Symbol:
Kcnh7
Name:
potassium voltage-gated channel subfamily H member 7
RGD ID:
621112
Description:
Enables inward rectifier potassium channel activity. Involved in circadian rhythm and potassium ion transport. Predicted to be located in membrane. Predicted to be part of monoatomic ion channel complex. Predicted to be active in plasma membrane. Orthologous to human KCNH7 (potassium voltage-gated channel subfamily H member 7); INTERACTS WITH 17alpha-ethynylestradiol; 2,3,7,8-Tetrachlorodibenzofuran; 6-propyl-2-thiouracil.
Type:
protein-coding
RefSeq Status:
PROVISIONAL
Previously known as:
eag-related protein 3; ERG-3; erg3; ether-a-go-go-related gene potassium channel 3; ether-a-go-go-related protein 3; potassium channel erg3; potassium channel, voltage gated eag related subfamily H, member 7; potassium voltage-gated channel, subfamily H (eag-related), member 7; voltage-gated inwardly rectifying potassium channel KCNH7; voltage-gated potassium channel subunit Kv11.3
RGD Orthologs
Alliance Orthologs
More Info
more info ...
More Info
Species
Gene symbol and name
Data Source
Assertion derived from
less info ...
Orthologs 1
Homo sapiens (human):
KCNH7 (potassium voltage-gated channel subfamily H member 7)
HGNC
EggNOG, Ensembl, HomoloGene, Inparanoid, NCBI, OMA, OrthoDB, OrthoMCL, Panther, PhylomeDB, Treefam
Mus musculus (house mouse):
Kcnh7 (potassium voltage-gated channel, subfamily H (eag-related), member 7)
Transitive Ortholog Pipeline
Transitive Ortholog Pipeline
Chinchilla lanigera (long-tailed chinchilla):
Kcnh7 (potassium voltage-gated channel subfamily H member 7)
Transitive Ortholog Pipeline
Transitive Ortholog Pipeline
Pan paniscus (bonobo/pygmy chimpanzee):
KCNH7 (potassium voltage-gated channel subfamily H member 7)
Transitive Ortholog Pipeline
Transitive Ortholog Pipeline
Canis lupus familiaris (dog):
KCNH7 (potassium voltage-gated channel subfamily H member 7)
Transitive Ortholog Pipeline
Transitive Ortholog Pipeline
Ictidomys tridecemlineatus (thirteen-lined ground squirrel):
Kcnh7 (potassium voltage-gated channel subfamily H member 7)
Transitive Ortholog Pipeline
Transitive Ortholog Pipeline
Sus scrofa (pig):
KCNH7 (potassium voltage-gated channel subfamily H member 7)
Transitive Ortholog Pipeline
Transitive Ortholog Pipeline
Chlorocebus sabaeus (green monkey):
KCNH7 (potassium voltage-gated channel subfamily H member 7)
Transitive Ortholog Pipeline
Transitive Ortholog Pipeline
Heterocephalus glaber (naked mole-rat):
Kcnh7 (potassium voltage-gated channel subfamily H member 7)
Transitive Ortholog Pipeline
Transitive Ortholog Pipeline
Alliance orthologs 3
Homo sapiens (human):
KCNH7 (potassium voltage-gated channel subfamily H member 7)
Alliance
DIOPT (Ensembl Compara|HGNC|Hieranoid|InParanoid|OMA|OrthoFinder|OrthoInspector|PANTHER|PhylomeDB|SonicParanoid)
Mus musculus (house mouse):
Kcnh7 (potassium voltage-gated channel, subfamily H (eag-related), member 7)
Alliance
DIOPT (Ensembl Compara|Hieranoid|InParanoid|OMA|OrthoFinder|OrthoInspector|PANTHER|PhylomeDB|SonicParanoid)
Danio rerio (zebrafish):
kcnh7 (potassium channel, voltage gated eag related subfamily H, member 7)
Alliance
DIOPT (Ensembl Compara|Hieranoid|InParanoid|OMA|OrthoFinder|OrthoInspector|PANTHER|PhylomeDB|SonicParanoid)
Drosophila melanogaster (fruit fly):
sei
Alliance
DIOPT (Ensembl Compara|Hieranoid|InParanoid|OrthoFinder|OrthoInspector|PANTHER|PhylomeDB|SonicParanoid)
Caenorhabditis elegans (roundworm):
unc-103
Alliance
DIOPT (Ensembl Compara|InParanoid|OrthoFinder|OrthoInspector|PANTHER|PhylomeDB|SonicParanoid)
Xenopus tropicalis (tropical clawed frog):
kcnh7
Alliance
DIOPT (Ensembl Compara|Hieranoid|InParanoid|OMA|OrthoFinder|OrthoInspector|PANTHER|PhylomeDB|SonicParanoid)
Allele / Splice:
Kcnh7Tn(sb-T2/Bart3)2.295Mcwi
Genetic Models:
F344-Kcnh7Tn(sb-T2/Bart3)2.295Mcwi
Latest Assembly:
GRCr8 - GRCr8 Assembly
Position:
Rat Assembly Chr Position (strand) Source Genome Browsers JBrowse NCBI UCSC Ensembl GRCr8 3 67,737,900 - 68,230,950 (-) NCBI GRCr8 mRatBN7.2 3 47,329,338 - 47,822,122 (-) NCBI mRatBN7.2 mRatBN7.2 mRatBN7.2 Ensembl 3 47,338,501 - 47,822,195 (-) Ensembl mRatBN7.2 Ensembl UTH_Rnor_SHR_Utx 3 50,693,240 - 51,172,491 (-) NCBI Rnor_SHR UTH_Rnor_SHR_Utx UTH_Rnor_SHRSP_BbbUtx_1.0 3 59,276,771 - 59,756,022 (-) NCBI Rnor_SHRSP UTH_Rnor_SHRSP_BbbUtx_1.0 UTH_Rnor_WKY_Bbb_1.0 3 57,049,903 - 57,529,711 (-) NCBI Rnor_WKY UTH_Rnor_WKY_Bbb_1.0 Rnor_6.0 3 48,662,450 - 49,168,716 (-) NCBI Rnor6.0 Rnor_6.0 rn6 Rnor6.0 Rnor_6.0 Ensembl 3 48,671,079 - 48,831,467 (-) Ensembl Rnor6.0 rn6 Rnor6.0 Rnor_5.0 3 55,325,680 - 55,822,973 (-) NCBI Rnor5.0 Rnor_5.0 rn5 Rnor5.0 RGSC_v3.4 3 44,657,361 - 45,153,509 (-) NCBI RGSC3.4 RGSC_v3.4 rn4 RGSC3.4 RGSC_v3.1 3 44,553,732 - 45,049,881 (-) NCBI Celera 3 46,979,379 - 47,455,872 (-) NCBI Celera Cytogenetic Map 3 q21 NCBI
JBrowse:
View Region in Genome Browser (JBrowse)
Model
1.
Phylogenetic-based propagation of functional annotations within the Gene Ontology consortium.
Gaudet P, etal., Brief Bioinform. 2011 Sep;12(5):449-62. doi: 10.1093/bib/bbr042. Epub 2011 Aug 27.
2.
Fast erg K+ currents in rat embryonic serotonergic neurones.
Hirdes W, etal., J Physiol. 2005 Apr 1;564(Pt 1):33-49. Epub 2005 Jan 27.
3.
Rat liver carboxylesterase: cDNA cloning, sequencing, and evidence for a multigene family.
Long RM, etal., Biochem Biophys Res Commun 1988 Oct 31;156(2):866-73.
4.
Rat ISS GO annotations from MGI mouse gene data--August 2006
MGD data from the GO Consortium
5.
Circadian changes of ether-a-go-go-related-gene (Erg) potassium channel transcripts in the rat pancreas and beta-cell.
Muhlbauer E, etal., Cell Mol Life Sci. 2007 Mar;64(6):768-80.
6.
Electronic Transfer of LocusLink and RefSeq Data
NCBI rat LocusLink and RefSeq merged data July 26, 2002
7.
Molecular and functional characterization of ERG, KCNQ, and KCNE subtypes in rat stomach smooth muscle.
Ohya S, etal., Am J Physiol Gastrointest Liver Physiol 2002 Feb;282(2):G277-87.
8.
GOA pipeline
RGD automated data pipeline
9.
ClinVar Automated Import and Annotation Pipeline
RGD automated import pipeline for ClinVar variants, variant-to-disease annotations and gene-to-disease annotations
10.
Data Import for Chemical-Gene Interactions
RGD automated import pipeline for gene-chemical interactions
11.
Identification of two nervous system-specific members of the erg potassium channel gene family.
Shi W, etal., J Neurosci 1997 Dec 15;17(24):9423-32.
12.
Erg1, erg2 and erg3 K channel subunits are able to form heteromultimers.
Wimmers S, etal., Pflugers Arch. 2001 Jan;441(4):450-5.
Kcnh7 (Rattus norvegicus - Norway rat)
Rat Assembly Chr Position (strand) Source Genome Browsers JBrowse NCBI UCSC Ensembl GRCr8 3 67,737,900 - 68,230,950 (-) NCBI GRCr8 mRatBN7.2 3 47,329,338 - 47,822,122 (-) NCBI mRatBN7.2 mRatBN7.2 mRatBN7.2 Ensembl 3 47,338,501 - 47,822,195 (-) Ensembl mRatBN7.2 Ensembl UTH_Rnor_SHR_Utx 3 50,693,240 - 51,172,491 (-) NCBI Rnor_SHR UTH_Rnor_SHR_Utx UTH_Rnor_SHRSP_BbbUtx_1.0 3 59,276,771 - 59,756,022 (-) NCBI Rnor_SHRSP UTH_Rnor_SHRSP_BbbUtx_1.0 UTH_Rnor_WKY_Bbb_1.0 3 57,049,903 - 57,529,711 (-) NCBI Rnor_WKY UTH_Rnor_WKY_Bbb_1.0 Rnor_6.0 3 48,662,450 - 49,168,716 (-) NCBI Rnor6.0 Rnor_6.0 rn6 Rnor6.0 Rnor_6.0 Ensembl 3 48,671,079 - 48,831,467 (-) Ensembl Rnor6.0 rn6 Rnor6.0 Rnor_5.0 3 55,325,680 - 55,822,973 (-) NCBI Rnor5.0 Rnor_5.0 rn5 Rnor5.0 RGSC_v3.4 3 44,657,361 - 45,153,509 (-) NCBI RGSC3.4 RGSC_v3.4 rn4 RGSC3.4 RGSC_v3.1 3 44,553,732 - 45,049,881 (-) NCBI Celera 3 46,979,379 - 47,455,872 (-) NCBI Celera Cytogenetic Map 3 q21 NCBI
KCNH7 (Homo sapiens - human)
Human Assembly Chr Position (strand) Source Genome Browsers JBrowse NCBI UCSC Ensembl GRCh38 2 162,371,407 - 162,838,767 (-) NCBI GRCh38 GRCh38 hg38 GRCh38 GRCh38.p14 Ensembl 2 162,371,407 - 162,838,767 (-) Ensembl GRCh38 hg38 GRCh38 GRCh37 2 163,227,917 - 163,695,277 (-) NCBI GRCh37 GRCh37 hg19 GRCh37 Build 36 2 162,936,163 - 163,403,486 (-) NCBI NCBI36 Build 36 hg18 NCBI36 Build 34 2 163,105,265 - 163,520,747 NCBI Celera 2 156,838,249 - 157,305,494 (-) NCBI Celera Cytogenetic Map 2 q24.2 NCBI HuRef 2 155,110,219 - 155,577,951 (-) NCBI HuRef CHM1_1 2 163,233,802 - 163,700,825 (-) NCBI CHM1_1 T2T-CHM13v2.0 2 162,828,067 - 163,295,631 (-) NCBI T2T-CHM13v2.0
Kcnh7 (Mus musculus - house mouse)
Mouse Assembly Chr Position (strand) Source Genome Browsers JBrowse NCBI UCSC Ensembl GRCm39 2 62,524,428 - 63,014,980 (-) NCBI GRCm39 GRCm39 mm39 GRCm39 Ensembl 2 62,523,758 - 63,014,631 (-) Ensembl GRCm39 Ensembl GRCm38 2 62,693,410 - 63,184,287 (-) NCBI GRCm38 GRCm38 mm10 GRCm38 GRCm38.p6 Ensembl 2 62,693,414 - 63,184,287 (-) Ensembl GRCm38 mm10 GRCm38 MGSCv37 2 62,541,003 - 63,022,344 (-) NCBI GRCm37 MGSCv37 mm9 NCBIm37 MGSCv36 2 62,503,787 - 62,990,422 (-) NCBI MGSCv36 mm8 Celera 2 64,395,436 - 64,884,597 (-) NCBI Celera Cytogenetic Map 2 C1.3 NCBI cM Map 2 36.5 NCBI
Kcnh7 (Chinchilla lanigera - long-tailed chinchilla)
Chinchilla Assembly Chr Position (strand) Source Genome Browsers JBrowse NCBI UCSC Ensembl ChiLan1.0 Ensembl NW_004955449 11,052,777 - 11,491,379 (+) Ensembl ChiLan1.0 ChiLan1.0 NW_004955449 11,052,767 - 11,495,193 (+) NCBI ChiLan1.0 ChiLan1.0
KCNH7 (Pan paniscus - bonobo/pygmy chimpanzee)
Bonobo Assembly Chr Position (strand) Source Genome Browsers JBrowse NCBI UCSC Ensembl NHGRI_mPanPan1-v2 13 65,057,056 - 65,538,641 (-) NCBI NHGRI_mPanPan1-v2 NHGRI_mPanPan1 2B 65,072,031 - 65,553,616 (-) NCBI NHGRI_mPanPan1 Mhudiblu_PPA_v0 2B 49,657,021 - 50,140,216 (-) NCBI Mhudiblu_PPA_v0 Mhudiblu_PPA_v0 panPan3 PanPan1.1 2B 167,033,119 - 167,507,053 (-) NCBI panpan1.1 PanPan1.1 panPan2 PanPan1.1 Ensembl 2B 167,033,119 - 167,506,691 (-) Ensembl panpan1.1 panPan2
KCNH7 (Canis lupus familiaris - dog)
Dog Assembly Chr Position (strand) Source Genome Browsers JBrowse NCBI UCSC Ensembl CanFam3.1 36 7,781,323 - 8,260,893 (-) NCBI CanFam3.1 CanFam3.1 canFam3 CanFam3.1 CanFam3.1 Ensembl 36 7,649,727 - 8,261,048 (-) Ensembl CanFam3.1 canFam3 CanFam3.1 Dog10K_Boxer_Tasha 36 7,924,497 - 8,405,370 (-) NCBI Dog10K_Boxer_Tasha ROS_Cfam_1.0 36 7,912,971 - 8,393,200 (-) NCBI ROS_Cfam_1.0 ROS_Cfam_1.0 Ensembl 36 7,921,442 - 8,393,196 (-) Ensembl ROS_Cfam_1.0 Ensembl UMICH_Zoey_3.1 36 7,931,129 - 8,410,170 (-) NCBI UMICH_Zoey_3.1 UNSW_CanFamBas_1.0 36 7,972,137 - 8,444,518 (-) NCBI UNSW_CanFamBas_1.0 UU_Cfam_GSD_1.0 36 8,079,838 - 8,559,344 (-) NCBI UU_Cfam_GSD_1.0
Kcnh7 (Ictidomys tridecemlineatus - thirteen-lined ground squirrel)
Squirrel Assembly Chr Position (strand) Source Genome Browsers JBrowse NCBI UCSC Ensembl HiC_Itri_2 NW_024405303 124,933,273 - 125,395,993 (-) NCBI HiC_Itri_2 SpeTri2.0 Ensembl NW_004936469 16,222,005 - 16,691,596 (+) Ensembl SpeTri2.0 SpeTri2.0 Ensembl SpeTri2.0 NW_004936469 16,221,750 - 16,674,526 (+) NCBI SpeTri2.0 SpeTri2.0 SpeTri2.0
KCNH7 (Sus scrofa - pig)
Pig Assembly Chr Position (strand) Source Genome Browsers JBrowse NCBI UCSC Ensembl Sscrofa11.1 Ensembl 15 69,059,870 - 69,555,049 (-) Ensembl Sscrofa11.1 susScr11 Sscrofa11.1 Sscrofa11.1 15 69,053,456 - 69,555,144 (-) NCBI Sscrofa11.1 Sscrofa11.1 susScr11 Sscrofa11.1 Sscrofa10.2 15 76,700,311 - 77,198,048 (-) NCBI Sscrofa10.2 Sscrofa10.2 susScr3
KCNH7 (Chlorocebus sabaeus - green monkey)
Green Monkey Assembly Chr Position (strand) Source Genome Browsers JBrowse NCBI UCSC Ensembl ChlSab1.1 10 47,786,795 - 48,248,348 (-) NCBI ChlSab1.1 ChlSab1.1 chlSab2 ChlSab1.1 Ensembl 10 47,785,318 - 47,950,144 (-) Ensembl ChlSab1.1 ChlSab1.1 Ensembl chlSab2 Vero_WHO_p1.0 NW_023666040 151,280,149 - 151,747,051 (+) NCBI Vero_WHO_p1.0 Vero_WHO_p1.0
Kcnh7 (Heterocephalus glaber - naked mole-rat)
.
