Symbol:
Epha6
Name:
Eph receptor A6
RGD ID:
1312155
MGI Page
MGI
Description:
Predicted to enable transmembrane-ephrin receptor activity. Predicted to be involved in axon guidance and ephrin receptor signaling pathway. Predicted to be located in nucleoplasm. Predicted to be active in dendrite and plasma membrane. Is expressed in several structures, including alimentary system; central nervous system; endometrium; male reproductive gland or organ; and sensory organ. Orthologous to human EPHA6 (EPH receptor A6).
Type:
protein-coding
RefSeq Status:
VALIDATED
Previously known as:
EHK-2; Ehk2; EPH homology kinase 2; ephrin type-A receptor 6; Hek12; m-ehk2
RGD Orthologs
Alliance Orthologs
More Info
more info ...
More Info
Species
Gene symbol and name
Data Source
Assertion derived from
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Orthologs 1
Homo sapiens (human):
EPHA6 (EPH receptor A6)
HGNC
EggNOG, Ensembl, HGNC, HomoloGene, Inparanoid, NCBI, OMA, OrthoDB, OrthoMCL, Panther, Treefam
Rattus norvegicus (Norway rat):
Epha6 (Eph receptor A6)
Transitive Ortholog Pipeline
Transitive Ortholog Pipeline
Chinchilla lanigera (long-tailed chinchilla):
Epha6 (EPH receptor A6)
Transitive Ortholog Pipeline
Transitive Ortholog Pipeline
Pan paniscus (bonobo/pygmy chimpanzee):
EPHA6 (EPH receptor A6)
Transitive Ortholog Pipeline
Transitive Ortholog Pipeline
Canis lupus familiaris (dog):
EPHA6 (EPH receptor A6)
Transitive Ortholog Pipeline
Transitive Ortholog Pipeline
Ictidomys tridecemlineatus (thirteen-lined ground squirrel):
Epha6 (EPH receptor A6)
Transitive Ortholog Pipeline
Transitive Ortholog Pipeline
Sus scrofa (pig):
EPHA6 (EPH receptor A6)
Transitive Ortholog Pipeline
Transitive Ortholog Pipeline
Chlorocebus sabaeus (green monkey):
EPHA6 (EPH receptor A6)
Transitive Ortholog Pipeline
Transitive Ortholog Pipeline
Heterocephalus glaber (naked mole-rat):
Epha6 (EPH receptor A6)
Transitive Ortholog Pipeline
Transitive Ortholog Pipeline
Other homologs 2
Homo sapiens (human):
EPHA3 (EPH receptor A3)
HGNC
OrthoMCL
Homo sapiens (human):
EPHA7 (EPH receptor A7)
HGNC
OrthoMCL
Homo sapiens (human):
EPHA1 (EPH receptor A1)
HGNC
OrthoMCL
Homo sapiens (human):
EPHB3 (EPH receptor B3)
HGNC
OrthoMCL
Homo sapiens (human):
EPHB6 (EPH receptor B6)
HGNC
OrthoMCL
Homo sapiens (human):
EPHA2 (EPH receptor A2)
HGNC
OrthoMCL
Homo sapiens (human):
EPHA4 (EPH receptor A4)
HGNC
OrthoMCL
Homo sapiens (human):
EPHA10 (EPH receptor A10)
HGNC
OrthoMCL
Homo sapiens (human):
EPHA8 (EPH receptor A8)
HGNC
OrthoMCL
Homo sapiens (human):
EPHB1 (EPH receptor B1)
HGNC
OrthoMCL
Homo sapiens (human):
EPHB4 (EPH receptor B4)
HGNC
OrthoMCL
Homo sapiens (human):
EPHB2 (EPH receptor B2)
HGNC
OrthoMCL
Homo sapiens (human):
EPHA5 (EPH receptor A5)
HGNC
OrthoMCL
Alliance orthologs 3
Rattus norvegicus (Norway rat):
Epha6 (Eph receptor A6)
Alliance
DIOPT (Ensembl Compara|Hieranoid|InParanoid|OMA|OrthoFinder|OrthoInspector|PANTHER|PhylomeDB|SonicParanoid)
Homo sapiens (human):
EPHA6 (EPH receptor A6)
Alliance
DIOPT (HGNC|Hieranoid|InParanoid|OMA|OrthoFinder|OrthoInspector|PANTHER|PhylomeDB|SonicParanoid)
Danio rerio (zebrafish):
epha6 (eph receptor A6)
Alliance
DIOPT (Ensembl Compara|Hieranoid|InParanoid|OMA|OrthoFinder|OrthoInspector|PANTHER|PhylomeDB|SonicParanoid|ZFIN)
Drosophila melanogaster (fruit fly):
Eph
Alliance
DIOPT (Hieranoid|InParanoid|OMA|OrthoInspector|PANTHER|PhylomeDB|SonicParanoid)
Caenorhabditis elegans (roundworm):
vab-1
Alliance
DIOPT (Hieranoid|InParanoid|OMA|OrthoFinder|OrthoInspector|SonicParanoid)
Xenopus tropicalis (tropical clawed frog):
epha6
Alliance
DIOPT (Ensembl Compara|Hieranoid|InParanoid|OMA|OrthoFinder|OrthoInspector|PANTHER|PhylomeDB|SonicParanoid)
Latest Assembly:
GRCm39 - Mouse Genome Assembly GRCm39
Position:
Mouse Assembly Chr Position (strand) Source Genome Browsers JBrowse NCBI UCSC Ensembl GRCm39 16 59,473,424 - 60,431,196 (-) NCBI GRCm39 GRCm39 mm39 GRCm39 Ensembl 16 59,473,846 - 60,425,894 (-) Ensembl GRCm39 Ensembl GRCm38 16 59,641,433 - 60,610,911 (-) NCBI GRCm38 GRCm38 mm10 GRCm38 GRCm38.p6 Ensembl 16 59,653,483 - 60,605,531 (-) Ensembl GRCm38 mm10 GRCm38 MGSCv37 16 59,653,309 - 60,605,357 (-) NCBI GRCm37 MGSCv37 mm9 NCBIm37 MGSCv36 16 59,595,739 - 60,547,503 (-) NCBI MGSCv36 mm8 Celera 16 60,004,715 - 60,923,397 (-) NCBI Celera Cytogenetic Map 16 C1.3 NCBI cM Map 16 34.83 NCBI
JBrowse:
View Region in Genome Browser (JBrowse)
Model
Epha6 Mouse Bardet-Biedl syndrome 3 ISO RGD:1605546 8554872 ClinVar Annotator: match by term: Bardet-Biedl syndrome 3 ClinVar PMID:15258860|PMID:19858128|PMID:20142850|PMID:22334370|PMID:27486776|PMID:28492532|PMID:31736247
Imported Annotations - PID (archival)
Epha6 (Mus musculus - house mouse)
Mouse Assembly Chr Position (strand) Source Genome Browsers JBrowse NCBI UCSC Ensembl GRCm39 16 59,473,424 - 60,431,196 (-) NCBI GRCm39 GRCm39 mm39 GRCm39 Ensembl 16 59,473,846 - 60,425,894 (-) Ensembl GRCm39 Ensembl GRCm38 16 59,641,433 - 60,610,911 (-) NCBI GRCm38 GRCm38 mm10 GRCm38 GRCm38.p6 Ensembl 16 59,653,483 - 60,605,531 (-) Ensembl GRCm38 mm10 GRCm38 MGSCv37 16 59,653,309 - 60,605,357 (-) NCBI GRCm37 MGSCv37 mm9 NCBIm37 MGSCv36 16 59,595,739 - 60,547,503 (-) NCBI MGSCv36 mm8 Celera 16 60,004,715 - 60,923,397 (-) NCBI Celera Cytogenetic Map 16 C1.3 NCBI cM Map 16 34.83 NCBI
EPHA6 (Homo sapiens - human)
Human Assembly Chr Position (strand) Source Genome Browsers JBrowse NCBI UCSC Ensembl GRCh38 3 96,814,594 - 97,761,532 (+) NCBI GRCh38 GRCh38 hg38 GRCh38 GRCh38.p14 Ensembl 3 96,814,581 - 97,761,532 (+) Ensembl GRCh38 hg38 GRCh38 GRCh37 3 96,533,438 - 97,480,376 (+) NCBI GRCh37 GRCh37 hg19 GRCh37 Build 36 3 98,016,115 - 98,950,476 (+) NCBI NCBI36 Build 36 hg18 NCBI36 Celera 3 94,916,109 - 95,857,365 (+) NCBI Celera Cytogenetic Map 3 q11.2 NCBI HuRef 3 93,902,924 - 94,837,692 (+) NCBI HuRef CHM1_1 3 96,496,480 - 97,430,819 (+) NCBI CHM1_1 T2T-CHM13v2.0 3 99,518,416 - 100,468,755 (+) NCBI T2T-CHM13v2.0
Epha6 (Rattus norvegicus - Norway rat)
Rat Assembly Chr Position (strand) Source Genome Browsers JBrowse NCBI UCSC Ensembl GRCr8 11 53,226,784 - 54,178,120 (+) NCBI GRCr8 mRatBN7.2 11 39,757,501 - 40,708,901 (+) NCBI mRatBN7.2 mRatBN7.2 mRatBN7.2 Ensembl 11 39,757,181 - 40,698,311 (+) Ensembl mRatBN7.2 Ensembl Rnor_6.0 11 41,867,607 - 42,843,800 (+) NCBI Rnor6.0 Rnor_6.0 rn6 Rnor6.0 Rnor_6.0 Ensembl 11 42,259,761 - 42,843,865 (+) NCBI Rnor6.0 rn6 Rnor6.0 Rnor_5.0 11 45,066,461 - 46,035,688 (+) NCBI Rnor5.0 Rnor_5.0 rn5 Rnor5.0 RGSC_v3.4 11 40,551,554 - 41,458,539 (+) NCBI RGSC3.4 RGSC_v3.4 rn4 RGSC3.4 RGSC_v3.1 11 40,597,889 - 41,024,933 (+) NCBI Celera 11 39,606,772 - 40,545,970 (+) NCBI Celera Cytogenetic Map 11 q12 NCBI
Epha6 (Chinchilla lanigera - long-tailed chinchilla)
Chinchilla Assembly Chr Position (strand) Source Genome Browsers JBrowse NCBI UCSC Ensembl ChiLan1.0 Ensembl NW_004955407 400,745 - 1,220,538 (-) Ensembl ChiLan1.0 ChiLan1.0 NW_004955407 398,415 - 1,220,542 (-) NCBI ChiLan1.0 ChiLan1.0
EPHA6 (Pan paniscus - bonobo/pygmy chimpanzee)
Bonobo Assembly Chr Position (strand) Source Genome Browsers JBrowse NCBI UCSC Ensembl NHGRI_mPanPan1-v2 2 94,719,146 - 95,674,832 (+) NCBI NHGRI_mPanPan1-v2 NHGRI_mPanPan1 3 94,723,932 - 95,679,616 (+) NCBI NHGRI_mPanPan1 Mhudiblu_PPA_v0 3 93,881,686 - 94,819,563 (+) NCBI Mhudiblu_PPA_v0 Mhudiblu_PPA_v0 panPan3 PanPan1.1 3 100,562,841 - 101,504,222 (+) NCBI panpan1.1 PanPan1.1 panPan2 PanPan1.1 Ensembl 3 100,734,791 - 101,503,805 (+) Ensembl panpan1.1 panPan2
EPHA6 (Canis lupus familiaris - dog)
Dog Assembly Chr Position (strand) Source Genome Browsers JBrowse NCBI UCSC Ensembl CanFam3.1 33 3,990,346 - 4,786,070 (+) NCBI CanFam3.1 CanFam3.1 canFam3 CanFam3.1 CanFam3.1 Ensembl 33 4,517,039 - 4,684,336 (+) Ensembl CanFam3.1 canFam3 CanFam3.1 Dog10K_Boxer_Tasha 33 4,093,700 - 4,967,547 (+) NCBI Dog10K_Boxer_Tasha ROS_Cfam_1.0 33 4,023,454 - 4,896,341 (+) NCBI ROS_Cfam_1.0 UMICH_Zoey_3.1 33 3,901,331 - 4,772,858 (+) NCBI UMICH_Zoey_3.1 UNSW_CanFamBas_1.0 33 3,961,065 - 4,833,214 (+) NCBI UNSW_CanFamBas_1.0 UU_Cfam_GSD_1.0 33 4,235,497 - 5,107,565 (+) NCBI UU_Cfam_GSD_1.0
Epha6 (Ictidomys tridecemlineatus - thirteen-lined ground squirrel)
Squirrel Assembly Chr Position (strand) Source Genome Browsers JBrowse NCBI UCSC Ensembl HiC_Itri_2 NW_024405602 152,451,572 - 153,234,891 (-) NCBI HiC_Itri_2 SpeTri2.0 Ensembl NW_004936666 2,282,000 - 3,061,944 (+) Ensembl SpeTri2.0 SpeTri2.0 Ensembl SpeTri2.0 NW_004936666 2,280,811 - 3,063,601 (+) NCBI SpeTri2.0 SpeTri2.0 SpeTri2.0
EPHA6 (Sus scrofa - pig)
Pig Assembly Chr Position (strand) Source Genome Browsers JBrowse NCBI UCSC Ensembl Sscrofa11.1 Ensembl 13 162,569,479 - 163,443,646 (-) Ensembl Sscrofa11.1 susScr11 Sscrofa11.1 Sscrofa11.1 13 162,568,835 - 163,445,722 (-) NCBI Sscrofa11.1 Sscrofa11.1 susScr11 Sscrofa11.1 Sscrofa10.2 13 173,570,910 - 173,735,724 (-) NCBI Sscrofa10.2 Sscrofa10.2 susScr3
EPHA6 (Chlorocebus sabaeus - green monkey)
Epha6 (Heterocephalus glaber - naked mole-rat)
.
