXP 6480464 Tretinoin results in increased expression of IPCEF1 mRNA CTD PMID:33167477 IPCEF1 Human alpha-Zearalanol multiple interactions ISO Ipcef1 (Rattus norvegicus) 6480464 [Zeranol co-treated with perfluorooctanoic acid] results in decreased expression of IPCEF1 mRNA CTD PMID:35163327 IPCEF1 Human amitrole decreases expression ISO Ipcef1 (Rattus norvegicus) 6480464 Amitrole results in decreased expression of IPCEF1 mRNA CTD PMID:30047161 IPCEF1 Human ammonium chloride affects expression ISO Ipcef1 (Rattus norvegicus) 6480464 Ammonium Chloride affects the expression of IPCEF1 mRNA CTD PMID:16483693 IPCEF1 Human antirheumatic drug decreases expression EXP 6480464 Antirheumatic Agents results in decreased expression of IPCEF1 mRNA CTD PMID:24449571 IPCEF1 Human atrazine increases expression EXP 6480464 Atrazine results in increased expression of IPCEF1 mRNA CTD PMID:22378314 IPCEF1 Human benzo[a]pyrene affects methylation EXP 6480464 Benzo(a)pyrene affects the methylation of IPCEF1 5' UTR and Benzo(a)pyrene affects the methylation of IPCEF1 intron CTD PMID:27901495 and PMID:30157460 IPCEF1 Human bisphenol A increases expression ISO Ipcef1 (Mus musculus) 6480464 bisphenol A results in increased expression of IPCEF1 mRNA CTD PMID:38701888 IPCEF1 Human bisphenol A multiple interactions EXP 6480464 [bisphenol A co-treated with Fulvestrant] results in increased methylation of IPCEF1 gene CTD PMID:31601247 IPCEF1 Human bisphenol A increases methylation EXP 6480464 bisphenol A results in increased methylation of IPCEF1 gene CTD PMID:31601247 IPCEF1 Human bisphenol A increases expression ISO Ipcef1 (Rattus norvegicus) 6480464 bisphenol A results in increased expression of IPCEF1 mRNA CTD PMID:34947998 IPCEF1 Human bisphenol F decreases expression ISO Ipcef1 (Mus musculus) 6480464 bisphenol F results in decreased expression of IPCEF1 mRNA CTD PMID:38685157 IPCEF1 Human buta-1,3-diene decreases expression ISO Ipcef1 (Mus musculus) 6480464 1 and 3-butadiene results in decreased expression of IPCEF1 mRNA CTD PMID:29038090 IPCEF1 Human carbon nanotube decreases expression ISO Ipcef1 (Mus musculus) 6480464 Nanotubes and Carbon analog results in decreased expression of IPCEF1 mRNA CTD PMID:25554681 IPCEF1 Human chlordecone increases expression ISO Ipcef1 (Mus musculus) 6480464 Chlordecone results in increased expression of IPCEF1 mRNA CTD PMID:33711761 IPCEF1 Human chloroprene decreases expression ISO Ipcef1 (Mus musculus) 6480464 Chloroprene results in decreased expression of IPCEF1 mRNA CTD PMID:23125180 IPCEF1 Human chlorpyrifos decreases expression ISO Ipcef1 (Mus musculus) 6480464 Chlorpyrifos results in decreased expression of IPCEF1 mRNA CTD PMID:37019170 IPCEF1 Human crocidolite asbestos decreases expression EXP 6480464 Asbestos and Crocidolite results in decreased expression of IPCEF1 mRNA CTD PMID:29523930 IPCEF1 Human D-glucose decreases expression EXP 6480464 Glucose results in decreased expression of IPCEF1 mRNA CTD PMID:32942007 IPCEF1 Human diazinon increases expression ISO Ipcef1 (Rattus norvegicus) 6480464 Diazinon results in increased expression of IPCEF1 mRNA CTD PMID:29108742 IPCEF1 Human dibutyl phthalate decreases expression ISO Ipcef1 (Mus musculus) 6480464 Dibutyl Phthalate results in decreased expression of IPCEF1 mRNA CTD PMID:21266533 IPCEF1 Human endosulfan increases expression ISO Ipcef1 (Rattus norvegicus) 6480464 Endosulfan results in increased expression of IPCEF1 mRNA CTD PMID:29391264 IPCEF1 Human eugenol decreases expression EXP 6480464 Eugenol results in decreased expression of IPCEF1 mRNA CTD PMID:17374397 IPCEF1 Human fenamidone decreases expression ISO Ipcef1 (Mus musculus) 6480464 fenamidone results in decreased expression of IPCEF1 mRNA CTD PMID:27029645 IPCEF1 Human flutamide increases expression ISO Ipcef1 (Rattus norvegicus) 6480464 Flutamide results in increased expression of IPCEF1 mRNA CTD PMID:24793618 IPCEF1 Human fulvestrant multiple interactions EXP 6480464 [bisphenol A co-treated with Fulvestrant] results in increased methylation of IPCEF1 gene CTD PMID:31601247 IPCEF1 Human glucose decreases expression EXP 6480464 Glucose results in decreased expression of IPCEF1 mRNA CTD PMID:32942007 IPCEF1 Human lipopolysaccharide multiple interactions EXP 6480464 [S-(1 more ... CTD PMID:35811015 IPCEF1 Human lipopolysaccharide decreases expression EXP 6480464 Lipopolysaccharides results in decreased expression of IPCEF1 mRNA CTD PMID:35811015 IPCEF1 Human methimazole decreases expression ISO Ipcef1 (Rattus norvegicus) 6480464 Methimazole results in decreased expression of IPCEF1 mRNA CTD PMID:30047161 IPCEF1 Human N-nitrosodiethylamine increases expression ISO Ipcef1 (Mus musculus) 6480464 Diethylnitrosamine results in increased expression of IPCEF1 mRNA CTD PMID:24535843 IPCEF1 Human nickel atom increases expression EXP 6480464 Nickel results in increased expression of IPCEF1 mRNA CTD PMID:25583101 IPCEF1 Human nickel sulfate decreases expression EXP 6480464 nickel sulfate results in decreased expression of IPCEF1 mRNA CTD PMID:16780908 and PMID:17374397 IPCEF1 Human nitrogen dioxide decreases expression EXP 6480464 Nitrogen Dioxide results in decreased expression of IPCEF1 mRNA CTD PMID:27206323 IPCEF1 Human ochratoxin A increases expression EXP 6480464 ochratoxin A results in increased expression of IPCEF1 mRNA CTD PMID:30559759 IPCEF1 Human ochratoxin A decreases methylation EXP 6480464 ochratoxin A results in decreased methylation of IPCEF1 promoter CTD PMID:30559759 IPCEF1 Human ozone multiple interactions EXP 6480464 [Ozone results in increased abundance of Soot metabolite] which results in increased expression of IPCEF1 mRNA CTD PMID:28410501 IPCEF1 Human ozone multiple interactions ISO Ipcef1 (Mus musculus) 6480464 [Air Pollutants results in increased abundance of [Ozone co-treated with Soot]] which results in decreased expression of IPCEF1 mRNA CTD PMID:34911549 IPCEF1 Human PCB138 multiple interactions ISO Ipcef1 (Mus musculus) 6480464 [2 more ... CTD PMID:25510870 IPCEF1 Human perfluorooctanoic acid multiple interactions ISO Ipcef1 (Rattus norvegicus) 6480464 [Zeranol co-treated with perfluorooctanoic acid] results in decreased expression of IPCEF1 mRNA CTD PMID:35163327 IPCEF1 Human S-(1,2-dichlorovinyl)-L-cysteine multiple interactions EXP 6480464 [S-(1 more ... CTD PMID:35811015 IPCEF1 Human silicon dioxide increases expression ISO Ipcef1 (Mus musculus) 6480464 Silicon Dioxide results in increased expression of IPCEF1 mRNA CTD PMID:29341224 IPCEF1 Human sulforaphane increases expression EXP 6480464 sulforaphane results in increased expression of IPCEF1 mRNA CTD PMID:26833863 IPCEF1 Human sunitinib decreases expression EXP 6480464 Sunitinib results in decreased expression of IPCEF1 mRNA CTD PMID:31533062 IPCEF1 Human tetrachloromethane increases expression ISO Ipcef1 (Rattus norvegicus) 6480464 Carbon Tetrachloride results in increased expression of IPCEF1 mRNA CTD PMID:31150632 IPCEF1 Human trichloroethene increases expression ISO Ipcef1 (Rattus norvegicus) 6480464 Trichloroethylene results in increased expression of IPCEF1 mRNA CTD PMID:33387578 IPCEF1 Human triclosan increases expression EXP 6480464 Triclosan results in increased expression of IPCEF1 mRNA CTD PMID:30510588 IPCEF1 Human triphenyl phosphate affects expression EXP 6480464 triphenyl phosphate affects the expression of IPCEF1 mRNA CTD PMID:37042841 IPCEF1 Human tungsten decreases expression ISO Ipcef1 (Mus musculus) 6480464 Tungsten results in decreased expression of IPCEF1 mRNA CTD PMID:30912803
1,1-dichloroethene (ISO) 1-chloro-2,4-dinitrobenzene (EXP) 17beta-estradiol (EXP) 2,2',4,4',5,5'-hexachlorobiphenyl (ISO) 2,2',5,5'-tetrachlorobiphenyl (ISO) 2,3',4,4',5-Pentachlorobiphenyl (ISO) 2,3,7,8-tetrachlorodibenzodioxine (ISO) 3,4-methylenedioxymethamphetamine (ISO) 4,4'-sulfonyldiphenol (EXP) 4-\{[(5,5,8,8-tetramethyl-5,6,7,8-tetrahydronaphthalen-2-yl)carbonyl]amino\}benzoic acid (EXP) acetamide (ISO) aflatoxin B1 (EXP) aldehydo-D-glucose (EXP) all-trans-retinoic acid (EXP) alpha-Zearalanol (ISO) amitrole (ISO) ammonium chloride (ISO) antirheumatic drug (EXP) atrazine (EXP) benzo[a]pyrene (EXP) bisphenol A (EXP,ISO) bisphenol F (ISO) buta-1,3-diene (ISO) carbon nanotube (ISO) chlordecone (ISO) chloroprene (ISO) chlorpyrifos (ISO) crocidolite asbestos (EXP) D-glucose (EXP) diazinon (ISO) dibutyl phthalate (ISO) endosulfan (ISO) eugenol (EXP) fenamidone (ISO) flutamide (ISO) fulvestrant (EXP) glucose (EXP) lipopolysaccharide (EXP) methimazole (ISO) N-nitrosodiethylamine (ISO) nickel atom (EXP) nickel sulfate (EXP) nitrogen dioxide (EXP) ochratoxin A (EXP) ozone (EXP,ISO) PCB138 (ISO) perfluorooctanoic acid (ISO) S-(1,2-dichlorovinyl)-L-cysteine (EXP) silicon dioxide (ISO) sulforaphane (EXP) sunitinib (EXP) tetrachloromethane (ISO) trichloroethene (ISO) triclosan (EXP) triphenyl phosphate (EXP) tungsten (ISO)
IPCEF1 (Homo sapiens - human)
Human Assembly Chr Position (strand) Source Genome Browsers JBrowse NCBI UCSC Ensembl GRCh38 6 154,154,496 - 154,356,803 (-) NCBI GRCh38 GRCh38 hg38 GRCh38 GRCh38.p14 Ensembl 6 154,154,496 - 154,356,803 (-) Ensembl GRCh38 hg38 GRCh38 GRCh37 6 154,475,631 - 154,677,937 (-) NCBI GRCh37 GRCh37 hg19 GRCh37 Build 36 6 154,517,438 - 154,719,592 (-) NCBI NCBI36 Build 36 hg18 NCBI36 Celera 6 155,210,000 - 155,412,269 (-) NCBI Celera Cytogenetic Map 6 q25.2 NCBI HuRef 6 152,038,861 - 152,240,888 (-) NCBI HuRef CHM1_1 6 154,739,273 - 154,941,543 (-) NCBI CHM1_1 T2T-CHM13v2.0 6 155,356,475 - 155,558,805 (-) NCBI T2T-CHM13v2.0
Ipcef1 (Mus musculus - house mouse)
Mouse Assembly Chr Position (strand) Source Genome Browsers JBrowse NCBI UCSC Ensembl GRCm39 10 6,835,779 - 6,973,185 (-) NCBI GRCm39 GRCm39 mm39 GRCm39 Ensembl 10 6,835,796 - 7,002,478 (-) Ensembl GRCm39 Ensembl GRCm38 10 6,885,779 - 7,054,782 (-) NCBI GRCm38 GRCm38 mm10 GRCm38 GRCm38.p6 Ensembl 10 6,885,796 - 7,052,478 (-) Ensembl GRCm38 mm10 GRCm38 MGSCv37 10 3,323,356 - 3,460,176 (+) NCBI GRCm37 MGSCv37 mm9 NCBIm37 MGSCv36 10 3,305,631 - 3,434,998 (+) NCBI MGSCv36 mm8 Celera 10 6,841,539 - 6,985,563 (-) NCBI Celera Cytogenetic Map 10 A1 NCBI cM Map 10 1.85 NCBI
Ipcef1 (Rattus norvegicus - Norway rat)
Rat Assembly Chr Position (strand) Source Genome Browsers JBrowse NCBI UCSC Ensembl GRCr8 1 45,654,252 - 45,857,045 (-) NCBI GRCr8 mRatBN7.2 1 43,237,903 - 43,451,735 (-) NCBI mRatBN7.2 mRatBN7.2 mRatBN7.2 Ensembl 1 43,269,202 - 43,427,969 (-) Ensembl mRatBN7.2 Ensembl UTH_Rnor_SHR_Utx 1 43,814,288 - 43,887,789 (-) NCBI Rnor_SHR UTH_Rnor_SHR_Utx UTH_Rnor_SHRSP_BbbUtx_1.0 1 49,801,526 - 49,875,023 (-) NCBI Rnor_SHRSP UTH_Rnor_SHRSP_BbbUtx_1.0 UTH_Rnor_WKY_Bbb_1.0 1 43,889,783 - 43,963,274 (-) NCBI Rnor_WKY UTH_Rnor_WKY_Bbb_1.0 Rnor_6.0 1 43,563,457 - 43,743,424 (-) NCBI Rnor6.0 Rnor_6.0 rn6 Rnor6.0 Rnor_6.0 Ensembl 1 43,567,842 - 43,638,161 (-) Ensembl Rnor6.0 rn6 Rnor6.0 Rnor_5.0 1 44,895,465 - 44,982,610 (-) NCBI Rnor5.0 Rnor_5.0 rn5 Rnor5.0 RGSC_v3.4 1 37,635,767 - 37,711,074 (-) NCBI RGSC3.4 RGSC_v3.4 rn4 RGSC3.4 RGSC_v3.1 1 37,638,711 - 37,714,025 (-) NCBI Celera 1 38,917,683 - 38,990,772 (-) NCBI Celera Cytogenetic Map 1 q11 NCBI
Ipcef1 (Chinchilla lanigera - long-tailed chinchilla)
Chinchilla Assembly Chr Position (strand) Source Genome Browsers JBrowse NCBI UCSC Ensembl ChiLan1.0 Ensembl NW_004955439 7,756,126 - 7,836,542 (+) Ensembl ChiLan1.0 ChiLan1.0 NW_004955439 7,666,246 - 7,836,481 (+) NCBI ChiLan1.0 ChiLan1.0
IPCEF1 (Pan paniscus - bonobo/pygmy chimpanzee)
Bonobo Assembly Chr Position (strand) Source Genome Browsers JBrowse NCBI UCSC Ensembl NHGRI_mPanPan1-v2 5 174,178,764 - 174,380,295 (-) NCBI NHGRI_mPanPan1-v2 NHGRI_mPanPan1 6 172,070,393 - 172,271,889 (-) NCBI NHGRI_mPanPan1 Mhudiblu_PPA_v0 6 151,975,688 - 152,173,692 (-) NCBI Mhudiblu_PPA_v0 Mhudiblu_PPA_v0 panPan3
IPCEF1 (Canis lupus familiaris - dog)
Dog Assembly Chr Position (strand) Source Genome Browsers JBrowse NCBI UCSC Ensembl CanFam3.1 1 44,066,398 - 44,164,173 (-) NCBI CanFam3.1 CanFam3.1 canFam3 CanFam3.1 CanFam3.1 Ensembl 1 44,070,004 - 44,363,107 (-) Ensembl CanFam3.1 canFam3 CanFam3.1 Dog10K_Boxer_Tasha 1 44,903,482 - 45,072,137 (-) NCBI Dog10K_Boxer_Tasha ROS_Cfam_1.0 1 44,250,266 - 44,418,577 (-) NCBI ROS_Cfam_1.0 ROS_Cfam_1.0 Ensembl 1 44,253,530 - 44,552,166 (-) Ensembl ROS_Cfam_1.0 Ensembl UMICH_Zoey_3.1 1 44,116,738 - 44,285,293 (-) NCBI UMICH_Zoey_3.1 UNSW_CanFamBas_1.0 1 43,989,810 - 44,165,495 (-) NCBI UNSW_CanFamBas_1.0 UU_Cfam_GSD_1.0 1 44,545,164 - 44,721,333 (-) NCBI UU_Cfam_GSD_1.0
Ipcef1 (Ictidomys tridecemlineatus - thirteen-lined ground squirrel)
Squirrel Assembly Chr Position (strand) Source Genome Browsers JBrowse NCBI UCSC Ensembl HiC_Itri_2 NW_024404946 139,344,627 - 139,495,991 (-) NCBI HiC_Itri_2 SpeTri2.0 Ensembl NW_004936489 6,595,888 - 6,662,458 (-) Ensembl SpeTri2.0 SpeTri2.0 Ensembl SpeTri2.0 NW_004936489 6,595,905 - 6,662,509 (-) NCBI SpeTri2.0 SpeTri2.0 SpeTri2.0
IPCEF1 (Sus scrofa - pig)
Pig Assembly Chr Position (strand) Source Genome Browsers JBrowse NCBI UCSC Ensembl Sscrofa11.1 Ensembl 1 12,506,220 - 12,602,724 (+) Ensembl Sscrofa11.1 susScr11 Sscrofa11.1 Sscrofa11.1 1 12,511,612 - 12,602,736 (+) NCBI Sscrofa11.1 Sscrofa11.1 susScr11 Sscrofa11.1 Sscrofa10.2 1 14,572,756 - 14,718,904 (-) NCBI Sscrofa10.2 Sscrofa10.2 susScr3
IPCEF1 (Chlorocebus sabaeus - green monkey)
Green Monkey Assembly Chr Position (strand) Source Genome Browsers JBrowse NCBI UCSC Ensembl ChlSab1.1 13 81,686,467 - 81,891,325 (-) NCBI ChlSab1.1 ChlSab1.1 chlSab2 ChlSab1.1 Ensembl 13 81,691,775 - 81,882,740 (-) Ensembl ChlSab1.1 ChlSab1.1 Ensembl chlSab2 Vero_WHO_p1.0 NW_023666040 54,064,386 - 54,293,218 (-) NCBI Vero_WHO_p1.0 Vero_WHO_p1.0
Ipcef1 (Heterocephalus glaber - naked mole-rat)
.