Predicted Target Of
Count of predictions: 148 Count of miRNA genes: 115 Interacting mature miRNAs: 127 Transcripts: ENSRNOT00000009920 Prediction methods: Microtar, Miranda, Rnahybrid, Targetscan Result types: miRGate_prediction
2298542 Neuinf11 Neuroinflammation QTL 11 3.9 nervous system integrity trait (VT:0010566) spinal cord complement component 1, q subcomponent, B chain mRNA level (CMO:0002126) 3 15005422 76927699 Rat 1358362 Srcrt2 Stress Responsive Cort QTL 2 2.78 blood corticosterone amount (VT:0005345) plasma corticosterone level (CMO:0001173) 3 38192233 133483320 Rat 737818 Hcar12 Hepatocarcinoma resistance QTL 12 2.6 liver integrity trait (VT:0010547) volume of individual liver tumorous lesion (CMO:0001078) 3 29463235 118376539 Rat 9590286 Uminl1 Urine mineral level QTL 1 3.5 0.001 urine mineral amount (VT:0015086) urine electrolyte level (CMO:0000593) 3 28249687 73249687 Rat 10450816 Scl75 Serum cholesterol level QTL 75 4.4 0.001 blood LDL cholesterol amount (VT:0000181) blood low density lipoprotein cholesterol level (CMO:0000053) 3 38192233 50749747 Rat 2313093 Bmd77 Bone mineral density QTL 77 2.2 0.0001 tibia mineral mass (VT:1000283) compact volumetric bone mineral density (CMO:0001730) 3 27494621 50302886 Rat 1581503 Cm58 Cardiac mass QTL 58 2.7 0.05 heart left ventricle mass (VT:0007031) heart left ventricle weight to body weight ratio (CMO:0000530) 3 43827364 121056321 Rat 2292613 Ept16 Estrogen-induced pituitary tumorigenesis QTL 16 8.3 pituitary gland mass (VT:0010496) pituitary gland wet weight (CMO:0000853) 3 47233430 110362260 Rat 61356 Bp37 Blood pressure QTL 37 3 blood pressure trait (VT:0000183) systolic blood pressure (CMO:0000004) 3 30684642 75684642 Rat 1358905 Hrtrt17 Heart rate QTL 17 5.9 0.000014 heart pumping trait (VT:2000009) heart rate (CMO:0000002) 3 10861912 89878372 Rat 70191 BpQTLcluster4 Blood pressure QTL cluster 4 3 arterial blood pressure trait (VT:2000000) absolute change in systolic blood pressure (CMO:0000607) 3 10778704 50302886 Rat 2313101 Bmd76 Bone mineral density QTL 76 3.6 0.0001 tibia mineral mass (VT:1000283) total volumetric bone mineral density (CMO:0001728) 3 27494621 50302886 Rat 8694196 Abfw2 Abdominal fat weight QTL 2 16.58 0.001 visceral adipose mass (VT:0010063) abdominal fat pad weight to body weight ratio (CMO:0000095) 3 28249687 73249687 Rat 2301971 Cm71 Cardiac mass QTL 71 4.63 heart left ventricle mass (VT:0007031) heart left ventricle weight (CMO:0000776) 3 41874578 155617519 Rat 1358885 Bp251 Blood pressure QTL 251 3.8 arterial blood pressure trait (VT:2000000) mean arterial blood pressure (CMO:0000009) 3 14489145 121056321 Rat 2301970 Bw81 Body weight QTL 81 5.19 body mass (VT:0001259) body weight (CMO:0000012) 3 41874578 155617519 Rat 2290452 Scl56 Serum cholesterol level QTL 56 2.26 blood cholesterol amount (VT:0000180) plasma total cholesterol level (CMO:0000585) 3 1 91609953 Rat 12879868 Am6 Aortic mass QTL 6 0.001 aorta mass (VT:0002845) aorta weight to aorta length to body weight ratio (CMO:0002722) 3 31426403 70668733 Rat 11565451 Bw177 Body weight QTL 177 0.002 body mass (VT:0001259) body weight (CMO:0000012) 3 31426403 70668733 Rat 10450852 Stl33 Serum triglyceride level QTL 33 3.4 0.05 blood LDL triglyceride amount (VT:0010699) blood lipoprotein triglyceride level (CMO:0002685) 3 38192233 50749747 Rat 1358888 Bp264 Blood pressure QTL 264 4.43 arterial blood pressure trait (VT:2000000) mean arterial blood pressure (CMO:0000009) 3 14489145 121056321 Rat 11565452 Kidm57 Kidney mass QTL 57 0.001 kidney mass (VT:0002707) both kidneys wet weight to body weight ratio (CMO:0000340) 3 31426403 70668733 Rat 4889975 Bmd81 Bone mineral density QTL 81 4.3 tibia mineral mass (VT:1000283) total volumetric bone mineral density (CMO:0001728) 3 38710365 50302886 Rat 12879866 Cm94 Cardiac mass QTL 94 0.001 heart left ventricle mass (VT:0007031) heart left ventricle weight to body weight ratio (CMO:0000530) 3 31426403 70668733 Rat 12879867 Cm95 Cardiac mass QTL 95 0.047 heart right ventricle mass (VT:0007033) heart right ventricle weight to body weight ratio (CMO:0000914) 3 31426403 70668733 Rat 1300178 Hrtrt4 Heart rate QTL 4 3.74 heart pumping trait (VT:2000009) heart rate (CMO:0000002) 3 43827364 90905114 Rat 2302055 Pia30 Pristane induced arthritis QTL 30 3.5 0.001 blood autoantibody amount (VT:0003725) serum immunoglobulin M-type rheumatoid factor level relative to an arbitrary reference serum (CMO:0002111) 3 27936919 72936919 Rat 634317 Bw117 Body weight QTL 117 3.58 abdominal fat pad mass (VT:1000711) abdominal fat pad weight to body weight ratio (CMO:0000095) 3 39454637 53296578 Rat 1331795 Rf30 Renal function QTL 30 3.708 urine potassium amount (VT:0010539) urine potassium level (CMO:0000128) 3 39454637 89115240 Rat 70216 Cm14 Cardiac mass QTL 14 2.1 heart mass (VT:0007028) heart wet weight (CMO:0000069) 3 31172320 163586636 Rat 1354589 Bw31 Body weight QTL 31 3.3 body mass (VT:0001259) body weight (CMO:0000012) 3 33703347 78196190 Rat 2303593 Gluco46 Glucose level QTL 46 3 blood glucose amount (VT:0000188) blood glucose level (CMO:0000046) 3 28468571 73468571 Rat 1354590 Despr11 Despair related QTL 11 0.000031 locomotor behavior trait (VT:0001392) amount of experiment time spent in a discrete space in an experimental apparatus (CMO:0000958) 3 28468571 73468571 Rat 2292591 Esta4 Estrogen-induced thymic atrophy QTL 4 thymus mass (VT:0004954) thymus wet weight (CMO:0000855) 3 47233211 147415807 Rat 2313079 Bss73 Bone structure and strength QTL 73 1.5 tibia size trait (VT:0100001) tibia midshaft cross-sectional area (CMO:0001717) 3 27494621 50302886 Rat 1331777 Bw24 Body weight QTL 24 3.503 body mass (VT:0001259) body weight (CMO:0000012) 3 39454637 89115240 Rat 631647 Bp122 Blood pressure QTL 122 6.2 arterial blood pressure trait (VT:2000000) systolic blood pressure (CMO:0000004) 3 30684642 75684642 Rat 2313076 Bss74 Bone structure and strength QTL 74 2 0.0001 tibia strength trait (VT:1000284) tibia total energy absorbed before break (CMO:0001736) 3 27494621 50302886 Rat 1300169 Bp177 Blood pressure QTL 177 2.96 arterial blood pressure trait (VT:2000000) blood pressure time series experimental set point of the baroreceptor response (CMO:0002593) 3 33703347 61017857 Rat 10450813 Scl74 Serum cholesterol level QTL 74 5.8 0.001 blood LDL cholesterol amount (VT:0000181) blood low density lipoprotein cholesterol level (CMO:0000053) 3 38192233 50749747 Rat 1559282 Emca5 Estrogen-induced mammary cancer QTL 5 3.9 mammary gland integrity trait (VT:0010552) percentage of study population developing mammary tumors during a period of time (CMO:0000948) 3 43827364 169034231 Rat 2302276 Bw82 Body weight QTL 82 4.32 body mass (VT:0001259) body weight (CMO:0000012) 3 39454637 62951183 Rat 738019 Anxrr10 Anxiety related response QTL 10 3.9 exploratory behavior trait (VT:0010471) number of entries into a discrete space in an experimental apparatus (CMO:0000960) 3 38517803 83517803 Rat 9590136 Scort3 Serum corticosterone level QTL 3 23.37 0.001 blood corticosterone amount (VT:0005345) plasma corticosterone level (CMO:0001173) 3 28249687 73249687 Rat 10450804 Scl70 Serum cholesterol level QTL 70 4.7 0.001 blood LDL cholesterol amount (VT:0000181) blood low density lipoprotein cholesterol level (CMO:0000053) 3 20714090 65714090 Rat 61419 Cia11 Collagen induced arthritis QTL 11 5.6 joint integrity trait (VT:0010548) joint inflammation composite score (CMO:0000919) 3 30356773 98535386 Rat 1354597 Kidm13 Kidney mass QTL 13 2.9 kidney mass (VT:0002707) right kidney wet weight (CMO:0000082) 3 41874578 104104347 Rat 8552950 Pigfal12 Plasma insulin-like growth factor 1 level QTL 12 7.3 blood insulin-like growth factor amount (VT:0010479) plasma insulin-like growth factor 1 level (CMO:0001299) 3 28249687 73249687 Rat 631676 Cm8 Cardiac mass QTL 8 7.03 0.0001 aorta mass (VT:0002845) aorta weight (CMO:0000076) 3 16954708 61954708 Rat 10450794 Scl69 Serum cholesterol level QTL 69 6.3 0.001 blood LDL cholesterol amount (VT:0000181) blood low density lipoprotein cholesterol level (CMO:0000053) 3 20714090 65714090 Rat 8694386 Bw159 Body weight QTL 159 4.52 0.001 body lean mass (VT:0010483) lean tissue morphological measurement (CMO:0002184) 3 28249687 73249687 Rat 1354604 Bw36 Body weight QTL 36 2.9 body mass (VT:0001259) body weight (CMO:0000012) 3 33703347 104104347 Rat 2313049 Bss72 Bone structure and strength QTL 72 2.6 0.0001 tibia area (VT:1000281) tibia midshaft cross-sectional area (CMO:0001717) 3 27494621 50302886 Rat 2301400 Cm68 Cardiac mass QTL 68 0.001 heart mass (VT:0007028) heart wet weight to body weight ratio (CMO:0002408) 3 31426403 70668733 Rat 1358186 Ept2 Estrogen-induced pituitary tumorigenesis QTL 2 8.3 pituitary gland mass (VT:0010496) pituitary gland wet weight (CMO:0000853) 3 47233430 110362260 Rat
D3Got33
Rat Assembly Chr Position (strand) Source JBrowse mRatBN7.2 3 47,769,862 - 47,770,067 (+) MAPPER mRatBN7.2 Rnor_6.0 3 49,115,270 - 49,115,474 NCBI Rnor6.0 Rnor_5.0 3 55,769,295 - 55,769,499 UniSTS Rnor5.0 RGSC_v3.4 3 45,100,293 - 45,100,498 RGD RGSC3.4 RGSC_v3.4 3 45,100,294 - 45,100,498 UniSTS RGSC3.4 RGSC_v3.1 3 44,996,666 - 44,996,870 RGD Celera 3 47,403,621 - 47,403,821 UniSTS RH 3.4 Map 3 603.83 UniSTS RH 3.4 Map 3 603.83 RGD RH 2.0 Map 3 380.1 RGD Cytogenetic Map 3 q21 UniSTS
D3Got307
Rat Assembly Chr Position (strand) Source JBrowse mRatBN7.2 3 47,364,366 - 47,364,545 (+) MAPPER mRatBN7.2 Rnor_6.0 3 48,697,897 - 48,698,075 NCBI Rnor6.0 Rnor_5.0 3 55,361,074 - 55,361,252 UniSTS Rnor5.0 Celera 3 47,005,192 - 47,005,368 UniSTS Cytogenetic Map 3 q21 UniSTS
AU047731
Rat Assembly Chr Position (strand) Source JBrowse GRCr8 3 68,066,386 - 68,066,624 (+) Marker Load Pipeline mRatBN7.2 3 47,657,829 - 47,658,067 (+) MAPPER mRatBN7.2 Rnor_6.0 3 49,003,513 - 49,003,750 NCBI Rnor6.0 Rnor_5.0 3 55,657,751 - 55,657,988 UniSTS Rnor5.0 RGSC_v3.4 3 44,978,788 - 44,979,025 UniSTS RGSC3.4 Celera 3 47,297,713 - 47,297,934 UniSTS Cytogenetic Map 3 q21 UniSTS
This gene Kcnh7 is modified in the following models/strains:
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
6
3
24
108
39
38
17
12
17
6
102
51
93
25
44
21
Too many to show, limit is 500. Download them if you would like to view them all.