Predicted Target Of
Count of predictions: 467 Count of miRNA genes: 353 Interacting mature miRNAs: 401 Transcripts: ENSMUST00000068860, ENSMUST00000159383, ENSMUST00000161358, ENSMUST00000162129 Prediction methods: Miranda, Rnahybrid, Targetscan Result types: miRGate_prediction
11059560 Lmr12b_m leishmaniasis resistance 12b (mouse) 16 28792813 62792952 Mouse 1300915 Lmr12_m leishmaniasis resistance 12 (mouse) Not determined 16 28792813 62792952 Mouse 1301138 Pcd4ts3_m p-glycoprotein positive CD4 T cell subset 3 (mouse) Not determined 16 40593923 74594076 Mouse 1301394 Eae11_m susceptibility to experimental allergic encephalomyelitis 11 (mouse) Not determined 16 53561891 87562035 Mouse 26884376 Skwq4_m skull length QTL 4, 5 week (mouse) 16 8417864 90896888 Mouse 1302096 Aod1a_m autoimmune ovarian dysgenesis 1a (mouse) Not determined 16 35446643 92573008 Mouse 4141212 Imraq3_m immune response to AAV2 QTL 3 (mouse) Not determined 16 44383350 78383506 Mouse 1558836 Dice1b_m determination of interleukin 4 commitment 1b (mouse) Not determined 16 45511000 72274485 Mouse 1301719 Remslp3_m rapid eye movement sleep 3 (mouse) Not determined 16 44383350 78383506 Mouse 1357778 Diobq_m diet-induced obesity QTL (mouse) Not determined 16 42197817 82331174 Mouse 1301364 Lith14_m lithogenic gene 14 (mouse) Not determined 16 55661846 89661961 Mouse 26884432 Zlq7_m zygomatic length QTL 7, 10 week (mouse) 16 3817864 64620363 Mouse 11049571 Lmr12c_m leishmaniasis resistance 12c (mouse) 16 28792813 62792952 Mouse 11059559 Lmr12a_m leishmaniasis resistance 12a (mouse) 16 28792813 62792952 Mouse 4142187 Arrd3_m age-related retinal degeneration 3 (mouse) Not determined 32522909 65466552 Mouse 11522747 Eae41_m experimental allergic encephalomyelitis susceptibility 41 (mouse) 16 40399134 78015472 Mouse 14928310 Manh80_m mandible shape 80 (mouse) 16 48219841 82219841 Mouse 1357763 Lp1_m lymphocyte proliferation 1 (mouse) Not determined 16 6542979 65466552 Mouse 1357517 Bwtn1_m body weight at necropsy 1 (mouse) Not determined 16 20019329 85600826 Mouse 26884416 Bzwq5_m bi-zygomatic width QTL 5, 5 week (mouse) 16 37320362 84696888 Mouse 1301070 Cypr1_m cytokine production 1 (mouse) Not determined 16 32312795 66312933 Mouse 27226785 Feml12_m femur length 12, 5 week (mouse) 16 3317864 64620363 Mouse 4142112 Skts-fp3_m skin tumor susceptibility in FVB and PWK 3 (mouse) Not determined 16 40053881 72924385 Mouse
Epha6
Mouse Assembly Chr Position (strand) Source JBrowse MGSCv37 16 59,653,336 - 59,653,727 UniSTS GRCm37 Celera 16 60,004,742 - 60,005,133 UniSTS Cytogenetic Map 16 C1.3 UniSTS cM Map 16 UniSTS
Sample_03.Seq
Mouse Assembly Chr Position (strand) Source JBrowse GRCm38 16 59,758,997 - 59,759,196 UniSTS GRCm38 MGSCv37 16 59,758,823 - 59,759,022 UniSTS GRCm37 Celera 16 60,104,084 - 60,104,329 UniSTS Cytogenetic Map 16 C1.3 UniSTS Whitehead_YAC 16 UniSTS
D16Mit148
Mouse Assembly Chr Position (strand) Source JBrowse GRCm38 16 60,490,378 - 60,490,482 UniSTS GRCm38 MGSCv37 16 60,490,204 - 60,490,308 UniSTS GRCm37 Celera 16 60,809,302 - 60,809,406 UniSTS Cytogenetic Map 16 C1.3 UniSTS cM Map 16 39.0 UniSTS Whitehead Genetic 16 33.9 UniSTS
MTH697
Mouse Assembly Chr Position (strand) Source JBrowse GRCm38 16 60,476,985 - 60,477,070 UniSTS GRCm38 MGSCv37 16 60,476,811 - 60,476,896 UniSTS GRCm37 Celera 16 60,795,888 - 60,795,983 UniSTS Cytogenetic Map 16 C1.3 UniSTS cM Map 16 40.0 UniSTS Whitehead Genetic 16 33.9 UniSTS Whitehead/MRC_RH 16 741.42 UniSTS
D16Mit185.2
Mouse Assembly Chr Position (strand) Source JBrowse GRCm38 16 60,476,833 - 60,476,989 UniSTS GRCm38 MGSCv37 16 60,476,659 - 60,476,815 UniSTS GRCm37 Celera 16 60,795,736 - 60,795,892 UniSTS Cytogenetic Map 16 C1.3 UniSTS cM Map 16 40.0 UniSTS cM Map 16 UniSTS Whitehead_YAC 16 UniSTS
D16Mit92
Mouse Assembly Chr Position (strand) Source JBrowse GRCm38 16 60,187,187 - 60,187,335 UniSTS GRCm38 MGSCv37 16 60,187,013 - 60,187,161 UniSTS GRCm37 Celera 16 60,517,981 - 60,518,129 UniSTS Cytogenetic Map 16 C1.3 UniSTS cM Map 16 43.0 UniSTS Whitehead Genetic 16 33.9 UniSTS Whitehead_YAC 16 UniSTS
D11Rat85
Mouse Assembly Chr Position (strand) Source JBrowse GRCm38 16 60,057,791 - 60,058,076 UniSTS GRCm38 MGSCv37 16 60,057,617 - 60,057,902 UniSTS GRCm37 Celera 16 60,388,788 - 60,389,073 UniSTS Cytogenetic Map 16 C1.3 UniSTS
Epha6
Mouse Assembly Chr Position (strand) Source JBrowse Cytogenetic Map 16 C1.3 UniSTS
Epha6
Mouse Assembly Chr Position (strand) Source JBrowse GRCm38 16 59,653,510 - 59,653,901 UniSTS GRCm38 MGSCv37 16 59,653,336 - 59,653,727 UniSTS GRCm37 Celera 16 60,004,742 - 60,005,133 UniSTS Cytogenetic Map 16 C1.3 UniSTS cM Map 16 UniSTS
Click on a value in the shaded box below the category label to view a detailed expression data table for that system.