Predicted Target Of
Count of predictions: 3949 Count of miRNA genes: 1280 Interacting mature miRNAs: 1658 Transcripts: ENST00000265198, ENST00000367220, ENST00000422970, ENST00000470622, ENST00000484827, ENST00000517438, ENST00000518162, ENST00000519091, ENST00000519190, ENST00000519344, ENST00000519405, ENST00000520261, ENST00000522590 Prediction methods: Miranda, Rnahybrid, Targetscan Result types: miRGate_prediction
407223009 GWAS871985_H chronic lymphocytic leukemia QTL GWAS871985 (human) 2e-10 leukocyte integrity trait (VT:0010898) 6 154157305 154157306 Human 597029361 GWAS1125435_H type 2 diabetes mellitus QTL GWAS1125435 (human) 0.000009 type 2 diabetes mellitus 6 154233115 154233116 Human 597420816 GWAS1516890_H asthma QTL GWAS1516890 (human) 9e-09 asthma 6 154306689 154306690 Human 407333356 GWAS982332_H chronotype measurement QTL GWAS982332 (human) 0.0000008 sleep behavior trait (VT:0001501) 6 154312725 154312726 Human 597096090 GWAS1192164_H systemic lupus erythematosus QTL GWAS1192164 (human) 2e-08 systemic lupus erythematosus 6 154249517 154249518 Human 597211860 GWAS1307934_H arterial stiffness measurement QTL GWAS1307934 (human) 0.000007 arterial stiffness measurement pulse wave velocity (CMO:0003717) 6 154312409 154312410 Human 597412277 GWAS1508351_H atopic asthma QTL GWAS1508351 (human) 1e-08 atopic asthma 6 154306689 154306690 Human 597619246 GWAS1676106_H tympanic membrane perforation QTL GWAS1676106 (human) 3e-11 tympanic membrane perforation 6 154251957 154251958 Human 597055783 GWAS1151857_H allergic disease QTL GWAS1151857 (human) 0.0000005 allergic disease 6 154341513 154341514 Human 596954342 GWAS1073861_H respiratory system disease QTL GWAS1073861 (human) 2e-08 respiratory system disease 6 154306689 154306690 Human 597319433 GWAS1415507_H Chagas cardiomyopathy QTL GWAS1415507 (human) 0.0000006 Chagas cardiomyopathy 6 154277027 154277028 Human 597077678 GWAS1173752_H asthma QTL GWAS1173752 (human) 0.000008 asthma 6 154156778 154156779 Human 597458402 GWAS1554476_H respiratory system disease QTL GWAS1554476 (human) 2e-08 respiratory system disease 6 154306689 154306690 Human 597117928 GWAS1214002_H DNA methylation QTL GWAS1214002 (human) 1e-09 DNA methylation 6 154280820 154280821 Human
D6S425
Human Assembly Chr Position (strand) Source JBrowse GRCh37 10 22,592,733 - 22,593,170 UniSTS GRCh37 GRCh37 6 154,643,476 - 154,643,613 UniSTS GRCh37 GRCh37 6 154,643,457 - 154,643,604 UniSTS GRCh37 Build 36 6 154,685,168 - 154,685,305 RGD NCBI36 Celera 6 155,377,835 - 155,377,983 UniSTS Celera 10 22,280,442 - 22,280,879 UniSTS Celera 6 155,377,854 - 155,377,992 RGD Cytogenetic Map 6 q25.2 UniSTS HuRef 6 152,206,527 - 152,206,672 UniSTS HuRef 6 152,206,546 - 152,206,681 UniSTS HuRef 10 22,254,201 - 22,254,638 UniSTS Marshfield Genetic Map 6 155.17 RGD Genethon Genetic Map 6 156.4 UniSTS TNG Radiation Hybrid Map 6 75369.0 UniSTS deCODE Assembly Map 6 161.53 UniSTS Stanford-G3 RH Map 6 6140.0 UniSTS Whitehead-YAC Contig Map 6 UniSTS NCBI RH Map 6 1616.0 UniSTS GeneMap99-G3 RH Map 6 6443.0 UniSTS
WI-17899
Human Assembly Chr Position (strand) Source JBrowse GRCh37 6 154,480,075 - 154,480,208 UniSTS GRCh37 Build 36 6 154,521,767 - 154,521,900 RGD NCBI36 Celera 6 155,214,457 - 155,214,590 RGD Cytogenetic Map 6 q25.2 UniSTS Cytogenetic Map 6 q24-q25 UniSTS HuRef 6 152,043,318 - 152,043,451 UniSTS GeneMap99-GB4 RH Map 6 606.02 UniSTS Whitehead-RH Map 6 816.5 UniSTS NCBI RH Map 6 1610.7 UniSTS
RH46629
Human Assembly Chr Position (strand) Source JBrowse GRCh37 6 154,480,185 - 154,480,351 UniSTS GRCh37 Build 36 6 154,521,877 - 154,522,043 RGD NCBI36 Celera 6 155,214,567 - 155,214,733 RGD Cytogenetic Map 6 q25.2 UniSTS Cytogenetic Map 6 q24-q25 UniSTS HuRef 6 152,043,428 - 152,043,594 UniSTS GeneMap99-GB4 RH Map 6 604.11 UniSTS NCBI RH Map 6 1610.7 UniSTS
WI-20576
Human Assembly Chr Position (strand) Source JBrowse GRCh37 6 154,477,057 - 154,477,319 UniSTS GRCh37 Build 36 6 154,518,749 - 154,519,011 RGD NCBI36 Celera 6 155,211,439 - 155,211,701 RGD Cytogenetic Map 6 q25.2 UniSTS Cytogenetic Map 6 q24-q25 UniSTS HuRef 6 152,040,300 - 152,040,562 UniSTS GeneMap99-GB4 RH Map 6 605.61 UniSTS Whitehead-RH Map 6 816.5 UniSTS
G62475
Human Assembly Chr Position (strand) Source JBrowse GRCh37 6 154,488,311 - 154,488,595 UniSTS GRCh37 Build 36 6 154,530,003 - 154,530,287 RGD NCBI36 Celera 6 155,222,693 - 155,222,977 RGD Cytogenetic Map 6 q25.2 UniSTS Cytogenetic Map 6 q24-q25 UniSTS HuRef 6 152,051,554 - 152,051,838 UniSTS TNG Radiation Hybrid Map 6 75425.0 UniSTS
D6S2185
Human Assembly Chr Position (strand) Source JBrowse GRCh37 6 154,477,049 - 154,477,189 UniSTS GRCh37 Build 36 6 154,518,741 - 154,518,881 RGD NCBI36 Celera 6 155,211,431 - 155,211,571 RGD Cytogenetic Map 6 q25.2 UniSTS Cytogenetic Map 6 q24-q25 UniSTS HuRef 6 152,040,292 - 152,040,432 UniSTS GeneMap99-GB4 RH Map 6 604.11 UniSTS
SHGC-156272
Human Assembly Chr Position (strand) Source JBrowse GRCh37 6 154,630,347 - 154,630,618 UniSTS GRCh37 Build 36 6 154,672,039 - 154,672,310 RGD NCBI36 Celera 6 155,364,720 - 155,364,991 RGD Cytogenetic Map 6 q25.2 UniSTS HuRef 6 152,193,407 - 152,193,678 UniSTS TNG Radiation Hybrid Map 6 75380.0 UniSTS
D1S1423
Human Assembly Chr Position (strand) Source JBrowse Cytogenetic Map 10 p12.1 UniSTS Cytogenetic Map 10 p12.1-p11.2 UniSTS Cytogenetic Map 9 q34.13 UniSTS Cytogenetic Map 16 q22.1 UniSTS Cytogenetic Map 21 q22.2 UniSTS Cytogenetic Map 3 p24.2 UniSTS Cytogenetic Map 9 q32 UniSTS Cytogenetic Map 1 q24 UniSTS Cytogenetic Map 1 q21 UniSTS Cytogenetic Map 1 p36.33 UniSTS Cytogenetic Map 7 p15.2 UniSTS Cytogenetic Map 6 p21 UniSTS Cytogenetic Map 5 q31 UniSTS Cytogenetic Map 6 p22.3-p21.32 UniSTS Cytogenetic Map 6 q22.33 UniSTS Cytogenetic Map 3 q29 UniSTS Cytogenetic Map 17 p11.2 UniSTS Cytogenetic Map 19 q13.3 UniSTS Cytogenetic Map 1 p36.13 UniSTS Cytogenetic Map 5 q33.3 UniSTS Cytogenetic Map 22 q11.22 UniSTS Cytogenetic Map 11 q13.2-q13.3 UniSTS Cytogenetic Map 3 q22-q24 UniSTS Cytogenetic Map 8 p21.3 UniSTS Cytogenetic Map 7 q32 UniSTS Cytogenetic Map 1 p32.3 UniSTS Cytogenetic Map 19 p13.12 UniSTS Cytogenetic Map 4 q21.1 UniSTS Cytogenetic Map 12 q13.13 UniSTS Cytogenetic Map 7 q11.2 UniSTS Cytogenetic Map 1 p22.1 UniSTS Cytogenetic Map 2 q32 UniSTS Cytogenetic Map X q13.1 UniSTS Cytogenetic Map 9 q12 UniSTS Cytogenetic Map 3 q26.2 UniSTS Cytogenetic Map 22 q11.21 UniSTS Cytogenetic Map 10 q23-q24 UniSTS Cytogenetic Map 17 q12 UniSTS Cytogenetic Map 1 p36.21 UniSTS Cytogenetic Map 19 p13.2 UniSTS Cytogenetic Map 16 q24.3 UniSTS Cytogenetic Map 9 q34.3 UniSTS Cytogenetic Map 4 p14 UniSTS Cytogenetic Map 2 p12 UniSTS Cytogenetic Map 16 p11.2 UniSTS Cytogenetic Map 3 q23 UniSTS Cytogenetic Map 18 q22.1 UniSTS Cytogenetic Map 13 q12 UniSTS Cytogenetic Map 10 p14-p13 UniSTS Cytogenetic Map 12 p13.31 UniSTS Cytogenetic Map 14 q24.3 UniSTS Cytogenetic Map 22 q13.2 UniSTS Cytogenetic Map 19 q13.11 UniSTS Cytogenetic Map 11 q23-q24 UniSTS Cytogenetic Map 11 q13.1 UniSTS Cytogenetic Map 12 q24.31 UniSTS Cytogenetic Map 17 q25 UniSTS Cytogenetic Map 16 q24.1 UniSTS Cytogenetic Map 5 q23.3 UniSTS Cytogenetic Map 19 q13.43 UniSTS Cytogenetic Map 17 q11.2 UniSTS Cytogenetic Map 20 q13.12 UniSTS Cytogenetic Map X p11.23 UniSTS Cytogenetic Map 19 q13.42 UniSTS Cytogenetic Map 16 q13 UniSTS Cytogenetic Map 11 q25 UniSTS Cytogenetic Map 22 cen-q12.3 UniSTS Cytogenetic Map 10 p13 UniSTS Cytogenetic Map 2 p11.2 UniSTS Cytogenetic Map 15 q11.2-q21.3 UniSTS Cytogenetic Map 1 p21.2 UniSTS Cytogenetic Map 19 p13 UniSTS Cytogenetic Map 7 q21.13 UniSTS Cytogenetic Map 7 q31.1 UniSTS Cytogenetic Map 17 p13.3 UniSTS Cytogenetic Map 1 p35.1 UniSTS Cytogenetic Map 16 q24 UniSTS Cytogenetic Map 3 q25 UniSTS Cytogenetic Map 2 q24.2 UniSTS Cytogenetic Map 1 p31.3 UniSTS Cytogenetic Map 14 q31.1 UniSTS Cytogenetic Map 22 q13.1 UniSTS Cytogenetic Map 20 q13.31 UniSTS Cytogenetic Map 19 p13.3 UniSTS Cytogenetic Map 6 p12.1 UniSTS Cytogenetic Map 6 q25.3 UniSTS Cytogenetic Map 1 q32.1 UniSTS Cytogenetic Map 11 q24.2 UniSTS Cytogenetic Map 10 p15.1 UniSTS Cytogenetic Map 2 p13.1 UniSTS Cytogenetic Map 19 q13.12 UniSTS Cytogenetic Map 12 p13.32 UniSTS Cytogenetic Map 4 q35.1 UniSTS Cytogenetic Map 2 p13.3 UniSTS Cytogenetic Map 1 p22 UniSTS Cytogenetic Map 2 q14 UniSTS Cytogenetic Map 4 q12 UniSTS Cytogenetic Map 16 p13.3 UniSTS Cytogenetic Map 14 q32.33 UniSTS Cytogenetic Map 1 p36.1 UniSTS Cytogenetic Map 8 p11.21 UniSTS Cytogenetic Map X q26.3 UniSTS Cytogenetic Map 8 q24.11 UniSTS Cytogenetic Map 9 q22.31 UniSTS Cytogenetic Map 7 q11.23 UniSTS Cytogenetic Map 2 p15 UniSTS Cytogenetic Map 5 q31.1 UniSTS Cytogenetic Map 8 q24.13 UniSTS Cytogenetic Map 17 p13 UniSTS Cytogenetic Map 8 p11.22 UniSTS Cytogenetic Map 4 q28 UniSTS Cytogenetic Map 15 q24.1 UniSTS Cytogenetic Map 1 q41-q42 UniSTS Cytogenetic Map 10 q22 UniSTS Cytogenetic Map 5 q35.3 UniSTS Cytogenetic Map 20 q11.21 UniSTS Cytogenetic Map 8 q24.3 UniSTS Cytogenetic Map 12 p13.1-p12.3 UniSTS Cytogenetic Map 6 p21.33 UniSTS Cytogenetic Map 22 q13.33 UniSTS Cytogenetic Map 19 p12 UniSTS Cytogenetic Map 1 p13.1 UniSTS Cytogenetic Map 7 q22.1 UniSTS Cytogenetic Map 14 q12 UniSTS Cytogenetic Map 19 q13.32 UniSTS Cytogenetic Map 11 q13.2 UniSTS Cytogenetic Map 15 q22.31 UniSTS Cytogenetic Map 5 q12.3 UniSTS Cytogenetic Map 7 q33 UniSTS Cytogenetic Map 17 q21.2 UniSTS Cytogenetic Map 4 q23 UniSTS Cytogenetic Map 12 q13.12 UniSTS Cytogenetic Map 18 p11.21 UniSTS Cytogenetic Map 10 q26.11 UniSTS Cytogenetic Map 14 q32.12 UniSTS Cytogenetic Map 11 q24.1 UniSTS Cytogenetic Map 18 q23 UniSTS Cytogenetic Map 2 q31.1 UniSTS Cytogenetic Map 18 p11.31 UniSTS Cytogenetic Map 2 q24.3 UniSTS Cytogenetic Map 11 q23 UniSTS Cytogenetic Map 17 q21.31 UniSTS Cytogenetic Map 13 q34 UniSTS Cytogenetic Map 1 p34.3 UniSTS Cytogenetic Map 10 p14 UniSTS Cytogenetic Map 15 q22.2 UniSTS Cytogenetic Map 17 q25.1 UniSTS Cytogenetic Map 5 q32 UniSTS Cytogenetic Map 4 p16.3 UniSTS Cytogenetic Map 12 q23.2 UniSTS Cytogenetic Map 11 q12.3 UniSTS Cytogenetic Map 16 q12.2 UniSTS Cytogenetic Map 9 q22.2 UniSTS Cytogenetic Map 1 q21.3 UniSTS Cytogenetic Map 1 p35.3 UniSTS Cytogenetic Map 19 q13.2 UniSTS Cytogenetic Map 11 p15.5 UniSTS Cytogenetic Map 7 q22 UniSTS Cytogenetic Map 18 p11.31-p11.21 UniSTS Cytogenetic Map 3 p25.3 UniSTS Cytogenetic Map 3 q13 UniSTS Cytogenetic Map 21 q22.3 UniSTS Cytogenetic Map 1 q43 UniSTS Cytogenetic Map 19 p13.11 UniSTS Cytogenetic Map 19 q13.41 UniSTS Cytogenetic Map 7 p21.2 UniSTS Cytogenetic Map 12 q21.1 UniSTS Cytogenetic Map 15 q15.1 UniSTS Cytogenetic Map 15 q13.1 UniSTS Cytogenetic Map 1 q42.1 UniSTS Cytogenetic Map 5 q31.2 UniSTS Cytogenetic Map 1 q21.2 UniSTS Cytogenetic Map 17 p13.1 UniSTS Cytogenetic Map 1 p34-p33 UniSTS Cytogenetic Map 3 q22.1 UniSTS Cytogenetic Map 7 p14 UniSTS Cytogenetic Map 15 q21 UniSTS Cytogenetic Map 12 q24.2 UniSTS Cytogenetic Map 20 q13 UniSTS Cytogenetic Map 19 q13.3-q13.4 UniSTS Cytogenetic Map 17 q21.32 UniSTS Cytogenetic Map 15 q11.2 UniSTS Cytogenetic Map 8 p23-p22 UniSTS Cytogenetic Map 1 p12 UniSTS Cytogenetic Map 3 q13.33 UniSTS Cytogenetic Map 10 p12.33 UniSTS Cytogenetic Map 5 q13.2 UniSTS Cytogenetic Map 3 q26 UniSTS Cytogenetic Map 9 p21.2 UniSTS Cytogenetic Map 2 p16.1 UniSTS Cytogenetic Map 5 q21.3 UniSTS Cytogenetic Map 1 p36.22 UniSTS Cytogenetic Map 1 p34.2 UniSTS Cytogenetic Map 3 q26.31 UniSTS Cytogenetic Map X p22.33 