Ensembl Acc Id:
ENSRNOT00000009920 ⟹ ENSRNOP00000009920
Type:
CODING
Position:
Rat Assembly Chr Position (strand) Source mRatBN7.2 Ensembl 3 47,338,501 - 47,497,311 (-) Ensembl Rnor_6.0 Ensembl 3 48,671,241 - 48,831,417 (-) Ensembl
Ensembl Acc Id:
ENSRNOT00000085246 ⟹ ENSRNOP00000072574
Type:
CODING
Position:
Rat Assembly Chr Position (strand) Source mRatBN7.2 Ensembl 3 47,338,501 - 47,497,311 (-) Ensembl Rnor_6.0 Ensembl 3 48,671,079 - 48,831,467 (-) Ensembl
Ensembl Acc Id:
ENSRNOT00000095298 ⟹ ENSRNOP00000078806
Type:
CODING
Position:
Rat Assembly Chr Position (strand) Source mRatBN7.2 Ensembl 3 47,338,501 - 47,497,866 (-) Ensembl
Ensembl Acc Id:
ENSRNOT00000112058 ⟹ ENSRNOP00000078922
Type:
CODING
Position:
Rat Assembly Chr Position (strand) Source mRatBN7.2 Ensembl 3 47,338,501 - 47,822,195 (-) Ensembl
Ensembl Acc Id:
ENSRNOT00000119314 ⟹ ENSRNOP00000078968
Type:
CODING
Position:
Rat Assembly Chr Position (strand) Source mRatBN7.2 Ensembl 3 47,425,115 - 47,822,195 (-) Ensembl
RefSeq Acc Id:
NM_131912 ⟹ NP_571987
RefSeq Status:
PROVISIONAL
Type:
CODING
Position:
Rat Assembly Chr Position (strand) Source GRCr8 3 67,747,063 - 68,230,671 (-) NCBI mRatBN7.2 3 47,338,501 - 47,822,122 (-) NCBI Rnor_6.0 3 48,671,241 - 49,168,639 (-) NCBI Rnor_5.0 3 55,325,680 - 55,822,973 (-) NCBI RGSC_v3.4 3 44,657,361 - 45,153,509 (-) RGD Celera 3 46,979,379 - 47,455,872 (-) RGD
Sequence:
GATGGATTGGACTTCGGCGGGGAACGCGGGTGTCTCGAAGTGGTGCTAATGGAAAGAGATTTCTGCTCCCCAAAGAAGATGCGCTGCCACAAAGAGCGGCTTGCGCGCCGGCCTGGGCTCTAGCCCGG GAGACATCCCGGGAGAACTCCGAGCTCGGAGCGCTCGGCGAAGACCCGGGCAACATGCCTGTTCGCAGGGGGCATGTGGCACCGCAAAACACCTTCCTGGGGACCATCATACGGAAATTTGAAGGGCA GAATAAAAAATTTATCATTGCAAATGCCAGAGTGCAGAACTGTGCCATCATCTACTGCAATGATGGCTTCTGTGAGATGACAGGTTTCTCCAGGCCAGATGTCATGCAGAAGCCATGCACCTGCGACT TTCTCCATGGGCCTGAGACCAAGAGGCATGATATTGCCCAGATTGCCCAGGCGCTGTTGGGGTCAGAGGAGAGGAAAGTGGAGGTCACCTACTATCACAAGAATGGTTCCACTTTTATTTGTAACACT CACATAATCCCAGTAAAGAACCAAGAGGGTGTGGCTATGATGTTCATCATTAACTTTGAGTATGTGACAGATGAAGACAATGCTGCCTCCCCAGAGAGAGTCAACCCAATATTGCCAGTCAAATCTGT AAATCGGAAACTTTTTGGGTTCAAATTTCCTGGTCTGAGAGTTCTAACATACAGAAAGCAGTCCTTGCCGCAGGAAGACCCGGACGTGGTAGTCATTGATTCTTCTAAGCACAGCGATGACTCTGTGG CTATGAAGCACTTTAAGTCTCCCACGAAAGAAAGCTGCAGTCCCTCTGAAGCAGATGATACGAAGGCCTTGATACAGCCTAGCCAGTGTTCTCCCTTAGTGAACATATCAGGACCTCTGGACCATTCC TCTCCCAAAAGGCAATGGGACCGCCTCTACCCTGACATGCTGCAGTCAAGTTCCCAACTAACACACTCCAGGTCAAGGGAGAGCCTCTGTAGCATACGGAGAGCATCTTCAGTTCATGATATAGAAGG GTTCAATGTCCACCCCAAGAACATATTTAGAGATCGACATGCCAGTGAAGACAATGGTCGAAATGTCAAAGGACCTTTCAATCATATCAAGTCAAGCCTGTTGGGATCCACATCAGATTCAAACCTCA ACAAATACAGCACCATTAACAAGATCCCGCAACTCACTCTGAACTTTTCAGATGTCAAAACTGAGAAAAAGAATACTTCCCCGCCTTCTTCAGACAAAACTATTATTGCACCCAAGGTTAAAGAGAGG ACACACAACGTGACAGAGAAGGTAACTCAGGTTCTTTCTTTGGGAGCAGATGTCTTGCCAGAATACAAGCTGCAGACGCCACGCATCAACAAATTTACAATATTGCACTACAGCCCTTTCAAAGCAGT GTGGGATTGGCTCATTTTACTCCTGGTCATTTATACTGCTATATTCACCCCCTACTCGGCAGCCTTTCTCCTCAACGACAGAGAGGAGCAGAAAAGACGAGAATGTGGCTATTCTTGTAGCCCTTTGA ATGTGGTAGACTTGATTGTGGATATTATGTTTATTATAGACATCCTAATAAACTTCAGAACAACCTATGTAAATCAGAACGAAGAAGTGGTAAGTGATCCTGCCAAAATAGCAGTACACTACTTCAAA GGCTGGTTCCTGATTGACATGGTCGCAGCCATCCCTTTTGACTTGCTGATTTTCGGATCAGGCTCTGATGAGACAACAACACTAATTGGTCTTTTGAAGACTGCACGTCTCCTGCGTCTTGTGCGTGT AGCCAGGAAACTGGACCGATACTCAGAATATGGTGCCGCTGTTCTAATGCTCTTGATGTGCATATTTGCCCTGATTGCCCACTGGCTGGCTTGCATCTGGTATGCGATTGGGAATGTAGAGAGGCCCT ATCTGACTGACAAAATTGGATGGTTGGATTCCTTAGGAACACAAATTGGGAAACGTTACAATGACAGTGACTCGAGTTCTGGACCGTCCATTAAAGACAAATACGTCACGGCACTTTACTTTACCTTC AGCAGTCTAACCAGTGTAGGATTTGGAAATGTGTCTCCTAACACCAATTCGGAGAAAATCTTTTCCATTTGTGTCATGTTGATTGGCTCTCTAATGTATGCGAGCATTTTTGGGAATGTTTCTGCAAT TATTCAAAGACTGTACTCGGGAACTGCCAGGTACCACATGCAGATGCTGAGAGTGAAAGAGTTCATTCGCTTCCACCAAATCCCCAACCCTCTGAGGCAACGGCTTGAGGAGTATTTCCAGCACGCAT GGACGTACACTAACGGCATTGACATGAACATGGTCTTAAAGGGATTTCCGGAATGTTTACAAGCTGACATTTGCCTGCATCTAAACCAGACTTTGCTCCAAAACTGCAAAGCCTTTCGAGGAGCAAGT AAAGGTTGCCTCAGAGCTCTGGCAATGAAGTTCAAAACCACCCATGCCCCTCCAGGAGACACCCTGGTTCACTGTGGGGACGTCCTAACTGCACTGTACTTCTTATCCAGAGGCTCCATTGAAATCCT CAAGGATGACATAGTGGTAGCTATTCTAGGAAAAAATGATATCTTTGGAGAAATGGTTCATCTTTACGCCAAGCCTGGCAAATCTAATGCAGATGTGAGAGCGCTCACGTATTGTGACCTGCATAAGA TTCAGCGAGAAGACTTATTAGAGGTCTTGGATATGTATCCGGAATTTTCTGATCACTTTCTGACAAATCTAGAACTGACTTTCAACCTGAGACACGAAAGTGCAAAGTCCCAATCCATAAATGATTCT GAAGGGGACACCTGTAAGCTTCGAAGAAGGAGATTGTCCTTTGAAAGCGAAGGCGACAAAGATTTTAGCAAAGAAAACAGTGCAAATGACGCTGACGATTCCACAGATACAATAAGACGTTATCAGAG TTCCAAGAAGCACTTCGAAGAGAAGAAAAGCAGATCGTCTTCCTTTATCTCCTCCATCGATGATGAGCAAAAGCCACTCTTCCTGGGAACAGTAGATTCCACTCCAAGAATGGTGAAAGCAAGCAGGC ACCATGGTGAAGAAGCAGCGCCCCCCTCAGGAAGAATTCACACAGATAAAAGGAGTCACTCCTGCAAAGATATCACTGACACACACAGCTGGGAAAGAGAGCATGCCCGGGCTCAGCCTGAAGAATGC AGTCCCTCCGGACTTCAGAGAGCTGCCTGGGGCATCTCTGAGACCGAAAGCGACCTCACCTATGGGGAAGTGGAGCAGAGGTTAGATTTGCTTCAAGAGCAACTTAACAGACTTGAATCCCAAATGAC AACGGACATCCAGGCCATCTTACAGCTCCTGCAGAAACAAACCACCGTAGTCCCTCCAGCCTACAGCATGGTGACCGCAGGAGCAGAGTACCAGAGGCCCATCCTCCGTCTGCTGAGAACCAGTCACC CTAGAGCATCCATTAAGACAGACCGGAGCTTCAGCCCCTCCTCACAATGTCCTGAATTTCTCGACCTTGAAAAGTCCAAACTCAAATCCAAAGAATCACTGTCAAGCGGAAAGCGCCTGAACACGGCT TCAGAAGACAACTTGACTTCACTTTTAAAACAAGACAGTGATGCATCGTCAGAGCTTGACCCGCGGCAAAGAAAATCTTACCTTCATCCCATCCGGCATCCGTCTCTGCCAGACTCCTCCCTAAGCAC TGTAGGGATCTTGGGTCTCCATAGGCATGTTTCTGATCCTGGTCTTCCGGGAAAGTAATTGTTTTGTACTATTTCTCCACATCCAATGTAAGTGC
hide sequence
RefSeq Acc Id:
XM_006234269 ⟹ XP_006234331
Type:
CODING
Position:
Rat Assembly Chr Position (strand) Source GRCr8 3 67,737,900 - 68,230,950 (-) NCBI mRatBN7.2 3 47,329,338 - 47,821,992 (-) NCBI Rnor_6.0 3 48,662,450 - 49,168,716 (-) NCBI Rnor_5.0 3 55,325,680 - 55,822,973 (-) NCBI
Sequence:
CCGCCTCCTCCCCTCCCCGCCCCCAAGCCTCTCACTCGACGCAGGCCGGTGCGAGGCCCCCTCCGGAAGGTGAGCGGGATGGATTGGACTTCGGCGGGGAACGCGGGTGTCTCGAAGTGGTGCTAATG GAAAGAGATTTCTGCTCCCCAAAGAAGATGCGCTGCCACAAAGAGCGGCTTGCGCGCCGGCCTGGGCTCTAGCCCGGGAGACATCCCGGGAGAACTCCGAGCTCGGAGCGCTCGGCGAAGACCCGGGC AACATGCCTGTTCGCAGGGGGCATGTGGCACCGCAAAACACCTTCCTGGGGACCATCATACGGAAATTTGAAGGGCAGAATAAAAAATTTATCATTGCAAATGCCAGAGTACAGAACTGTGCCATCAT CTACTGCAATGATGGCTTCTGTGAGATGACAGGTTTCTCCAGGCCAGATGTCATGCAGAAGCCATGCACCTGCGACTTTCTCCATGGGCCTGAGACCAAGAGGCATGATATTGCCCAGATTGCCCAGG CGCTGTTGGGGTCAGAGGAGAGGAAAGTGGAGGTCACCTACTATCACAAGAATGGTTCCACTTTTATTTGTAACACTCACATAATCCCAGTAAAGAACCAAGAGGGTGTGGCTATGATGTTCATCATT AACTTTGAGTATGTGACAGATGAAGACAATGCTGCCTCCCCAGAGAGAGTCAACCCAATATTGCCAGTCAAATCTGTAAATCGGAAACTTTTTGGGTTCAAATTTCCTGGTCTGAGAGTTCTAACATA CAGAAAGCAGTCCTTGCCGCAGGAAGACCCGGACGTGGTAGTCATTGATTCTTCTAAGCACAGCGATGACTCTGTGGCTATGAAGCACTTTAAGTCTCCCACGAAAGAAAGCTGCAGTCCCTCTGAAG CAGATGATACGAAGGCCTTGATACAGCCTAGCCAGTGTTCTCCCTTAGTGAACATATCAGGACCTCTGGACCATTCCTCTCCCAAAAGGCAATGGGACCGCCTCTACCCTGACATGCTGCAGTCAAGT TCCCAACTAACACACTCCAGGTCAAGGGAGAGCCTCTGTAGCATACGGAGAGCATCTTCAGTTCATGATATAGAAGGGTTCAATGTCCACCCCAAGAACATATTTAGAGATCGACATGCCAGTGAAGA CAATGGTCGAAATGTCAAAGTTTCACGTTCCTGGATGGCAGGGGGACCTTTCAATCATATCAAGTCAAGCCTGTTGGGATCCACATCAGATTCAAACCTCAACAAATACAGCACCATTAACAAGATCC CGCAACTCACTCTGAACTTTTCAGATGTCAAAACTGAGAAAAAGAATACTTCCCCGCCTTCTTCAGACAAAACTATTATTGCACCCAAGGTTAAAGAGAGGACACACAACGTGACAGAGAAGGTAACT CAGGTTCTTTCTTTGGGAGCAGATGTCTTGCCAGAATATAAGCTGCAGACGCCACGCATCAACAAATTTACAATATTGCACTACAGCCCTTTCAAAGCAGTGTGGGATTGGCTCATTTTACTCCTGGT CATTTATACTGCTATATTCACCCCCTACTCTGCAGCCTTTCTCCTCAACGACAGAGAGGAGCAGAAAAGACGAGAATGTGGCTATTCTTGTAGCCCTTTGAATGTGGTAGACTTGATTGTGGATATTA TGTTTATTATAGACATCCTAATAAACTTCAGAACAACCTATGTAAATCAGAACGAAGAAGTGGTAAGTGATCCTGCCAAAATAGCAGTACACTACTTCAAAGGCTGGTTCCTGATTGACATGGTCGCA GCCATCCCTTTTGACTTGCTGATTTTCGGATCAGGCTCTGATGAGACAACAACACTAATTGGTCTTTTGAAGACTGCACGTCTCCTGCGTCTTGTGCGTGTAGCCAGGAAACTGGACCGATACTCAGA ATATGGTGCCGCTGTTCTAATGCTCTTGATGTGCATATTTGCCCTGATTGCCCACTGGCTGGCTTGCATCTGGTATGCGATTGGGAATGTAGAGAGGCCCTATCTGACTGACAAAATTGGATGGTTGG ATTCCTTAGGAACACAAATTGGGAAACGTTACAATGACAGTGACTCGAGTTCTGGACCGTCCATTAAAGACAAATACGTCACGGCACTTTACTTTACCTTCAGCAGTCTAACCAGTGTAGGATTTGGA AATGTGTCTCCTAACACCAATTCGGAGAAAATCTTTTCCATTTGTGTCATGTTGATTGGCTCTCTAATGTATGCGAGCATTTTTGGGAATGTTTCTGCAATTATTCAAAGACTGTACTCGGGAACTGC CAGGTACCACATGCAGATGCTGAGAGTGAAAGAGTTCATTCGCTTCCACCAAATCCCCAACCCTCTGAGGCAACGGCTTGAGGAGTATTTCCAGCACGCATGGACGTACACTAACGGCATTGACATGA ACATGGTCTTAAAGGGATTTCCGGAATGTTTACAAGCTGACATTTGCCTGCATCTAAACCAGACTTTGCTCCAAAACTGCAAAGCCTTTCGAGGAGCAAGTAAAGGTTGCCTCAGAGCTCTGGCAATG AAGTTCAAAACCACCCATGCCCCTCCAGGAGACACCCTGGTTCACTGTGGGGACGTCCTAACTGCACTGTACTTCTTATCCAGAGGCTCCATTGAAATCCTCAAGGATGACATAGTGGTAGCTATTCT AGGAAAAAATGATATCTTTGGAGAAATGGTTCATCTTTACGCCAAGCCTGGCAAATCTAATGCAGATGTGAGAGCGCTCACGTATTGTGACCTGCATAAGATTCAGCGAGAAGACTTATTAGAGGTCT TGGATATGTATCCGGAATTTTCTGATCACTTTCTGACAAATCTAGAACTGACTTTCAACCTGAGACACGAAAGTGCAAAGTCCCAATCCATAAATGATTCTGAAGGGGACACCTGTAAGCTTCGAAGA AGGAGATTGTCCTTTGAAAGCGAAGGCGACAAAGATTTTAGCAAAGAAAACAGTGCAAATGACGCTGACGATTCCACAGATACAATAAGACGTTATCAGAGTTCCAAGAAGCACTTCGAAGAGAAGAA AAGCAGATCGTCTTCCTTTATCTCCTCCATCGATGATGAGCAAAAGCCGCTCTTCCTGGGAACAGTAGATTCCACTCCAAGAATGGTGAAAGCAAGCAGGCACCATGGTGAAGAAGCAGCGCCCCCCT CAGGAAGAATTCACACAGATAAAAGGAGTCACTCCTGCAAAGATATCACTGACACACACAGCTGGGAAAGAGAGCATGCCCGGGCTCAGCCTGAAGAATGCAGTCCCTCCGGACTTCAGAGAGCTGCC TGGGGCATCTCTGAGACCGAAAGCGACCTCACCTATGGGGAAGTGGAGCAGAGGTTAGATTTGCTTCAAGAGCAACTTAACAGACTTGAATCCCAAATGACAACGGACATCCAGGCCATCTTACAGCT CCTGCAGAAACAAACCACCGTAGTCCCTCCAGCCTACAGCATGGTGACCGCAGGAGCAGAGTACCAGAGGCCCATCCTCCGTCTGCTGAGAACCAGTCACCCTAGAGCATCCATTAAGACAGACCGGA GCTTCAGCCCCTCCTCACAATGTCCTGAATTTCTCGACCTTGAAAAGTCCAAACTCAAATCCAAAGAATCACTGTCAAGCGGAAAGCGCCTGAACACAGCTTCAGAAGACAACTTGACTTCACTTTTA AAACAAGACAGTGATGCATCGTCAGAGCTTGACCCGCGGCAAAGAAAATCTTACCTTCATCCCATCCGGCATCCGTCTCTGCCAGACTCCTCCCTAAGCACTGTAGGGATCTTGGGTCTCCATAGGCA TGTTTCTGATCCTGGTCTTCCAGGAAAGTAATTGTTTTGTACTATTTCTCCACATCCAATGTAAGTGCTTTTAATGGCTGTTTTCCCTTTTTGTATTTAAATCCTCTCTACTTGACTCAGGGGCTCAC AAGGTACCATTATATGCAAAAGTACTGTATATTTTTCCTAAATTGAAGCTTGTAAGGTAAAGTTGAGCAGTTAGGATGTATATAGACATAAGAGCTTTTGGGTTCCAAACGTTAAAACTGCCAGCATC CCAAGGCACCTTGTTTTTTGAATTTTATTTTTCAAATCATGTGCATGTTAGGGAGCTCCAGTTTCTCTTGCATGGAGACTCCTATTGACCGCTTTTCCTGATCAGTGCTTCATTATGAAAATGCCTTC CAAGCAAATAAGAAACCGAGGAATGAAAGAGTGCATGAGTACAACTCAGATGACCCTCAACTCATGAAAGGTCAGGGGGAATAAAGAGAGGTTAGTCCCTTTGCAGAACAGACATCCTTCTGTACTGA CATATTTAGAGTTAGTTACTTTCATTTCCTTTGATAATAAAACAAAAAAGATGCAAAGTGTGAGTTGTATACAGCAGTCAGAAAAGGAGCAAAATCCCAAAATACCAAAAGATATAGTACTTCCTTGG TAGACTTTTACAGGCACGGGTACATGAAAGACAGATAGAAATGGGTTTAGTAAACTTCAGGACACATGAAGAAAATCCATATGAGGTTGTAACAGGAACCCGGCCCTGGTTTCATGTCCTTAGAAGAC CTTTGAAAAGAGCTACTCATTTTGGCGAGATGACAGCACAAAGCTTCCAAAGGTGAGGAAACCGTGGGAAGCAGTTGCCTGCAGCCTCTGGGCCAGTGAGCAGTCTGTCAGTAAGGAGGATCTAAACC CTGCTTTTAGGCAGGCCAGTGGGAGGAGAACAGAAAGATCTCGTGTGAATTTGGGTCCTACTTTTAGACAAATCGAGGAGGCACAGTGCTCCCCCAAGCTTGTCTTCAGCTAAATCATCATGAATATA GGATATCGGTGAGAGAGTAACATGGTCTCTCTAGTAAATTCTGCAGTAGCTGCTTTCACAGACTACCTAAAATATTTACAGTCGTACATTTTTTTCTGAGGGCTTAAAGGGAAAATTATTTTGTGTGT TGGCCGCGGTCCTTAACCTGTCACTTACACAAAGGACATTCACAATTTCTTCATAATTTATATGCAATAACAATCTCGCATTTGATTAAATGGTAGGCACCCCCTTTTTTAATGTGCAATTTTCAGAG TATTTATGTTAACTAAACTCTTTAATTAAGAGTGGGTTGCTTCCTTGCTTTATTACCCCAGCTGTGGCAAATGGTGTTCATTGACCCACCTAGACAATTCTTAAATTACTTAAAAATTAAGTGAGAAA TCCATTATATATAATTTAGGCTGATTTATACATTGTTTCCAAATCAAAGAATGTATAAAGAACATAGTAAAAGAATGTATTCTAACATTTAATTATGTTATATACTGGAGATCGAGATGTCATTTGGA CCATAAAATCAACAGAGGAAAATTATAATTTACAACTCTTATTCAGACTCCAGTTAAACTTTATTTTGAACTCAATTATAATTTTAAAATTTTCAGACACTAATCTATTGTGTTCTTTTCTCCCGGAC AAACACTCAGAAATCTTTTGAAGTGTTCTTAGTCTTTCTACTAATTCTTACGCTCCCACAGACCTTTAGATAGTATTTTATCTGTGCATTATTAAATGGTTGAATTTCCCTTCACTTTGTCAATGAAC ACCTTGACGCTAACCTGTCGATCCACTTCGATGCAAGCAGTCTATTAAATGTGTGCAATAATACCACTGTATTAAGATGTGGTTATAAAGTGGTCTTAAATTGTTCTCTCCATATTTTTGAGCAGTCA CAGAATTTGCTAGTCTGACCTGGGTGGGAGGAGATTAGTTCGTAGAGAATGTTCTTCTTCTCACTTAATTTAAGAAAGTAATCACAGGCAGTTGCATATTTGCAGCTTCAAATGATTCGTCAACAGCT ACAGGAAATTAGAATGGGCTTCCCCAATTGTTTGATACGCTACAGATACAAACATAGACTAAAAGCCACTTTCAATCATTCGTTCAACAGACATTTGAATGAGGCGACACATACAAGAGAGAGGGTCC TTTAAGTAGCGAACAGTTCAGATGTGGATATAGGGATCCTATTTCCATGTCAGGGCAGATTTCTGCAGCTGCAACAAATTTCCTAAGGACTATTCCGTCTCAGCTCTGTGAGCATTCAGAATAAATTC ATGAGCCCTTGCTCATTTGTAAGGAGAGGGGATTTGGCAGGTGAGGAACAGAGGTCTAATTGTTTGATTAGTGGATATGTTCGTGGCAATATTTGGTATGATGCACATACAATTCATCCCGTTGAGAG TCTCGGTTTAATACTTCTTTATAGGAACTGGGCACGCAGGGAAGAAGGAAAGGTGATGGGGCCGTATACAAGCATCCATCTGATCTAAATTCTAGCACAACACAAACCCATGTCCTTCTTAATCCTTC GACATACAGTGAATTGTTTGCTGTTTAAATTGCAAGTCTCAGGGGACTGTGTAGGAAGATAAGCGGATCTTTTTCTTTTTCTATAGAATATTAATTTTAAAAGAGCCCCCAAGCAACATCAAGATATA CGTAGTCATAAATGTCAGATGAAAGACGGTTTAACTGACTTCTGGGTAATAAAAGCAATTATCTTGATTGCAATATGCACCCCCGAAATAGCTTGAAAATAGCATTGCCCTACCTATCATCTATAGCA