Ensembl Acc Id:
ENSMUST00000068860 ⟹ ENSMUSP00000066734
Type:
CODING
Position:
Mouse Assembly Chr Position (strand) Source GRCm39 Ensembl 16 59,473,846 - 60,425,611 (-) Ensembl GRCm38.p6 Ensembl 16 59,653,483 - 60,605,248 (-) Ensembl
Ensembl Acc Id:
ENSMUST00000159383
Type:
CODING
Position:
Mouse Assembly Chr Position (strand) Source GRCm39 Ensembl 16 60,244,625 - 60,425,894 (-) Ensembl GRCm38.p6 Ensembl 16 60,424,262 - 60,605,531 (-) Ensembl
Ensembl Acc Id:
ENSMUST00000161358
Type:
CODING
Position:
Mouse Assembly Chr Position (strand) Source GRCm39 Ensembl 16 59,580,524 - 59,826,084 (-) Ensembl GRCm38.p6 Ensembl 16 59,760,161 - 60,005,721 (-) Ensembl
Ensembl Acc Id:
ENSMUST00000162129
Type:
CODING
Position:
Mouse Assembly Chr Position (strand) Source GRCm39 Ensembl 16 60,303,960 - 60,425,582 (-) Ensembl GRCm38.p6 Ensembl 16 60,483,597 - 60,605,219 (-) Ensembl
RefSeq Acc Id:
NM_007938 ⟹ NP_031964
RefSeq Status:
VALIDATED
Type:
CODING
Position:
Mouse Assembly Chr Position (strand) Source GRCm39 16 59,473,846 - 60,425,894 (-) NCBI GRCm38 16 59,653,483 - 60,605,531 (-) NCBI MGSCv37 16 59,653,309 - 60,605,357 (-) RGD Celera 16 60,004,715 - 60,923,397 (-) RGD cM Map 16 ENTREZGENE
Sequence:
AGACACATGAAAGTTCTGGATGCCCAGACTACCCTTACTATCTGCTGTGCCTCCTCTGCTCTGGGGTCTGTAAGTGCCCACTTGGATGCAGAGAGCACTTGGGTCCCCAGAACTGCACCTTCACTACC CGTCCAAACGTCCCTACCCATCCCCAGTACCGGCCTAGAGCCACCCTCCCCCGTCCACCATCCCCTCCCCCAAACTAGAGCCTGAGCTCGCTCTTGCGCGCGCGCTCTCCTGGGCCCAAGTGAATAGT CCTCGCTCGAGCGGGACACGGTGGTGGATGCAATTCCCCTCGCCTCCAGCCGCCAGGAGCTCCCCGGCGGCGCAGGCAGCATCGTCCCCGCAAGCAGCTGCTCCAGCACCTGGGCAGCCTGGACCCTC GTGCCCTGCGCACCGGGCCTCGCGCGGGGGGCGCCCCGGGACTTCCCCTGCGGACCGGGTGGAGGAGGAAGAGGAGGAGGAGGAAGAAGAAGAGAGCTTGGTTCAGGACCCCCACGCTACTAGGAACA CCTGGCTGCGCTGCTGCCACTTCTTTTTAAGGAGGAGAAGAGAACCAACCAGAGCCATGGGGGGCTGCGAAGTCCGGGAATTTCTTTTGCAATTTGGTTTCTTCTTGCCCCTGCTAACGGCTTGGACC GGCGACTGCAGTCACGTCTCCAACCAAGTTGTGTTGCTTGATACAACCACAGTGATGGGAGAACTAGGATGGAAAACATATCCATTAAATGGGTGGGATGCCATTACTGAAATGGATGAACACAATAG GCCCATACATACATACCAGGTATGCAATGTCATGGAACCAAACCAGAACAACTGGCTTCGTACTAACTGGATCTCTCGTGATGCTGCACAGAAAATTTATGTGGAAATGAAGTTCACACTGAGGGATT GTAACAGCATCCCATGGGTCTTGGGGACTTGTAAAGAAACCTTTAACCTGTATTATATAGAATCCGATGAATCCCATGGGACAAAATTCAAGCCAAGCCAATATATAAAGATCGACACAATTGCTGCT GATGAGAGTTTTACTCAGATGGATTTGGGTGACCGCATCCTTAAACTCAACACTGAAATCCGTGAGGTGGGGCCTATAGAAAGGAAAGGATTTTATTTGGCTTTTCAAGATATTGGAGCATGCATCGC TCTGGTCTCAGTCCGAGTTTTCTACAAAAAATGCCCCTTCACCGTGCGGAACTTGGCTATGTTTCCTGATACCATCCCAAGGGTTGATTCTTCCTCTTTGGTTGAAGTGCGGGGCTCATGTGTAAAGA GTGCTGAGGAGCGAGATACTCCTAAACTCTACTGTGGAGCTGATGGGGATTGGCTTGTTCCTCTTGGAAGGTGTATCTGCAGTACAGGGTATGAAGAAATCGAGGGTTCTTGCCATGCTTGCAGACCA GGATTCTACAAAGCATTTGCTGGGAACACAAAATGTTCCAAATGCCCTCCACACAGCTCAACCTACGTGGAAGCAACGTCAGTCTGTCATTGTGAAAAGGGTTACTTCCGGGCAGAAAAAGACCCACC TTCTATGGCATGCACTAGACCACCTTCAGCTCCTAGAAATGTGGCTTTTAACATCAATGAAACAGCCCTTATTTTGGAATGGAGCCCACCCAGTGACACAGGAGGGAGAAAAGATCTCACATACAGTG TAATCTGTAAGAAATGTGGTTTAGACACTACCCAGTGTGAGGACTGTGGTGGAGGACTCCGCTTCATCCCAAGACACACTGGACTGATCAACAATTCTGTGGTAGTACTGGACTTTGTGTCTCACGTC AATTATACCTTTGAAATAGAAGCCATGAATGGAGTTTCTGAGTTGAGCATCTCTCCCAAGCCATTCACAGCTATTACAGTGACTACAGATCACGATGCACCTTCTCTGATTGGTATGATGAGAAAGGA CTGGGCATCTCAGAACAGCCTTGCTCTATCGTGGCAAGCACCTGCATTTTCCAATGGAGCTATTCTGGACTATGAGATCAAGTACTACGAGAAAGAGCATGAGCAGCTCACCTATTCCTCCACGAGGT CCAAGGCCCCAAGCGTCATCGTCACGGGCCTCAAGCCCGCCACCACGTACATATTTCACATCCGAGTGAGGACGGCGACAGGCTACAGTGGCTACAGTCAGAAGTTTGAATTTGAAACAGGAGATGAA ACTTCTGACATGGCGGCAGAACAAGGGCAGATTCTGGTCATAGCCACTGCAGCCGTCGGGGGATTCACTCTCTTAGTCATCCTCACCCTGTTCTTCCTCATCACTGGGAGGTGTCAATGGTACATAAA GGCCAAAATGAAGTCAGAAGAGAAGAGAAGAACTCACTTACAGAACGGCCACCTGCGCTTCCCGGGAATTAAAACATACATTGATCCAGACACCTATGAAGACCCATCCCTAGCAGTCCACGAATTTG CAAAAGAGATTGATCCTTCAAGAATTCGCATTGAGAGAGTGATTGGAGCAGGTGAATTTGGAGAAGTCTGCAGTGGGCGTTTGAAGACACCAGGGAAAAGGGAGATCCCAGTTGCAATTAAAACATTG AAAGGTGGCCACATGGACCGACAAAGAAGAGATTTTCTAAGAGAAGCTAGCATCATGGGTCAGTTTGACCACCCAAACATCATTCGCCTAGAAGGTGTTGTCACTAAAAGATCCTTCCCGGCGATTGG GGTGGAAGCCTTCTGCCCCAGCTTCCTAAGGGCTGGGTTTTTAAATGGCATCCAAGCGCCACATCCAGTGACTGCAGGAGGCTCTCTGCCCCCCAGGATTCCTGCAGGTCGGCCAGTAATGATCGTAG TAGAGTATATGGAGAATGGATCACTGGACTCCTTTTTGCGGAAGCATGATGGCCACTTCACCGTCATCCAGTTGGTCGGCATGCTGAGGGGCATCGCGTCAGGCATGAAGTATCTTTCTGACATGGGA TATGTTCATCGAGATCTTGCCGCGAGGAACATACTGGTGAACAGCAACTTAGTATGCAAGGTCTCTGATTTTGGTCTCTCCCGAGTGCTGGAAGATGATCCAGAAGCAGCTTATACAACAACGGGAGG GAAAATCCCTATACGGTGGACAGCCCCAGAAGCTATTGCTTACAGAAAGTTCTCCTCAGCCAGTGACGCGTGGAGCTACGGGATTGTCATGTGGGAGGTGATGTCCTATGGAGAGAGACCGTACTGGG AAATGTCCAACCAGGATGTTATCTTGTCCATTGAAGAAGGTTACCGACTTCCTGCTCCGATGGGCTGCCCACCGTCTCTGCACCAGCTGATGCTCCACTGCTGGCAGAAGGAGAGAAACCACAGGCCA AAATTCACTGACATCGTCAGCTTCCTTGACAAACTGATCCGCAACCCCAGTGCCCTTCACACGCTGGTGGAGGACATCCTTGTAATGCCAGAATCCCCTGGTGATGTTCCTGAATATCCATTGTTTGT CACAGTAGGTGACTGGCTGGATTCTATAAAGATGGGGCAATACAAGAGTAACTTCATGGCAGCGGGTTTTACAACGTTTGATCTGATTTCACGAATGAGCATCGATGATATTAGGCGAATTGGAGTCA TTCTCATTGGACATCAGAGACGAATAGTCAGCAGCATACAAACTTTACGTTTACATATGATGCACATACAGGAAAAAGGATTTCATGTATGAAAGTACTATAAACACCTGTATCTTGTGCCTCAGCAT TTCTACAAAGAAAGATATTCCCTCTACGACTCATTCTTCTGATTCTCCAGCCTTCCCTTCACCACCCACCGTCTCCTGTTCCGACTATGGCTGCACACCTTACGTTTATGCTTCCACCCTGGATTTCA ATACCACGCTACACAGGTCCTCTCTGAATAGCCTGCAAACGAAACTCTGGCCCACTGCAGATCATCACTGCAGAACGATAAATAACTCAGCATGAATGTGTAACTTTGTACAGAAATGTTTGGGAAGT GTTCATGGACTTCACCTAAAGGAATTTGTCCTTAAGTGTGGCATCTTCAGAGACGTGTGTGGAGTTTGATGATAGATAAGAAGAAAATAGCTGATCATTCTTCCATGTTTTGTGATCGAGTAGCTCCC GAGTTCACATGCTTTTTTTTCAATAGCTCTACTCAACGCTGCAGGTTTTGCTGTTGGTTTATTTTTAATGACTTAACTGTTGGTGCCTGATGTTGATACAATGATTTGCAGAAATAA