UniSTS Cytogenetic Map Y p11.3 UniSTS Cytogenetic Map 17 q24.1 UniSTS Cytogenetic Map 9 q21.11 UniSTS Cytogenetic Map 6 q22.31 UniSTS Cytogenetic Map 9 q21.13 UniSTS Cytogenetic Map 10 q11.22 UniSTS Cytogenetic Map 22 q13.31 UniSTS Cytogenetic Map 17 p12 UniSTS Cytogenetic Map 17 q21.33 UniSTS Cytogenetic Map 5 p13.3 UniSTS Cytogenetic Map 10 q21.3 UniSTS Cytogenetic Map 10 q22.1 UniSTS Cytogenetic Map 1 p34 UniSTS Cytogenetic Map X p22 UniSTS Cytogenetic Map 20 p12.3-p11.21 UniSTS Cytogenetic Map 2 q37.1 UniSTS Cytogenetic Map 6 p25 UniSTS Cytogenetic Map X q27.2 UniSTS Cytogenetic Map 4 q31.1 UniSTS Cytogenetic Map 4 q31 UniSTS Cytogenetic Map 22 q13.1-q13.2 UniSTS Cytogenetic Map X q28 UniSTS Cytogenetic Map 1 p36.11 UniSTS Cytogenetic Map 12 q13.3 UniSTS Cytogenetic Map 3 q26.33 UniSTS Cytogenetic Map 19 q13.4 UniSTS Cytogenetic Map 14 q32 UniSTS Cytogenetic Map 10 q24.3 UniSTS Cytogenetic Map 16 q21 UniSTS Cytogenetic Map 2 p13 UniSTS Cytogenetic Map 19 q13.1 UniSTS Cytogenetic Map 7 q21-q22 UniSTS Cytogenetic Map 2 q11.2 UniSTS Cytogenetic Map 17 q25.3 UniSTS Cytogenetic Map 4 q22.1 UniSTS Cytogenetic Map 11 q22.1 UniSTS Cytogenetic Map 12 q14.2 UniSTS Cytogenetic Map 20 p13 UniSTS Cytogenetic Map 7 q36.3 UniSTS Cytogenetic Map 20 q11.21-q11.23 UniSTS Cytogenetic Map 2 q33.2 UniSTS Cytogenetic Map 12 q22 UniSTS Cytogenetic Map 20 q13.13 UniSTS Cytogenetic Map 21 p11.1 UniSTS Cytogenetic Map 1 p35-p34.3 UniSTS Cytogenetic Map 7 p11.2 UniSTS Cytogenetic Map 13 q14 UniSTS Cytogenetic Map 7 q36.1 UniSTS Cytogenetic Map 12 q24.31-q24.32 UniSTS Cytogenetic Map 17 q21.1 UniSTS Cytogenetic Map 3 q12.3 UniSTS Cytogenetic Map 12 q UniSTS Cytogenetic Map 11 q13.5 UniSTS Cytogenetic Map 2 p14 UniSTS Cytogenetic Map 2 q14.3 UniSTS Cytogenetic Map 7 q34 UniSTS Cytogenetic Map 14 q32.1 UniSTS Cytogenetic Map 21 q22.11 UniSTS Cytogenetic Map 3 p14.1 UniSTS Cytogenetic Map 16 q23.2 UniSTS Cytogenetic Map 7 q32.1 UniSTS Cytogenetic Map 17 q22 UniSTS Cytogenetic Map 4 q31.23 UniSTS Cytogenetic Map 11 p15.3 UniSTS Cytogenetic Map 3 q27.1 UniSTS Cytogenetic Map 2 p22.3 UniSTS Cytogenetic Map 22 q13 UniSTS Cytogenetic Map 1 q32 UniSTS Cytogenetic Map 11 q14 UniSTS Cytogenetic Map X q13.2 UniSTS Cytogenetic Map 16 p13.12 UniSTS Cytogenetic Map X q22.3 UniSTS Cytogenetic Map 9 p12 UniSTS Cytogenetic Map 4 p16.1 UniSTS Cytogenetic Map 11 q23.1 UniSTS Cytogenetic Map 3 q27.3 UniSTS Cytogenetic Map 16 q23.1 UniSTS Cytogenetic Map 15 q15.2 UniSTS Cytogenetic Map 2 p21 UniSTS Cytogenetic Map 13 q33.3 UniSTS Cytogenetic Map 15 q22-q24 UniSTS Cytogenetic Map 14 q32.11 UniSTS Cytogenetic Map 7 p14.3 UniSTS Cytogenetic Map 14 q21.2 UniSTS Cytogenetic Map 15 q25.2 UniSTS Cytogenetic Map 15 q23 UniSTS Cytogenetic Map 2 p23.3 UniSTS Cytogenetic Map 4 p15.31 UniSTS Cytogenetic Map 1 q22 UniSTS Cytogenetic Map 20 q13.1 UniSTS Cytogenetic Map 15 q21.3 UniSTS Cytogenetic Map 10 q23.33 UniSTS Cytogenetic Map 4 q26 UniSTS Cytogenetic Map X q24 UniSTS Cytogenetic Map 10 q23.1 UniSTS Cytogenetic Map 6 p21.1 UniSTS Cytogenetic Map 15 q22.1-q22.31 UniSTS Cytogenetic Map 1 q31-q41 UniSTS Cytogenetic Map 6 q23.3 UniSTS Cytogenetic Map 7 q21.2 UniSTS Cytogenetic Map 14 q23 UniSTS Cytogenetic Map 12 q11-q12 UniSTS Cytogenetic Map 17 q23.3 UniSTS Cytogenetic Map 4 q24 UniSTS Cytogenetic Map 1 p32 UniSTS Cytogenetic Map 3 p21.1-p14.2 UniSTS Cytogenetic Map 12 q22-q23.1 UniSTS Cytogenetic Map 6 p22.1 UniSTS Cytogenetic Map 6 q24.2 UniSTS Cytogenetic Map 9 p13.3 UniSTS Cytogenetic Map 6 p24.1 UniSTS Cytogenetic Map 19 q13 UniSTS Cytogenetic Map 20 q11.22-q11.23 UniSTS Cytogenetic Map 3 p22.3 UniSTS Cytogenetic Map 12 q12 UniSTS Cytogenetic Map X q13-q21 UniSTS Cytogenetic Map 9 q34.11 UniSTS Cytogenetic Map 16 p13.13 UniSTS Cytogenetic Map 10 pter-q25.3 UniSTS Cytogenetic Map 9 p24.1 UniSTS Cytogenetic Map 12 p13.2 UniSTS Cytogenetic Map 12 q24 UniSTS Cytogenetic Map 3 q28-q29 UniSTS Cytogenetic Map 10 q26 UniSTS Cytogenetic Map 6 p22.2 UniSTS Cytogenetic Map 2 q13 UniSTS Cytogenetic Map 12 q24.2-q24.31 UniSTS Cytogenetic Map 22 q12.2 UniSTS Cytogenetic Map 1 q32.2-q41 UniSTS Cytogenetic Map 11 q22-q23 UniSTS Cytogenetic Map 12 p13.3 UniSTS Cytogenetic Map 1 p34.1 UniSTS Cytogenetic Map 22 q11 UniSTS Cytogenetic Map 2 q21.1 UniSTS Cytogenetic Map 16 p13.11 UniSTS Cytogenetic Map 1 q25.1 UniSTS Cytogenetic Map 1 p36.3 UniSTS Cytogenetic Map 9 p21 UniSTS Cytogenetic Map 6 p21.3 UniSTS Cytogenetic Map 1 q41 UniSTS Cytogenetic Map 11 q13.1-q13.3 UniSTS Cytogenetic Map 16 p13 UniSTS Cytogenetic Map 15 q26 UniSTS Cytogenetic Map 18 q21 UniSTS Cytogenetic Map 4 p15.1-p14 UniSTS Cytogenetic Map 8 q11.2 UniSTS Cytogenetic Map 16 q22 UniSTS Cytogenetic Map 15 q11-q13 UniSTS Cytogenetic Map 7 p12.3 UniSTS Cytogenetic Map 7 p13 UniSTS Cytogenetic Map 15 q26.1 UniSTS Cytogenetic Map 14 q22.1 UniSTS Cytogenetic Map 2 q12.3 UniSTS Cytogenetic Map X p22.12 UniSTS Cytogenetic Map 20 q11.23 UniSTS Cytogenetic Map 1 q21.1 UniSTS Cytogenetic Map 1 p36.31 UniSTS Cytogenetic Map 16 q11.2 UniSTS Cytogenetic Map 14 q32.2 UniSTS Cytogenetic Map 11 p15.4 UniSTS Cytogenetic Map 22 q11.1 UniSTS Cytogenetic Map 5 q33.2 UniSTS Cytogenetic Map 14 q23.1 UniSTS Cytogenetic Map 7 q32.3 UniSTS Cytogenetic Map 20 q13.3 UniSTS Cytogenetic Map 10 q26.13 UniSTS Cytogenetic Map 1 p31.1 UniSTS Cytogenetic Map 11 q13.4 UniSTS Cytogenetic Map 11 q23.3 UniSTS Cytogenetic Map 15 q25.1 UniSTS Cytogenetic Map 9 p13 UniSTS Cytogenetic Map 2 p24.2 UniSTS Cytogenetic Map 9 q33.3 UniSTS Cytogenetic Map 19 q13.31 UniSTS Cytogenetic Map 11 q12.2 UniSTS Cytogenetic Map 7 p15.3 UniSTS Cytogenetic Map 6 p25.2 UniSTS Cytogenetic Map 6 q25.1 UniSTS Cytogenetic Map 3 p21.31 UniSTS Cytogenetic Map 17 q23.2 UniSTS Cytogenetic Map X q25 UniSTS Cytogenetic Map 2 p25.1 UniSTS Cytogenetic Map 1 q25.3 UniSTS Cytogenetic Map 6 p24-p22.3 UniSTS Cytogenetic Map 6 q21 UniSTS Cytogenetic Map 16 p12.2 UniSTS Cytogenetic Map 3 q21-q24 UniSTS Cytogenetic Map 4 q13 UniSTS Cytogenetic Map 11 p13 UniSTS Cytogenetic Map 9 q34 UniSTS Cytogenetic Map 8 q13.1 UniSTS Cytogenetic Map 5 q21.2 UniSTS Cytogenetic Map 4 q34.3 UniSTS Cytogenetic Map 3 p22.1 UniSTS Cytogenetic Map 2 q37.3 UniSTS Cytogenetic Map 8 p23.1 UniSTS Cytogenetic Map 1 p13.3 UniSTS Cytogenetic Map 15 q14 UniSTS Cytogenetic Map 13 q13.3 UniSTS Cytogenetic Map 12 q13.2 UniSTS Cytogenetic Map 1 q31 UniSTS Cytogenetic Map 7 q11.21 UniSTS Cytogenetic Map 10 q26.3 UniSTS Cytogenetic Map 15 q15 UniSTS Cytogenetic Map X p11.4 UniSTS Cytogenetic Map 8 q24.12 UniSTS Cytogenetic Map 15 q22 UniSTS Cytogenetic Map 1 q25.2 UniSTS Cytogenetic Map 13 q11-q12 UniSTS Cytogenetic Map 10 q24.2 UniSTS Cytogenetic Map 15 q21.1 UniSTS Cytogenetic Map 15 q13.2 UniSTS Cytogenetic Map 6 q25.2 UniSTS Cytogenetic Map 14 q11.2 UniSTS Cytogenetic Map 2 q33.1 UniSTS Cytogenetic Map 6 q14.1 UniSTS Cytogenetic Map 3 q23-q24 UniSTS Cytogenetic Map 2 p25.1-p24.1 UniSTS Cytogenetic Map 12 q14.3 UniSTS Cytogenetic Map 6 q16.1 UniSTS Cytogenetic Map 5 p13.1 UniSTS Cytogenetic Map 5 q13 UniSTS Cytogenetic Map 20 pter-p12 UniSTS Cytogenetic Map X p22.11 UniSTS Cytogenetic Map 16 p13.2 UniSTS Cytogenetic Map 16 q22.3 UniSTS Cytogenetic Map 7 q31.3 UniSTS Cytogenetic Map 21 q22.13 UniSTS Cytogenetic Map 1 p21 UniSTS Cytogenetic Map 8 p11 UniSTS Cytogenetic Map 7 p14.2 UniSTS Cytogenetic Map 8 p11.23 UniSTS Cytogenetic Map 18 p11.22 UniSTS Cytogenetic Map 18 q21.33 UniSTS Cytogenetic Map 9 p24.3 UniSTS Cytogenetic Map 11 q22.3 UniSTS Cytogenetic Map 14 q22.2 UniSTS Cytogenetic Map 20 p11.22-p11.1 UniSTS Cytogenetic Map 6 p21.31 UniSTS Cytogenetic Map 14 q22.3 UniSTS Cytogenetic Map 12 q15 UniSTS Cytogenetic Map 7 q31 UniSTS Cytogenetic Map 2 q12.2 UniSTS Cytogenetic Map 8 p12 UniSTS Cytogenetic Map 7 p22.1 UniSTS Cytogenetic Map 6 p12.3 UniSTS Cytogenetic Map 11 q12-q13 UniSTS Cytogenetic Map 18 q21.1 UniSTS Cytogenetic Map 10 p11.21 UniSTS Cytogenetic Map 6 p22-p21 UniSTS Cytogenetic Map 17 q21.1-q21.3 UniSTS Cytogenetic Map 12 q24.33 UniSTS Cytogenetic Map 4 p15.32 UniSTS Cytogenetic Map 1 q42.13 UniSTS Cytogenetic Map 19 q12 UniSTS Cytogenetic Map 3 p14.3 UniSTS Cytogenetic Map 12 p13.2-p12.3 UniSTS Cytogenetic Map 9 q22.32 UniSTS Cytogenetic Map 1 p36.3-p36.2 UniSTS Cytogenetic Map 5 q22.2 UniSTS Cytogenetic Map 4 p15.2 UniSTS Cytogenetic Map 4 p15.3 UniSTS Cytogenetic Map 4 q28.1 UniSTS Cytogenetic Map 12 q13.1-q13.2 UniSTS Cytogenetic Map 19 q13.33 UniSTS Cytogenetic Map 1 p31 UniSTS Cytogenetic Map 17 p13.2 UniSTS Cytogenetic Map 15 q15.3 UniSTS Cytogenetic Map 13 q14.11 UniSTS Cytogenetic Map 9 p22.3 UniSTS Cytogenetic Map 8 q22.2 UniSTS Cytogenetic Map 8 q21.11 UniSTS Cytogenetic Map 22 q12.1 UniSTS Cytogenetic Map 3 q13.2 UniSTS Cytogenetic Map 2 q35 UniSTS Cytogenetic Map 2 q33.3 UniSTS Cytogenetic Map 8 p22 UniSTS Cytogenetic Map 10 q22.2 UniSTS Cytogenetic Map 20 p12.1 UniSTS Cytogenetic Map 6 q13 UniSTS Cytogenetic Map 6 q22.32 UniSTS Cytogenetic Map 5 q34 UniSTS Cytogenetic Map 5 p15.2 UniSTS Cytogenetic Map 5 q11.2 UniSTS Cytogenetic Map 2 q36.1 UniSTS Cytogenetic Map 18 q11.2 UniSTS Cytogenetic Map 18 q12.2 UniSTS Cytogenetic Map 14 q21.3 UniSTS Cytogenetic Map 13 q33.1 UniSTS Cytogenetic Map 12 p11.21 UniSTS Cytogenetic Map 12 q23.1 UniSTS Cytogenetic Map 16 p12.1 UniSTS Cytogenetic Map 2 q33 UniSTS Cytogenetic Map 5 q12.1 UniSTS Cytogenetic Map 12 q24.13 UniSTS Cytogenetic Map 13 q14.2 UniSTS Cytogenetic Map 7 q36 UniSTS Cytogenetic Map 10 q22.3-q23.2 UniSTS Cytogenetic Map 7 p15 UniSTS Cytogenetic Map 14 q32.31 UniSTS Cytogenetic Map 11 q21 UniSTS Cytogenetic Map 4 q21.3 UniSTS Cytogenetic Map 7 p13-p12 UniSTS Cytogenetic Map 8 p21.2 UniSTS Cytogenetic Map 4 q22 UniSTS Cytogenetic Map 11 q13 UniSTS Cytogenetic Map 3 q12.1 UniSTS Cytogenetic Map 7 q21.1-q22 UniSTS Cytogenetic Map 17 q21 UniSTS Cytogenetic Map 3 q13.13-q13.2 UniSTS Cytogenetic Map 3 p21.3 UniSTS Cytogenetic Map 13 q32.2 UniSTS Cytogenetic Map 3 q26.32 UniSTS Cytogenetic Map 15 q UniSTS Cytogenetic Map 2 p13.2 UniSTS Cytogenetic Map 3 p12.3 UniSTS Cytogenetic Map 10 q11.23 UniSTS Cytogenetic Map 3 q11.2 UniSTS Cytogenetic Map 12 q13.11 UniSTS Cytogenetic Map 13 q14.13 UniSTS Cytogenetic Map 10 q23 UniSTS Cytogenetic Map 11 p11.2 UniSTS Cytogenetic Map 6 q16.2 UniSTS Cytogenetic Map 3 q21.1 UniSTS Cytogenetic Map 10 q11.21 UniSTS Cytogenetic Map 1 p13.2 UniSTS Cytogenetic Map 6 p24.2 UniSTS Cytogenetic Map 20 q13.33 UniSTS
Click on a value in the shaded box below the category label to view a detailed expression data table for that system.
alimentary part of gastrointestinal system
entire extraembryonic component
1204
2358
2787
2232
4877
1705
2268
3
611
1880
451
2207
7133
6378
37
3698
833
1687
1550
168
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Ensembl Acc Id:
ENST00000265198 ⟹ ENSP00000265198
Type:
CODING
Position:
Human Assembly Chr Position (strand) Source GRCh38.p14 Ensembl 6 154,154,609 - 154,356,766 (-) Ensembl
Ensembl Acc Id:
ENST00000367220 ⟹ ENSP00000356189
Type:
CODING
Position:
Human Assembly Chr Position (strand) Source GRCh38.p14 Ensembl 6 154,154,496 - 154,356,803 (-) Ensembl
Ensembl Acc Id:
ENST00000422970 ⟹ ENSP00000394751
Type:
CODING
Position:
Human Assembly Chr Position (strand) Source GRCh38.p14 Ensembl 6 154,158,074 - 154,330,081 (-) Ensembl
Ensembl Acc Id:
ENST00000470622
Type:
CODING
Position:
Human Assembly Chr Position (strand) Source GRCh38.p14 Ensembl 6 154,154,496 - 154,159,516 (-) Ensembl