CAAACAATCTGTCACCTCCACTTTGGAGTCTTGCCCAAGGCCAGGTCTAACTGGAGGCACCAGGCAAACCTCAATGTAGTGATTGCTTTCCTTGGAGAGAATTAGAAATATTAATGTAACACCTTTTG CTCTTAACCCAAAATTAGCGTCTGGTCCCATGTCCTTAAAGTTTATTTGGATGAGATGTTCTCCTGCTGCTGTTAATTGCAGGACAGAGAATTGCCTCTAAGACTCATCATTCTAACCCAGAGGGGAG CCCCATACTTTAATTAGCTGATGAGAAAACTAGGAATAAAAAAATACAGCATTGATGTTTTTAATATAATAGTCACTAATTCGACAAACCAGGGAAAGCAGGGAGCCAATTTGAGGCAGTGTAAATTT CAAGTTTATTACAATGGACTGGCCGTGAGAGTTAAGTTTTATAGTCTTGTAATCAAGGGAAGGGGAGTACTGACATTGGGAATCAGGTGTGATATGTCCATTTTAAAACTCAAGAGTGTGTGGACTTG AACTTGTACAATGGCTCCAAAACGCCTAGGAGAAAGCATTTGTTTCTGCACATCATCTTCAAATCCTAACTTACTCATCAAAGCTAAGGATAAAATGTATCGCCTCTCCGGTTCATACAAAAGACTAA TTAATAGTAAGTAATATTATTTTAGAGTCAGAAAAAAAACAGTTCAGTAACCAGGTATTAGAAATGAACTATAACTCTGGCCATAATTTAAGGGACTCAATATTGTTTATTCATGGATGAAACAAAAC TAGAAGACATGGTCTTGAAATGCTAATGAGCTTTTTATTTAATGTTAGAACATTTTAGGTCAGAAAATTCGATTGTCGTTTCATTTGTAACCACATTTTTGCAGTAACAAAAACATGCGAATCCTGGT CATTCAGAGAGGCTATGGGCAGACAGGTTGCTGTACAGTGTCCTCAAACTGTGGTCCTGAAGTTAGCAATGCTCACATCATCCAAGAAGTTAGAAACAAATGGTTCTGGGTCTCATCCCAGATCTATT AAGTCAGAAAGATGAAGGCTGGACCCCAGCACTGATTCTTCAGTGAGTAACTCTACACAGGATCTGCACGCACACTAAAACACAGAGGTCCATAGTGTACAGCCTGCCGTCGGGCCAACTGGATCCTA ACAGTAACTGTTTTATTCACATGCGGTATGACCGTGAGTGAATTACCCACTTTAAGTTTCTCCCTGATTCTGTAAAAATGAGATTATAGTCTGTGCCTCACTGAAGTTTGAAAAGAAACAAAATCAAG TTAAAAGTGCCTGGTACAAACTATGTGCTCTAAGGAAAAAAAAATTCTGTAATCCACTTCAACTCCTTGACCATGGCATTAAAAACAATTAAGAAGACAATTTTCTTTTGCACAAGTGCTAAGTAACT ATGTCCTTGTTTCCATGACTAAAGCTTTTGACTCAGAAAGACTTAACTGTAGCTACAAGCTTCCCTTAATGTTGTGCCATTCACACCACAGCTTTAAAGTAATAATATTGACAGTAATGGTAATGAGA TATGACTGTCACTGTTTAAAAAAAAAAAAAGCAAGCACACTTGCTCTAAATTGATTTTAAATTCTGCTGGGTGACCTGTCCAACTCAAAGCTACTAGAGTATATTCTATATATGGAGTGCACTGTACA TCGTCTCCTCCGATGTGATTTAGTTCCCAGACGGACATTCGAAACCATTTACAAAATTCAACTCTGACAGTAAACAGTTACTGTTTTTACAGATACTAGAGCTTCACGGTGGTAATGGCACTTTCAGG CCCCCAGATCCTTTCCCTCGTTGCACAAATACAGTCTATAGATCTTAAACACCCAAGTTCTTGTGTGGAATGCTGGAAATGACAAAAAAAAAATGTTTGCTGTGGTCAACCTGAAATCAAATCCTCCT TTTCCCGCTTATGACTGAGGAAAAACCTAAAGTGAACCCTGGGATTCAAAATAGTGTAAAGAGAATGATTTCTGAAACATAGAGTGTACCATAGAGTGAGCCAGGCATTGTGTGGAGACGCAAGTTCA TCCTGTGACATGCGCATTCAGAGTGGTGCTCAGGCTGTGGCACAGTAGCGCTGATCACTGTGTGGTTGATTACCCTGAGAAAACATCGCCACCATTCTGTCCTCCAACTAACTCGCCACACGGACACT CGGTGTGTAATAGAACTCTACAAAGTGGTTTTCATGCACCTGTCAAAGATGGGGTTGCTAAAAAGAGACAGTGTTTGTGTTGGGGCCACCTCTTCTGTGTTATCTCCCACATATTTCGTCAACATATG TAGACCGCCACATCCGCACTACAAATGCTGTTTAGATTTGAGATAGGTTACTCGTCGTCTCCCTGATTCCCTGAATGATCTCATTCAGAGCTGTTTGCTTGGGATCTTTAAAGGATATTAACATTTTT AATACTAAAAGGATATTTTCAGTGCTTTATAAAACACTAGGTATCGCGACTGATCAGGGCCCGTGCTTAGAATGTCATTAAGGCCTTCTGTGGTTAAAAAAAAAAAAGTGTTTTATTTTAATGTCCAG TACTGAAGAAGAAAATTCACAGAAGACATGACTTGGCATATGACTGCAGGAAAAGAAACTATCACAAAGATGATTTTCCTATTACATGGAAGTTGAGAAATGACTAATCGGAGTTATTTTAAACTACC ATGTTATTACTATATGAGAATTAAACATTCATGAAAATGGAATGTATAAAAAACTAGATTCAGTTGACCACATACTAGACGATTGGACTTTTAAACATACCCAGCAAGAACGATGGCAGTCGTGCCCC CCAGTTAAATGCTTCTGTTTATGAGAAGTAGCAGTGGGAACATGGTCATTCTTTTATAATTAATGCCAAAACTTAGGTTAATTCTAAACCATACTCCTGTCATCTGCGGCTTCCGTAAGTTAACATAT TGTGGAAGGTTTGAAATAACTTGGTGCACCTGTGACTTCAAAGCTTTACCTTCACACTGTGGACGTCCTCTGGTATATCATGATGGGACGGACGTAAAAGCTCATGATTGTAAATAGCCACAGTGGTG AGCATTTTACTTGCACCAGTTTTCATTTTAATTTATACTCCGAGTGCATAAAAATATCCACACCTTATCCCTTATCACTAATTAGGTGGGAAAAACCGAAGGATTGGTAAAGTTATGATGAGCTCTTC CCACATTCTCCTCAAATGCTCACAGAGCTACGACAACAATGGAATGAATGATGCGGTGTCCCTACTTTACCATGAGGCTCCTACTGATGTGAACGAAAGGCACATGACCTCTCTATAGCTGCAATTTT CATTTTATAATTCTGATGAGAAGATATATTATCCCAGAAGGCTTGCCAGTCAATGAATAATGTATTTCAGAAAAGAATGTGTGTGATCACTTGAAAAATGTCAGTCATCGGATGTAAGGAAGCTCACT CACATGCTGTTACATAAAACTCTGGAATGCTTTAAACTAAACGAAACAATCAACCAAAACACACACTACTTCGTACTCTTTATGCACATAATGTAGCATGGAATCATGACGCTTTCGAAATATTCTGT GCAGAAATATTTATTTTTTAGCCAATATTTTCCTCAAAGATTGGTATGTGGTGTTGACAGTGTAATCTATTTGCACAGCTAGTTTTGCAATAACCTTCTACAAATAACTGTACATAAGAAAAAATGTA AATTTCATGTAAAAATGGTTGTGAATTTTTGGTAGCTGAAAGAAGTATACAAGTTGTATTGAAAATATAGTATATATATACATATATATATATATACCTAACTTAAGAATGAGACATATAATTTCTGA TCTATTTATACATGAAAAATTCAAGAATTTGTAAAAGAATTTATTTTGGAGGAAAAAAAAGGAAGTAAATCGTATTAGCTAGCTAGTGTACTTTTAATAAAGTATCCAACAAGATCCACCATTTTATT AAGTACAGTAGTAGACACACGATAGGCATGGTGGTGCTGATCACTTTGAAATTCCCATCATTCTAACAGTGCTACAGTTTTACTGAGTTCCAGTAGACCGCTAGCAAGCTGCGCTAAGCTATTAAGAA AAAAAAAAGCATTAAATCTGAGTCTAAAGAAACTAAAAATTTTACTCATCGCCCCATTAGAACCATGGCAGTAAATGACCGAAATATTTATTGTTCGCTAAGTTCTGCTGAGGGATAAATGGCCTTTA ATGTATAGTAGCTCATTTATAACGAAAGCTTGGCTATCTTTTCATTCAAGAATGGGACCGCGGAACTATTATTTCCTCTTGCTTAAGTTCCAAACAGCTTAATTTCTCCCCTAGCTGGTTTCATGTCA TTTAAGAAAATTCACACTATCTTTCGAAGAAACTTTTAAACACAACTTGTAGGCTCTGGCACGGCGCCTAGGCGCGGCATTGGCTGTCTGCGTAGCGGCATAGACTCCCCATGCTCCGTTTTACAGAT GTAAGAAGCCAAGAGCATATCTTCCCTTGTGGCAAACGTAACTGATACAGATAATAAAGCAAATCACATTGCCGCCTGTAAGCGAAATGGATTGTGAAATCAGAACCAAAGTACAAAGGCAAAATACC TGGCACTATTCCATAACGTAATTACCTCGTATCCTAAGACATACTTGAGGGTCCTGCATTTACACAAGGGTGGGGATTTAAATATGCATGAGAAAGTCCAGTAAATCCTAAAGTTGTTTTCAAACGGC CTTTCGTTTCCAAAATAACTTGAGTATTTAATTAGTCTATTTCTAGAGCAGTGACATCCACACTGCTCAAGTCATCTTTTGAAATTTCAGTAATCATAGAAAAATAAGAAAAATAAGCGAGACAGACA ATTAAATCGAAATGGTTATGCATGTATCTATCTACTTAAATGTTTGTACTTAGAGAAAAGGTTAAACTTCAACCCCAGTATATCGGCATTGGAAACCCGTCATTCCCGATTCACAATCTTCCCAATTA GCTATTAAATGACACTATAACTTCTAGATGTTAATGAAGGAGCACACCCGATAACGAGACCACCACATGGGCGAAAACCCTGTGCGTTTTCTGACTGCGGTGTATGGTAATGAGATAGATGTGCTCTT ACCATACGTCCAGACTGAGAGAAGCAAGCCTGTGCTTTCATATATGAGCTATGTATTGTGGACAAAAGGAATGATTAGAACCTATGCTCTCTTCCTTATGAGATGGGGAAATCGTGCTTAAAAGTAAG TAGAAGGAACTGCAACAAGGAGGATCCAAAGCACAGGTTTCCTAGCATTCAAATGAGAGATAGGTCTTGAGTCACAAAGGCGTCCAGATTTCTCCAAGTGTTTTTGCTAGAAAGTTTTCTTCTGTGTT CTAAATTAGAAGGAAATTTCAGTTTAATATCTGGAGAGATGTCCTGAAACAATGAGACTTGTATCCATTTAAAATACTGTCTGCATTCACCACCTCAAGACATTCTAAGCATTTGCATTTGTACCTTC CAATAGTGTGGATGTACTCTGCAGACATAGCTTAGATGATTCCTGAGCCTTAGGCATTCACTTGAGGAAGCTTAACTCACTACATAAACGATTTCACTAAAACAAACAAGAGCTTTCCTAGCAAGTAC CAAAGTGCTAGGAGAGCCGTGGTTGTGCGTTCCCTGTTAAGCAAAGGATGTAACTGAAAGCAGTCTCGGGATCTCAGCACGTGGGTTCAATTTACAAACTTTTCAAAACATATTCCTTTCAAATTTAC AGAATGTTGTTAATGGAACAAGACAAAACATATCCACTTTAGTTTATCAAAAATAAAAGAACATTTAAAAATAAGCACATTTCTCACAAATAGTATTTATTTTGGTTGTTCAATTAGTAATATCATAA GGTTACAAGTGAACATGATTTGTATATTTTAATTAAAGAAATACCACAAATTGATTTTTGTTATTTTTTTAATTGCACAGAGTTTAAACTACCTTGATAAATTCTACTTTCTTCCAGGCTAAAGGCCT TTTCTGGAAATAAATATATAACTTGAA
hide sequence
RefSeq Acc Id:
XM_017591438 ⟹ XP_017446927
Type:
CODING
Position:
Rat Assembly Chr Position (strand) Source GRCr8 3 67,737,900 - 68,230,950 (-) NCBI mRatBN7.2 3 47,329,338 - 47,821,992 (-) NCBI Rnor_6.0 3 48,662,450 - 49,168,716 (-) NCBI
Sequence:
CCGCCTCCTCCCCTCCCCGCCCCCAAGCCTCTCACTCGACGCAGGCCGGTGCGAGGCCCCCTCC GGAAGGTGAGCGGGATGGATTGGACTTCGGCGGGGAACGCGGGTGTCTCGAAGTGGTGCTAATGGAAAGAGATTTCTGCTCCCCAAAGAAGATGCGCTGCCACAAAGAGCGGCTTGCGCGCCGGCCTG GGCTCTAGCCCGGGAGACATCCCGGGAGAACTCCGAGCTCGGAGCGCTCGGCGAAGACCCGGGCAACATGCCTGTTCGCAGGGGGCATGTGGCACCGCAAAACACCTTCCTGGGGACCATCATACGGA AATTTGAAGGGCAGAATAAAAAATTTATCATTGCAAATGCCAGAGTACAGAACTGTGCCATCATCTACTGCAATGATGGCTTCTGTGAGATGACAGGTTTCTCCAGGCCAGATGTCATGCAGAAGCCA TGCACCTGCGACTTTCTCCATGGGCCTGAGACCAAGAGGCATGATATTGCCCAGATTGCCCAGGCGCTGTTGGGGTCAGAGGAGAGGAAAGTGGAGGTCACCTACTATCACAAGAATGGTTCCACTTT TATTTGTAACACTCACATAATCCCAGTAAAGAACCAAGAGGGTGTGGCTATGATGTTCATCATTAACTTTGAGTATGTGACAGATGAAGACAATGCTGCCTCCCCAGAGAGAGTCAACCCAATATTGC CAGTCAAATCTGTAAATCGGAAACTTTTTGGGTTCAAATTTCCTGGTCTGAGAGTTCTAACATACAGAAAGCAGTCCTTGCCGCAGGAAGACCCGGACGTGGTAGTCATTGATTCTTCTAAGCACAGC GATGACTCTGTGGCTATGAAGCACTTTAAGTCTCCCACGAAAGAAAGCTGCAGTCCCTCTGAAGCAGATGATACGAAGGCCTTGATACAGCCTAGCCAGTGTTCTCCCTTAGTGAACATATCAGGACC TCTGGACCATTCCTCTCCCAAAAGGCAATGGGACCGCCTCTACCCTGACATGCTGCAGTCAAGTTCCCAACTAACACACTCCAGGTCAAGGGAGAGCCTCTGTAGCATACGGAGAGCATCTTCAGTTC ATGATATAGAAGGGTTCAATGTCCACCCCAAGAACATATTTAGAGATCGACATGCCAGTGAAGACAATGGTCGAAATGTCAAAGTTTCACGTTCCTGGATGGCAGGGGGACCTTTCAATCATATCAAG TCAAGCCTGTTGGGATCCACATCAGATTCAAACCTCAACAAATACAGCACCATTAACAAGATCCCGCAACTCACTCTGAACTTTTCAGATGTCAAAACTGAGAAAAAGAATACTTCCCCGCCTTCTTC AGACAAAACTATTATTGCACCCAAGGTTAAAGAGAGGACACACAACGTGACAGAGAAGGTAACTCAGGTTCTTTCTTTGGGAGCAGATGTCTTGCCAGAATATAAGCTGCAGACGCCACGCATCAACA AATTTACAATATTGCACTACAGCCCTTTCAAAGCAGTGTGGGATTGGCTCATTTTACTCCTGGTCATTTATACTGCTATATTCACCCCCTACTCTGCAGCCTTTCTCCTCAACGACAGAGAGGAGCAG AAAAGACGAGAATGTGGCTATTCTTGTAGCCCTTTGAATGTGGTAGACTTGATTGTGGATATTATGTTTATTATAGACATCCTAATAAACTTCAGAACAACCTATGTAAATCAGAACGAAGAAGTGGT AAGTGATCCTGCCAAAATAGCAGTACACTACTTCAAAGGCTGGTTCCTGATTGACATGGTCGCAGCCATCCCTTTTGACTTGCTGATTTTCGGATCAGGCTCTGATGAGACAACAACACTAATTGGTC TTTTGAAGACTGCACGTCTCCTGCGTCTTGTGCGTGTAGCCAGGAAACTGGACCGATACTCAGAATATGGTGCCGCTGTTCTAATGCTCTTGATGTGCATATTTGCCCTGATTGCCCACTGGCTGGCT TGCATCTGGTATGCGATTGGGAATGTAGAGAGGCCCTATCTGACTGACAAAATTGGATGGTTGGATTCCTTAGGAACACAAATTGGGAAACGTTACAATGACAGTGACTCGAGTTCTGGACCGTCCAT TAAAGACAAATACGTCACGGCACTTTACTTTACCTTCAGCAGTCTAACCAGTGTAGGATTTGGAAATGTGTCTCCTAACACCAATTCGGAGAAAATCTTTTCCATTTGTGTCATGTTGATTGGCTCTC TAATGTATGCGAGCATTTTTGGGAATGTTTCTGCAATTATTCAAAGACTGTACTCGGGAACTGCCAGGTACCACATGCAGATGCTGAGAGTGAAAGAGTTCATTCGCTTCCACCAAATCCCCAACCCT CTGAGGCAACGGCTTGAGGAGTATTTCCAGCACGCATGGACGTACACTAACGGCATTGACATGAACATGGGATTTCCGGAATGTTTACAAGCTGACATTTGCCTGCATCTAAACCAGACTTTGCTCCA AAACTGCAAAGCCTTTCGAGGAGCAAGTAAAGGTTGCCTCAGAGCTCTGGCAATGAAGTTCAAAACCACCCATGCCCCTCCAGGAGACACCCTGGTTCACTGTGGGGACGTCCTAACTGCACTGTACT TCTTATCCAGAGGCTCCATTGAAATCCTCAAGGATGACATAGTGGTAGCTATTCTAGGAAAAAATGATATCTTTGGAGAAATGGTTCATCTTTACGCCAAGCCTGGCAAATCTAATGCAGATGTGAGA GCGCTCACGTATTGTGACCTGCATAAGATTCAGCGAGAAGACTTATTAGAGGTCTTGGATATGTATCCGGAATTTTCTGATCACTTTCTGACAAATCTAGAACTGACTTTCAACCTGAGACACGAAAG TGCAAAGTCCCAATCCATAAATGATTCTGAAGGGGACACCTGTAAGCTTCGAAGAAGGAGATTGTCCTTTGAAAGCGAAGGCGACAAAGATTTTAGCAAAGAAAACAGTGCAAATGACGCTGACGATT CCACAGATACAATAAGACGTTATCAGAGTTCCAAGAAGCACTTCGAAGAGAAGAAAAGCAGATCGTCTTCCTTTATCTCCTCCATCGATGATGAGCAAAAGCCGCTCTTCCTGGGAACAGTAGATTCC ACTCCAAGAATGGTGAAAGCAAGCAGGCACCATGGTGAAGAAGCAGCGCCCCCCTCAGGAAGAATTCACACAGATAAAAGGAGTCACTCCTGCAAAGATATCACTGACACACACAGCTGGGAAAGAGA GCATGCCCGGGCTCAGCCTGAAGAATGCAGTCCCTCCGGACTTCAGAGAGCTGCCTGGGGCATCTCTGAGACCGAAAGCGACCTCACCTATGGGGAAGTGGAGCAGAGGTTAGATTTGCTTCAAGAGC AACTTAACAGACTTGAATCCCAAATGACAACGGACATCCAGGCCATCTTACAGCTCCTGCAGAAACAAACCACCGTAGTCCCTCCAGCCTACAGCATGGTGACCGCAGGAGCAGAGTACCAGAGGCCC ATCCTCCGTCTGCTGAGAACCAGTCACCCTAGAGCATCCATTAAGACAGACCGGAGCTTCAGCCCCTCCTCACAATGTCCTGAATTTCTCGACCTTGAAAAGTCCAAACTCAAATCCAAAGAATCACT GTCAAGCGGAAAGCGCCTGAACACAGCTTCAGAAGACAACTTGACTTCACTTTTAAAACAAGACAGTGATGCATCGTCAGAGCTTGACCCGCGGCAAAGAAAATCTTACCTTCATCCCATCCGGCATC CGTCTCTGCCAGACTCCTCCCTAAGCACTGTAGGGATCTTGGGTCTCCATAGGCATGTTTCTGATCCTGGTCTTCCAGGAAAGTAATTGTTTTGTACTATTTCTCCACATCCAATGTAAGTGCTTTTA ATGGCTGTTTTCCCTTTTTGTATTTAAATCCTCTCTACTTGACTCAGGGGCTCACAAGGTACCATTATATGCAAAAGTACTGTATATTTTTCCTAAATTGAAGCTTGTAAGGTAAAGTTGAGCAGTTA GGATGTATATAGACATAAGAGCTTTTGGGTTCCAAACGTTAAAACTGCCAGCATCCCAAGGCACCTTGTTTTTTGAATTTTATTTTTCAAATCATGTGCATGTTAGGGAGCTCCAGTTTCTCTTGCAT GGAGACTCCTATTGACCGCTTTTCCTGATCAGTGCTTCATTATGAAAATGCCTTCCAAGCAAATAAGAAACCGAGGAATGAAAGAGTGCATGAGTACAACTCAGATGACCCTCAACTCATGAAAGGTC AGGGGGAATAAAGAGAGGTTAGTCCCTTTGCAGAACAGACATCCTTCTGTACTGACATATTTAGAGTTAGTTACTTTCATTTCCTTTGATAATAAAACAAAAAAGATGCAAAGTGTGAGTTGTATACA GCAGTCAGAAAAGGAGCAAAATCCCAAAATACCAAAAGATATAGTACTTCCTTGGTAGACTTTTACAGGCACGGGTACATGAAAGACAGATAGAAATGGGTTTAGTAAACTTCAGGACACATGAAGAA AATCCATATGAGGTTGTAACAGGAACCCGGCCCTGGTTTCATGTCCTTAGAAGACCTTTGAAAAGAGCTACTCATTTTGGCGAGATGACAGCACAAAGCTTCCAAAGGTGAGGAAACCGTGGGAAGCA GTTGCCTGCAGCCTCTGGGCCAGTGAGCAGTCTGTCAGTAAGGAGGATCTAAACCCTGCTTTTAGGCAGGCCAGTGGGAGGAGAACAGAAAGATCTCGTGTGAATTTGGGTCCTACTTTTAGACAAAT CGAGGAGGCACAGTGCTCCCCCAAGCTTGTCTTCAGCTAAATCATCATGAATATAGGATATCGGTGAGAGAGTAACATGGTCTCTCTAGTAAATTCTGCAGTAGCTGCTTTCACAGACTACCTAAAAT ATTTACAGTCGTACATTTTTTTCTGAGGGCTTAAAGGGAAAATTATTTTGTGTGTTGGCCGCGGTCCTTAACCTGTCACTTACACAAAGGACATTCACAATTTCTTCATAATTTATATGCAATAACAA TCTCGCATTTGATTAAATGGTAGGCACCCCCTTTTTTAATGTGCAATTTTCAGAGTATTTATGTTAACTAAACTCTTTAATTAAGAGTGGGTTGCTTCCTTGCTTTATTACCCCAGCTGTGGCAAATG GTGTTCATTGACCCACCTAGACAATTCTTAAATTACTTAAAAATTAAGTGAGAAATCCATTATATATAATTTAGGCTGATTTATACATTGTTTCCAAATCAAAGAATGTATAAAGAACATAGTAAAAG AATGTATTCTAACATTTAATTATGTTATATACTGGAGATCGAGATGTCATTTGGACCATAAAATCAACAGAGGAAAATTATAATTTACAACTCTTATTCAGACTCCAGTTAAACTTTATTTTGAACTC AATTATAATTTTAAAATTTTCAGACACTAATCTATTGTGTTCTTTTCTCCCGGACAAACACTCAGAAATCTTTTGAAGTGTTCTTAGTCTTTCTACTAATTCTTACGCTCCCACAGACCTTTAGATAG TATTTTATCTGTGCATTATTAAATGGTTGAATTTCCCTTCACTTTGTCAATGAACACCTTGACGCTAACCTGTCGATCCACTTCGATGCAAGCAGTCTATTAAATGTGTGCAATAATACCACTGTATT AAGATGTGGTTATAAAGTGGTCTTAAATTGTTCTCTCCATATTTTTGAGCAGTCACAGAATTTGCTAGTCTGACCTGGGTGGGAGGAGATTAGTTCGTAGAGAATGTTCTTCTTCTCACTTAATTTAA GAAAGTAATCACAGGCAGTTGCATATTTGCAGCTTCAAATGATTCGTCAACAGCTACAGGAAATTAGAATGGGCTTCCCCAATTGTTTGATACGCTACAGATACAAACATAGACTAAAAGCCACTTTC