hide sequence
RefSeq Acc Id:
XM_006521787 ⟹ XP_006521850
Type:
CODING
Position:
Mouse Assembly Chr Position (strand) Source GRCm39 16 59,473,424 - 60,431,196 (-) NCBI GRCm38 16 59,641,433 - 60,610,911 (-) NCBI
Sequence:
CTTCTATGAAAATATTTCAGAATTTTTGTCACCAGGGTTCTGTTTGGTACTTCTGAGCCTCTACATGTTTTCTTGTACTTTAACTTTGAAAAATTGAAAAAGAAGTTTTAGTCACAGCGTTCTACTCT GAATGAGCTATAGCATCCCAGTGACATTTTATTGTGCCTAGTATATGCACTTTATGTGAGGACTTCCATATTATTCTAACCATAATGTGTTTGTTTCACAGAATTTAACTATAGATTTCCAACTATAA TTATAAAAAAAGTTTTGTAGAACTACTACATCACTAATATGAAAAACACATTTATTTTACTGTTGCCTAACTCTGCATTCATGAGATTTTCCCAAGAACATTAGAAATTTTCAAAAGCATCTCCACAA CAAAGTTTCTGATTAATGATGTGCTTACTTGATTATTTGAGACAGACTCTGTAACACAGGCTAGACCGTAACCCCAGATTATGCTTTAAATACACACTTATACTCCTCTGCCTAGTAAATAATGGAAT CACAAGGGTGACCCACCATACTCAGATTTTATTTGTGCTTAAAGGCAATTATATGCTTACCTTTTAAAAAATGACATACTTATGGATTTTTTAGAATAATCCAAATTTCTACCTCCATCTCTACTAGA AAAAGAATATTTGAATAACAATTTTTCTAAGACTACTCAAAACTTCTACTACCAACAATTTTGCCAATAGAACATTATAAATTACTACATAAACATACCACATATTTTTACATCTTTTTACTCAGAGT TATTGTAAAAATTGTCTTTAATCACCCTAAGTACAAAAACTCATAAAGAGATCCAATCCTATTTCAGGGTTCAATTCCATAGCATGTAATGAAGTTTACAGTGTTTGAAGTTAGGTTTTGATATCCTT TGTGGTTAAATACAAAATTTTCCAAGTTAACAAAGCAAGAAATCACAAATCTTAAATTTATTTATATTAGTACACATTCATTATCAAATAGTATGCTACATTGATTTAATATTAATTTATTTAATATC ATGTCTTGAAATATATAAAAAGCAGGAAAGCTATTTGGACTTGATCTTTAGTGTGTTGTCTTTATATAGTATAAAAATTAGAGAAATTCTTTGCTCACAGAGAATATACACATAGTTTCTAAGCTAGA AACCTCAAGTAGCTGTACTTGTATTTGTAGATTTTTTTACATTAGTTGTTCAATTTTTCTTATACTTTTAGCATGCTAGACCATATACAAGCCAATCTTTCCTTAGTTAATATATTAAATTTGATGGC CTGAATATATTACTGTCCACAGCAGGTCACTGACTTTGGTACCAGTAAAAAGTATCATTCAGTTGTGTATATCCATAGTGAAAACTTAATCCCTTAAAACCAGATATTTCGTGACATCTTTAAGGATC AGAACTCTTTATTTTTGCTTCTTCTTTCTTGACCTTAGAGAATGCAAATTACTGGTGTAAATTGATTAATTTACTTTTCTCCCAGAATAACATACTTGAGACTTTCTCCAGCCTTGAAACATGCTGTG GATTAAACAGCATAATCCTTCTTGTTTTCCCTCGAGGAATTAATTGCAGGTTAAATCTCCACTCTTTTCATCATTTTACAAAGCAAATAGCAATAGGCATTGTGAAGGCTGTTATTTCTACACTAAGT GAATCGTTGGGCTGGAATTTTTTGTCATATATCTTTCACTTAATAAAAATTTAATCATTTCTTACCTGAAACCCGATCCCATATATCTTGAAGAACAATGTTCTGAAGGAATACAAAAGAATTCTGAA CAATATAGCTCTGAAAAATGGGACATGAATGCTTTTATGAATATGGGTATGATTCAAATAGACAAGTGCAGATAAATCTACATGAATATTGCATCTGGTTCTTTGAGCGGCTTATAATTTTGAAACTG TCACATGTCAGCAAATATAAAACACTGCCAAAATATCAAAACAGAAGTGGATCTCCACTTCCTGCAATTTCATCTAGTTCATATAGGATACTCATGACTGTTTTTCCTAGTGATGATTTCTTTTTATT TTATTGAAAAATAGATTTTTTTCTCACATAAATATATCATGATTTTTGGACTCCTCACCACCTCCCTTCCCATTTGGGCCTACACCATTTCTGTCTCTTGTTAGAGAGCAAACAGGCTTTTAAGTGCT AATAAAATATAACATAATACAAAAAAGTCATCATATCAAAGTTGGATAAAGCAGCAGAAGGAAAAGAGCCCTAGGACATGACACAGGAAGCAAGACCCTCAGGAATTTCAACAAAACACTGAACTAGA AGCCACACTCTATTCACAGAGGCTCCATGCATGCTGCATGGGGTCTCACTGAGTTCCTATGCGTTCTGCTCATATTGGTTGAGAGGGCCTTATTATCTCTGTGCCCTCTTTCCCCTCTGGCTCTTATA CTCTGCCTCTTCCTCCACCAGGTTCATTGACCTCTAAGAGGAGGAGTTTGATGTAGATGTCCCACCTAGTTTAGGGCTGAGTACTCCAAGGCAGGTTTATGAAGCACATTATTTTTATTCATACAAAA TAGTTTACCATTAACTCTCCCCCGAGAGGAGAAAAGTCGGCATATGGAAAAAAAAAAACTTTAGAATGTATACATGTATGTATACTTGGTAAGGAACCTTTAGAATGTATATATGTATATATTCTTGG TAAGGAACCTTTAGAATGTAATACATGTATGTATACTTGGTGAGGATAGAAATGGACAAATTGATTTATTTAAAAAATGTTACTACCAAGTTGGAATTAATAGACAGACTCCAAGTCATGGCTCACTC TTCTATTAAAAGAATGTCCTTAAGACTGTCTATGATCAATGGTCATGACAAAAACTACCATGTCTTTATCTCTGAAAAAAAAAAAACAGTAAGAGACAGTATCAGAGTATTTCTAAACATATGACAGG TGCTTAATCCTGAAGTTTTTTTTCTTAAAAAGCTAAAATTAATAAGACAGTCATCATCTGCATACACAATACATATTCTGTGACGCTCTACCATGGCGTATTTAAACAAATAATTCAGACAAGGCAAA CAGCTGATACAGGAGAAGTTCAGTTCCCTCAAATGTCAGAGTTATGTTGAAACTTCTGTTTCATACATTGCATTTTGCTGTGCAATTGAGCTTGAGACTTGGGAAGTGACACACACCTTTGTTTTTCT TCTTTTCCTTTCTTCGTTTTCTTTTCATTAGAATCACTCCCATTTAATATGATTTTTAGAAAAGCTTCTTACAGTTCAATTGTTTATAACCAACTCTTTCAAATTTACCATTCAAATAAAACACGAAA GCTTGAGTTTAGATGTTCATTTATAAATGTGATACTGATATTATGTTCATTTTTCCACTGAGCAAATGTACAAAAGAATTATGATTTATCATCAGTCCACCAACATATTCGTTATACACTCTGAAATC ATTAGATAGGCAGAATGCCAGGTGCTGCACTCATGTAGAGTTTTACCTTACACCTGAGTGAGTAAACTAAATTGAATTTACAAGCACCTATGTCATTAGTTAGTATCAGTAACACTGGAAATATGAGT AGTGAAATCAGATTACCCTACTGTAAACACGAGTATAGGAACTCCATCTTTGTAGGTGTGATTTGCACGCATTTAAATTGGCATGGACATCTTTGAAAACAAGCTGTGTATGAATTCATAATGAGCGT GAGAGTAGCCACCAATCAGAAAGTGTCATTACCCTGTGGTTCCCACTTGCACGTTTCATTACTCTTTTGGATTCTGAGCTTTCCTTGCTCCTCTCTCTTTCCTTCTGATTGACTGTAAGGCATGGACT GAAATCCTTAAACTAGGATCCGAGCCACAAACAGCACTGAGCAGCGCGGAAATCCGAGGAAACCCTGCTTTCATTTCCAGCATTCCTGGTAAAACGTTGACCCTAGACCTACAACATTTAAGGTTCCT GTCACAACTATTCCCGACCTGAACCCTCCACCCACCTGAAAATTATCCTCTGAAATTCGCTTCACTTTTCTCCAGCGTCATCAAAAACCCTTCCTAGTGCTATTGAAGAAAGAAAAAGAAAAAGAAAA AAAAGCCTTACTCAGGCTTGATAATCTGCTCCTCTTCAATAAAGAAAACGATAATAATGTTAACAAATACACTACAGAAAATCCAACGCCAGTGATAAGCGCCTTAACAAACATTGTAAGTTTAACCT GAAAGCATCCTTCAGCTTTTTCCGCAGGTTTAGCCTGCTCTTCCACCTGCGAGCAGTGGAGGAATTTTTGTTGTCTACTAACCCCCTCTAGCGCCGAATTGGCTGCACCCGAGCCACAGCTGCTGTCA GACGGGAGATCGCTCGGCTCCACCGAGCTCAGCAGAGCTCTAGGGCCCTGCCCTCCACGCACCCCTCTCGGCCGGCAGCAGGGCGACAGCTTGGAGACTGCAGGTGGCAACACCACTTCCCATCAGCT AGTCCCGTGCCTCGGCCCAGGGCGGGGTCCCACCAAGTAAGTAGCCAGTGAACCGGCTTAGGAGAGCCCGGACCTGGGAGACAGGGTATTGAGAAGGGGCATCCGGAGCAAGGAGAGCGCACCGGCCC CCGCGGGCTGCCTTGGACTTGACCACGCACTGCTCAGACCTTGGGCTGCTCCCAGCTTCTAGCCCGACGCCACCGCGGAAAGGCAGACTTATCCAGGCCCCTGGAAGCCCCGCACCAAAGCTGCTATG