Ensembl Acc Id:
ENST00000484827
Type:
CODING
Position:
Human Assembly Chr Position (strand) Source GRCh38.p14 Ensembl 6 154,199,829 - 154,214,313 (-) Ensembl
Ensembl Acc Id:
ENST00000517438 ⟹ ENSP00000431092
Type:
CODING
Position:
Human Assembly Chr Position (strand) Source GRCh38.p14 Ensembl 6 154,200,018 - 154,246,856 (-) Ensembl
Ensembl Acc Id:
ENST00000518162
Type:
CODING
Position:
Human Assembly Chr Position (strand) Source GRCh38.p14 Ensembl 6 154,222,961 - 154,247,580 (-) Ensembl
Ensembl Acc Id:
ENST00000519091
Type:
CODING
Position:
Human Assembly Chr Position (strand) Source GRCh38.p14 Ensembl 6 154,199,723 - 154,219,189 (-) Ensembl
Ensembl Acc Id:
ENST00000519190 ⟹ ENSP00000429972
Type:
CODING
Position:
Human Assembly Chr Position (strand) Source GRCh38.p14 Ensembl 6 154,214,257 - 154,247,422 (-) Ensembl
Ensembl Acc Id:
ENST00000519344 ⟹ ENSP00000430287
Type:
CODING
Position:
Human Assembly Chr Position (strand) Source GRCh38.p14 Ensembl 6 154,159,682 - 154,247,682 (-) Ensembl
Ensembl Acc Id:
ENST00000519405 ⟹ ENSP00000428767
Type:
CODING
Position:
Human Assembly Chr Position (strand) Source GRCh38.p14 Ensembl 6 154,212,835 - 154,247,231 (-) Ensembl
Ensembl Acc Id:
ENST00000520261 ⟹ ENSP00000431004
Type:
CODING
Position:
Human Assembly Chr Position (strand) Source GRCh38.p14 Ensembl 6 154,246,599 - 154,356,792 (-) Ensembl
Ensembl Acc Id:
ENST00000522590
Type:
CODING
Position:
Human Assembly Chr Position (strand) Source GRCh38.p14 Ensembl 6 154,158,924 - 154,213,330 (-) Ensembl
RefSeq Acc Id:
NM_001130699 ⟹ NP_001124171
RefSeq Status:
VALIDATED
Type:
CODING
Position:
Human Assembly Chr Position (strand) Source GRCh38 6 154,154,496 - 154,330,081 (-) NCBI GRCh37 6 154,475,618 - 154,677,900 (-) RGD Celera 6 155,210,000 - 155,412,269 (-) RGD HuRef 6 152,038,861 - 152,240,888 (-) ENTREZGENE CHM1_1 6 154,739,273 - 154,914,859 (-) NCBI T2T-CHM13v2.0 6 155,356,475 - 155,532,041 (-) NCBI
Sequence:
ACATGTAGTCTTCTCACTTTCTTCTTGCCATGAGACTGAGAGAGTGCTCCTTGGGACGGAGTTTCAGAGTCATCAACTGGGCTCATGAGAACCACAAGAAACCTACGAAGGCACTGGGACAGAGCCTG GCTGCTGGTCAAAGGCAACAGAACTGGACCAAGAAAATTCATAACTTTTTGCTTTTGTTTCTACTAAGATGACATCATACATGGCTATTGATGGCAGTGCTCTTCAGGTTCCCTTGCGTCAGAAGCCC AGGAGGAAAACTCAAGGTTTTCTCACGATGAGTCGGAGGAGGATATCGTGTAAAGATCTGGGCCATGCTGACTGCCAAGGGTGGCTGTATAAGAAAAAGGAAAAGGGAAGTTTCCTAAGCAACAAATG GAAAAAGTTCTGGGTGATACTGAAGGGGTCGTCACTGTACTGGTATAGCAATCAAATGGCAGAGAAAGCTGATGGATTTGTCAACCTGCCTGATTTCACTGTGGAAAGAGCATCTGAATGCAAGAAAA AGCATGCTTTTAAGATCAGCCATCCACAGATCAAGACCTTTTATTTTGCAGCTGAGAATGTGCAGGAAATGAACGTGTGGTTAAATAAACTTGGATCGGCTGTAATCCATCAGGAATCCACTACAAAG GATGAAGAATGTTACAGTGAAAGTGAACAGGAAGATCCAGAAATAGCTGCGGAGACACCACCCCCTCCTCACGCTTCCCAGACTCAGTCTTTGACTGCACAGCAGGCATCTTCATCCTCACCCAGCCT GAGTGGAACGTCGTATTCTTTCTCTTCCCTGGAAAATACAGTGAAGACACCCAGCAGTTTTCCTTCCTCCTTATCTAAAGAGAGACAATCCTTGCCTGACACAGTTAACAGTTTGTCTGCTGCTGAAG ATGAGGGACAACCAATAACGTTTGCTGTGCAAGTTCATTCACCTGTACCCTCAGAGGCAGGCATCCACAAGGCCCTGGAAAACAGTTTTGTCACATCAGAAAGTGGATTTTTGAACTCTTTATCTAGT GATGATACTTCTTCATTGAGTAGCAATCATGACCATCTTACTGTCCCAGATAAGCCTGCTGGATCAAAGATCATGGACAAAGAAGAGACAAAAGTGTCTGAAGATGATGAAATGGAGAAGCTGTACAA ATCATTAGAGCAAGCTAGTCTATCTCCTCTTGGGGACCGACGACCTTCGACTAAAAAGGAGTTGAGAAAATCCTTTGTTAAGCGGTGTAAAAATCCATCTATAAACGAGAAACTCCACAAAATCCGAA CATTGAATAGCACATTAAAGTGTAAAGAACATGATCTGGCCATGATTAACCAGTTGCTGGATGACCCGAAGCTGACAGCCAGGAAATACAGAGAGTGGAAAGTCATGAACACCCTGCTGATCCAGGAC ATCTATCAGCAGCAGCGGGCTTCGCCTGCCCCTGATGACACTGATGACACCCCCCAGGAACTCAAGAAATCACCTTCTTCTCCCTCTGTTGAAAATTCCATTTGAGACAAAGTCAGGGTTTTCTCCTC TTATATTTTATCACAAGCAACTCTTCAAGATGTTGCAAAAGCTTACATTTTTCCTTAAAAGGAAAACTGAAACCCAGTCCTTCAAGCATCAGCTTCCCATCTAAAGATGCACGTTAGATGAAGATAAT CACCGAATACACCAGGGCTCCTCATTTCAGTCGTAACGCATCCATTGAGATTGGAATGATTGAGTTCAGTTGAAAGGCGTTTTTTGTGTTCCTACTGGGAGCTCACGGTGATGTGGGGCTCTAGGGGG GATGTGAGAAATGTCTCTTCTGTTCATTGCTCTCCAGAGAATGCTATGGACAAGAATCAAATTTTACCAGGAGTAATTGCCCATGGAAACATTCTGTTTTTCAAAAGAAGAATGTACATATTCCACTT GACTGGGAAGCTGTGTGGCCCAAATCACTGTTTGAGTGGAGGAATGTTTTCTAGAGCAGTGACTGGAAGGACAAACGTGGTGTTGCAGAACAAAAATTCCTTGCCTTTGGTATGGAATGGTGGTGCCT TTTCCATGTGATGAGAAATGCTTCATAGACAGTGGCATGTGGGAGAGCTGAAGGAGGAGGCGTGTTCCATATTCCACTCATTCAAAGGACAGCTTGGTGTTTTCACACTTTATGCAGGTTAGGGGATC TGATTAATGTTTCCTTTCCTTACAACAGCTAGAGAAAACATCTCATCACAATTGGAGACCTCTACTTCCTTTGAGCTTTCCTACTCAATGGTAGGAGATAGGAATATGTTCCGCAAAGAATGTCTACT GCTCTTGTCCTTGGCTGTGATCCCTATACATAGTGTGAATTTATATCCAGGTTTCCCAGGATCAATATTGACAAGACGACTTTGGCATCTGAATTGTTTTAATATCTTTACTCAAAAAAACAAAAAAA CAAAAACCCATGGAAGCAACAAAAGAGTTAAACATGAGGGATTTATTTTTGTATGTTTATATGTCACTTGTGTGCTATGTGAATAGCTATGTTTGTTATTTAAATATATTTATAGAAGTTCAAATTAC TAGTGTTTAAAAGATGATATACTATTATATATTGTGCTTAGTATATATTTGATGAGTCTATACTTTTTGCTTGAGAAAAATAGAAATACTATTGATTCACTGGTGTTATGATGTTGCACTGTGTCTGA GGAATGCTCAGGAAATCTTGTGGGAAAAAAATGGGGCATGCATTCATAATTTTTCATTTTCTTCCCCACCCCAACCCCCATGAGCTCTTAAATTTAGATTTCTATCTCTTGTAAGTCACTCTTTTAAC CAGCAAAGGACTTTCATCTTAGATTATCCTTTCTATTAAATAAACTTTAAGCTTTGTGCCATTTATGCCTGCAAACCTTAGACCAAAGGCAACACAACTAATGTCATCTTTTCATTAAAGACTAATAG AAATTTAGAAATCATTGTGTTAAAGAGAGCTATAGAGAAACAATATGAAAGTCTTCCCTTACTAATCACCATGAATATTTCTCACCATAGGAATAACCACAACCCACCAAGTACCCATGTTGGCCCTG CCTACCCGTAACAAATTGTTCACACAACCTATTTTGTTTTATAGCTTCAAAGTGTGGCTTGACATTCAAATGGAAGGAACCACCTGAATTATATCTGCAAACAAAATGGAAATAGTTGTTGAATAGTT CCCCAAGCTTTACTAAGAAGCCTTAATACTCTGTAAACAAACAAACAAACAAAAAACAACCTTAGCATTAAGAAATAAAAACAAAAAACAAGAAGCAAGTTGTACTGCTAGAAACTTCTCTAAGATAA GAGGCCAGGCCAGTCAGTTTGGCCCAGCAAACATGTGGGTACTTCTCCACCTAGGGAAGCCACTGAAGATGAGTTTGACCTGTGGTGACCTGACAGAGAGAACATTCAGATCCTCAGATTGCACCCTG ATGCCCTGGTTTAGGAAAGCAGTGCTTTAACCTTTTGCCCCTGGAAATTACTGATTCTTTCTGTGATTAGCAGATACCAGAAGGGAAATTATTTAGGATTGGCAATGTAAAGAGTATTGAAGGAACAA CAAATAACAATAGCAGAAATAACAGTGTGACATAAAGTGCCCTTCCACCTATTTTTCTTTGGTTTGCAACACCAGCCTGTAGACTTCCAGTTTTTCTTAAATTGAAGAGCTCCAGACACTTTTGAGCA GGGTTTGTGAATAGCTTTGAATGCTTTCCTTTGGCTTTTCGTGAAGACATATTTCCCCAGCCTTTCAACTGTAAACTCCTTTAGTACCATTGAAACTTAAGGCAAAAAAGATCCCTGGGATTACTTAG CCAAGGCTTAAATTTATTTTTCAAAGTCAAGAACATTAGCCTAGAAGTTTTTGCTTTGCTAGTTAAAGCTTACTTTGCAGAGCTTCCCAAAGTGAAAGGGAAACTGAACTTCACAATTTTGCACCTGG CTTTCTGGAGCCCCATTGCCTGCTCATTCGTGTTTTTCCCCCTGTAAATTATTTTGCTTTTGACCAGGTTGTGCTAGAAAGTAGGGCTGCTTCTGTGAGTTCTCAGCCTAGGCTGTGGCCACTAAGAC GTGGGTGGGGGGATAGACAGGAGTGAGAGGGAGAGTGGGTGACACTTTCCGTGACACTTAATGTAGGAAGACATGGGCTTCTCTCTCTTGGCCTCAAGCCACTTTTCTGGTCCAAAGAATATTGGGAA AACTGGATTACTTTCAGTATATTTCTTGAGACCGGGTCATCTCTGAAATGCATTTGGGGTAGTTTCCTGGGGTCCAAGGGCCAATTCCTATACCCAGTCCTGCAGTGTCTGTGAGCTGTGGAATGAGA GAGAAAACCATGGCTGCTCAGGAAGGAAGTGGAGAATCTCTCAGCACACGTAGATCCAAATCTGTGGCACCTGCTAAAGATTAGGATTTGGAGAGGACTCCTCTTTGGGGTTGTGAAGAGGACCTTTT CCCTCTGTTGTTAGCCTGTAGATCCAGAACGGAGCCTGATGTGATGCCTTCACTGGTTGATATATTGCAAATAGACACTCTGAGCCCTGCATTGCAAGGGCGTCTTTTGCTTTAAAGAATTCTTAGTT TTGCCACAACAGCTCAAATCTCAGAATAGGATCAAAGGCCTAGAAAGACTCCTAAAGTATAGGATTACAAAGACTCCAGGAAGCGTAAGAAAGAGATTGTGTTTGGAGTCAGATTTCAATGTGAAACC CATGCCTTACATTTACACAGCACTTTGTAGTTTGCAAATTGGTGTGTTTTCAGCCCCCTCCCGCTGCCCCATGCTCTGAGATGATTGTGGATTATTACAGTGAAGTGCCTGGCCCGGAGCCCCCAGTG ATGAAGCAGGAACTTGAGTCTCAGGACTCCCAGCGGCTCTCTGCCCATTTCCTCCTCTCCGCCCCCCACCTCGCTTCACCTGTTACCTTGTGAAGTTGCTGTTGGCACATAGCCCACTAGGAAACCAA GAAGTTTGACTGGGAGCGTGTGTTTCATTGCACTGGGCTTAGCATACGGCTGGCCCTGGTGGCTGTTTGGCTAAATTCTCCATTTGAAACCTAAAGGGCCCTCTCTGTGCTTGAGCACAGTCTCCTCC TAGTGGTCCTGCCTCAACCTGCTGGCGGGCTGTCTATGGATTGGGGTTTCACCTAATCATGCTGTGTTTCCTTTCTTTTCTTTCTGTACATTAGACTACTTGGGAGGTGCTGTGTGATCCTTGGATGA AAAACATATATTTAAAGAAATGGAGAGTGTTTATTTTGTTTGCTTTTTGAGGCATGTGCTGTCAAATGTTAGAGACCAAACTTAGTGATTAGAGGTTGGTCCTTTGACCTTCTTCTCTTAATTGCTTT TCATGTAATCATGATAATTTACTCAGGTAGCACTCCAGTCACAAACAATGTCACAGAGATGAAACAGATTCAAAGAAAAAATATTTTTAAGTCTTTTGAAAAGAAGTGCTATTCAAATTTAAGACATG TTTAAATTCATAGGTACATTATCTCTTAGTAAGAAATACTTTTTTTTTTCTTTTTTTAGACAGAGTCTTGCTCTGTTGCCCAGGCTGGAGTGCAGTGGCACGATTTTAGCTCACTGCAACCTCTGCCT CCCTGGTTGAAGTGATTCTCCTGCCTCAGCCTCCCGAGTAGCTGGGACTACGCCCGGCTAATTTTTATATTTTTAGTAGAGACCGGGGTTTACCATGTTGCCCAGGCTGGTTTCAAACTCCTGACCTC AGGTGATCTGCCTGCCTCTGCCTCCCAGAGTGCTGGGATTACAGGTGTGAGCCACCACACCTGGCCGAAAGACAGTATTTTGATATAGCCACATACATGATTTAATGAGTAATGTTAAGTACAGAAAA GCTGCCATATCCACATAGTTTTAGGGGGCATTTCTTCTTCAGTCTAACAAGAATATGATATCCAATTGTGGTTTTCCAATTTATTTCTCTTCCAATTTCTTTTGTATACCTCACAGGAGAAATTGAAT CCTAGAACTGGGAGATGACTGCCCTGCCCAGGGTTTTGTAATACATAATTGAAAATAAAAGTCCCTGAAACTAAATGTTTGCAGCCTGTATGAAATGGACTGTGGAAGGGGGATAATTTCTCTCCTCA CAGAAAGCCACTCGTCTCCTTGAATGAGGCATTGAGCAGACACACGTTTCTCTGTGTCGTGGGGCAGGAAGCAATTCCCTTGCCTCTTCAGCACATCTCAGTTCTTTCCCACATGACCCCAGAACCAC ATAGAAAACATTGAAAATAATGGATTCTTCATTGTATTTGAATTTTTTTTTTTTAACCTTTAGCCCAAAAGGGAAGTGTGCCTCGTGGAAAGAGCAAATGCCGTAAAATAGAAACCAGGAGTTTTAAT CGCCATATATTTTAATGTGCTTGCATGATGGGAATGTGACTTTTAGCACTGCATGGTGTTTGGGGGCAAGATATTAATGTGGAAATCTTAGCTTAAGTTTTACTGTGCTCTCATCCTGTGTCAGCTAC CCCTCTAAACTGAAAAAGAGGCATGGCTCATTTCTCTCCTGCTTTATGTTTTTGAGGTTGACTTGTAAGATAAAAATAAAAATAAGAAAAAAATATATCTAGGCAAATGACATGAAAAAAAAGTTGAA ATATACTACTGGTGTTCATTTTTGTCCTGCAGTGTTGCTTTCTCAAAGAAATAAACATGTGGCTGGAAGTGTTTAATGGCTGCGTTTTGATCGTCTACAACAAGGTTACAGTGCCCTCTGGTGGCAGT CATCAAAATCGCTTCTAGACTTGTTTTTATTTTTAAATAAAAGATCTAATTATATTGGAAA
hide sequence
RefSeq Acc Id:
NM_001130700 ⟹ NP_001124172
RefSeq Status:
VALIDATED
Type:
CODING
Position:
Human Assembly Chr Position (strand) Source GRCh38 6 154,154,496 - 154,356,803 (-) NCBI GRCh37 6 154,475,618 - 154,677,900 (-) RGD Celera 6 155,210,000 - 155,412,269 (-) RGD HuRef 6 152,038,861 - 152,240,888 (-) ENTREZGENE CHM1_1 6 154,739,273 - 154,941,543 (-) NCBI T2T-CHM13v2.0 6 155,356,475 - 155,558,805 (-) NCBI
Sequence:
AGTTCTGGGTTGACTGAGTTTCCAGAGCTGAGGCTGCTTTAAGTAGAATCCTCAAGCTTGGCCT CAGAGTACTATGAGGCTTCTGAATCCAGGAATAAGACTGCTCTTGGATTTACTCTCTTTGTATTGCATGTCAAAGGCAACAGAACTGGACCAAGAAAATTCATAACTTTTTGCTTTTGTTTCTACTAA GATGACATCATACATGGCTATTGATGGCAGTGCTCTTCAGGTTCCCTTGCGTCAGAAGCCCAGGAGGAAAACTCAAGGTTTTCTCACGATGAGTCGGAGGAGGATATCGTGTAAAGATCTGGGCCATG CTGACTGCCAAGGGTGGCTGTATAAGAAAAAGGAAAAGGGAAGTTTCCTAAGCAACAAATGGAAAAAGTTCTGGGTGATACTGAAGGGGTCGTCACTGTACTGGTATAGCAATCAAATGGCAGAGAAA GCTGATGGATTTGTCAACCTGCCTGATTTCACTGTGGAAAGAGCATCTGAATGCAAGAAAAAGCATGCTTTTAAGATCAGCCATCCACAGATCAAGACCTTTTATTTTGCAGCTGAGAATGTGCAGGA AATGAACGTGTGGTTAAATAAACTTGGATCGGCTGTAATCCATCAGGAATCCACTACAAAGGATGAAGAATGTTACAGTGAAAGTGAACAGGAAGATCCAGAAATAGCTGCGGAGACACCACCCCCTC CTCACGCTTCCCAGACTCAGTCTTTGACTGCACAGCAGGCATCTTCATCCTCACCCAGCCTGAGTGGAACGTCGTATTCTTTCTCTTCCCTGGAAAATACAGTGAAGACACCCAGCAGTTTTCCTTCC TCCTTATCTAAAGAGAGACAATCCTTGCCTGACACAGTTAACAGTTTGTCTGCTGCTGAAGATGAGGGACAACCAATAACGTTTGCTGTGCAAGTTCATTCACCTGTACCCTCAGAGGCAGGCATCCA CAAGGCCCTGGAAAACAGTTTTGTCACATCAGAAAGTGGATTTTTGAACTCTTTATCTAGTGATGATACTTCTTCATTGAGTAGCAATCATGACCATCTTACTGTCCCAGATAAGCCTGCTGGATCAA AGATCATGGACAAAGAAGAGACAAAAGTGTCTGAAGATGATGAAATGGAGAAGCTGTACAAATCATTAGAGCAAGCTAGTCTATCTCCTCTTGGGGACCGACGACCTTCGACTAAAAAGGAGTTGAGA AAATCCTTTGTTAAGCGGTGTAAAAATCCATCTATAAACGAGAAACTCCACAAAATCCGAACATTGAATAGCACATTAAAGTGTAAAGAACATGATCTGGCCATGATTAACCAGTTGCTGGATGACCC GAAGCTGACAGCCAGGAAATACAGAGAGTGGAAAGTCATGAACACCCTGCTGATCCAGGACATCTATCAGCAGCAGCGGGCTTCGCCTGCCCCTGATGACACTGATGACACCCCCCAGGAACTCAAGA AATCACCTTCTTCTCCCTCTGTTGAAAATTCCATTTGAGACAAAGTCAGGGTTTTCTCCTCTTATATTTTATCACAAGCAACTCTTCAAGATGTTGCAAAAGCTTACATTTTTCCTTAAAAGGAAAAC TGAAACCCAGTCCTTCAAGCATCAGCTTCCCATCTAAAGATGCACGTTAGATGAAGATAATCACCGAATACACCAGGGCTCCTCATTTCAGTCGTAACGCATCCATTGAGATTGGAATGATTGAGTTC AGTTGAAAGGCGTTTTTTGTGTTCCTACTGGGAGCTCACGGTGATGTGGGGCTCTAGGGGGGATGTGAGAAATGTCTCTTCTGTTCATTGCTCTCCAGAGAATGCTATGGACAAGAATCAAATTTTAC CAGGAGTAATTGCCCATGGAAACATTCTGTTTTTCAAAAGAAGAATGTACATATTCCACTTGACTGGGAAGCTGTGTGGCCCAAATCACTGTTTGAGTGGAGGAATGTTTTCTAGAGCAGTGACTGGA AGGACAAACGTGGTGTTGCAGAACAAAAATTCCTTGCCTTTGGTATGGAATGGTGGTGCCTTTTCCATGTGATGAGAAATGCTTCATAGACAGTGGCATGTGGGAGAGCTGAAGGAGGAGGCGTGTTC