AATCATTCGTTCAACAGACATTTGAATGAGGCGACACATACAAGAGAGAGGGTCCTTTAAGTAGCGAACAGTTCAGATGTGGATATAGGGATCCTATTTCCATGTCAGGGCAGATTTCTGCAGCTGCA ACAAATTTCCTAAGGACTATTCCGTCTCAGCTCTGTGAGCATTCAGAATAAATTCATGAGCCCTTGCTCATTTGTAAGGAGAGGGGATTTGGCAGGTGAGGAACAGAGGTCTAATTGTTTGATTAGTG GATATGTTCGTGGCAATATTTGGTATGATGCACATACAATTCATCCCGTTGAGAGTCTCGGTTTAATACTTCTTTATAGGAACTGGGCACGCAGGGAAGAAGGAAAGGTGATGGGGCCGTATACAAGC ATCCATCTGATCTAAATTCTAGCACAACACAAACCCATGTCCTTCTTAATCCTTCGACATACAGTGAATTGTTTGCTGTTTAAATTGCAAGTCTCAGGGGACTGTGTAGGAAGATAAGCGGATCTTTT TCTTTTTCTATAGAATATTAATTTTAAAAGAGCCCCCAAGCAACATCAAGATATACGTAGTCATAAATGTCAGATGAAAGACGGTTTAACTGACTTCTGGGTAATAAAAGCAATTATCTTGATTGCAA TATGCACCCCCGAAATAGCTTGAAAATAGCATTGCCCTACCTATCATCTATAGCACAAACAATCTGTCACCTCCACTTTGGAGTCTTGCCCAAGGCCAGGTCTAACTGGAGGCACCAGGCAAACCTCA ATGTAGTGATTGCTTTCCTTGGAGAGAATTAGAAATATTAATGTAACACCTTTTGCTCTTAACCCAAAATTAGCGTCTGGTCCCATGTCCTTAAAGTTTATTTGGATGAGATGTTCTCCTGCTGCTGT TAATTGCAGGACAGAGAATTGCCTCTAAGACTCATCATTCTAACCCAGAGGGGAGCCCCATACTTTAATTAGCTGATGAGAAAACTAGGAATAAAAAAATACAGCATTGATGTTTTTAATATAATAGT CACTAATTCGACAAACCAGGGAAAGCAGGGAGCCAATTTGAGGCAGTGTAAATTTCAAGTTTATTACAATGGACTGGCCGTGAGAGTTAAGTTTTATAGTCTTGTAATCAAGGGAAGGGGAGTACTGA CATTGGGAATCAGGTGTGATATGTCCATTTTAAAACTCAAGAGTGTGTGGACTTGAACTTGTACAATGGCTCCAAAACGCCTAGGAGAAAGCATTTGTTTCTGCACATCATCTTCAAATCCTAACTTA CTCATCAAAGCTAAGGATAAAATGTATCGCCTCTCCGGTTCATACAAAAGACTAATTAATAGTAAGTAATATTATTTTAGAGTCAGAAAAAAAACAGTTCAGTAACCAGGTATTAGAAATGAACTATA ACTCTGGCCATAATTTAAGGGACTCAATATTGTTTATTCATGGATGAAACAAAACTAGAAGACATGGTCTTGAAATGCTAATGAGCTTTTTATTTAATGTTAGAACATTTTAGGTCAGAAAATTCGAT TGTCGTTTCATTTGTAACCACATTTTTGCAGTAACAAAAACATGCGAATCCTGGTCATTCAGAGAGGCTATGGGCAGACAGGTTGCTGTACAGTGTCCTCAAACTGTGGTCCTGAAGTTAGCAATGCT CACATCATCCAAGAAGTTAGAAACAAATGGTTCTGGGTCTCATCCCAGATCTATTAAGTCAGAAAGATGAAGGCTGGACCCCAGCACTGATTCTTCAGTGAGTAACTCTACACAGGATCTGCACGCAC ACTAAAACACAGAGGTCCATAGTGTACAGCCTGCCGTCGGGCCAACTGGATCCTAACAGTAACTGTTTTATTCACATGCGGTATGACCGTGAGTGAATTACCCACTTTAAGTTTCTCCCTGATTCTGT AAAAATGAGATTATAGTCTGTGCCTCACTGAAGTTTGAAAAGAAACAAAATCAAGTTAAAAGTGCCTGGTACAAACTATGTGCTCTAAGGAAAAAAAAATTCTGTAATCCACTTCAACTCCTTGACCA TGGCATTAAAAACAATTAAGAAGACAATTTTCTTTTGCACAAGTGCTAAGTAACTATGTCCTTGTTTCCATGACTAAAGCTTTTGACTCAGAAAGACTTAACTGTAGCTACAAGCTTCCCTTAATGTT GTGCCATTCACACCACAGCTTTAAAGTAATAATATTGACAGTAATGGTAATGAGATATGACTGTCACTGTTTAAAAAAAAAAAAAGCAAGCACACTTGCTCTAAATTGATTTTAAATTCTGCTGGGTG ACCTGTCCAACTCAAAGCTACTAGAGTATATTCTATATATGGAGTGCACTGTACATCGTCTCCTCCGATGTGATTTAGTTCCCAGACGGACATTCGAAACCATTTACAAAATTCAACTCTGACAGTAA ACAGTTACTGTTTTTACAGATACTAGAGCTTCACGGTGGTAATGGCACTTTCAGGCCCCCAGATCCTTTCCCTCGTTGCACAAATACAGTCTATAGATCTTAAACACCCAAGTTCTTGTGTGGAATGC TGGAAATGACAAAAAAAAAATGTTTGCTGTGGTCAACCTGAAATCAAATCCTCCTTTTCCCGCTTATGACTGAGGAAAAACCTAAAGTGAACCCTGGGATTCAAAATAGTGTAAAGAGAATGATTTCT GAAACATAGAGTGTACCATAGAGTGAGCCAGGCATTGTGTGGAGACGCAAGTTCATCCTGTGACATGCGCATTCAGAGTGGTGCTCAGGCTGTGGCACAGTAGCGCTGATCACTGTGTGGTTGATTAC CCTGAGAAAACATCGCCACCATTCTGTCCTCCAACTAACTCGCCACACGGACACTCGGTGTGTAATAGAACTCTACAAAGTGGTTTTCATGCACCTGTCAAAGATGGGGTTGCTAAAAAGAGACAGTG TTTGTGTTGGGGCCACCTCTTCTGTGTTATCTCCCACATATTTCGTCAACATATGTAGACCGCCACATCCGCACTACAAATGCTGTTTAGATTTGAGATAGGTTACTCGTCGTCTCCCTGATTCCCTG AATGATCTCATTCAGAGCTGTTTGCTTGGGATCTTTAAAGGATATTAACATTTTTAATACTAAAAGGATATTTTCAGTGCTTTATAAAACACTAGGTATCGCGACTGATCAGGGCCCGTGCTTAGAAT GTCATTAAGGCCTTCTGTGGTTAAAAAAAAAAAAGTGTTTTATTTTAATGTCCAGTACTGAAGAAGAAAATTCACAGAAGACATGACTTGGCATATGACTGCAGGAAAAGAAACTATCACAAAGATGA TTTTCCTATTACATGGAAGTTGAGAAATGACTAATCGGAGTTATTTTAAACTACCATGTTATTACTATATGAGAATTAAACATTCATGAAAATGGAATGTATAAAAAACTAGATTCAGTTGACCACAT ACTAGACGATTGGACTTTTAAACATACCCAGCAAGAACGATGGCAGTCGTGCCCCCCAGTTAAATGCTTCTGTTTATGAGAAGTAGCAGTGGGAACATGGTCATTCTTTTATAATTAATGCCAAAACT TAGGTTAATTCTAAACCATACTCCTGTCATCTGCGGCTTCCGTAAGTTAACATATTGTGGAAGGTTTGAAATAACTTGGTGCACCTGTGACTTCAAAGCTTTACCTTCACACTGTGGACGTCCTCTGG TATATCATGATGGGACGGACGTAAAAGCTCATGATTGTAAATAGCCACAGTGGTGAGCATTTTACTTGCACCAGTTTTCATTTTAATTTATACTCCGAGTGCATAAAAATATCCACACCTTATCCCTT ATCACTAATTAGGTGGGAAAAACCGAAGGATTGGTAAAGTTATGATGAGCTCTTCCCACATTCTCCTCAAATGCTCACAGAGCTACGACAACAATGGAATGAATGATGCGGTGTCCCTACTTTACCAT GAGGCTCCTACTGATGTGAACGAAAGGCACATGACCTCTCTATAGCTGCAATTTTCATTTTATAATTCTGATGAGAAGATATATTATCCCAGAAGGCTTGCCAGTCAATGAATAATGTATTTCAGAAA AGAATGTGTGTGATCACTTGAAAAATGTCAGTCATCGGATGTAAGGAAGCTCACTCACATGCTGTTACATAAAACTCTGGAATGCTTTAAACTAAACGAAACAATCAACCAAAACACACACTACTTCG TACTCTTTATGCACATAATGTAGCATGGAATCATGACGCTTTCGAAATATTCTGTGCAGAAATATTTATTTTTTAGCCAATATTTTCCTCAAAGATTGGTATGTGGTGTTGACAGTGTAATCTATTTG CACAGCTAGTTTTGCAATAACCTTCTACAAATAACTGTACATAAGAAAAAATGTAAATTTCATGTAAAAATGGTTGTGAATTTTTGGTAGCTGAAAGAAGTATACAAGTTGTATTGAAAATATAGTAT ATATATACATATATATATATATACCTAACTTAAGAATGAGACATATAATTTCTGATCTATTTATACATGAAAAATTCAAGAATTTGTAAAAGAATTTATTTTGGAGGAAAAAAAAGGAAGTAAATCGT ATTAGCTAGCTAGTGTACTTTTAATAAAGTATCCAACAAGATCCACCATTTTATTAAGTACAGTAGTAGACACACGATAGGCATGGTGGTGCTGATCACTTTGAAATTCCCATCATTCTAACAGTGCT ACAGTTTTACTGAGTTCCAGTAGACCGCTAGCAAGCTGCGCTAAGCTATTAAGAAAAAAAAAAGCATTAAATCTGAGTCTAAAGAAACTAAAAATTTTACTCATCGCCCCATTAGAACCATGGCAGTA AATGACCGAAATATTTATTGTTCGCTAAGTTCTGCTGAGGGATAAATGGCCTTTAATGTATAGTAGCTCATTTATAACGAAAGCTTGGCTATCTTTTCATTCAAGAATGGGACCGCGGAACTATTATT TCCTCTTGCTTAAGTTCCAAACAGCTTAATTTCTCCCCTAGCTGGTTTCATGTCATTTAAGAAAATTCACACTATCTTTCGAAGAAACTTTTAAACACAACTTGTAGGCTCTGGCACGGCGCCTAGGC GCGGCATTGGCTGTCTGCGTAGCGGCATAGACTCCCCATGCTCCGTTTTACAGATGTAAGAAGCCAAGAGCATATCTTCCCTTGTGGCAAACGTAACTGATACAGATAATAAAGCAAATCACATTGCC GCCTGTAAGCGAAATGGATTGTGAAATCAGAACCAAAGTACAAAGGCAAAATACCTGGCACTATTCCATAACGTAATTACCTCGTATCCTAAGACATACTTGAGGGTCCTGCATTTACACAAGGGTGG GGATTTAAATATGCATGAGAAAGTCCAGTAAATCCTAAAGTTGTTTTCAAACGGCCTTTCGTTTCCAAAATAACTTGAGTATTTAATTAGTCTATTTCTAGAGCAGTGACATCCACACTGCTCAAGTC ATCTTTTGAAATTTCAGTAATCATAGAAAAATAAGAAAAATAAGCGAGACAGACAATTAAATCGAAATGGTTATGCATGTATCTATCTACTTAAATGTTTGTACTTAGAGAAAAGGTTAAACTTCAAC CCCAGTATATCGGCATTGGAAACCCGTCATTCCCGATTCACAATCTTCCCAATTAGCTATTAAATGACACTATAACTTCTAGATGTTAATGAAGGAGCACACCCGATAACGAGACCACCACATGGGCG AAAACCCTGTGCGTTTTCTGACTGCGGTGTATGGTAATGAGATAGATGTGCTCTTACCATACGTCCAGACTGAGAGAAGCAAGCCTGTGCTTTCATATATGAGCTATGTATTGTGGACAAAAGGAATG ATTAGAACCTATGCTCTCTTCCTTATGAGATGGGGAAATCGTGCTTAAAAGTAAGTAGAAGGAACTGCAACAAGGAGGATCCAAAGCACAGGTTTCCTAGCATTCAAATGAGAGATAGGTCTTGAGTC ACAAAGGCGTCCAGATTTCTCCAAGTGTTTTTGCTAGAAAGTTTTCTTCTGTGTTCTAAATTAGAAGGAAATTTCAGTTTAATATCTGGAGAGATGTCCTGAAACAATGAGACTTGTATCCATTTAAA ATACTGTCTGCATTCACCACCTCAAGACATTCTAAGCATTTGCATTTGTACCTTCCAATAGTGTGGATGTACTCTGCAGACATAGCTTAGATGATTCCTGAGCCTTAGGCATTCACTTGAGGAAGCTT AACTCACTACATAAACGATTTCACTAAAACAAACAAGAGCTTTCCTAGCAAGTACCAAAGTGCTAGGAGAGCCGTGGTTGTGCGTTCCCTGTTAAGCAAAGGATGTAACTGAAAGCAGTCTCGGGATC TCAGCACGTGGGTTCAATTTACAAACTTTTCAAAACATATTCCTTTCAAATTTACAGAATGTTGTTAATGGAACAAGACAAAACATATCCACTTTAGTTTATCAAAAATAAAAGAACATTTAAAAATA AGCACATTTCTCACAAATAGTATTTATTTTGGTTGTTCAATTAGTAATATCATAAGGTTACAAGTGAACATGATTTGTATATTTTAATTAAAGAAATACCACAAATTGATTTTTGTTATTTTTTTAAT TGCACAGAGTTTAAACTACCTTGATAAATTCTACTTTCTTCCAGGCTAAAGGCCTTTTCTGGAAATAAATATATAACTTGAA