AAGATGCTAATGACCTCCATGGCGAAGTCACCACCTTATGCGGAATGCTAAGACTTGGGGAAGCCAAGGCGCCAGGCACCAGTAGACTTCCAGCGCTCAGTGACTCCTCTCTGTAGCCTCTTCTCTCC CTATGCTTTCCAAGGACTCAGAACGGGAGAGGTGGCCACAAACCTCGGTGGCCAAGTTTGGGAGGCTAGCACTCAGACACGTCAGGGCTGACCACTACCTTCGCCAAGCTGTGCCCCGGGGCCAGGAG CGCTGACCTGCAACCCTCACCCTTTCTGGTAGCAGAAATGTCTCCAAGGGAAAGGTGGTGTCCAGAGCTGAGAGCACATCGTTACATGGGGGAGGGGGGACGCAAGTGCTTGGGGGACTAAGGTAGCT TCCGTGATACCCAATAAACAGCTGCTACGGCCGAGGGGGGCGGCGCAGATGCCGCCGAGTCGGTGGTCACGAGGCGACACTCAGCCCAGGCTACTCAGTCAAGAGGCTGAGTGCTCAGTCCGCCCCTC CCAGGGACCACTTGAGATCCCGCTGAGCCTCAGTCGCTGGGTTTCCCAGACACCAGACACATGAAAGTTCTGGATGCCCAGACTACCCTTACTATCTGCTGTGCCTCCTCTGCTCTGGGGTCTGTAAG TGCCCACTTGGATGCAGAGAGCACTTGGGTCCCCAGAACTGCACCTTCACTACCCGTCCAAACGTCCCTACCCATCCCCAGTACCGGCCTAGAGCCACCCTCCCCCGTCCACCATCCCCTCCCCCAAA CTAGAGCCTGAGCTCGCTCTTGCGCGCGCGCTCTCCTGGGCCCAAGTGAATAGTCCTCGCTCGAGCGGGACACGGTGGTGGATGCAATTCCCCTCGCCTCCAGCCGCCAGGAGCTCCCCGGCGGCGCA GGCAGCATCGTCCCCGCAAGCAGCTGCTCCAGCACCTGGGCAGCCTGGACCCTCGTGCCCTGCGCACCGGGCCTCGCGCGGGGGGCGCCCCGGGACTTCCCCTGCGGACCGGGTGGAGGAGGAAGAGG AGGAGGAGGAAGAAGAAGAGAGCTTGGTTCAGGACCCCCACGCTACTAGGAACACCTGGCTGCGCTGCTGCCACTTCTTTTTAAGGAGGAGAAGAGAACCAACCAGAGCCATGGGGGGCTGCGAAGTC CGGGAATTTCTTTTGCAATTTGGTTTCTTCTTGCCCCTGCTAACGGCTTGGACCGGCGACTGCAGTCACGTCTCCAACCAAGTTGTGTTGCTTGATACAACCACAGTGATGGGAGAACTAGGATGGAA AACATATCCATTAAATGGGACCTATTTCCAACACTGCTAAAAGGGGGGAAAATTCCAGAAGGCACTGAAGAGACCGCCTCTCCAGACCCCGCTGTTACCTCTGCTCTGGATTCACAGGCTGCAGCTCC CTAGGAGCCAGTGGGATGCCATTACTGAAATGGATGAACACAATAGGCCCATACATACATACCAGGTATGCAATGTCATGGAACCAAACCAGAACAACTGGCTTCGTACTAACTGGATCTCTCGTGAT GCTGCACAGAAAATTTATGTGGAAATGAAGTTCACACTGAGGGATTGTAACAGCATCCCATGGGTCTTGGGGACTTGTAAAGAAACCTTTAACCTGTATTATATAGAATCCGATGAATCCCATGGGAC AAAATTCAAGCCAAGCCAATATATAAAGATCGACACAATTGCTGCTGATGAGAGTTTTACTCAGATGGATTTGGGTGACCGCATCCTTAAACTCAACACTGAAATCCGTGAGGTGGGGCCTATAGAAA GGAAAGGATTTTATTTGGCTTTTCAAGATATTGGAGCATGCATCGCTCTGGTCTCAGTCCGAGTTTTCTACAAAAAATGCCCCTTCACCGTGCGGAACTTGGCTATGTTTCCTGATACCATCCCAAGG GTTGATTCTTCCTCTTTGGTTGAAGTGCGGGGCTCATGTGTAAAGAGTGCTGAGGAGCGAGATACTCCTAAACTCTACTGTGGAGCTGATGGGGATTGGCTTGTTCCTCTTGGAAGGTGTATCTGCAG TACAGGGTATGAAGAAATCGAGGGTTCTTGCCATGCTTGCAGACCAGGATTCTACAAAGCATTTGCTGGGAACACAAAATGTTCCAAATGCCCTCCACACAGCTCAACCTACGTGGAAGCAACGTCAG TCTGTCATTGTGAAAAGGGTTACTTCCGGGCAGAAAAAGACCCACCTTCTATGGCATGCACTAGACCACCTTCAGCTCCTAGAAATGTGGCTTTTAACATCAATGAAACAGCCCTTATTTTGGAATGG AGCCCACCCAGTGACACAGGAGGGAGAAAAGATCTCACATACAGTGTAATCTGTAAGAAATGTGGTTTAGACACTACCCAGTGTGAGGACTGTGGTGGAGGACTCCGCTTCATCCCAAGACACACTGG ACTGATCAACAATTCTGTGGTAGTACTGGACTTTGTGTCTCACGTCAATTATACCTTTGAAATAGAAGCCATGAATGGAGTTTCTGAGTTGAGCATCTCTCCCAAGCCATTCACAGCTATTACAGTGA CTACAGATCACGATGCACCTTCTCTGATTGGTATGATGAGAAAGGACTGGGCATCTCAGAACAGCCTTGCTCTATCGTGGCAAGCACCTGCATTTTCCAATGGAGCTATTCTGGACTATGAGATCAAG TACTACGAGAAAGAGCATGAGCAGCTCACCTATTCCTCCACGAGGTCCAAGGCCCCAAGCGTCATCGTCACGGGCCTCAAGCCCGCCACCACGTACATATTTCACATCCGAGTGAGGACGGCGACAGG CTACAGTGGCTACAGTCAGAAGTTTGAATTTGAAACAGGAGATGAAACTTCTGACATGGCGGCAGAACAAGGGCAGATTCTGGTCATAGCCACTGCAGCCGTCGGGGGATTCACTCTCTTAGTCATCC TCACCCTGTTCTTCCTCATCACTGGGAGGTGTCAATGGTACATAAAGGCCAAAATGAAGTCAGAAGAGAAGAGAAGAACTCACTTACAGAACGGCCACCTGCGCTTCCCGGGAATTAAAACATACATT GATCCAGACACCTATGAAGACCCATCCCTAGCAGTCCACGAATTTGCAAAAGAGATTGATCCTTCAAGAATTCGCATTGAGAGAGTGATTGGAGCAGGTGAATTTGGAGAAGTCTGCAGTGGGCGTTT GAAGACACCAGGGAAAAGGGAGATCCCAGTTGCAATTAAAACATTGAAAGGTGGCCACATGGACCGACAAAGAAGAGATTTTCTAAGAGAAGCTAGCATCATGGGTCAGTTTGACCACCCAAACATCA TTCGCCTAGAAGGTGTTGTCACTAAAAGATCCTTCCCGGCGATTGGGGTGGAAGCCTTCTGCCCCAGCTTCCTAAGGGCTGGGTTTTTAAATGGCATCCAAGCGCCACATCCAGTGACTGCAGGAGGC TCTCTGCCCCCCAGGATTCCTGCAGGTCGGCCAGTAATGATCGTAGTAGAGTATATGGAGAATGGATCACTGGACTCCTTTTTGCGGAAGCATGATGGCCACTTCACCGTCATCCAGTTGGTCGGCAT GCTGAGGGGCATCGCGTCAGGCATGAAGTATCTTTCTGACATGGGATATGTTCATCGAGATCTTGCCGCGAGGAACATACTGGTGAACAGCAACTTAGTATGCAAGGTCTCTGATTTTGGTCTCTCCC GAGTGCTGGAAGATGATCCAGAAGCAGCTTATACAACAACGGGAGGGAAAATCCCTATACGGTGGACAGCCCCAGAAGCTATTGCTTACAGAAAGTTCTCCTCAGCCAGTGACGCGTGGAGCTACGGG ATTGTCATGTGGGAGGTGATGTCCTATGGAGAGAGACCGTACTGGGAAATGTCCAACCAGGATGTTATCTTGTCCATTGAAGAAGGTTACCGACTTCCTGCTCCGATGGGCTGCCCACCGTCTCTGCA CCAGCTGATGCTCCACTGCTGGCAGAAGGAGAGAAACCACAGGCCAAAATTCACTGACATCGTCAGCTTCCTTGACAAACTGATCCGCAACCCCAGTGCCCTTCACACGCTGGTGGAGGACATCCTTG TAATGCCAGAATCCCCTGGTGATGTTCCTGAATATCCATTGTTTGTCACAGTAGGTGACTGGCTGGATTCTATAAAGATGGGGCAATACAAGAGTAACTTCATGGCAGCGGGTTTTACAACGTTTGAT CTGATTTCACGAATGAGCATCGATGATATTAGGCGAATTGGAGTCATTCTCATTGGACATCAGAGACGAATAGTCAGCAGCATACAAACTTTACGTTTACATATGATGCACATACAGGAAAAAGGATT TCATGTATGAAAGTACTATAAACACCTGTATCTTGTGCCTCAGCATTTCTACAAAGAAAGATATTCCCTCTACGACTCATTCTTCTGATTCTCCAGCCTTCCCTTCACCACCCACCGTCTCCTGTTCC GACTATGGCTGCACACCTTACGTTTATGCTTCCACCCTGGATTTCAATACCACGCTACACAGGTCCTCTCTGAATAGCCTGCAAACGAAACTCTGGCCCACTGCAGATCATCACTGCAGAACGATAAA TAACTCAGCATGAATGTGTAACTTTGTACAGAAATGTTTGGGAAGTGTTCATGGACTTCACCTAAAGGAATTTGTCCTTAAGTGTGGCATCTTCAGAGACGTGTGTGGAGTTTGATGATAGATAAGAA GAAAATAGCTGATCATTCTTCCATGTTTTGTGATCGAGTAGCTCCCGAGTTCACATGCTTTTTTTTCAATAGCTCTACTCAACGCTGCAGGTTTTGCTGTTGGTTTATTTTTAATGACTTAACTGTTG GTGCCTGATGTTGATACAATGATTTGCAGAAATAATTAATGACTCCGTGTAGTGCAATTGTGTCCAGTGTGACTACAGTTATGAAGGGCATTGTTGGGGAGGGAGATGGACAGAAATACTGTGCTTTT AATCTTCTAAGGCTGGGTTTGTCTATATTTTTAAATTGACTTTATAGGGGTCTACACATTTCATAGTAGGTGATTGTTTAGAGGCTTTTCCCCCCTCTAATTTTTTTACTAATTGTACTGTATTTCTC TAGTTCCAAGAATCCCCCTTGGAAAGACCGAGAGTGAAACCATTGCTCTAACAGTTTTCGTAGACTGATGCATGGAGTGATCACATGGCTGCTCCCTTGGATTCATCTTCATAAGTTTGAAAAAAAAA CTATCAAAGCTTTGAGAAAGTTAATTGTTCACAGGTCTTCTCTGAATAAAAGGTCTAACATAGTATCCATCGA