CATATTCCACTCATTCAAAGGACAGCTTGGTGTTTTCACACTTTATGCAGGTTAGGGGATCTGATTAATGTTTCCTTTCCTTACAACAGCTAGAGAAAACATCTCATCACAATTGGAGACCTCTACTT CCTTTGAGCTTTCCTACTCAATGGTAGGAGATAGGAATATGTTCCGCAAAGAATGTCTACTGCTCTTGTCCTTGGCTGTGATCCCTATACATAGTGTGAATTTATATCCAGGTTTCCCAGGATCAATA TTGACAAGACGACTTTGGCATCTGAATTGTTTTAATATCTTTACTCAAAAAAACAAAAAAACAAAAACCCATGGAAGCAACAAAAGAGTTAAACATGAGGGATTTATTTTTGTATGTTTATATGTCAC TTGTGTGCTATGTGAATAGCTATGTTTGTTATTTAAATATATTTATAGAAGTTCAAATTACTAGTGTTTAAAAGATGATATACTATTATATATTGTGCTTAGTATATATTTGATGAGTCTATACTTTT TGCTTGAGAAAAATAGAAATACTATTGATTCACTGGTGTTATGATGTTGCACTGTGTCTGAGGAATGCTCAGGAAATCTTGTGGGAAAAAAATGGGGCATGCATTCATAATTTTTCATTTTCTTCCCC ACCCCAACCCCCATGAGCTCTTAAATTTAGATTTCTATCTCTTGTAAGTCACTCTTTTAACCAGCAAAGGACTTTCATCTTAGATTATCCTTTCTATTAAATAAACTTTAAGCTTTGTGCCATTTATG CCTGCAAACCTTAGACCAAAGGCAACACAACTAATGTCATCTTTTCATTAAAGACTAATAGAAATTTAGAAATCATTGTGTTAAAGAGAGCTATAGAGAAACAATATGAAAGTCTTCCCTTACTAATC ACCATGAATATTTCTCACCATAGGAATAACCACAACCCACCAAGTACCCATGTTGGCCCTGCCTACCCGTAACAAATTGTTCACACAACCTATTTTGTTTTATAGCTTCAAAGTGTGGCTTGACATTC AAATGGAAGGAACCACCTGAATTATATCTGCAAACAAAATGGAAATAGTTGTTGAATAGTTCCCCAAGCTTTACTAAGAAGCCTTAATACTCTGTAAACAAACAAACAAACAAAAAACAACCTTAGCA TTAAGAAATAAAAACAAAAAACAAGAAGCAAGTTGTACTGCTAGAAACTTCTCTAAGATAAGAGGCCAGGCCAGTCAGTTTGGCCCAGCAAACATGTGGGTACTTCTCCACCTAGGGAAGCCACTGAA GATGAGTTTGACCTGTGGTGACCTGACAGAGAGAACATTCAGATCCTCAGATTGCACCCTGATGCCCTGGTTTAGGAAAGCAGTGCTTTAACCTTTTGCCCCTGGAAATTACTGATTCTTTCTGTGAT TAGCAGATACCAGAAGGGAAATTATTTAGGATTGGCAATGTAAAGAGTATTGAAGGAACAACAAATAACAATAGCAGAAATAACAGTGTGACATAAAGTGCCCTTCCACCTATTTTTCTTTGGTTTGC AACACCAGCCTGTAGACTTCCAGTTTTTCTTAAATTGAAGAGCTCCAGACACTTTTGAGCAGGGTTTGTGAATAGCTTTGAATGCTTTCCTTTGGCTTTTCGTGAAGACATATTTCCCCAGCCTTTCA ACTGTAAACTCCTTTAGTACCATTGAAACTTAAGGCAAAAAAGATCCCTGGGATTACTTAGCCAAGGCTTAAATTTATTTTTCAAAGTCAAGAACATTAGCCTAGAAGTTTTTGCTTTGCTAGTTAAA GCTTACTTTGCAGAGCTTCCCAAAGTGAAAGGGAAACTGAACTTCACAATTTTGCACCTGGCTTTCTGGAGCCCCATTGCCTGCTCATTCGTGTTTTTCCCCCTGTAAATTATTTTGCTTTTGACCAG GTTGTGCTAGAAAGTAGGGCTGCTTCTGTGAGTTCTCAGCCTAGGCTGTGGCCACTAAGACGTGGGTGGGGGGATAGACAGGAGTGAGAGGGAGAGTGGGTGACACTTTCCGTGACACTTAATGTAGG AAGACATGGGCTTCTCTCTCTTGGCCTCAAGCCACTTTTCTGGTCCAAAGAATATTGGGAAAACTGGATTACTTTCAGTATATTTCTTGAGACCGGGTCATCTCTGAAATGCATTTGGGGTAGTTTCC TGGGGTCCAAGGGCCAATTCCTATACCCAGTCCTGCAGTGTCTGTGAGCTGTGGAATGAGAGAGAAAACCATGGCTGCTCAGGAAGGAAGTGGAGAATCTCTCAGCACACGTAGATCCAAATCTGTGG CACCTGCTAAAGATTAGGATTTGGAGAGGACTCCTCTTTGGGGTTGTGAAGAGGACCTTTTCCCTCTGTTGTTAGCCTGTAGATCCAGAACGGAGCCTGATGTGATGCCTTCACTGGTTGATATATTG CAAATAGACACTCTGAGCCCTGCATTGCAAGGGCGTCTTTTGCTTTAAAGAATTCTTAGTTTTGCCACAACAGCTCAAATCTCAGAATAGGATCAAAGGCCTAGAAAGACTCCTAAAGTATAGGATTA CAAAGACTCCAGGAAGCGTAAGAAAGAGATTGTGTTTGGAGTCAGATTTCAATGTGAAACCCATGCCTTACATTTACACAGCACTTTGTAGTTTGCAAATTGGTGTGTTTTCAGCCCCCTCCCGCTGC CCCATGCTCTGAGATGATTGTGGATTATTACAGTGAAGTGCCTGGCCCGGAGCCCCCAGTGATGAAGCAGGAACTTGAGTCTCAGGACTCCCAGCGGCTCTCTGCCCATTTCCTCCTCTCCGCCCCCC ACCTCGCTTCACCTGTTACCTTGTGAAGTTGCTGTTGGCACATAGCCCACTAGGAAACCAAGAAGTTTGACTGGGAGCGTGTGTTTCATTGCACTGGGCTTAGCATACGGCTGGCCCTGGTGGCTGTT TGGCTAAATTCTCCATTTGAAACCTAAAGGGCCCTCTCTGTGCTTGAGCACAGTCTCCTCCTAGTGGTCCTGCCTCAACCTGCTGGCGGGCTGTCTATGGATTGGGGTTTCACCTAATCATGCTGTGT TTCCTTTCTTTTCTTTCTGTACATTAGACTACTTGGGAGGTGCTGTGTGATCCTTGGATGAAAAACATATATTTAAAGAAATGGAGAGTGTTTATTTTGTTTGCTTTTTGAGGCATGTGCTGTCAAAT GTTAGAGACCAAACTTAGTGATTAGAGGTTGGTCCTTTGACCTTCTTCTCTTAATTGCTTTTCATGTAATCATGATAATTTACTCAGGTAGCACTCCAGTCACAAACAATGTCACAGAGATGAAACAG ATTCAAAGAAAAAATATTTTTAAGTCTTTTGAAAAGAAGTGCTATTCAAATTTAAGACATGTTTAAATTCATAGGTACATTATCTCTTAGTAAGAAATACTTTTTTTTTTCTTTTTTTAGACAGAGTC TTGCTCTGTTGCCCAGGCTGGAGTGCAGTGGCACGATTTTAGCTCACTGCAACCTCTGCCTCCCTGGTTGAAGTGATTCTCCTGCCTCAGCCTCCCGAGTAGCTGGGACTACGCCCGGCTAATTTTTA TATTTTTAGTAGAGACCGGGGTTTACCATGTTGCCCAGGCTGGTTTCAAACTCCTGACCTCAGGTGATCTGCCTGCCTCTGCCTCCCAGAGTGCTGGGATTACAGGTGTGAGCCACCACACCTGGCCG AAAGACAGTATTTTGATATAGCCACATACATGATTTAATGAGTAATGTTAAGTACAGAAAAGCTGCCATATCCACATAGTTTTAGGGGGCATTTCTTCTTCAGTCTAACAAGAATATGATATCCAATT GTGGTTTTCCAATTTATTTCTCTTCCAATTTCTTTTGTATACCTCACAGGAGAAATTGAATCCTAGAACTGGGAGATGACTGCCCTGCCCAGGGTTTTGTAATACATAATTGAAAATAAAAGTCCCTG AAACTAAATGTTTGCAGCCTGTATGAAATGGACTGTGGAAGGGGGATAATTTCTCTCCTCACAGAAAGCCACTCGTCTCCTTGAATGAGGCATTGAGCAGACACACGTTTCTCTGTGTCGTGGGGCAG GAAGCAATTCCCTTGCCTCTTCAGCACATCTCAGTTCTTTCCCACATGACCCCAGAACCACATAGAAAACATTGAAAATAATGGATTCTTCATTGTATTTGAATTTTTTTTTTTTAACCTTTAGCCCA AAAGGGAAGTGTGCCTCGTGGAAAGAGCAAATGCCGTAAAATAGAAACCAGGAGTTTTAATCGCCATATATTTTAATGTGCTTGCATGATGGGAATGTGACTTTTAGCACTGCATGGTGTTTGGGGGC AAGATATTAATGTGGAAATCTTAGCTTAAGTTTTACTGTGCTCTCATCCTGTGTCAGCTACCCCTCTAAACTGAAAAAGAGGCATGGCTCATTTCTCTCCTGCTTTATGTTTTTGAGGTTGACTTGTA AGATAAAAATAAAAATAAGAAAAAAATATATCTAGGCAAATGACATGAAAAAAAAGTTGAAATATACTACTGGTGTTCATTTTTGTCCTGCAGTGTTGCTTTCTCAAAGAAATAAACATGTGGCTGGA AGTGTTTAATGGCTGCGTTTTGATCGTCTACAACAAGGTTACAGTGCCCTCTGGTGGCAGTCATCAAAATCGCTTCTAGACTTGTTTTTATTTTTAAATAAAAGATCTAATTATATTGGAAA
hide sequence
RefSeq Acc Id:
NM_001394799 ⟹ NP_001381728
RefSeq Status:
VALIDATED
Type:
CODING
Position:
Human Assembly Chr Position (strand) Source GRCh38 6 154,154,496 - 154,356,803 (-) NCBI T2T-CHM13v2.0 6 155,356,475 - 155,558,805 (-) NCBI
Sequence:
AGTTCTGGGTTGACTGAGTTTCCAGAGCTGAGGCTGCTTTAAGTAGAATCCTCAAGCTTGGCCTCAGAGTACTATGAGGCTTCTGAATCCAGGAATAAGACTGCTCTTGGATTTACTCTCTTTGTATT GCATAGTCATCAACTGGGCTCATGAGAACCACAAGAAACCTACGAAGGCACTGGGACAGAGCCTGGCTGCTGGTCAAAGGCAACAGAACTGGACCAAGAAAATTCATAACTTTTTGCTTTTGTTTCTA CTAAGATGACATCATACATGGCTATTGATGGCAGTGCTCTTCAGGTTCCCTTGCGTCAGAAGCCCAGGAGGAAAACTCAAGGTTTTCTCACGATGAGTCGGAGGAGGATATCGTGTAAAGATCTGGGC CATGCTGACTGCCAAGGGTGGCTGTATAAGAAAAAGGAAAAGGGAAGTTTCCTAAGCAACAAATGGAAAAAGTTCTGGGTGATACTGAAGGGGTCGTCACTGTACTGGTATAGCAATCAAATGGCAGA GAAAGCTGATGGATTTGTCAACCTGCCTGATTTCACTGTGGAAAGAGCATCTGAATGCAAGAAAAAGCATGCTTTTAAGATCAGCCATCCACAGATCAAGACCTTTTATTTTGCAGCTGAGAATGTGC AGGAAATGAACGTGTGGTTAAATAAACTTGGATCGGCTGTAATCCATCAGGAATCCACTACAAAGGATGAAGAATGTTACAGTGAAAGTGAACAGGAAGATCCAGAAATAGCTGCGGAGACACCACCC CCTCCTCACGCTTCCCAGACTCAGTCTTTGACTGCACAGCAGGCATCTTCATCCTCACCCAGCCTGAGTGGAACGTCGTATTCTTTCTCTTCCCTGGAAAATACAGTGAAGACACCCAGCAGTTTTCC TTCCTCCTTATCTAAAGAGAGACAATCCTTGCCTGACACAGTTAACAGTTTGTCTGCTGCTGAAGATGAGGGACAACCAATAACGTTTGCTGTGCAAGTTCATTCACCTGTACCCTCAGAGGCAGGCA TCCACAAGGCCCTGGAAAACAGTTTTGTCACATCAGAAAGTGGATTTTTGAACTCTTTATCTAGTGATGATACTTCTTCATTGAGTAGCAATCATGACCATCTTACTGTCCCAGATAAGCCTGCTGGA TCAAAGATCATGGACAAAGAAGAGACAAAAGTGTCTGAAGATGATGAAATGGAGAAGCTGTACAAATCATTAGAGCAAGCTAGTCTATCTCCTCTTGGGGACCGACGACCTTCGACTAAAAAGGAGTT GAGAAAATCCTTTGTTAAGCGGTGTAAAAATCCATCTATAAACGAGAAACTCCACAAAATCCGAACATTGAATAGCACATTAAAGTGTAAAGAACATGATCTGGCCATGATTAACCAGTTGCTGGATG ACCCGAAGCTGACAGCCAGGAAATACAGAGAGTGGAAAGTCATGAACACCCTGCTGATCCAGGACATCTATCAGCAGCAGCGGGCTTCGCCTGCCCCTGATGACACTGATGACACCCCCCAGGAACTC AAGAAATCACCTTCTTCTCCCTCTGTTGAAAATTCCATTTGAGACAAAGTCAGGGTTTTCTCCTCTTATATTTTATCACAAGCAACTCTTCAAGATGTTGCAAAAGCTTACATTTTTCCTTAAAAGGA AAACTGAAACCCAGTCCTTCAAGCATCAGCTTCCCATCTAAAGATGCACGTTAGATGAAGATAATCACCGAATACACCAGGGCTCCTCATTTCAGTCGTAACGCATCCATTGAGATTGGAATGATTGA GTTCAGTTGAAAGGCGTTTTTTGTGTTCCTACTGGGAGCTCACGGTGATGTGGGGCTCTAGGGGGGATGTGAGAAATGTCTCTTCTGTTCATTGCTCTCCAGAGAATGCTATGGACAAGAATCAAATT TTACCAGGAGTAATTGCCCATGGAAACATTCTGTTTTTCAAAAGAAGAATGTACATATTCCACTTGACTGGGAAGCTGTGTGGCCCAAATCACTGTTTGAGTGGAGGAATGTTTTCTAGAGCAGTGAC TGGAAGGACAAACGTGGTGTTGCAGAACAAAAATTCCTTGCCTTTGGTATGGAATGGTGGTGCCTTTTCCATGTGATGAGAAATGCTTCATAGACAGTGGCATGTGGGAGAGCTGAAGGAGGAGGCGT GTTCCATATTCCACTCATTCAAAGGACAGCTTGGTGTTTTCACACTTTATGCAGGTTAGGGGATCTGATTAATGTTTCCTTTCCTTACAACAGCTAGAGAAAACATCTCATCACAATTGGAGACCTCT ACTTCCTTTGAGCTTTCCTACTCAATGGTAGGAGATAGGAATATGTTCCGCAAAGAATGTCTACTGCTCTTGTCCTTGGCTGTGATCCCTATACATAGTGTGAATTTATATCCAGGTTTCCCAGGATC AATATTGACAAGACGACTTTGGCATCTGAATTGTTTTAATATCTTTACTCAAAAAAACAAAAAAACAAAAACCCATGGAAGCAACAAAAGAGTTAAACATGAGGGATTTATTTTTGTATGTTTATATG TCACTTGTGTGCTATGTGAATAGCTATGTTTGTTATTTAAATATATTTATAGAAGTTCAAATTACTAGTGTTTAAAAGATGATATACTATTATATATTGTGCTTAGTATATATTTGATGAGTCTATAC TTTTTGCTTGAGAAAAATAGAAATACTATTGATTCACTGGTGTTATGATGTTGCACTGTGTCTGAGGAATGCTCAGGAAATCTTGTGGGAAAAAAATGGGGCATGCATTCATAATTTTTCATTTTCTT CCCCACCCCAACCCCCATGAGCTCTTAAATTTAGATTTCTATCTCTTGTAAGTCACTCTTTTAACCAGCAAAGGACTTTCATCTTAGATTATCCTTTCTATTAAATAAACTTTAAGCTTTGTGCCATT TATGCCTGCAAACCTTAGACCAAAGGCAACACAACTAATGTCATCTTTTCATTAAAGACTAATAGAAATTTAGAAATCATTGTGTTAAAGAGAGCTATAGAGAAACAATATGAAAGTCTTCCCTTACT AATCACCATGAATATTTCTCACCATAGGAATAACCACAACCCACCAAGTACCCATGTTGGCCCTGCCTACCCGTAACAAATTGTTCACACAACCTATTTTGTTTTATAGCTTCAAAGTGTGGCTTGAC ATTCAAATGGAAGGAACCACCTGAATTATATCTGCAAACAAAATGGAAATAGTTGTTGAATAGTTCCCCAAGCTTTACTAAGAAGCCTTAATACTCTGTAAACAAACAAACAAACAAAAAACAACCTT AGCATTAAGAAATAAAAACAAAAAACAAGAAGCAAGTTGTACTGCTAGAAACTTCTCTAAGATAAGAGGCCAGGCCAGTCAGTTTGGCCCAGCAAACATGTGGGTACTTCTCCACCTAGGGAAGCCAC TGAAGATGAGTTTGACCTGTGGTGACCTGACAGAGAGAACATTCAGATCCTCAGATTGCACCCTGATGCCCTGGTTTAGGAAAGCAGTGCTTTAACCTTTTGCCCCTGGAAATTACTGATTCTTTCTG TGATTAGCAGATACCAGAAGGGAAATTATTTAGGATTGGCAATGTAAAGAGTATTGAAGGAACAACAAATAACAATAGCAGAAATAACAGTGTGACATAAAGTGCCCTTCCACCTATTTTTCTTTGGT TTGCAACACCAGCCTGTAGACTTCCAGTTTTTCTTAAATTGAAGAGCTCCAGACACTTTTGAGCAGGGTTTGTGAATAGCTTTGAATGCTTTCCTTTGGCTTTTCGTGAAGACATATTTCCCCAGCCT TTCAACTGTAAACTCCTTTAGTACCATTGAAACTTAAGGCAAAAAAGATCCCTGGGATTACTTAGCCAAGGCTTAAATTTATTTTTCAAAGTCAAGAACATTAGCCTAGAAGTTTTTGCTTTGCTAGT TAAAGCTTACTTTGCAGAGCTTCCCAAAGTGAAAGGGAAACTGAACTTCACAATTTTGCACCTGGCTTTCTGGAGCCCCATTGCCTGCTCATTCGTGTTTTTCCCCCTGTAAATTATTTTGCTTTTGA CCAGGTTGTGCTAGAAAGTAGGGCTGCTTCTGTGAGTTCTCAGCCTAGGCTGTGGCCACTAAGACGTGGGTGGGGGGATAGACAGGAGTGAGAGGGAGAGTGGGTGACACTTTCCGTGACACTTAATG TAGGAAGACATGGGCTTCTCTCTCTTGGCCTCAAGCCACTTTTCTGGTCCAAAGAATATTGGGAAAACTGGATTACTTTCAGTATATTTCTTGAGACCGGGTCATCTCTGAAATGCATTTGGGGTAGT TTCCTGGGGTCCAAGGGCCAATTCCTATACCCAGTCCTGCAGTGTCTGTGAGCTGTGGAATGAGAGAGAAAACCATGGCTGCTCAGGAAGGAAGTGGAGAATCTCTCAGCACACGTAGATCCAAATCT GTGGCACCTGCTAAAGATTAGGATTTGGAGAGGACTCCTCTTTGGGGTTGTGAAGAGGACCTTTTCCCTCTGTTGTTAGCCTGTAGATCCAGAACGGAGCCTGATGTGATGCCTTCACTGGTTGATAT ATTGCAAATAGACACTCTGAGCCCTGCATTGCAAGGGCGTCTTTTGCTTTAAAGAATTCTTAGTTTTGCCACAACAGCTCAAATCTCAGAATAGGATCAAAGGCCTAGAAAGACTCCTAAAGTATAGG ATTACAAAGACTCCAGGAAGCGTAAGAAAGAGATTGTGTTTGGAGTCAGATTTCAATGTGAAACCCATGCCTTACATTTACACAGCACTTTGTAGTTTGCAAATTGGTGTGTTTTCAGCCCCCTCCCG CTGCCCCATGCTCTGAGATGATTGTGGATTATTACAGTGAAGTGCCTGGCCCGGAGCCCCCAGTGATGAAGCAGGAACTTGAGTCTCAGGACTCCCAGCGGCTCTCTGCCCATTTCCTCCTCTCCGCC CCCCACCTCGCTTCACCTGTTACCTTGTGAAGTTGCTGTTGGCACATAGCCCACTAGGAAACCAAGAAGTTTGACTGGGAGCGTGTGTTTCATTGCACTGGGCTTAGCATACGGCTGGCCCTGGTGGC TGTTTGGCTAAATTCTCCATTTGAAACCTAAAGGGCCCTCTCTGTGCTTGAGCACAGTCTCCTCCTAGTGGTCCTGCCTCAACCTGCTGGCGGGCTGTCTATGGATTGGGGTTTCACCTAATCATGCT GTGTTTCCTTTCTTTTCTTTCTGTACATTAGACTACTTGGGAGGTGCTGTGTGATCCTTGGATGAAAAACATATATTTAAAGAAATGGAGAGTGTTTATTTTGTTTGCTTTTTGAGGCATGTGCTGTC AAATGTTAGAGACCAAACTTAGTGATTAGAGGTTGGTCCTTTGACCTTCTTCTCTTAATTGCTTTTCATGTAATCATGATAATTTACTCAGGTAGCACTCCAGTCACAAACAATGTCACAGAGATGAA ACAGATTCAAAGAAAAAATATTTTTAAGTCTTTTGAAAAGAAGTGCTATTCAAATTTAAGACATGTTTAAATTCATAGGTACATTATCTCTTAGTAAGAAATACTTTTTTTTTTCTTTTTTTAGACAG AGTCTTGCTCTGTTGCCCAGGCTGGAGTGCAGTGGCACGATTTTAGCTCACTGCAACCTCTGCCTCCCTGGTTGAAGTGATTCTCCTGCCTCAGCCTCCCGAGTAGCTGGGACTACGCCCGGCTAATT TTTATATTTTTAGTAGAGACCGGGGTTTACCATGTTGCCCAGGCTGGTTTCAAACTCCTGACCTCAGGTGATCTGCCTGCCTCTGCCTCCCAGAGTGCTGGGATTACAGGTGTGAGCCACCACACCTG GCCGAAAGACAGTATTTTGATATAGCCACATACATGATTTAATGAGTAATGTTAAGTACAGAAAAGCTGCCATATCCACATAGTTTTAGGGGGCATTTCTTCTTCAGTCTAACAAGAATATGATATCC AATTGTGGTTTTCCAATTTATTTCTCTTCCAATTTCTTTTGTATACCTCACAGGAGAAATTGAATCCTAGAACTGGGAGATGACTGCCCTGCCCAGGGTTTTGTAATACATAATTGAAAATAAAAGTC CCTGAAACTAAATGTTTGCAGCCTGTATGAAATGGACTGTGGAAGGGGGATAATTTCTCTCCTCACAGAAAGCCACTCGTCTCCTTGAATGAGGCATTGAGCAGACACACGTTTCTCTGTGTCGTGGG GCAGGAAGCAATTCCCTTGCCTCTTCAGCACATCTCAGTTCTTTCCCACATGACCCCAGAACCACATAGAAAACATTGAAAATAATGGATTCTTCATTGTATTTGAATTTTTTTTTTTTAACCTTTAG CCCAAAAGGGAAGTGTGCCTCGTGGAAAGAGCAAATGCCGTAAAATAGAAACCAGGAGTTTTAATCGCCATATATTTTAATGTGCTTGCATGATGGGAATGTGACTTTTAGCACTGCATGGTGTTTGG GGGCAAGATATTAATGTGGAAATCTTAGCTTAAGTTTTACTGTGCTCTCATCCTGTGTCAGCTACCCCTCTAAACTGAAAAAGAGGCATGGCTCATTTCTCTCCTGCTTTATGTTTTTGAGGTTGACT TGTAAGATAAAAATAAAAATAAGAAAAAAATATATCTAGGCAAATGACATGAAAAAAAAGTTGAAATATACTACTGGTGTTCATTTTTGTCCTGCAGTGTTGCTTTCTCAAAGAAATAAACATGTGGC TGGAAGTGTTTAATGGCTGCGTTTTGATCGTCTACAACAAGGTTACAGTGCCCTCTGGTGGCAGTCATCAAAATCGCTTCTAGACTTGTTTTTATTTTTAAATAAAAGATCTAATTATATTGGAAA