hide sequence
RefSeq Acc Id:
XM_063283031 ⟹ XP_063139101
Type:
CODING
Position:
Rat Assembly Chr Position (strand) Source GRCr8 3 67,737,900 - 68,230,950 (-) NCBI
RefSeq Acc Id:
XM_063283033 ⟹ XP_063139103
Type:
CODING
Position:
Rat Assembly Chr Position (strand) Source GRCr8 3 67,737,900 - 68,230,950 (-) NCBI
RefSeq Acc Id:
NP_571987 ⟸ NM_131912
- UniProtKB:
O54852 (UniProtKB/Swiss-Prot), A6HLW2 (UniProtKB/TrEMBL), A0A8I5ZLI3 (UniProtKB/TrEMBL)
- Sequence:
MPVRRGHVAPQNTFLGTIIRKFEGQNKKFIIANARVQNCAIIYCNDGFCEMTGFSRPDVMQKPCTCDFLHGPETKRHDIAQIAQALLGSEERKVEVTYYHKNGSTFICNTHIIPVKNQEGVAMMFIIN FEYVTDEDNAASPERVNPILPVKSVNRKLFGFKFPGLRVLTYRKQSLPQEDPDVVVIDSSKHSDDSVAMKHFKSPTKESCSPSEADDTKALIQPSQCSPLVNISGPLDHSSPKRQWDRLYPDMLQSSS QLTHSRSRESLCSIRRASSVHDIEGFNVHPKNIFRDRHASEDNGRNVKGPFNHIKSSLLGSTSDSNLNKYSTINKIPQLTLNFSDVKTEKKNTSPPSSDKTIIAPKVKERTHNVTEKVTQVLSLGADV LPEYKLQTPRINKFTILHYSPFKAVWDWLILLLVIYTAIFTPYSAAFLLNDREEQKRRECGYSCSPLNVVDLIVDIMFIIDILINFRTTYVNQNEEVVSDPAKIAVHYFKGWFLIDMVAAIPFDLLIF GSGSDETTTLIGLLKTARLLRLVRVARKLDRYSEYGAAVLMLLMCIFALIAHWLACIWYAIGNVERPYLTDKIGWLDSLGTQIGKRYNDSDSSSGPSIKDKYVTALYFTFSSLTSVGFGNVSPNTNSE KIFSICVMLIGSLMYASIFGNVSAIIQRLYSGTARYHMQMLRVKEFIRFHQIPNPLRQRLEEYFQHAWTYTNGIDMNMVLKGFPECLQADICLHLNQTLLQNCKAFRGASKGCLRALAMKFKTTHAPP GDTLVHCGDVLTALYFLSRGSIEILKDDIVVAILGKNDIFGEMVHLYAKPGKSNADVRALTYCDLHKIQREDLLEVLDMYPEFSDHFLTNLELTFNLRHESAKSQSINDSEGDTCKLRRRRLSFESEG DKDFSKENSANDADDSTDTIRRYQSSKKHFEEKKSRSSSFISSIDDEQKPLFLGTVDSTPRMVKASRHHGEEAAPPSGRIHTDKRSHSCKDITDTHSWEREHARAQPEECSPSGLQRAAWGISETESD LTYGEVEQRLDLLQEQLNRLESQMTTDIQAILQLLQKQTTVVPPAYSMVTAGAEYQRPILRLLRTSHPRASIKTDRSFSPSSQCPEFLDLEKSKLKSKESLSSGKRLNTASEDNLTSLLKQDSDASSE LDPRQRKSYLHPIRHPSLPDSSLSTVGILGLHRHVSDPGLPGK
hide sequence
RefSeq Acc Id:
XP_006234331 ⟸ XM_006234269
- Peptide Label:
isoform X1
- UniProtKB:
A0A0H2UHF2 (UniProtKB/TrEMBL)
- Sequence:
MPVRRGHVAPQNTFLGTIIRKFEGQNKKFIIANARVQNCAIIYCNDGFCEMTGFSRPDVMQKPC TCDFLHGPETKRHDIAQIAQALLGSEERKVEVTYYHKNGSTFICNTHIIPVKNQEGVAMMFIINFEYVTDEDNAASPERVNPILPVKSVNRKLFGFKFPGLRVLTYRKQSLPQEDPDVVVIDSSKHSD DSVAMKHFKSPTKESCSPSEADDTKALIQPSQCSPLVNISGPLDHSSPKRQWDRLYPDMLQSSSQLTHSRSRESLCSIRRASSVHDIEGFNVHPKNIFRDRHASEDNGRNVKVSRSWMAGGPFNHIKS SLLGSTSDSNLNKYSTINKIPQLTLNFSDVKTEKKNTSPPSSDKTIIAPKVKERTHNVTEKVTQVLSLGADVLPEYKLQTPRINKFTILHYSPFKAVWDWLILLLVIYTAIFTPYSAAFLLNDREEQK RRECGYSCSPLNVVDLIVDIMFIIDILINFRTTYVNQNEEVVSDPAKIAVHYFKGWFLIDMVAAIPFDLLIFGSGSDETTTLIGLLKTARLLRLVRVARKLDRYSEYGAAVLMLLMCIFALIAHWLAC IWYAIGNVERPYLTDKIGWLDSLGTQIGKRYNDSDSSSGPSIKDKYVTALYFTFSSLTSVGFGNVSPNTNSEKIFSICVMLIGSLMYASIFGNVSAIIQRLYSGTARYHMQMLRVKEFIRFHQIPNPL RQRLEEYFQHAWTYTNGIDMNMVLKGFPECLQADICLHLNQTLLQNCKAFRGASKGCLRALAMKFKTTHAPPGDTLVHCGDVLTALYFLSRGSIEILKDDIVVAILGKNDIFGEMVHLYAKPGKSNAD VRALTYCDLHKIQREDLLEVLDMYPEFSDHFLTNLELTFNLRHESAKSQSINDSEGDTCKLRRRRLSFESEGDKDFSKENSANDADDSTDTIRRYQSSKKHFEEKKSRSSSFISSIDDEQKPLFLGTV DSTPRMVKASRHHGEEAAPPSGRIHTDKRSHSCKDITDTHSWEREHARAQPEECSPSGLQRAAWGISETESDLTYGEVEQRLDLLQEQLNRLESQMTTDIQAILQLLQKQTTVVPPAYSMVTAGAEYQ RPILRLLRTSHPRASIKTDRSFSPSSQCPEFLDLEKSKLKSKESLSSGKRLNTASEDNLTSLLKQDSDASSELDPRQRKSYLHPIRHPSLPDSSLSTVGILGLHRHVSDPGLPGK
hide sequence
RefSeq Acc Id:
XP_017446927 ⟸ XM_017591438
- Peptide Label:
isoform X2
- UniProtKB:
A0A0H2UHF2 (UniProtKB/TrEMBL)
- Sequence:
MPVRRGHVAPQNTFLGTIIRKFEGQNKKFIIANARVQNCAIIYCNDGFCEMTGFSRPDVMQKPCTCDFLHGPETKRHDIAQIAQALLGSEERKVEVTYYHKNGSTFICNTHIIPVKNQEGVAMMFIIN FEYVTDEDNAASPERVNPILPVKSVNRKLFGFKFPGLRVLTYRKQSLPQEDPDVVVIDSSKHSDDSVAMKHFKSPTKESCSPSEADDTKALIQPSQCSPLVNISGPLDHSSPKRQWDRLYPDMLQSSS QLTHSRSRESLCSIRRASSVHDIEGFNVHPKNIFRDRHASEDNGRNVKVSRSWMAGGPFNHIKSSLLGSTSDSNLNKYSTINKIPQLTLNFSDVKTEKKNTSPPSSDKTIIAPKVKERTHNVTEKVTQ VLSLGADVLPEYKLQTPRINKFTILHYSPFKAVWDWLILLLVIYTAIFTPYSAAFLLNDREEQKRRECGYSCSPLNVVDLIVDIMFIIDILINFRTTYVNQNEEVVSDPAKIAVHYFKGWFLIDMVAA IPFDLLIFGSGSDETTTLIGLLKTARLLRLVRVARKLDRYSEYGAAVLMLLMCIFALIAHWLACIWYAIGNVERPYLTDKIGWLDSLGTQIGKRYNDSDSSSGPSIKDKYVTALYFTFSSLTSVGFGN VSPNTNSEKIFSICVMLIGSLMYASIFGNVSAIIQRLYSGTARYHMQMLRVKEFIRFHQIPNPLRQRLEEYFQHAWTYTNGIDMNMGFPECLQADICLHLNQTLLQNCKAFRGASKGCLRALAMKFKT THAPPGDTLVHCGDVLTALYFLSRGSIEILKDDIVVAILGKNDIFGEMVHLYAKPGKSNADVRALTYCDLHKIQREDLLEVLDMYPEFSDHFLTNLELTFNLRHESAKSQSINDSEGDTCKLRRRRLS FESEGDKDFSKENSANDADDSTDTIRRYQSSKKHFEEKKSRSSSFISSIDDEQKPLFLGTVDSTPRMVKASRHHGEEAAPPSGRIHTDKRSHSCKDITDTHSWEREHARAQPEECSPSGLQRAAWGIS ETESDLTYGEVEQRLDLLQEQLNRLESQMTTDIQAILQLLQKQTTVVPPAYSMVTAGAEYQRPILRLLRTSHPRASIKTDRSFSPSSQCPEFLDLEKSKLKSKESLSSGKRLNTASEDNLTSLLKQDS DASSELDPRQRKSYLHPIRHPSLPDSSLSTVGILGLHRHVSDPGLPGK
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Ensembl Acc Id:
ENSRNOP00000072574 ⟸ ENSRNOT00000085246
Ensembl Acc Id:
ENSRNOP00000009920 ⟸ ENSRNOT00000009920
Ensembl Acc Id:
ENSRNOP00000078922 ⟸ ENSRNOT00000112058
Ensembl Acc Id:
ENSRNOP00000078806 ⟸ ENSRNOT00000095298
Ensembl Acc Id:
ENSRNOP00000078968 ⟸ ENSRNOT00000119314
RefSeq Acc Id:
XP_063139103 ⟸ XM_063283033
- Peptide Label:
isoform X4
- UniProtKB:
A0A8I5ZLI3 (UniProtKB/TrEMBL)
RefSeq Acc Id:
XP_063139101 ⟸ XM_063283031
- Peptide Label:
isoform X3
- UniProtKB:
A0A0G2K3B8 (UniProtKB/TrEMBL)
Date
Current Symbol
Current Name
Previous Symbol
Previous Name
Description
Reference
Status
2005-01-20
Kcnh7
potassium voltage-gated channel, subfamily H (eag-related), member 7
erg3
potassium channel erg3
Symbol and Name updated
1299863
APPROVED
2002-08-07
erg3
potassium channel erg3
Symbol and Name status set to provisional
70820
PROVISIONAL
Note Type
Note
Reference
gene_expression
expressed in the fundus and antrum of the stomach
625508
gene_expression
enriched in the nervous system
632748
gene_product
374 bp
625508
gene_product
member of the erg potassium channel gene family
632748