hide sequence
RefSeq Acc Id:
XM_011245826 ⟹ XP_011244128
Type:
CODING
Position:
Mouse Assembly Chr Position (strand) Source GRCm39 16 60,218,188 - 60,431,196 (-) NCBI GRCm38 16 60,397,825 - 60,610,911 (-) NCBI
Sequence:
CTTCTATGAAAATATTTCAGAATTTTTGTCACCAGGGTTCTGTTTGGTACTTCTGAGCCTCTACATGTTTTCTTGTACTTTAACTTTGAAAAATTGAAAAAGAAGTTTTAGTCACAGCGTTCTACTCT GAATGAGCTATAGCATCCCAGTGACATTTTATTGTGCCTAGTATATGCACTTTATGTGAGGACTTCCATATTATTCTAACCATAATGTGTTTGTTTCACAGAATTTAACTATAGATTTCCAACTATAA TTATAAAAAAAGTTTTGTAGAACTACTACATCACTAATATGAAAAACACATTTATTTTACTGTTGCCTAACTCTGCATTCATGAGATTTTCCCAAGAACATTAGAAATTTTCAAAAGCATCTCCACAA CAAAGTTTCTGATTAATGATGTGCTTACTTGATTATTTGAGACAGACTCTGTAACACAGGCTAGACCGTAACCCCAGATTATGCTTTAAATACACACTTATACTCCTCTGCCTAGTAAATAATGGAAT CACAAGGGTGACCCACCATACTCAGATTTTATTTGTGCTTAAAGGCAATTATATGCTTACCTTTTAAAAAATGACATACTTATGGATTTTTTAGAATAATCCAAATTTCTACCTCCATCTCTACTAGA AAAAGAATATTTGAATAACAATTTTTCTAAGACTACTCAAAACTTCTACTACCAACAATTTTGCCAATAGAACATTATAAATTACTACATAAACATACCACATATTTTTACATCTTTTTACTCAGAGT TATTGTAAAAATTGTCTTTAATCACCCTAAGTACAAAAACTCATAAAGAGATCCAATCCTATTTCAGGGTTCAATTCCATAGCATGTAATGAAGTTTACAGTGTTTGAAGTTAGGTTTTGATATCCTT TGTGGTTAAATACAAAATTTTCCAAGTTAACAAAGCAAGAAATCACAAATCTTAAATTTATTTATATTAGTACACATTCATTATCAAATAGTATGCTACATTGATTTAATATTAATTTATTTAATATC ATGTCTTGAAATATATAAAAAGCAGGAAAGCTATTTGGACTTGATCTTTAGTGTGTTGTCTTTATATAGTATAAAAATTAGAGAAATTCTTTGCTCACAGAGAATATACACATAGTTTCTAAGCTAGA AACCTCAAGTAGCTGTACTTGTATTTGTAGATTTTTTTACATTAGTTGTTCAATTTTTCTTATACTTTTAGCATGCTAGACCATATACAAGCCAATCTTTCCTTAGTTAATATATTAAATTTGATGGC CTGAATATATTACTGTCCACAGCAGGTCACTGACTTTGGTACCAGTAAAAAGTATCATTCAGTTGTGTATATCCATAGTGAAAACTTAATCCCTTAAAACCAGATATTTCGTGACATCTTTAAGGATC AGAACTCTTTATTTTTGCTTCTTCTTTCTTGACCTTAGAGAATGCAAATTACTGGTGTAAATTGATTAATTTACTTTTCTCCCAGAATAACATACTTGAGACTTTCTCCAGCCTTGAAACATGCTGTG GATTAAACAGCATAATCCTTCTTGTTTTCCCTCGAGGAATTAATTGCAGGTTAAATCTCCACTCTTTTCATCATTTTACAAAGCAAATAGCAATAGGCATTGTGAAGGCTGTTATTTCTACACTAAGT GAATCGTTGGGCTGGAATTTTTTGTCATATATCTTTCACTTAATAAAAATTTAATCATTTCTTACCTGAAACCCGATCCCATATATCTTGAAGAACAATGTTCTGAAGGAATACAAAAGAATTCTGAA CAATATAGCTCTGAAAAATGGGACATGAATGCTTTTATGAATATGGGTATGATTCAAATAGACAAGTGCAGATAAATCTACATGAATATTGCATCTGGTTCTTTGAGCGGCTTATAATTTTGAAACTG TCACATGTCAGCAAATATAAAACACTGCCAAAATATCAAAACAGAAGTGGATCTCCACTTCCTGCAATTTCATCTAGTTCATATAGGATACTCATGACTGTTTTTCCTAGTGATGATTTCTTTTTATT TTATTGAAAAATAGATTTTTTTCTCACATAAATATATCATGATTTTTGGACTCCTCACCACCTCCCTTCCCATTTGGGCCTACACCATTTCTGTCTCTTGTTAGAGAGCAAACAGGCTTTTAAGTGCT AATAAAATATAACATAATACAAAAAAGTCATCATATCAAAGTTGGATAAAGCAGCAGAAGGAAAAGAGCCCTAGGACATGACACAGGAAGCAAGACCCTCAGGAATTTCAACAAAACACTGAACTAGA AGCCACACTCTATTCACAGAGGCTCCATGCATGCTGCATGGGGTCTCACTGAGTTCCTATGCGTTCTGCTCATATTGGTTGAGAGGGCCTTATTATCTCTGTGCCCTCTTTCCCCTCTGGCTCTTATA CTCTGCCTCTTCCTCCACCAGGTTCATTGACCTCTAAGAGGAGGAGTTTGATGTAGATGTCCCACCTAGTTTAGGGCTGAGTACTCCAAGGCAGGTTTATGAAGCACATTATTTTTATTCATACAAAA TAGTTTACCATTAACTCTCCCCCGAGAGGAGAAAAGTCGGCATATGGAAAAAAAAAAACTTTAGAATGTATACATGTATGTATACTTGGTAAGGAACCTTTAGAATGTATATATGTATATATTCTTGG TAAGGAACCTTTAGAATGTAATACATGTATGTATACTTGGTGAGGATAGAAATGGACAAATTGATTTATTTAAAAAATGTTACTACCAAGTTGGAATTAATAGACAGACTCCAAGTCATGGCTCACTC TTCTATTAAAAGAATGTCCTTAAGACTGTCTATGATCAATGGTCATGACAAAAACTACCATGTCTTTATCTCTGAAAAAAAAAAAACAGTAAGAGACAGTATCAGAGTATTTCTAAACATATGACAGG TGCTTAATCCTGAAGTTTTTTTTCTTAAAAAGCTAAAATTAATAAGACAGTCATCATCTGCATACACAATACATATTCTGTGACGCTCTACCATGGCGTATTTAAACAAATAATTCAGACAAGGCAAA CAGCTGATACAGGAGAAGTTCAGTTCCCTCAAATGTCAGAGTTATGTTGAAACTTCTGTTTCATACATTGCATTTTGCTGTGCAATTGAGCTTGAGACTTGGGAAGTGACACACACCTTTGTTTTTCT TCTTTTCCTTTCTTCGTTTTCTTTTCATTAGAATCACTCCCATTTAATATGATTTTTAGAAAAGCTTCTTACAGTTCAATTGTTTATAACCAACTCTTTCAAATTTACCATTCAAATAAAACACGAAA GCTTGAGTTTAGATGTTCATTTATAAATGTGATACTGATATTATGTTCATTTTTCCACTGAGCAAATGTACAAAAGAATTATGATTTATCATCAGTCCACCAACATATTCGTTATACACTCTGAAATC ATTAGATAGGCAGAATGCCAGGTGCTGCACTCATGTAGAGTTTTACCTTACACCTGAGTGAGTAAACTAAATTGAATTTACAAGCACCTATGTCATTAGTTAGTATCAGTAACACTGGAAATATGAGT AGTGAAATCAGATTACCCTACTGTAAACACGAGTATAGGAACTCCATCTTTGTAGGTGTGATTTGCACGCATTTAAATTGGCATGGACATCTTTGAAAACAAGCTGTGTATGAATTCATAATGAGCGT GAGAGTAGCCACCAATCAGAAAGTGTCATTACCCTGTGGTTCCCACTTGCACGTTTCATTACTCTTTTGGATTCTGAGCTTTCCTTGCTCCTCTCTCTTTCCTTCTGATTGACTGTAAGGCATGGACT GAAATCCTTAAACTAGGATCCGAGCCACAAACAGCACTGAGCAGCGCGGAAATCCGAGGAAACCCTGCTTTCATTTCCAGCATTCCTGGTAAAACGTTGACCCTAGACCTACAACATTTAAGGTTCCT GTCACAACTATTCCCGACCTGAACCCTCCACCCACCTGAAAATTATCCTCTGAAATTCGCTTCACTTTTCTCCAGCGTCATCAAAAACCCTTCCTAGTGCTATTGAAGAAAGAAAAAGAAAAAGAAAA AAAAGCCTTACTCAGGCTTGATAATCTGCTCCTCTTCAATAAAGAAAACGATAATAATGTTAACAAATACACTACAGAAAATCCAACGCCAGTGATAAGCGCCTTAACAAACATTGTAAGTTTAACCT GAAAGCATCCTTCAGCTTTTTCCGCAGGTTTAGCCTGCTCTTCCACCTGCGAGCAGTGGAGGAATTTTTGTTGTCTACTAACCCCCTCTAGCGCCGAATTGGCTGCACCCGAGCCACAGCTGCTGTCA GACGGGAGATCGCTCGGCTCCACCGAGCTCAGCAGAGCTCTAGGGCCCTGCCCTCCACGCACCCCTCTCGGCCGGCAGCAGGGCGACAGCTTGGAGACTGCAGGTGGCAACACCACTTCCCATCAGCT AGTCCCGTGCCTCGGCCCAGGGCGGGGTCCCACCAAGTAAGTAGCCAGTGAACCGGCTTAGGAGAGCCCGGACCTGGGAGACAGGGTATTGAGAAGGGGCATCCGGAGCAAGGAGAGCGCACCGGCCC CCGCGGGCTGCCTTGGACTTGACCACGCACTGCTCAGACCTTGGGCTGCTCCCAGCTTCTAGCCCGACGCCACCGCGGAAAGGCAGACTTATCCAGGCCCCTGGAAGCCCCGCACCAAAGCTGCTATG AAGATGCTAATGACCTCCATGGCGAAGTCACCACCTTATGCGGAATGCTAAGACTTGGGGAAGCCAAGGCGCCAGGCACCAGTAGACTTCCAGCGCTCAGTGACTCCTCTCTGTAGCCTCTTCTCTCC