hide sequence
RefSeq Acc Id:
NM_001394800 ⟹ NP_001381729
RefSeq Status:
VALIDATED
Type:
CODING
Position:
Human Assembly Chr Position (strand) Source GRCh38 6 154,154,496 - 154,355,140 (-) NCBI T2T-CHM13v2.0 6 155,356,475 - 155,557,144 (-) NCBI
Sequence:
ACTTCTGCTTTCCATCCAGCTTGGAGGCTCTGCAGTGTGAGCTGATAATTGCAGTACAGGTTAACAATTTGCAAGTCAAAGGCAACAGAACTGGACCAAGAAAATTCATAACTTTTTGCTTTTGTTTC TACTAAGATGACATCATACATGGCTATTGATGGCAGTGCTCTTCAGGTTCCCTTGCGTCAGAAGCCCAGGAGGAAAACTCAAGGTTTTCTCACGATGAGTCGGAGGAGGATATCGTGTAAAGATCTGG GCCATGCTGACTGCCAAGGGTGGCTGTATAAGAAAAAGGAAAAGGGAAGTTTCCTAAGCAACAAATGGAAAAAGTTCTGGGTGATACTGAAGGGGTCGTCACTGTACTGGTATAGCAATCAAATGGCA GAGAAAGCTGATGGATTTGTCAACCTGCCTGATTTCACTGTGGAAAGAGCATCTGAATGCAAGAAAAAGCATGCTTTTAAGATCAGCCATCCACAGATCAAGACCTTTTATTTTGCAGCTGAGAATGT GCAGGAAATGAACGTGTGGTTAAATAAACTTGGATCGGCTGTAATCCATCAGGAATCCACTACAAAGGATGAAGAATGTTACAGTGAAAGTGAACAGGAAGATCCAGAAATAGCTGCGGAGACACCAC CCCCTCCTCACGCTTCCCAGACTCAGTCTTTGACTGCACAGCAGGCATCTTCATCCTCACCCAGCCTGAGTGGAACGTCGTATTCTTTCTCTTCCCTGGAAAATACAGTGAAGACACCCAGCAGTTTT CCTTCCTCCTTATCTAAAGAGAGACAATCCTTGCCTGACACAGTTAACAGTTTGTCTGCTGCTGAAGATGAGGGACAACCAATAACGTTTGCTGTGCAAGTTCATTCACCTGTACCCTCAGAGGCAGG CATCCACAAGGCCCTGGAAAACAGTTTTGTCACATCAGAAAGTGGATTTTTGAACTCTTTATCTAGTGATGATACTTCTTCATTGAGTAGCAATCATGACCATCTTACTGTCCCAGATAAGCCTGCTG GATCAAAGATCATGGACAAAGAAGAGACAAAAGTGTCTGAAGATGATGAAATGGAGAAGCTGTACAAATCATTAGAGCAAGCTAGTCTATCTCCTCTTGGGGACCGACGACCTTCGACTAAAAAGGAG TTGAGAAAATCCTTTGTTAAGCGGTGTAAAAATCCATCTATAAACGAGAAACTCCACAAAATCCGAACATTGAATAGCACATTAAAGTGTAAAGAACATGATCTGGCCATGATTAACCAGTTGCTGGA TGACCCGAAGCTGACAGCCAGGAAATACAGAGAGTGGAAAGTCATGAACACCCTGCTGATCCAGGACATCTATCAGCAGCAGCGGGCTTCGCCTGCCCCTGATGACACTGATGACACCCCCCAGGAAC TCAAGAAATCACCTTCTTCTCCCTCTGTTGAAAATTCCATTTGAGACAAAGTCAGGGTTTTCTCCTCTTATATTTTATCACAAGCAACTCTTCAAGATGTTGCAAAAGCTTACATTTTTCCTTAAAAG GAAAACTGAAACCCAGTCCTTCAAGCATCAGCTTCCCATCTAAAGATGCACGTTAGATGAAGATAATCACCGAATACACCAGGGCTCCTCATTTCAGTCGTAACGCATCCATTGAGATTGGAATGATT GAGTTCAGTTGAAAGGCGTTTTTTGTGTTCCTACTGGGAGCTCACGGTGATGTGGGGCTCTAGGGGGGATGTGAGAAATGTCTCTTCTGTTCATTGCTCTCCAGAGAATGCTATGGACAAGAATCAAA TTTTACCAGGAGTAATTGCCCATGGAAACATTCTGTTTTTCAAAAGAAGAATGTACATATTCCACTTGACTGGGAAGCTGTGTGGCCCAAATCACTGTTTGAGTGGAGGAATGTTTTCTAGAGCAGTG ACTGGAAGGACAAACGTGGTGTTGCAGAACAAAAATTCCTTGCCTTTGGTATGGAATGGTGGTGCCTTTTCCATGTGATGAGAAATGCTTCATAGACAGTGGCATGTGGGAGAGCTGAAGGAGGAGGC GTGTTCCATATTCCACTCATTCAAAGGACAGCTTGGTGTTTTCACACTTTATGCAGGTTAGGGGATCTGATTAATGTTTCCTTTCCTTACAACAGCTAGAGAAAACATCTCATCACAATTGGAGACCT CTACTTCCTTTGAGCTTTCCTACTCAATGGTAGGAGATAGGAATATGTTCCGCAAAGAATGTCTACTGCTCTTGTCCTTGGCTGTGATCCCTATACATAGTGTGAATTTATATCCAGGTTTCCCAGGA TCAATATTGACAAGACGACTTTGGCATCTGAATTGTTTTAATATCTTTACTCAAAAAAACAAAAAAACAAAAACCCATGGAAGCAACAAAAGAGTTAAACATGAGGGATTTATTTTTGTATGTTTATA TGTCACTTGTGTGCTATGTGAATAGCTATGTTTGTTATTTAAATATATTTATAGAAGTTCAAATTACTAGTGTTTAAAAGATGATATACTATTATATATTGTGCTTAGTATATATTTGATGAGTCTAT ACTTTTTGCTTGAGAAAAATAGAAATACTATTGATTCACTGGTGTTATGATGTTGCACTGTGTCTGAGGAATGCTCAGGAAATCTTGTGGGAAAAAAATGGGGCATGCATTCATAATTTTTCATTTTC TTCCCCACCCCAACCCCCATGAGCTCTTAAATTTAGATTTCTATCTCTTGTAAGTCACTCTTTTAACCAGCAAAGGACTTTCATCTTAGATTATCCTTTCTATTAAATAAACTTTAAGCTTTGTGCCA TTTATGCCTGCAAACCTTAGACCAAAGGCAACACAACTAATGTCATCTTTTCATTAAAGACTAATAGAAATTTAGAAATCATTGTGTTAAAGAGAGCTATAGAGAAACAATATGAAAGTCTTCCCTTA CTAATCACCATGAATATTTCTCACCATAGGAATAACCACAACCCACCAAGTACCCATGTTGGCCCTGCCTACCCGTAACAAATTGTTCACACAACCTATTTTGTTTTATAGCTTCAAAGTGTGGCTTG ACATTCAAATGGAAGGAACCACCTGAATTATATCTGCAAACAAAATGGAAATAGTTGTTGAATAGTTCCCCAAGCTTTACTAAGAAGCCTTAATACTCTGTAAACAAACAAACAAACAAAAAACAACC TTAGCATTAAGAAATAAAAACAAAAAACAAGAAGCAAGTTGTACTGCTAGAAACTTCTCTAAGATAAGAGGCCAGGCCAGTCAGTTTGGCCCAGCAAACATGTGGGTACTTCTCCACCTAGGGAAGCC ACTGAAGATGAGTTTGACCTGTGGTGACCTGACAGAGAGAACATTCAGATCCTCAGATTGCACCCTGATGCCCTGGTTTAGGAAAGCAGTGCTTTAACCTTTTGCCCCTGGAAATTACTGATTCTTTC TGTGATTAGCAGATACCAGAAGGGAAATTATTTAGGATTGGCAATGTAAAGAGTATTGAAGGAACAACAAATAACAATAGCAGAAATAACAGTGTGACATAAAGTGCCCTTCCACCTATTTTTCTTTG GTTTGCAACACCAGCCTGTAGACTTCCAGTTTTTCTTAAATTGAAGAGCTCCAGACACTTTTGAGCAGGGTTTGTGAATAGCTTTGAATGCTTTCCTTTGGCTTTTCGTGAAGACATATTTCCCCAGC CTTTCAACTGTAAACTCCTTTAGTACCATTGAAACTTAAGGCAAAAAAGATCCCTGGGATTACTTAGCCAAGGCTTAAATTTATTTTTCAAAGTCAAGAACATTAGCCTAGAAGTTTTTGCTTTGCTA GTTAAAGCTTACTTTGCAGAGCTTCCCAAAGTGAAAGGGAAACTGAACTTCACAATTTTGCACCTGGCTTTCTGGAGCCCCATTGCCTGCTCATTCGTGTTTTTCCCCCTGTAAATTATTTTGCTTTT GACCAGGTTGTGCTAGAAAGTAGGGCTGCTTCTGTGAGTTCTCAGCCTAGGCTGTGGCCACTAAGACGTGGGTGGGGGGATAGACAGGAGTGAGAGGGAGAGTGGGTGACACTTTCCGTGACACTTAA TGTAGGAAGACATGGGCTTCTCTCTCTTGGCCTCAAGCCACTTTTCTGGTCCAAAGAATATTGGGAAAACTGGATTACTTTCAGTATATTTCTTGAGACCGGGTCATCTCTGAAATGCATTTGGGGTA GTTTCCTGGGGTCCAAGGGCCAATTCCTATACCCAGTCCTGCAGTGTCTGTGAGCTGTGGAATGAGAGAGAAAACCATGGCTGCTCAGGAAGGAAGTGGAGAATCTCTCAGCACACGTAGATCCAAAT CTGTGGCACCTGCTAAAGATTAGGATTTGGAGAGGACTCCTCTTTGGGGTTGTGAAGAGGACCTTTTCCCTCTGTTGTTAGCCTGTAGATCCAGAACGGAGCCTGATGTGATGCCTTCACTGGTTGAT ATATTGCAAATAGACACTCTGAGCCCTGCATTGCAAGGGCGTCTTTTGCTTTAAAGAATTCTTAGTTTTGCCACAACAGCTCAAATCTCAGAATAGGATCAAAGGCCTAGAAAGACTCCTAAAGTATA GGATTACAAAGACTCCAGGAAGCGTAAGAAAGAGATTGTGTTTGGAGTCAGATTTCAATGTGAAACCCATGCCTTACATTTACACAGCACTTTGTAGTTTGCAAATTGGTGTGTTTTCAGCCCCCTCC CGCTGCCCCATGCTCTGAGATGATTGTGGATTATTACAGTGAAGTGCCTGGCCCGGAGCCCCCAGTGATGAAGCAGGAACTTGAGTCTCAGGACTCCCAGCGGCTCTCTGCCCATTTCCTCCTCTCCG CCCCCCACCTCGCTTCACCTGTTACCTTGTGAAGTTGCTGTTGGCACATAGCCCACTAGGAAACCAAGAAGTTTGACTGGGAGCGTGTGTTTCATTGCACTGGGCTTAGCATACGGCTGGCCCTGGTG GCTGTTTGGCTAAATTCTCCATTTGAAACCTAAAGGGCCCTCTCTGTGCTTGAGCACAGTCTCCTCCTAGTGGTCCTGCCTCAACCTGCTGGCGGGCTGTCTATGGATTGGGGTTTCACCTAATCATG CTGTGTTTCCTTTCTTTTCTTTCTGTACATTAGACTACTTGGGAGGTGCTGTGTGATCCTTGGATGAAAAACATATATTTAAAGAAATGGAGAGTGTTTATTTTGTTTGCTTTTTGAGGCATGTGCTG TCAAATGTTAGAGACCAAACTTAGTGATTAGAGGTTGGTCCTTTGACCTTCTTCTCTTAATTGCTTTTCATGTAATCATGATAATTTACTCAGGTAGCACTCCAGTCACAAACAATGTCACAGAGATG AAACAGATTCAAAGAAAAAATATTTTTAAGTCTTTTGAAAAGAAGTGCTATTCAAATTTAAGACATGTTTAAATTCATAGGTACATTATCTCTTAGTAAGAAATACTTTTTTTTTTCTTTTTTTAGAC AGAGTCTTGCTCTGTTGCCCAGGCTGGAGTGCAGTGGCACGATTTTAGCTCACTGCAACCTCTGCCTCCCTGGTTGAAGTGATTCTCCTGCCTCAGCCTCCCGAGTAGCTGGGACTACGCCCGGCTAA TTTTTATATTTTTAGTAGAGACCGGGGTTTACCATGTTGCCCAGGCTGGTTTCAAACTCCTGACCTCAGGTGATCTGCCTGCCTCTGCCTCCCAGAGTGCTGGGATTACAGGTGTGAGCCACCACACC TGGCCGAAAGACAGTATTTTGATATAGCCACATACATGATTTAATGAGTAATGTTAAGTACAGAAAAGCTGCCATATCCACATAGTTTTAGGGGGCATTTCTTCTTCAGTCTAACAAGAATATGATAT CCAATTGTGGTTTTCCAATTTATTTCTCTTCCAATTTCTTTTGTATACCTCACAGGAGAAATTGAATCCTAGAACTGGGAGATGACTGCCCTGCCCAGGGTTTTGTAATACATAATTGAAAATAAAAG TCCCTGAAACTAAATGTTTGCAGCCTGTATGAAATGGACTGTGGAAGGGGGATAATTTCTCTCCTCACAGAAAGCCACTCGTCTCCTTGAATGAGGCATTGAGCAGACACACGTTTCTCTGTGTCGTG GGGCAGGAAGCAATTCCCTTGCCTCTTCAGCACATCTCAGTTCTTTCCCACATGACCCCAGAACCACATAGAAAACATTGAAAATAATGGATTCTTCATTGTATTTGAATTTTTTTTTTTTAACCTTT AGCCCAAAAGGGAAGTGTGCCTCGTGGAAAGAGCAAATGCCGTAAAATAGAAACCAGGAGTTTTAATCGCCATATATTTTAATGTGCTTGCATGATGGGAATGTGACTTTTAGCACTGCATGGTGTTT GGGGGCAAGATATTAATGTGGAAATCTTAGCTTAAGTTTTACTGTGCTCTCATCCTGTGTCAGCTACCCCTCTAAACTGAAAAAGAGGCATGGCTCATTTCTCTCCTGCTTTATGTTTTTGAGGTTGA CTTGTAAGATAAAAATAAAAATAAGAAAAAAATATATCTAGGCAAATGACATGAAAAAAAAGTTGAAATATACTACTGGTGTTCATTTTTGTCCTGCAGTGTTGCTTTCTCAAAGAAATAAACATGTG GCTGGAAGTGTTTAATGGCTGCGTTTTGATCGTCTACAACAAGGTTACAGTGCCCTCTGGTGGCAGTCATCAAAATCGCTTCTAGACTTGTTTTTATTTTTAAATAAAAGATCTAATTATATTGGAAA
hide sequence
RefSeq Acc Id:
NM_001394801 ⟹ NP_001381730
RefSeq Status:
VALIDATED
Type:
CODING
Position:
Human Assembly Chr Position (strand) Source GRCh38 6 154,154,496 - 154,355,140 (-) NCBI T2T-CHM13v2.0 6 155,356,475 - 155,557,144 (-) NCBI
Sequence:
ACTTCTGCTTTCCATCCAGCTTGGAGGCTCTGCAGTGTGAGCTGATAATTGCAGTACAGGTTAACAATTTGCAATTTCAGAGTCATCAACTGGGCTCATGAGAACCACAAGAAACCTACGAAGGCACT GGGACAGAGCCTGGCTGCTGGTCAAAGGCAACAGAACTGGACCAAGAAAATTCATAACTTTTTGCTTTTGTTTCTACTAAGATGACATCATACATGGCTATTGATGGCAGTGCTCTTCAGGTTCCCTT GCGTCAGAAGCCCAGGAGGAAAACTCAAGGTTTTCTCACGATGAGTCGGAGGAGGATATCGTGTAAAGATCTGGGCCATGCTGACTGCCAAGGGTGGCTGTATAAGAAAAAGGAAAAGGGAAGTTTCC TAAGCAACAAATGGAAAAAGTTCTGGGTGATACTGAAGGGGTCGTCACTGTACTGGTATAGCAATCAAATGGCAGAGAAAGCTGATGGATTTGTCAACCTGCCTGATTTCACTGTGGAAAGAGCATCT GAATGCAAGAAAAAGCATGCTTTTAAGATCAGCCATCCACAGATCAAGACCTTTTATTTTGCAGCTGAGAATGTGCAGGAAATGAACGTGTGGTTAAATAAACTTGGATCGGCTGTAATCCATCAGGA ATCCACTACAAAGGATGAAGAATGTTACAGTGAAAGTGAACAGGAAGATCCAGAAATAGCTGCGGAGACACCACCCCCTCCTCACGCTTCCCAGACTCAGTCTTTGACTGCACAGCAGGCATCTTCAT CCTCACCCAGCCTGAGTGGAACGTCGTATTCTTTCTCTTCCCTGGAAAATACAGTGAAGACACCCAGCAGTTTTCCTTCCTCCTTATCTAAAGAGAGACAATCCTTGCCTGACACAGTTAACAGTTTG TCTGCTGCTGAAGATGAGGGACAACCAATAACGTTTGCTGTGCAAGTTCATTCACCTGTACCCTCAGAGGCAGGCATCCACAAGGCCCTGGAAAACAGTTTTGTCACATCAGAAAGTGGATTTTTGAA CTCTTTATCTAGTGATGATACTTCTTCATTGAGTAGCAATCATGACCATCTTACTGTCCCAGATAAGCCTGCTGGATCAAAGATCATGGACAAAGAAGAGACAAAAGTGTCTGAAGATGATGAAATGG AGAAGCTGTACAAATCATTAGAGCAAGCTAGTCTATCTCCTCTTGGGGACCGACGACCTTCGACTAAAAAGGAGTTGAGAAAATCCTTTGTTAAGCGGTGTAAAAATCCATCTATAAACGAGAAACTC CACAAAATCCGAACATTGAATAGCACATTAAAGTGTAAAGAACATGATCTGGCCATGATTAACCAGTTGCTGGATGACCCGAAGCTGACAGCCAGGAAATACAGAGAGTGGAAAGTCATGAACACCCT GCTGATCCAGGACATCTATCAGCAGCAGCGGGCTTCGCCTGCCCCTGATGACACTGATGACACCCCCCAGGAACTCAAGAAATCACCTTCTTCTCCCTCTGTTGAAAATTCCATTTGAGACAAAGTCA GGGTTTTCTCCTCTTATATTTTATCACAAGCAACTCTTCAAGATGTTGCAAAAGCTTACATTTTTCCTTAAAAGGAAAACTGAAACCCAGTCCTTCAAGCATCAGCTTCCCATCTAAAGATGCACGTT AGATGAAGATAATCACCGAATACACCAGGGCTCCTCATTTCAGTCGTAACGCATCCATTGAGATTGGAATGATTGAGTTCAGTTGAAAGGCGTTTTTTGTGTTCCTACTGGGAGCTCACGGTGATGTG GGGCTCTAGGGGGGATGTGAGAAATGTCTCTTCTGTTCATTGCTCTCCAGAGAATGCTATGGACAAGAATCAAATTTTACCAGGAGTAATTGCCCATGGAAACATTCTGTTTTTCAAAAGAAGAATGT ACATATTCCACTTGACTGGGAAGCTGTGTGGCCCAAATCACTGTTTGAGTGGAGGAATGTTTTCTAGAGCAGTGACTGGAAGGACAAACGTGGTGTTGCAGAACAAAAATTCCTTGCCTTTGGTATGG AATGGTGGTGCCTTTTCCATGTGATGAGAAATGCTTCATAGACAGTGGCATGTGGGAGAGCTGAAGGAGGAGGCGTGTTCCATATTCCACTCATTCAAAGGACAGCTTGGTGTTTTCACACTTTATGC AGGTTAGGGGATCTGATTAATGTTTCCTTTCCTTACAACAGCTAGAGAAAACATCTCATCACAATTGGAGACCTCTACTTCCTTTGAGCTTTCCTACTCAATGGTAGGAGATAGGAATATGTTCCGCA AAGAATGTCTACTGCTCTTGTCCTTGGCTGTGATCCCTATACATAGTGTGAATTTATATCCAGGTTTCCCAGGATCAATATTGACAAGACGACTTTGGCATCTGAATTGTTTTAATATCTTTACTCAA AAAAACAAAAAAACAAAAACCCATGGAAGCAACAAAAGAGTTAAACATGAGGGATTTATTTTTGTATGTTTATATGTCACTTGTGTGCTATGTGAATAGCTATGTTTGTTATTTAAATATATTTATAG AAGTTCAAATTACTAGTGTTTAAAAGATGATATACTATTATATATTGTGCTTAGTATATATTTGATGAGTCTATACTTTTTGCTTGAGAAAAATAGAAATACTATTGATTCACTGGTGTTATGATGTT GCACTGTGTCTGAGGAATGCTCAGGAAATCTTGTGGGAAAAAAATGGGGCATGCATTCATAATTTTTCATTTTCTTCCCCACCCCAACCCCCATGAGCTCTTAAATTTAGATTTCTATCTCTTGTAAG TCACTCTTTTAACCAGCAAAGGACTTTCATCTTAGATTATCCTTTCTATTAAATAAACTTTAAGCTTTGTGCCATTTATGCCTGCAAACCTTAGACCAAAGGCAACACAACTAATGTCATCTTTTCAT TAAAGACTAATAGAAATTTAGAAATCATTGTGTTAAAGAGAGCTATAGAGAAACAATATGAAAGTCTTCCCTTACTAATCACCATGAATATTTCTCACCATAGGAATAACCACAACCCACCAAGTACC CATGTTGGCCCTGCCTACCCGTAACAAATTGTTCACACAACCTATTTTGTTTTATAGCTTCAAAGTGTGGCTTGACATTCAAATGGAAGGAACCACCTGAATTATATCTGCAAACAAAATGGAAATAG TTGTTGAATAGTTCCCCAAGCTTTACTAAGAAGCCTTAATACTCTGTAAACAAACAAACAAACAAAAAACAACCTTAGCATTAAGAAATAAAAACAAAAAACAAGAAGCAAGTTGTACTGCTAGAAAC TTCTCTAAGATAAGAGGCCAGGCCAGTCAGTTTGGCCCAGCAAACATGTGGGTACTTCTCCACCTAGGGAAGCCACTGAAGATGAGTTTGACCTGTGGTGACCTGACAGAGAGAACATTCAGATCCTC AGATTGCACCCTGATGCCCTGGTTTAGGAAAGCAGTGCTTTAACCTTTTGCCCCTGGAAATTACTGATTCTTTCTGTGATTAGCAGATACCAGAAGGGAAATTATTTAGGATTGGCAATGTAAAGAGT ATTGAAGGAACAACAAATAACAATAGCAGAAATAACAGTGTGACATAAAGTGCCCTTCCACCTATTTTTCTTTGGTTTGCAACACCAGCCTGTAGACTTCCAGTTTTTCTTAAATTGAAGAGCTCCAG ACACTTTTGAGCAGGGTTTGTGAATAGCTTTGAATGCTTTCCTTTGGCTTTTCGTGAAGACATATTTCCCCAGCCTTTCAACTGTAAACTCCTTTAGTACCATTGAAACTTAAGGCAAAAAAGATCCC TGGGATTACTTAGCCAAGGCTTAAATTTATTTTTCAAAGTCAAGAACATTAGCCTAGAAGTTTTTGCTTTGCTAGTTAAAGCTTACTTTGCAGAGCTTCCCAAAGTGAAAGGGAAACTGAACTTCACA ATTTTGCACCTGGCTTTCTGGAGCCCCATTGCCTGCTCATTCGTGTTTTTCCCCCTGTAAATTATTTTGCTTTTGACCAGGTTGTGCTAGAAAGTAGGGCTGCTTCTGTGAGTTCTCAGCCTAGGCTG TGGCCACTAAGACGTGGGTGGGGGGATAGACAGGAGTGAGAGGGAGAGTGGGTGACACTTTCCGTGACACTTAATGTAGGAAGACATGGGCTTCTCTCTCTTGGCCTCAAGCCACTTTTCTGGTCCAA AGAATATTGGGAAAACTGGATTACTTTCAGTATATTTCTTGAGACCGGGTCATCTCTGAAATGCATTTGGGGTAGTTTCCTGGGGTCCAAGGGCCAATTCCTATACCCAGTCCTGCAGTGTCTGTGAG CTGTGGAATGAGAGAGAAAACCATGGCTGCTCAGGAAGGAAGTGGAGAATCTCTCAGCACACGTAGATCCAAATCTGTGGCACCTGCTAAAGATTAGGATTTGGAGAGGACTCCTCTTTGGGGTTGTG AAGAGGACCTTTTCCCTCTGTTGTTAGCCTGTAGATCCAGAACGGAGCCTGATGTGATGCCTTCACTGGTTGATATATTGCAAATAGACACTCTGAGCCCTGCATTGCAAGGGCGTCTTTTGCTTTAA AGAATTCTTAGTTTTGCCACAACAGCTCAAATCTCAGAATAGGATCAAAGGCCTAGAAAGACTCCTAAAGTATAGGATTACAAAGACTCCAGGAAGCGTAAGAAAGAGATTGTGTTTGGAGTCAGATT TCAATGTGAAACCCATGCCTTACATTTACACAGCACTTTGTAGTTTGCAAATTGGTGTGTTTTCAGCCCCCTCCCGCTGCCCCATGCTCTGAGATGATTGTGGATTATTACAGTGAAGTGCCTGGCCC GGAGCCCCCAGTGATGAAGCAGGAACTTGAGTCTCAGGACTCCCAGCGGCTCTCTGCCCATTTCCTCCTCTCCGCCCCCCACCTCGCTTCACCTGTTACCTTGTGAAGTTGCTGTTGGCACATAGCCC ACTAGGAAACCAAGAAGTTTGACTGGGAGCGTGTGTTTCATTGCACTGGGCTTAGCATACGGCTGGCCCTGGTGGCTGTTTGGCTAAATTCTCCATTTGAAACCTAAAGGGCCCTCTCTGTGCTTGAG CACAGTCTCCTCCTAGTGGTCCTGCCTCAACCTGCTGGCGGGCTGTCTATGGATTGGGGTTTCACCTAATCATGCTGTGTTTCCTTTCTTTTCTTTCTGTACATTAGACTACTTGGGAGGTGCTGTGT GATCCTTGGATGAAAAACATATATTTAAAGAAATGGAGAGTGTTTATTTTGTTTGCTTTTTGAGGCATGTGCTGTCAAATGTTAGAGACCAAACTTAGTGATTAGAGGTTGGTCCTTTGACCTTCTTC TCTTAATTGCTTTTCATGTAATCATGATAATTTACTCAGGTAGCACTCCAGTCACAAACAATGTCACAGAGATGAAACAGATTCAAAGAAAAAATATTTTTAAGTCTTTTGAAAAGAAGTGCTATTCA AATTTAAGACATGTTTAAATTCATAGGTACATTATCTCTTAGTAAGAAATACTTTTTTTTTTCTTTTTTTAGACAGAGTCTTGCTCTGTTGCCCAGGCTGGAGTGCAGTGGCACGATTTTAGCTCACT GCAACCTCTGCCTCCCTGGTTGAAGTGATTCTCCTGCCTCAGCCTCCCGAGTAGCTGGGACTACGCCCGGCTAATTTTTATATTTTTAGTAGAGACCGGGGTTTACCATGTTGCCCAGGCTGGTTTCA AACTCCTGACCTCAGGTGATCTGCCTGCCTCTGCCTCCCAGAGTGCTGGGATTACAGGTGTGAGCCACCACACCTGGCCGAAAGACAGTATTTTGATATAGCCACATACATGATTTAATGAGTAATGT TAAGTACAGAAAAGCTGCCATATCCACATAGTTTTAGGGGGCATTTCTTCTTCAGTCTAACAAGAATATGATATCCAATTGTGGTTTTCCAATTTATTTCTCTTCCAATTTCTTTTGTATACCTCACA GGAGAAATTGAATCCTAGAACTGGGAGATGACTGCCCTGCCCAGGGTTTTGTAATACATAATTGAAAATAAAAGTCCCTGAAACTAAATGTTTGCAGCCTGTATGAAATGGACTGTGGAAGGGGGATA ATTTCTCTCCTCACAGAAAGCCACTCGTCTCCTTGAATGAGGCATTGAGCAGACACACGTTTCTCTGTGTCGTGGGGCAGGAAGCAATTCCCTTGCCTCTTCAGCACATCTCAGTTCTTTCCCACATG ACCCCAGAACCACATAGAAAACATTGAAAATAATGGATTCTTCATTGTATTTGAATTTTTTTTTTTTAACCTTTAGCCCAAAAGGGAAGTGTGCCTCGTGGAAAGAGCAAATGCCGTAAAATAGAAAC CAGGAGTTTTAATCGCCATATATTTTAATGTGCTTGCATGATGGGAATGTGACTTTTAGCACTGCATGGTGTTTGGGGGCAAGATATTAATGTGGAAATCTTAGCTTAAGTTTTACTGTGCTCTCATC CTGTGTCAGCTACCCCTCTAAACTGAAAAAGAGGCATGGCTCATTTCTCTCCTGCTTTATGTTTTTGAGGTTGACTTGTAAGATAAAAATAAAAATAAGAAAAAAATATATCTAGGCAAATGACATGA AAAAAAAGTTGAAATATACTACTGGTGTTCATTTTTGTCCTGCAGTGTTGCTTTCTCAAAGAAATAAACATGTGGCTGGAAGTGTTTAATGGCTGCGTTTTGATCGTCTACAACAAGGTTACAGTGCC CTCTGGTGGCAGTCATCAAAATCGCTTCTAGACTTGTTTTTATTTTTAAATAAAAGATCTAATTATATTGGAAA
hide sequence
RefSeq Acc Id:
NM_001394802 ⟹ NP_001381731
RefSeq Status:
VALIDATED
Type:
CODING
Position:
Human Assembly Chr Position (strand) Source GRCh38 6 154,154,496 - 154,355,140 (-) NCBI T2T-CHM13v2.0 6 155,356,475 - 155,557,144 (-) NCBI
Sequence:
ACTTCTGCTTTCCATCCAGCTTGGAGGCTCTGCAGTGTGAGCTGATAATTGCAGTACAGGTTAACAATTTGCAAGTCAAAGGCAACAGAACTGGACCAAGAAAATTCATAACTTTTTGCTTTTGTTTC TACTAAGATGACATCATACATGGCTATTGATGGCAGTGCTCTTGTTCCCTTGCGTCAGAAGCCCAGGAGGAAAACTCAAGGTTTTCTCACGATGAGTCGGAGGAGGATATCGTGTAAAGATCTGGGCC ATGCTGACTGCCAAGGGTGGCTGTATAAGAAAAAGGAAAAGGGAAGTTTCCTAAGCAACAAATGGAAAAAGTTCTGGGTGATACTGAAGGGGTCGTCACTGTACTGGTATAGCAATCAAATGGCAGAG AAAGCTGATGGATTTGTCAACCTGCCTGATTTCACTGTGGAAAGAGCATCTGAATGCAAGAAAAAGCATGCTTTTAAGATCAGCCATCCACAGATCAAGACCTTTTATTTTGCAGCTGAGAATGTGCA GGAAATGAACGTGTGGTTAAATAAACTTGGATCGGCTGTAATCCATCAGGAATCCACTACAAAGGATGAAGAATGTTACAGTGAAAGTGAACAGGAAGATCCAGAAATAGCTGCGGAGACACCACCCC CTCCTCACGCTTCCCAGACTCAGTCTTTGACTGCACAGCAGGCATCTTCATCCTCACCCAGCCTGAGTGGAACGTCGTATTCTTTCTCTTCCCTGGAAAATACAGTGAAGACACCCAGCAGTTTTCCT TCCTCCTTATCTAAAGAGAGACAATCCTTGCCTGACACAGTTAACAGTTTGTCTGCTGCTGAAGATGAGGGACAACCAATAACGTTTGCTGTGCAAGTTCATTCACCTGTACCCTCAGAGGCAGGCAT CCACAAGGCCCTGGAAAACAGTTTTGTCACATCAGAAAGTGGATTTTTGAACTCTTTATCTAGTGATGATACTTCTTCATTGAGTAGCAATCATGACCATCTTACTGTCCCAGATAAGCCTGCTGGAT CAAAGATCATGGACAAAGAAGAGACAAAAGTGTCTGAAGATGATGAAATGGAGAAGCTGTACAAATCATTAGAGCAAGCTAGTCTATCTCCTCTTGGGGACCGACGACCTTCGACTAAAAAGGAGTTG AGAAAATCCTTTGTTAAGCGGTGTAAAAATCCATCTATAAACGAGAAACTCCACAAAATCCGAACATTGAATAGCACATTAAAGTGTAAAGAACATGATCTGGCCATGATTAACCAGTTGCTGGATGA CCCGAAGCTGACAGCCAGGAAATACAGAGAGTGGAAAGTCATGAACACCCTGCTGATCCAGGACATCTATCAGCAGCAGCGGGCTTCGCCTGCCCCTGATGACACTGATGACACCCCCCAGGAACTCA AGAAATCACCTTCTTCTCCCTCTGTTGAAAATTCCATTTGAGACAAAGTCAGGGTTTTCTCCTCTTATATTTTATCACAAGCAACTCTTCAAGATGTTGCAAAAGCTTACATTTTTCCTTAAAAGGAA AACTGAAACCCAGTCCTTCAAGCATCAGCTTCCCATCTAAAGATGCACGTTAGATGAAGATAATCACCGAATACACCAGGGCTCCTCATTTCAGTCGTAACGCATCCATTGAGATTGGAATGATTGAG TTCAGTTGAAAGGCGTTTTTTGTGTTCCTACTGGGAGCTCACGGTGATGTGGGGCTCTAGGGGGGATGTGAGAAATGTCTCTTCTGTTCATTGCTCTCCAGAGAATGCTATGGACAAGAATCAAATTT TACCAGGAGTAATTGCCCATGGAAACATTCTGTTTTTCAAAAGAAGAATGTACATATTCCACTTGACTGGGAAGCTGTGTGGCCCAAATCACTGTTTGAGTGGAGGAATGTTTTCTAGAGCAGTGACT GGAAGGACAAACGTGGTGTTGCAGAACAAAAATTCCTTGCCTTTGGTATGGAATGGTGGTGCCTTTTCCATGTGATGAGAAATGCTTCATAGACAGTGGCATGTGGGAGAGCTGAAGGAGGAGGCGTG TTCCATATTCCACTCATTCAAAGGACAGCTTGGTGTTTTCACACTTTATGCAGGTTAGGGGATCTGATTAATGTTTCCTTTCCTTACAACAGCTAGAGAAAACATCTCATCACAATTGGAGACCTCTA CTTCCTTTGAGCTTTCCTACTCAATGGTAGGAGATAGGAATATGTTCCGCAAAGAATGTCTACTGCTCTTGTCCTTGGCTGTGATCCCTATACATAGTGTGAATTTATATCCAGGTTTCCCAGGATCA ATATTGACAAGACGACTTTGGCATCTGAATTGTTTTAATATCTTTACTCAAAAAAACAAAAAAACAAAAACCCATGGAAGCAACAAAAGAGTTAAACATGAGGGATTTATTTTTGTATGTTTATATGT CACTTGTGTGCTATGTGAATAGCTATGTTTGTTATTTAAATATATTTATAGAAGTTCAAATTACTAGTGTTTAAAAGATGATATACTATTATATATTGTGCTTAGTATATATTTGATGAGTCTATACT TTTTGCTTGAGAAAAATAGAAATACTATTGATTCACTGGTGTTATGATGTTGCACTGTGTCTGAGGAATGCTCAGGAAATCTTGTGGGAAAAAAATGGGGCATGCATTCATAATTTTTCATTTTCTTC CCCACCCCAACCCCCATGAGCTCTTAAATTTAGATTTCTATCTCTTGTAAGTCACTCTTTTAACCAGCAAAGGACTTTCATCTTAGATTATCCTTTCTATTAAATAAACTTTAAGCTTTGTGCCATTT ATGCCTGCAAACCTTAGACCAAAGGCAACACAACTAATGTCATCTTTTCATTAAAGACTAATAGAAATTTAGAAATCATTGTGTTAAAGAGAGCTATAGAGAAACAATATGAAAGTCTTCCCTTACTA ATCACCATGAATATTTCTCACCATAGGAATAACCACAACCCACCAAGTACCCATGTTGGCCCTGCCTACCCGTAACAAATTGTTCACACAACCTATTTTGTTTTATAGCTTCAAAGTGTGGCTTGACA TTCAAATGGAAGGAACCACCTGAATTATATCTGCAAACAAAATGGAAATAGTTGTTGAATAGTTCCCCAAGCTTTACTAAGAAGCCTTAATACTCTGTAAACAAACAAACAAACAAAAAACAACCTTA GCATTAAGAAATAAAAACAAAAAACAAGAAGCAAGTTGTACTGCTAGAAACTTCTCTAAGATAAGAGGCCAGGCCAGTCAGTTTGGCCCAGCAAACATGTGGGTACTTCTCCACCTAGGGAAGCCACT GAAGATGAGTTTGACCTGTGGTGACCTGACAGAGAGAACATTCAGATCCTCAGATTGCACCCTGATGCCCTGGTTTAGGAAAGCAGTGCTTTAACCTTTTGCCCCTGGAAATTACTGATTCTTTCTGT GATTAGCAGATACCAGAAGGGAAATTATTTAGGATTGGCAATGTAAAGAGTATTGAAGGAACAACAAATAACAATAGCAGAAATAACAGTGTGACATAAAGTGCCCTTCCACCTATTTTTCTTTGGTT TGCAACACCAGCCTGTAGACTTCCAGTTTTTCTTAAATTGAAGAGCTCCAGACACTTTTGAGCAGGGTTTGTGAATAGCTTTGAATGCTTTCCTTTGGCTTTTCGTGAAGACATATTTCCCCAGCCTT TCAACTGTAAACTCCTTTAGTACCATTGAAACTTAAGGCAAAAAAGATCCCTGGGATTACTTAGCCAAGGCTTAAATTTATTTTTCAAAGTCAAGAACATTAGCCTAGAAGTTTTTGCTTTGCTAGTT AAAGCTTACTTTGCAGAGCTTCCCAAAGTGAAAGGGAAACTGAACTTCACAATTTTGCACCTGGCTTTCTGGAGCCCCATTGCCTGCTCATTCGTGTTTTTCCCCCTGTAAATTATTTTGCTTTTGAC CAGGTTGTGCTAGAAAGTAGGGCTGCTTCTGTGAGTTCTCAGCCTAGGCTGTGGCCACTAAGACGTGGGTGGGGGGATAGACAGGAGTGAGAGGGAGAGTGGGTGACACTTTCCGTGACACTTAATGT AGGAAGACATGGGCTTCTCTCTCTTGGCCTCAAGCCACTTTTCTGGTCCAAAGAATATTGGGAAAACTGGATTACTTTCAGTATATTTCTTGAGACCGGGTCATCTCTGAAATGCATTTGGGGTAGTT TCCTGGGGTCCAAGGGCCAATTCCTATACCCAGTCCTGCAGTGTCTGTGAGCTGTGGAATGAGAGAGAAAACCATGGCTGCTCAGGAAGGAAGTGGAGAATCTCTCAGCACACGTAGATCCAAATCTG TGGCACCTGCTAAAGATTAGGATTTGGAGAGGACTCCTCTTTGGGGTTGTGAAGAGGACCTTTTCCCTCTGTTGTTAGCCTGTAGATCCAGAACGGAGCCTGATGTGATGCCTTCACTGGTTGATATA TTGCAAATAGACACTCTGAGCCCTGCATTGCAAGGGCGTCTTTTGCTTTAAAGAATTCTTAGTTTTGCCACAACAGCTCAAATCTCAGAATAGGATCAAAGGCCTAGAAAGACTCCTAAAGTATAGGA TTACAAAGACTCCAGGAAGCGTAAGAAAGAGATTGTGTTTGGAGTCAGATTTCAATGTGAAACCCATGCCTTACATTTACACAGCACTTTGTAGTTTGCAAATTGGTGTGTTTTCAGCCCCCTCCCGC TGCCCCATGCTCTGAGATGATTGTGGATTATTACAGTGAAGTGCCTGGCCCGGAGCCCCCAGTGATGAAGCAGGAACTTGAGTCTCAGGACTCCCAGCGGCTCTCTGCCCATTTCCTCCTCTCCGCCC CCCACCTCGCTTCACCTGTTACCTTGTGAAGTTGCTGTTGGCACATAGCCCACTAGGAAACCAAGAAGTTTGACTGGGAGCGTGTGTTTCATTGCACTGGGCTTAGCATACGGCTGGCCCTGGTGGCT GTTTGGCTAAATTCTCCATTTGAAACCTAAAGGGCCCTCTCTGTGCTTGAGCACAGTCTCCTCCTAGTGGTCCTGCCTCAACCTGCTGGCGGGCTGTCTATGGATTGGGGTTTCACCTAATCATGCTG TGTTTCCTTTCTTTTCTTTCTGTACATTAGACTACTTGGGAGGTGCTGTGTGATCCTTGGATGAAAAACATATATTTAAAGAAATGGAGAGTGTTTATTTTGTTTGCTTTTTGAGGCATGTGCTGTCA AATGTTAGAGACCAAACTTAGTGATTAGAGGTTGGTCCTTTGACCTTCTTCTCTTAATTGCTTTTCATGTAATCATGATAATTTACTCAGGTAGCACTCCAGTCACAAACAATGTCACAGAGATGAAA CAGATTCAAAGAAAAAATATTTTTAAGTCTTTTGAAAAGAAGTGCTATTCAAATTTAAGACATGTTTAAATTCATAGGTACATTATCTCTTAGTAAGAAATACTTTTTTTTTTCTTTTTTTAGACAGA GTCTTGCTCTGTTGCCCAGGCTGGAGTGCAGTGGCACGATTTTAGCTCACTGCAACCTCTGCCTCCCTGGTTGAAGTGATTCTCCTGCCTCAGCCTCCCGAGTAGCTGGGACTACGCCCGGCTAATTT TTATATTTTTAGTAGAGACCGGGGTTTACCATGTTGCCCAGGCTGGTTTCAAACTCCTGACCTCAGGTGATCTGCCTGCCTCTGCCTCCCAGAGTGCTGGGATTACAGGTGTGAGCCACCACACCTGG CCGAAAGACAGTATTTTGATATAGCCACATACATGATTTAATGAGTAATGTTAAGTACAGAAAAGCTGCCATATCCACATAGTTTTAGGGGGCATTTCTTCTTCAGTCTAACAAGAATATGATATCCA ATTGTGGTTTTCCAATTTATTTCTCTTCCAATTTCTTTTGTATACCTCACAGGAGAAATTGAATCCTAGAACTGGGAGATGACTGCCCTGCCCAGGGTTTTGTAATACATAATTGAAAATAAAAGTCC CTGAAACTAAATGTTTGCAGCCTGTATGAAATGGACTGTGGAAGGGGGATAATTTCTCTCCTCACAGAAAGCCACTCGTCTCCTTGAATGAGGCATTGAGCAGACACACGTTTCTCTGTGTCGTGGGG CAGGAAGCAATTCCCTTGCCTCTTCAGCACATCTCAGTTCTTTCCCACATGACCCCAGAACCACATAGAAAACATTGAAAATAATGGATTCTTCATTGTATTTGAATTTTTTTTTTTTAACCTTTAGC CCAAAAGGGAAGTGTGCCTCGTGGAAAGAGCAAATGCCGTAAAATAGAAACCAGGAGTTTTAATCGCCATATATTTTAATGTGCTTGCATGATGGGAATGTGACTTTTAGCACTGCATGGTGTTTGGG GGCAAGATATTAATGTGGAAATCTTAGCTTAAGTTTTACTGTGCTCTCATCCTGTGTCAGCTACCCCTCTAAACTGAAAAAGAGGCATGGCTCATTTCTCTCCTGCTTTATGTTTTTGAGGTTGACTT GTAAGATAAAAATAAAAATAAGAAAAAAATATATCTAGGCAAATGACATGAAAAAAAAGTTGAAATATACTACTGGTGTTCATTTTTGTCCTGCAGTGTTGCTTTCTCAAAGAAATAAACATGTGGCT GGAAGTGTTTAATGGCTGCGTTTTGATCGTCTACAACAAGGTTACAGTGCCCTCTGGTGGCAGTCATCAAAATCGCTTCTAGACTTGTTTTTATTTTTAAATAAAAGATCTAATTATATTGGAAA
hide sequence
RefSeq Acc Id:
NM_015553 ⟹ NP_056368
RefSeq Status:
VALIDATED
Type:
CODING
Position:
Human Assembly Chr Position (strand) Source GRCh38 6 154,154,496 - 154,356,803 (-) NCBI GRCh37 6 154,475,618 - 154,677,900 (-) RGD Build 36 6 154,517,438 - 154,719,592 (-) NCBI Archive Celera 6 155,210,000 - 155,412,269 (-) RGD HuRef 6 152,038,861 - 152,240,888 (-) ENTREZGENE CHM1_1 6 154,739,273 - 154,941,543 (-) NCBI T2T-CHM13v2.0 6 155,356,475 - 155,558,805 (-) NCBI
Sequence:
AGTTCTGGGTTGACTGAGTTTCCAGAGCTGAGGCTGCTTTAAGTAGAATCCTCAAGCTTGGCCTCAGAGTACTATGAGGCTTCTGAATCCAGGAATAAGACTGCTCTTGGATTTACTCTCTTTGTATT GCATGTCAAAGGCAACAGAACTGGACCAAGAAAATTCATAACTTTTTGCTTTTGTTTCTACTAAGATGACATCATACATGGCTATTGATGGCAGTGCTCTTGTTCCCTTGCGTCAGAAGCCCAGGAGG AAAACTCAAGGTTTTCTCACGATGAGTCGGAGGAGGATATCGTGTAAAGATCTGGGCCATGCTGACTGCCAAGGGTGGCTGTATAAGAAAAAGGAAAAGGGAAGTTTCCTAAGCAACAAATGGAAAAA GTTCTGGGTGATACTGAAGGGGTCGTCACTGTACTGGTATAGCAATCAAATGGCAGAGAAAGCTGATGGATTTGTCAACCTGCCTGATTTCACTGTGGAAAGAGCATCTGAATGCAAGAAAAAGCATG CTTTTAAGATCAGCCATCCACAGATCAAGACCTTTTATTTTGCAGCTGAGAATGTGCAGGAAATGAACGTGTGGTTAAATAAACTTGGATCGGCTGTAATCCATCAGGAATCCACTACAAAGGATGAA GAATGTTACAGTGAAAGTGAACAGGAAGATCCAGAAATAGCTGCGGAGACACCACCCCCTCCTCACGCTTCCCAGACTCAGTCTTTGACTGCACAGCAGGCATCTTCATCCTCACCCAGCCTGAGTGG AACGTCGTATTCTTTCTCTTCCCTGGAAAATACAGTGAAGACACCCAGCAGTTTTCCTTCCTCCTTATCTAAAGAGAGACAATCCTTGCCTGACACAGTTAACAGTTTGTCTGCTGCTGAAGATGAGG GACAACCAATAACGTTTGCTGTGCAAGTTCATTCACCTGTACCCTCAGAGGCAGGCATCCACAAGGCCCTGGAAAACAGTTTTGTCACATCAGAAAGTGGATTTTTGAACTCTTTATCTAGTGATGAT ACTTCTTCATTGAGTAGCAATCATGACCATCTTACTGTCCCAGATAAGCCTGCTGGATCAAAGATCATGGACAAAGAAGAGACAAAAGTGTCTGAAGATGATGAAATGGAGAAGCTGTACAAATCATT AGAGCAAGCTAGTCTATCTCCTCTTGGGGACCGACGACCTTCGACTAAAAAGGAGTTGAGAAAATCCTTTGTTAAGCGGTGTAAAAATCCATCTATAAACGAGAAACTCCACAAAATCCGAACATTGA ATAGCACATTAAAGTGTAAAGAACATGATCTGGCCATGATTAACCAGTTGCTGGATGACCCGAAGCTGACAGCCAGGAAATACAGAGAGTGGAAAGTCATGAACACCCTGCTGATCCAGGACATCTAT CAGCAGCAGCGGGCTTCGCCTGCCCCTGATGACACTGATGACACCCCCCAGGAACTCAAGAAATCACCTTCTTCTCCCTCTGTTGAAAATTCCATTTGAGACAAAGTCAGGGTTTTCTCCTCTTATAT TTTATCACAAGCAACTCTTCAAGATGTTGCAAAAGCTTACATTTTTCCTTAAAAGGAAAACTGAAACCCAGTCCTTCAAGCATCAGCTTCCCATCTAAAGATGCACGTTAGATGAAGATAATCACCGA ATACACCAGGGCTCCTCATTTCAGTCGTAACGCATCCATTGAGATTGGAATGATTGAGTTCAGTTGAAAGGCGTTTTTTGTGTTCCTACTGGGAGCTCACGGTGATGTGGGGCTCTAGGGGGGATGTG AGAAATGTCTCTTCTGTTCATTGCTCTCCAGAGAATGCTATGGACAAGAATCAAATTTTACCAGGAGTAATTGCCCATGGAAACATTCTGTTTTTCAAAAGAAGAATGTACATATTCCACTTGACTGG GAAGCTGTGTGGCCCAAATCACTGTTTGAGTGGAGGAATGTTTTCTAGAGCAGTGACTGGAAGGACAAACGTGGTGTTGCAGAACAAAAATTCCTTGCCTTTGGTATGGAATGGTGGTGCCTTTTCCA TGTGATGAGAAATGCTTCATAGACAGTGGCATGTGGGAGAGCTGAAGGAGGAGGCGTGTTCCATATTCCACTCATTCAAAGGACAGCTTGGTGTTTTCACACTTTATGCAGGTTAGGGGATCTGATTA ATGTTTCCTTTCCTTACAACAGCTAGAGAAAACATCTCATCACAATTGGAGACCTCTACTTCCTTTGAGCTTTCCTACTCAATGGTAGGAGATAGGAATATGTTCCGCAAAGAATGTCTACTGCTCTT GTCCTTGGCTGTGATCCCTATACATAGTGTGAATTTATATCCAGGTTTCCCAGGATCAATATTGACAAGACGACTTTGGCATCTGAATTGTTTTAATATCTTTACTCAAAAAAACAAAAAAACAAAAA CCCATGGAAGCAACAAAAGAGTTAAACATGAGGGATTTATTTTTGTATGTTTATATGTCACTTGTGTGCTATGTGAATAGCTATGTTTGTTATTTAAATATATTTATAGAAGTTCAAATTACTAGTGT TTAAAAGATGATATACTATTATATATTGTGCTTAGTATATATTTGATGAGTCTATACTTTTTGCTTGAGAAAAATAGAAATACTATTGATTCACTGGTGTTATGATGTTGCACTGTGTCTGAGGAATG CTCAGGAAATCTTGTGGGAAAAAAATGGGGCATGCATTCATAATTTTTCATTTTCTTCCCCACCCCAACCCCCATGAGCTCTTAAATTTAGATTTCTATCTCTTGTAAGTCACTCTTTTAACCAGCAA AGGACTTTCATCTTAGATTATCCTTTCTATTAAATAAACTTTAAGCTTTGTGCCATTTATGCCTGCAAACCTTAGACCAAAGGCAACACAACTAATGTCATCTTTTCATTAAAGACTAATAGAAATTT AGAAATCATTGTGTTAAAGAGAGCTATAGAGAAACAATATGAAAGTCTTCCCTTACTAATCACCATGAATATTTCTCACCATAGGAATAACCACAACCCACCAAGTACCCATGTTGGCCCTGCCTACC CGTAACAAATTGTTCACACAACCTATTTTGTTTTATAGCTTCAAAGTGTGGCTTGACATTCAAATGGAAGGAACCACCTGAATTATATCTGCAAACAAAATGGAAATAGTTGTTGAATAGTTCCCCAA GCTTTACTAAGAAGCCTTAATACTCTGTAAACAAACAAACAAACAAAAAACAACCTTAGCATTAAGAAATAAAAACAAAAAACAAGAAGCAAGTTGTACTGCTAGAAACTTCTCTAAGATAAGAGGCC AGGCCAGTCAGTTTGGCCCAGCAAACATGTGGGTACTTCTCCACCTAGGGAAGCCACTGAAGATGAGTTTGACCTGTGGTGACCTGACAGAGAGAACATTCAGATCCTCAGATTGCACCCTGATGCCC TGGTTTAGGAAAGCAGTGCTTTAACCTTTTGCCCCTGGAAATTACTGATTCTTTCTGTGATTAGCAGATACCAGAAGGGAAATTATTTAGGATTGGCAATGTAAAGAGTATTGAAGGAACAACAAATA ACAATAGCAGAAATAACAGTGTGACATAAAGTGCCCTTCCACCTATTTTTCTTTGGTTTGCAACACCAGCCTGTAGACTTCCAGTTTTTCTTAAATTGAAGAGCTCCAGACACTTTTGAGCAGGGTTT GTGAATAGCTTTGAATGCTTTCCTTTGGCTTTTCGTGAAGACATATTTCCCCAGCCTTTCAACTGTAAACTCCTTTAGTACCATTGAAACTTAAGGCAAAAAAGATCCCTGGGATTACTTAGCCAAGG CTTAAATTTATTTTTCAAAGTCAAGAACATTAGCCTAGAAGTTTTTGCTTTGCTAGTTAAAGCTTACTTTGCAGAGCTTCCCAAAGTGAAAGGGAAACTGAACTTCACAATTTTGCACCTGGCTTTCT GGAGCCCCATTGCCTGCTCATTCGTGTTTTTCCCCCTGTAAATTATTTTGCTTTTGACCAGGTTGTGCTAGAAAGTAGGGCTGCTTCTGTGAGTTCTCAGCCTAGGCTGTGGCCACTAAGACGTGGGT GGGGGGATAGACAGGAGTGAGAGGGAGAGTGGGTGACACTTTCCGTGACACTTAATGTAGGAAGACATGGGCTTCTCTCTCTTGGCCTCAAGCCACTTTTCTGGTCCAAAGAATATTGGGAAAACTGG ATTACTTTCAGTATATTTCTTGAGACCGGGTCATCTCTGAAATGCATTTGGGGTAGTTTCCTGGGGTCCAAGGGCCAATTCCTATACCCAGTCCTGCAGTGTCTGTGAGCTGTGGAATGAGAGAGAAA ACCATGGCTGCTCAGGAAGGAAGTGGAGAATCTCTCAGCACACGTAGATCCAAATCTGTGGCACCTGCTAAAGATTAGGATTTGGAGAGGACTCCTCTTTGGGGTTGTGAAGAGGACCTTTTCCCTCT GTTGTTAGCCTGTAGATCCAGAACGGAGCCTGATGTGATGCCTTCACTGGTTGATATATTGCAAATAGACACTCTGAGCCCTGCATTGCAAGGGCGTCTTTTGCTTTAAAGAATTCTTAGTTTTGCCA CAACAGCTCAAATCTCAGAATAGGATCAAAGGCCTAGAAAGACTCCTAAAGTATAGGATTACAAAGACTCCAGGAAGCGTAAGAAAGAGATTGTGTTTGGAGTCAGATTTCAATGTGAAACCCATGCC TTACATTTACACAGCACTTTGTAGTTTGCAAATTGGTGTGTTTTCAGCCCCCTCCCGCTGCCCCATGCTCTGAGATGATTGTGGATTATTACAGTGAAGTGCCTGGCCCGGAGCCCCCAGTGATGAAG CAGGAACTTGAGTCTCAGGACTCCCAGCGGCTCTCTGCCCATTTCCTCCTCTCCGCCCCCCACCTCGCTTCACCTGTTACCTTGTGAAGTTGCTGTTGGCACATAGCCCACTAGGAAACCAAGAAGTT TGACTGGGAGCGTGTGTTTCATTGCACTGGGCTTAGCATACGGCTGGCCCTGGTGGCTGTTTGGCTAAATTCTCCATTTGAAACCTAAAGGGCCCTCTCTGTGCTTGAGCACAGTCTCCTCCTAGTGG TCCTGCCTCAACCTGCTGGCGGGCTGTCTATGGATTGGGGTTTCACCTAATCATGCTGTGTTTCCTTTCTTTTCTTTCTGTACATTAGACTACTTGGGAGGTGCTGTGTGATCCTTGGATGAAAAACA TATATTTAAAGAAATGGAGAGTGTTTATTTTGTTTGCTTTTTGAGGCATGTGCTGTCAAATGTTAGAGACCAAACTTAGTGATTAGAGGTTGGTCCTTTGACCTTCTTCTCTTAATTGCTTTTCATGT AATCATGATAATTTACTCAGGTAGCACTCCAGTCACAAACAATGTCACAGAGATGAAACAGATTCAAAGAAAAAATATTTTTAAGTCTTTTGAAAAGAAGTGCTATTCAAATTTAAGACATGTTTAAA TTCATAGGTACATTATCTCTTAGTAAGAAATACTTTTTTTTTTCTTTTTTTAGACAGAGTCTTGCTCTGTTGCCCAGGCTGGAGTGCAGTGGCACGATTTTAGCTCACTGCAACCTCTGCCTCCCTGG TTGAAGTGATTCTCCTGCCTCAGCCTCCCGAGTAGCTGGGACTACGCCCGGCTAATTTTTATATTTTTAGTAGAGACCGGGGTTTACCATGTTGCCCAGGCTGGTTTCAAACTCCTGACCTCAGGTGA TCTGCCTGCCTCTGCCTCCCAGAGTGCTGGGATTACAGGTGTGAGCCACCACACCTGGCCGAAAGACAGTATTTTGATATAGCCACATACATGATTTAATGAGTAATGTTAAGTACAGAAAAGCTGCC ATATCCACATAGTTTTAGGGGGCATTTCTTCTTCAGTCTAACAAGAATATGATATCCAATTGTGGTTTTCCAATTTATTTCTCTTCCAATTTCTTTTGTATACCTCACAGGAGAAATTGAATCCTAGA ACTGGGAGATGACTGCCCTGCCCAGGGTTTTGTAATACATAATTGAAAATAAAAGTCCCTGAAACTAAATGTTTGCAGCCTGTATGAAATGGACTGTGGAAGGGGGATAATTTCTCTCCTCACAGAAA GCCACTCGTCTCCTTGAATGAGGCATTGAGCAGACACACGTTTCTCTGTGTCGTGGGGCAGGAAGCAATTCCCTTGCCTCTTCAGCACATCTCAGTTCTTTCCCACATGACCCCAGAACCACATAGAA AACATTGAAAATAATGGATTCTTCATTGTATTTGAATTTTTTTTTTTTAACCTTTAGCCCAAAAGGGAAGTGTGCCTCGTGGAAAGAGCAAATGCCGTAAAATAGAAACCAGGAGTTTTAATCGCCAT ATATTTTAATGTGCTTGCATGATGGGAATGTGACTTTTAGCACTGCATGGTGTTTGGGGGCAAGATATTAATGTGGAAATCTTAGCTTAAGTTTTACTGTGCTCTCATCCTGTGTCAGCTACCCCTCT AAACTGAAAAAGAGGCATGGCTCATTTCTCTCCTGCTTTATGTTTTTGAGGTTGACTTGTAAGATAAAAATAAAAATAAGAAAAAAATATATCTAGGCAAATGACATGAAAAAAAAGTTGAAATATAC TACTGGTGTTCATTTTTGTCCTGCAGTGTTGCTTTCTCAAAGAAATAAACATGTGGCTGGAAGTGTTTAATGGCTGCGTTTTGATCGTCTACAACAAGGTTACAGTGCCCTCTGGTGGCAGTCATCAA AATCGCTTCTAGACTTGTTTTTATTTTTAAATAAAAGATCTAATTATATTGGAAA
hide sequence
RefSeq Acc Id:
NP_001124172 ⟸ NM_001130700
- Peptide Label:
isoform 1
- UniProtKB:
A0A2Q2T6B6 (UniProtKB/TrEMBL)
- Sequence:
MTSYMAIDGSALQVPLRQKPRRKTQGFLTMSRRRISCKDLGHADCQGWLYKKKEKGSFLSNKWKKFWVILKGSSLYWYSNQMAEKADGFVNLPDFTVERASECKKKHAFKISHPQIKTFYFAAENVQE MNVWLNKLGSAVIHQESTTKDEECYSESEQEDPEIAAETPPPPHASQTQSLTAQQASSSSPSLSGTSYSFSSLENTVKTPSSFPSSLSKERQSLPDTVNSLSAAEDEGQPITFAVQVHSPVPSEAGIH KALENSFVTSESGFLNSLSSDDTSSLSSNHDHLTVPDKPAGSKIMDKEETKVSEDDEMEKLYKSLEQASLSPLGDRRPSTKKELRKSFVKRCKNPSINEKLHKIRTLNSTLKCKEHDLAMINQLLDDP KLTARKYREWKVMNTLLIQDIYQQQRASPAPDDTDDTPQELKKSPSSPSVENSI
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RefSeq Acc Id:
NP_056368 ⟸ NM_015553
- Peptide Label:
isoform 2
- UniProtKB:
O43153 (UniProtKB/Swiss-Prot), G3V132 (UniProtKB/Swiss-Prot), B7ZL80 (UniProtKB/Swiss-Prot), B7ZL78 (UniProtKB/Swiss-Prot), A8K1K2 (UniProtKB/Swiss-Prot), Q5HYL8 (UniProtKB/Swiss-Prot), Q8WWN9 (UniProtKB/Swiss-Prot), A0A2Q2T6B6 (UniProtKB/TrEMBL)
- Sequence:
MTSYMAIDGSALVPLRQKPRRKTQGFLTMSRRRISCKDLGHADCQGWLYKKKEKGSFLSNKWKK FWVILKGSSLYWYSNQMAEKADGFVNLPDFTVERASECKKKHAFKISHPQIKTFYFAAENVQEMNVWLNKLGSAVIHQESTTKDEECYSESEQEDPEIAAETPPPPHASQTQSLTAQQASSSSPSLSG TSYSFSSLENTVKTPSSFPSSLSKERQSLPDTVNSLSAAEDEGQPITFAVQVHSPVPSEAGIHKALENSFVTSESGFLNSLSSDDTSSLSSNHDHLTVPDKPAGSKIMDKEETKVSEDDEMEKLYKSL EQASLSPLGDRRPSTKKELRKSFVKRCKNPSINEKLHKIRTLNSTLKCKEHDLAMINQLLDDPKLTARKYREWKVMNTLLIQDIYQQQRASPAPDDTDDTPQELKKSPSSPSVENSI
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RefSeq Acc Id:
NP_001124171 ⟸ NM_001130699
- Peptide Label:
isoform 1
- UniProtKB:
A0A2Q2T6B6 (UniProtKB/TrEMBL)
- Sequence:
MTSYMAIDGSALQVPLRQKPRRKTQGFLTMSRRRISCKDLGHADCQGWLYKKKEKGSFLSNKWKKFWVILKGSSLYWYSNQMAEKADGFVNLPDFTVERASECKKKHAFKISHPQIKTFYFAAENVQE MNVWLNKLGSAVIHQESTTKDEECYSESEQEDPEIAAETPPPPHASQTQSLTAQQASSSSPSLSGTSYSFSSLENTVKTPSSFPSSLSKERQSLPDTVNSLSAAEDEGQPITFAVQVHSPVPSEAGIH KALENSFVTSESGFLNSLSSDDTSSLSSNHDHLTVPDKPAGSKIMDKEETKVSEDDEMEKLYKSLEQASLSPLGDRRPSTKKELRKSFVKRCKNPSINEKLHKIRTLNSTLKCKEHDLAMINQLLDDP KLTARKYREWKVMNTLLIQDIYQQQRASPAPDDTDDTPQELKKSPSSPSVENSI
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Ensembl Acc Id:
ENSP00000431092 ⟸ ENST00000517438
Ensembl Acc Id:
ENSP00000428767 ⟸ ENST00000519405
Ensembl Acc Id:
ENSP00000430287 ⟸ ENST00000519344
Ensembl Acc Id:
ENSP00000429972 ⟸ ENST00000519190
Ensembl Acc Id:
ENSP00000431004 ⟸ ENST00000520261
Ensembl Acc Id:
ENSP00000356189 ⟸ ENST00000367220
Ensembl Acc Id:
ENSP00000394751 ⟸ ENST00000422970
Ensembl Acc Id:
ENSP00000265198 ⟸ ENST00000265198
RefSeq Acc Id:
NP_001381728 ⟸ NM_001394799
- Peptide Label:
isoform 1
- UniProtKB:
A0A2Q2T6B6 (UniProtKB/TrEMBL)
RefSeq Acc Id:
NP_001381731 ⟸ NM_001394802
- Peptide Label:
isoform 2
- UniProtKB:
Q8WWN9 (UniProtKB/Swiss-Prot), O43153 (UniProtKB/Swiss-Prot), G3V132 (UniProtKB/Swiss-Prot), B7ZL80 (UniProtKB/Swiss-Prot), B7ZL78 (UniProtKB/Swiss-Prot), A8K1K2 (UniProtKB/Swiss-Prot), Q5HYL8 (UniProtKB/Swiss-Prot), A0A2Q2T6B6 (UniProtKB/TrEMBL)
RefSeq Acc Id:
NP_001381729 ⟸ NM_001394800
- Peptide Label:
isoform 1
- UniProtKB:
A0A2Q2T6B6 (UniProtKB/TrEMBL)
RefSeq Acc Id:
NP_001381730 ⟸ NM_001394801
- Peptide Label:
isoform 1
- UniProtKB:
A0A2Q2T6B6 (UniProtKB/TrEMBL)
RGD ID: 7209509
Promoter ID: EPDNEW_H10500
Type: single initiation site
Name: IPCEF1_2
Description: interaction protein for cytohesin exchange factors 1
SO ACC ID: SO:0000170
Source: EPDNEW (Eukaryotic Promoter Database, http://epd.vital-it.ch/ )
Alternative Promoters: null; see alsoEPDNEW_H10501
Experiment Methods: Single-end sequencing.
Position: Human Assembly Chr Position (strand) Source GRCh38 6 154,267,897 - 154,267,957 EPDNEW
RGD ID: 7209511
Promoter ID: EPDNEW_H10501
Type: initiation region
Name: IPCEF1_1
Description: interaction protein for cytohesin exchange factors 1
SO ACC ID: SO:0000170
Source: EPDNEW (Eukaryotic Promoter Database, http://epd.vital-it.ch/ )
Alternative Promoters: null; see alsoEPDNEW_H10500
Experiment Methods: Single-end sequencing.
Position: Human Assembly Chr Position (strand) Source GRCh38 6 154,356,803 - 154,356,863 EPDNEW
RGD ID: 6804561
Promoter ID: HG_KWN:55530
Type: Non-CpG
SO ACC ID: SO:0000170
Source: MPROMDB
Tissues & Cell Lines: Lymphoblastoid
Transcripts: UC003QPV.1
Position: Human Assembly Chr Position (strand) Source Build 36 6 154,576,326 - 154,576,827 (-) MPROMDB
RGD ID: 6813000
Promoter ID: HG_ACW:70532
Type: Non-CpG
SO ACC ID: SO:0000170
Source: MPROMDB
Tissues & Cell Lines: CD4+TCell, K562, Lymphoblastoid
Transcripts: PIP3-E.CAPR07, PIP3-E.EAPR07, PIP3-E.IAPR07, PIP3-E.JAPR07, PIP3-E.KAPR07
Position: Human Assembly Chr Position (strand) Source Build 36 6 154,609,944 - 154,610,444 (-) MPROMDB
RGD ID: 6804370
Promoter ID: HG_KWN:55533
Type: Non-CpG
SO ACC ID: SO:0000170
Source: MPROMDB
Tissues & Cell Lines: Lymphoblastoid
Transcripts: ENST00000265198, NM_001130700, NM_015553
Position: Human Assembly Chr Position (strand) Source Build 36 6 154,719,106 - 154,719,767 (-) MPROMDB