CTATGCTTTCCAAGGACTCAGAACGGGAGAGGTGGCCACAAACCTCGGTGGCCAAGTTTGGGAGGCTAGCACTCAGACACGTCAGGGCTGACCACTACCTTCGCCAAGCTGTGCCCCGGGGCCAGGAG CGCTGACCTGCAACCCTCACCCTTTCTGGTAGCAGAAATGTCTCCAAGGGAAAGGTGGTGTCCAGAGCTGAGAGCACATCGTTACATGGGGGAGGGGGGACGCAAGTGCTTGGGGGACTAAGGTAGCT TCCGTGATACCCAATAAACAGCTGCTACGGCCGAGGGGGGCGGCGCAGATGCCGCCGAGTCGGTGGTCACGAGGCGACACTCAGCCCAGGCTACTCAGTCAAGAGGCTGAGTGCTCAGTCCGCCCCTC CCAGGGACCACTTGAGATCCCGCTGAGCCTCAGTCGCTGGGTTTCCCAGACACCAGACACATGAAAGTTCTGGATGCCCAGACTACCCTTACTATCTGCTGTGCCTCCTCTGCTCTGGGGTCTGTAAG TGCCCACTTGGATGCAGAGAGCACTTGGGTCCCCAGAACTGCACCTTCACTACCCGTCCAAACGTCCCTACCCATCCCCAGTACCGGCCTAGAGCCACCCTCCCCCGTCCACCATCCCCTCCCCCAAA CTAGAGCCTGAGCTCGCTCTTGCGCGCGCGCTCTCCTGGGCCCAAGTGAATAGTCCTCGCTCGAGCGGGACACGGTGGTGGATGCAATTCCCCTCGCCTCCAGCCGCCAGGAGCTCCCCGGCGGCGCA GGCAGCATCGTCCCCGCAAGCAGCTGCTCCAGCACCTGGGCAGCCTGGACCCTCGTGCCCTGCGCACCGGGCCTCGCGCGGGGGGCGCCCCGGGACTTCCCCTGCGGACCGGGTGGAGGAGGAAGAGG AGGAGGAGGAAGAAGAAGAGAGCTTGGTTCAGGACCCCCACGCTACTAGGAACACCTGGCTGCGCTGCTGCCACTTCTTTTTAAGGAGGAGAAGAGAACCAACCAGAGCCATGGGGGGCTGCGAAGTC CGGGAATTTCTTTTGCAATTTGGTTTCTTCTTGCCCCTGCTAACGGCTTGGACCGGCGACTGCAGTCACGTCTCCAACCAAGTTGTGTTGCTTGATACAACCACAGTGATGGGAGAACTAGGATGGAA AACATATCCATTAAATGGGTGGGATGCCATTACTGAAATGGATGAACACAATAGGCCCATACATACATACCAGGTATGCAATGTCATGGAACCAAACCAGAACAACTGGCTTCGTACTAACTGGATCT CTCGTGATGCTGCACAGAAAATTTATGTGGAAATGAAGTTCACACTGAGGGATTGTAACAGCATCCCATGGGTCTTGGGGACTTGTAAAGAAACCTTTAACCTGTATTATATAGAATCCGATGAATCC CATGGGACAAAATTCAAGCCAAGCCAATATATAAAGATCGACACAATTGCTGCTGATGAGAGTTTTACTCAGATGGATTTGGGTGACCGCATCCTTAAACTCAACACTGAAATCCGTGAGGTGGGGCC TATAGAAAGGAAAGGATTTTATTTGGCTTTTCAAGATATTGGAGCATGCATCGCTCTGGTCTCAGTCCGAGTTTTCTACAAAAAATGCCCCTTCACCGTGCGGAACTTGGCTATGTTTCCTGATACCA TCCCAAGGGTTGATTCTTCCTCTTTGGTTGAAGTGCGGGGCTCATGTGTAAAGAGTGCTGAGGAGCGAGATACTCCTAAACTCTACTGTGGAGCTGATGGGGATTGGCTTGTTCCTCTTGGAAGGTGT ATCTGCAGTACAGGGTATGAAGAAATCGAGGGTTCTTGCCATGAAGGCACAGTGATGACTGACCAACAAAATGATTAGACCTAAGTCTTTGTGAACAAGTCAATTCATTTGGATTGCTTACAAGAATA TGGAGAAGACATTATTTACAGCAGCTTGGATAATTCAAAGGTTGTTTCATCTTGAAAGACCTACTCTACCATAGATGACAACACATGAAGGTTGTGTGACTAGATTCCTGTCATGATCTTTGGGCAGG TGATTTGCTTGAAGACTATCTTCTTTCTCAAAGTTATACTGCATAGCACCTTGGGAAGAATCTATGTGAATATCTTAAGTTTCAGAAGCTTTCTAAATCTGTTGGTGTATTTCCTGAGCCTTACATAC CTCTTCTTCCTTCCAGAAATGGATGTTTTCATCAAGAGGAATTTGGTGCATGCATGCACGCGCATGTGTTCATGTGTGCACTATAGATGATAGATAGATAGGTAGGTAGGTAGGTAGGTAGATAGATA GATAGATAGATAGATAGATAGATAGATGATACATAGATAGATAGACAGATGATAGATAGATGATAGAGAACTAATACAACCAATAATAAGAAAGATGAAGTAAAAATGTTACTCTTTAGACTCATGCA GTATGAGATTTGTTCACACAAAGGTCATTATTAATAGAATTAGATACATACTAGTTCAATAGACCTACTTATAGCCTGCCTGTGTTTAAAAGTTATTGTGCTTACTGTCTTGGCTTGTTTTACTGTCA AATTGGTAGCCTACATTCATCTGAGAAGAAAGCCTCAAATGATAAATAGCCTAGATCAAACTGGCCTGCAGTCTTATCTGTGGGCATTTGTCTTAATTGTTAATTGATGTAGACAGGGGCCCATCCCA CTATGTGTGGTATCTTCTCTAGGTAGGGTACCTTGAACTGAATAAGAAAATGAGCCAAGTAAAATGATCTATAAGTTAACTAGAAAACAAAAAACAAAAAATAACTAAAACAAAAAATTCCCCAGTTT CTTTCATACATTTTTACTGTTATGTTAGATTCTTGATTCTTGATTGGATATTAATGTTGTGTCCAATGGTATGTAGGCCTGCCTTCAAGTTCCTGTGTTGGCCCTCTCTCTTCAATGATAGACTGTGA CCTTAGTTTTAAATAAAATACCCACTCTCATTTGATTTGGGTCCAAATATTTTATTACTTCAAAAAAATGAAACTAAAACACTTGACCTATGAATATCTGATAAAAAAATTAAGAAATGCAATTAAGG AGTGCCCCTCCTGCTCTACATCTTTCACAACATACATTATCACTTGAGATTTCCTCCTAGCCATTCTGATGGTTGTAATATGAAATCTCAGAGTGGTTTTGACTTATATTTCCCTGATGACTATAGAT ATAGAGCAATTCTTTAAGTGTTTCTGTCATTAAATATTCCAATGTTGAGAAGTCTCTGTTTAGCACTGTACCAATGTTTTTAATTAATTAATTTATTTTTTTACACACAGTATTTTATTCCCCTCCCC CGTCCACCCTCCAACTGTTTCACATCCCATACCTCCTCCCTAGCCCCCTGATCTCTAAACATCCTGGGGCCTCCAATCTCTTGAGAGTTAGGTGCATCATCTTTGAATGAACACAGACCTGTTGGTTC TCTACTGTTTGTGTGTTGGAGGCCTCATATCAGCTGGTATATGCTGCCGGTTTGGTGATGCAGTGTTTGAGAGATCTCAGGGGTCAAGAGTTATTGAGACTGCTGGTCTTCCTACAGGGTCCCCTTCT CCTCAGCTTCTTTCAGCTTTTCCCTAATTCAACCACAGGGAGCAGACGCTTCTGTGCATTGGTTGGATGCAAATATCTGCATCTAACTCTTTCAGCTGCTTGTTGGGTCTTCCGGAGTACTTTCATGC TAGGTCCCTTTTTGTGAGCATTCCACAGCCTCAGTAATAGTGTCAGGCCTTGGGACCTCCCCTTGAGCTGGATCCTACTTTGGGCCTGTCACTGGACCTTCTTTCTTCAGGCTCCTCTCCATTTCCAC CCCTGTAATTCTTTCAGACAGTCAAGAGTTGTGACTGTGGGATGGCCCTCCTTCTCCCTCATTTGATGCCCTGTCTTCCTGCTGGAGGTATGCTCTATAAGTTCCCTCTTCCTAATGTTAGGCATTTC ATCTAAGGTCCCTCCATATGAGTCCTGAGAGTCTCTCACCTCCAAGGTCTCTGGTGATTCTGGGCGCCCCCCACCCCCACCTCCAAAGGTTGCCTGTTTCCATTCCTTCTGCTGGCCCTCAGGGCTTC ATTGCTTTTCCCTCATCCAATTCCAGATCAGGTTACCCTCTCTCCCCCCACTTCCCTCCCCCAATGTCCACTTTCCCTCCCAGGTGCCTCCCTACCTCCCCACTTGTGATTGCTTTCTTCTCCCTCCC AAGTGGGACTGAGGCATCCTTATTTGAGCCCTTCAGGTTGTTGACTTTTTGAGTTCTGTGGACTGTATCTTGTGTATTCTGTACTTTTTGAGGGGCTAATATTAACTTATTAGTGAGTACATACCATG TGTGTCCTTTTGGGTCTGAGTTACTTCACTCAGGATATCTTCTAGTTCCACCCATTTGCCTGAAAAACTCAGGATGGCTTTGTTCTTAATAACTAAGTAGTATTCCATTGTGTAAACGAACCACATTT TCTGTATCCATTCTTCTGTCGTGGGACATCTAGGTTGTTTCCAGCTTCTGGCTATCACAAGTAAGGCCACTATGAGCATAGTGGAACATGTGCCCCTGTGGCATGGAGGGGCATCTTTTGCGTATATT CCCAAGAGTGGTATAGCTGGGTCTTCAGATAGATCTGTTTTCAATTTTCTGAGGAACCTCTAGATTGATTTCCAGAGTGGTTGTACCAGTTTGCAATCCTACCAGCAATGGAGGAGTGTTCCTCTTTA TCTACATCCTCTCCAACATGTGTTGTCACCTGAAGTTTTGATCTTAGCCATTCTGACTGGTGTAAGGTGGAATCCCAGGGTCATTTTGATTTGCATTTGTCTGATCACTAAGGACTTTGAACATTTCT TTAGGTGCCTCTCAACCATCTGTTGGGTTATTTGTAATGTTGGTGTTGAATTTCTTGAGTTCTTTATATATTTTGGATTATAGCGCTCTGAAAGATGTTGGGTTGGTGAGAATCTGTTCCCATTCTTT AGGCTGCTGTTTGATTCCAAGCAGCATAGGGTATGGAGCCTGAAGTGGATACCTCCTGTAGCCAGGCAAGGCTTTCAGTGGAGGGAGGGAGACACCAACATACCCAAAAAGCCTTTGCCTAAATTTCC CTTGCCTACAAGATGTGCAGTGACAAAGGTAGAGGAATTATTGAGAGAATGGACAACCAATGCCTCGCCCAAATTAAGATCCACATCATGAGAGACCCAACCCCTGACTATATTAATAATGCTCTGTT ATACTTTCTGACAGAAGCCTAGCACAACTGTCATTTGCAAGGCTTCATCCAGCAGCTGATAAAATCAGATACAGAAACCTGCACCCAAAAATTAGGCAGAGCTCAGGGAGTCTTGTGGAAGAGTCAGC GGAATGATTAAAGGAGCTGGAAGGTTCAAAGGTACCACAAGAAAACCTACAGAACCAACTAATTTGAGCCTATGGGAGCTCGCAAAGACTGAGCCACCACCCAAAAAGCATGCATGGACTGGACTTAG CCCCCCTATACATATGCAGTAGATAGACATCTTGTTCTTCATGTGGGTCCCCCAACAATTTGAACAGAGCTGTCTCTTACTCATACTCTGTTTCCTGCCTTTTGATCCCTTTCCCCTAGATGGACTGC CTTGTCTGCTCAAAGTTGGAGAGAATGCAGTTAATCCTCTTAATGCTTGATATGTTATGGCAGGTTGGTACTCAAGATCAGATGCTCACCTTGAAGGGGAGGGGAAATGGGAAAAGAGAGTGAGAGGG TGGGACTTGGAGTAGAGGAGGTAGGCAAATTGCATTCAAGATGCAAAATGAATAAAGAAGTAAATTAATGAAAAATGCAGTCATGAAATGATCTTAAGTTTGTCCCTTATGTACATTAAGCATAATCC CCATCCATTTGTCCTTTAATCATTGTCAATAAAAGCTTCTGAATAAAGCTGGGAGATTGAAAAATGCAGACCACCAAGACACTACTCATTTCTCCAGTTCTGATTCGCTCCTCTATCCGGGGTCTAAT CAGGCCTGTGTCTGCCTCCCTCCTGAGTAGACCAGAGGCCCCATCTAAACAGGCTTCCTTCAGAAGCTCCTCTCTCCAGGTGGCCAGATGGGAATCGCAGACCAGTGTCATTTCCTGGGACATAGACA CAGCAGCCAAGTTTATTGGTGCTGGGTCCGCCACAGTTGGTGTTGGGCCTGGCATTGGCACAGTGTTTGGTAGCTAGATAATTGGCTATGCTAGGAACCTATCTCTCAAGCAGCAGCTCTTCTCTTAT GCCATTCTGGGATTTGCCCTGTCTGAGGCCATGGGACTCTTCTGTTTGATGATCGCCTTCCTTATCCTCTTCGCCATGTGAGGCTCCATGGGGTCACTCAGCAACCTCTGCTGCTTTGACTCCATGCC AGTCCTGGTGCTGGAATGTACTGAGCTTTACCATTAAACAACAACAAC
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RefSeq Acc Id:
NP_031964 ⟸ NM_007938
- UniProtKB:
Q8CCN2 (UniProtKB/Swiss-Prot), Q62413 (UniProtKB/Swiss-Prot), B9EIV2 (UniProtKB/Swiss-Prot), G1K381 (UniProtKB/TrEMBL)
- Sequence:
MQFPSPPAARSSPAAQAASSPQAAAPAPGQPGPSCPAHRASRGGRPGTSPADRVEEEEEEEEEEESLVQDPHATRNTWLRCCHFFLRRRREPTRAMGGCEVREFLLQFGFFLPLLTAWTGDCSHVSNQ VVLLDTTTVMGELGWKTYPLNGWDAITEMDEHNRPIHTYQVCNVMEPNQNNWLRTNWISRDAAQKIYVEMKFTLRDCNSIPWVLGTCKETFNLYYIESDESHGTKFKPSQYIKIDTIAADESFTQMDL GDRILKLNTEIREVGPIERKGFYLAFQDIGACIALVSVRVFYKKCPFTVRNLAMFPDTIPRVDSSSLVEVRGSCVKSAEERDTPKLYCGADGDWLVPLGRCICSTGYEEIEGSCHACRPGFYKAFAGN TKCSKCPPHSSTYVEATSVCHCEKGYFRAEKDPPSMACTRPPSAPRNVAFNINETALILEWSPPSDTGGRKDLTYSVICKKCGLDTTQCEDCGGGLRFIPRHTGLINNSVVVLDFVSHVNYTFEIEAM NGVSELSISPKPFTAITVTTDHDAPSLIGMMRKDWASQNSLALSWQAPAFSNGAILDYEIKYYEKEHEQLTYSSTRSKAPSVIVTGLKPATTYIFHIRVRTATGYSGYSQKFEFETGDETSDMAAEQG QILVIATAAVGGFTLLVILTLFFLITGRCQWYIKAKMKSEEKRRTHLQNGHLRFPGIKTYIDPDTYEDPSLAVHEFAKEIDPSRIRIERVIGAGEFGEVCSGRLKTPGKREIPVAIKTLKGGHMDRQR RDFLREASIMGQFDHPNIIRLEGVVTKRSFPAIGVEAFCPSFLRAGFLNGIQAPHPVTAGGSLPPRIPAGRPVMIVVEYMENGSLDSFLRKHDGHFTVIQLVGMLRGIASGMKYLSDMGYVHRDLAAR NILVNSNLVCKVSDFGLSRVLEDDPEAAYTTTGGKIPIRWTAPEAIAYRKFSSASDAWSYGIVMWEVMSYGERPYWEMSNQDVILSIEEGYRLPAPMGCPPSLHQLMLHCWQKERNHRPKFTDIVSFL DKLIRNPSALHTLVEDILVMPESPGDVPEYPLFVTVGDWLDSIKMGQYKSNFMAAGFTTFDLISRMSIDDIRRIGVILIGHQRRIVSSIQTLRLHMMHIQEKGFHV
hide sequence
RefSeq Acc Id:
XP_006521850 ⟸ XM_006521787
- Peptide Label:
isoform X1
- UniProtKB:
Q8CCN2 (UniProtKB/Swiss-Prot), Q62413 (UniProtKB/Swiss-Prot), B9EIV2 (UniProtKB/Swiss-Prot)
- Sequence:
MDEHNRPIHTYQVCNVMEPNQNNWLRTNWISRDAAQKIYVEMKFTLRDCNSIPWVLGTCKETFNLYYIESDESHGTKFKPSQYIKIDTIAADESFTQMDLGDRILKLNTEIREVGPIERKGFYLAFQD IGACIALVSVRVFYKKCPFTVRNLAMFPDTIPRVDSSSLVEVRGSCVKSAEERDTPKLYCGADGDWLVPLGRCICSTGYEEIEGSCHACRPGFYKAFAGNTKCSKCPPHSSTYVEATSVCHCEKGYFR AEKDPPSMACTRPPSAPRNVAFNINETALILEWSPPSDTGGRKDLTYSVICKKCGLDTTQCEDCGGGLRFIPRHTGLINNSVVVLDFVSHVNYTFEIEAMNGVSELSISPKPFTAITVTTDHDAPSLI GMMRKDWASQNSLALSWQAPAFSNGAILDYEIKYYEKEHEQLTYSSTRSKAPSVIVTGLKPATTYIFHIRVRTATGYSGYSQKFEFETGDETSDMAAEQGQILVIATAAVGGFTLLVILTLFFLITGR CQWYIKAKMKSEEKRRTHLQNGHLRFPGIKTYIDPDTYEDPSLAVHEFAKEIDPSRIRIERVIGAGEFGEVCSGRLKTPGKREIPVAIKTLKGGHMDRQRRDFLREASIMGQFDHPNIIRLEGVVTKR SFPAIGVEAFCPSFLRAGFLNGIQAPHPVTAGGSLPPRIPAGRPVMIVVEYMENGSLDSFLRKHDGHFTVIQLVGMLRGIASGMKYLSDMGYVHRDLAARNILVNSNLVCKVSDFGLSRVLEDDPEAA YTTTGGKIPIRWTAPEAIAYRKFSSASDAWSYGIVMWEVMSYGERPYWEMSNQDVILSIEEGYRLPAPMGCPPSLHQLMLHCWQKERNHRPKFTDIVSFLDKLIRNPSALHTLVEDILVMPESPGDVP EYPLFVTVGDWLDSIKMGQYKSNFMAAGFTTFDLISRMSIDDIRRIGVILIGHQRRIVSSIQTLRLHMMHIQEKGFHV
hide sequence
RefSeq Acc Id:
XP_011244128 ⟸ XM_011245826
- Peptide Label:
isoform X2
- Sequence:
MQFPSPPAARSSPAAQAASSPQAAAPAPGQPGPSCPAHRASRGGRPGTSPADRVEEEEEEEEEEESLVQDPHATRNTWLRCCHFFLRRRREPTRAMGGCEVREFLLQFGFFLPLLTAWTGDCSHVSNQ VVLLDTTTVMGELGWKTYPLNGWDAITEMDEHNRPIHTYQVCNVMEPNQNNWLRTNWISRDAAQKIYVEMKFTLRDCNSIPWVLGTCKETFNLYYIESDESHGTKFKPSQYIKIDTIAADESFTQMDL GDRILKLNTEIREVGPIERKGFYLAFQDIGACIALVSVRVFYKKCPFTVRNLAMFPDTIPRVDSSSLVEVRGSCVKSAEERDTPKLYCGADGDWLVPLGRCICSTGYEEIEGSCHEGTVMTDQQND
hide sequence
Ensembl Acc Id:
ENSMUSP00000066734 ⟸ ENSMUST00000068860
RGD ID: 13674202
Promoter ID: EPDNEW_M21250
Type: single initiation site
Name: Epha6_1
Description: Mus musculus Eph receptor A6 , mRNA.
SO ACC ID: SO:0000170
Source: EPDNEW (Eukaryotic Promoter Database, http://epd.vital-it.ch/ )
Alternative Promoters: null; see alsoEPDNEW_M21251
Experiment Methods: Single-end sequencing.
Position: Mouse Assembly Chr Position (strand) Source GRCm38 16 60,475,361 - 60,475,421 EPDNEW
RGD ID: 13674204
Promoter ID: EPDNEW_M21251
Type: initiation region
Name: Epha6_2
Description: Mus musculus Eph receptor A6 , mRNA.
SO ACC ID: SO:0000170
Source: EPDNEW (Eukaryotic Promoter Database, http://epd.vital-it.ch/ )
Alternative Promoters: null; see alsoEPDNEW_M21250
Experiment Methods: Single-end sequencing.
Position: Mouse Assembly Chr Position (strand) Source GRCm38 16 60,605,554 - 60,605,614 EPDNEW