Symbol:
IGF1R
Name:
insulin like growth factor 1 receptor
RGD ID:
14131810
Description:
ENCODES a protein that exhibits G-protein alpha-subunit binding (ortholog); insulin receptor substrate binding (ortholog); insulin-like growth factor binding (ortholog); INVOLVED IN adrenal gland development (ortholog); animal organ morphogenesis (ortholog); axonogenesis (ortholog); PARTICIPATES IN E-cadherin signaling pathway; insulin-like growth factor signaling pathway; ASSOCIATED WITH acute kidney failure (ortholog); adrenocortical carcinoma (ortholog); alcoholic neuropathy (ortholog); FOUND IN axon (ortholog); caveola (ortholog); glutamatergic synapse (ortholog); INTERACTS WITH bisphenol A; dexamethasone; glycerol 2-phosphate
Type:
protein-coding
RefSeq Status:
PROVISIONAL
Previously known as:
IGF-1 receptor; IGF-I receptor; insulin-like growth factor 1 receptor; insulin-like growth factor 1 receptor beta subunit; insulin-like growth factor receptor 1; insulin-like growth factor-I receptor
RGD Orthologs
Alliance Orthologs
More Info
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More Info
Latest Assembly:
Sscrofa11.1 - Pig Sscrofa11.1 Assembly
Position:
Pig Assembly Chr Position (strand) Source Genome Browsers JBrowse NCBI UCSC Ensembl Sscrofa11.1 Ensembl 1 137,387,825 - 137,691,058 (-) Ensembl Sscrofa11.1 susScr11 Sscrofa11.1 Sscrofa11.1 1 137,383,623 - 137,691,038 (-) NCBI Sscrofa11.1 Sscrofa11.1 susScr11 Sscrofa11.1 Sscrofa10.2 1 153,523,944 - 153,853,776 (-) NCBI Sscrofa10.2 Sscrofa10.2 susScr3 Pig Cytomap 1 q17-q21 NCBI
JBrowse:
View Region in Genome Browser (JBrowse)
Model
Imported Annotations - PID (archival)
Biological Process
adrenal gland development (ISO) amyloid-beta clearance (IEA) animal organ morphogenesis (ISO) axonogenesis (ISO) brain development (ISO) cardiac atrium development (ISO) cell surface receptor protein tyrosine kinase signaling pathway (IEA) cellular response to aldosterone (ISO) cellular response to amyloid-beta (IEA) cellular response to angiotensin (ISO) cellular response to dexamethasone stimulus (ISO) cellular response to estradiol stimulus (ISO) cellular response to glucose stimulus (IBA,ISO) cellular response to insulin stimulus (ISO) cellular response to insulin-like growth factor stimulus (ISO) cellular response to mechanical stimulus (ISO) cellular response to progesterone stimulus (ISO) cellular response to testosterone stimulus (ISO) cellular response to transforming growth factor beta stimulus (ISO) cellular response to zinc ion starvation (ISO) cellular senescence (ISO) cerebellum development (ISO) dendritic spine maintenance (ISO) epidermis development (ISO) establishment of cell polarity (ISO) estrous cycle (ISO) exocrine pancreas development (ISO) hippocampus development (ISO) immune response (IEA) insulin receptor signaling pathway (IBA) insulin-like growth factor receptor signaling pathway (IBA,IEA) male sex determination (ISO) mammary gland development (ISO) MAPK cascade (ISO) mitotic nuclear division (ISO) negative regulation of apoptotic process (IEA,ISS) negative regulation of cholangiocyte apoptotic process (ISO) negative regulation of DNA-binding transcription factor activity (ISO) negative regulation of hepatocyte apoptotic process (ISO) negative regulation of MAPK cascade (IEA,ISO,ISS) negative regulation of muscle cell apoptotic process (ISO) negative regulation of phosphatidylinositol 3-kinase/protein kinase B signal transduction (ISO) neuron projection development (ISO) peptidyl-tyrosine autophosphorylation (ISO) phosphatidylinositol 3-kinase/protein kinase B signal transduction (ISO) positive regulation of axon regeneration (ISO) positive regulation of cell migration (IEA) positive regulation of cell population proliferation (IEA) positive regulation of cold-induced thermogenesis (ISO) positive regulation of cytokinesis (ISO) positive regulation of developmental growth (ISO) positive regulation of DNA metabolic process (ISO) positive regulation of DNA-templated transcription (ISO) positive regulation of MAPK cascade (IBA,ISO) positive regulation of meiotic cell cycle (ISO) positive regulation of mitotic nuclear division (ISO) positive regulation of osteoblast proliferation (ISO) positive regulation of phosphatidylinositol 3-kinase/protein kinase B signal transduction (IBA,IEA,ISO) positive regulation of protein-containing complex disassembly (ISO) positive regulation of smooth muscle cell proliferation (ISO) positive regulation of steroid hormone biosynthetic process (ISO) postsynaptic modulation of chemical synaptic transmission (ISO) prostate gland epithelium morphogenesis (ISO) protein autophosphorylation (ISO) protein phosphorylation (ISO) regulation of JNK cascade (IBA,IEA,ISS) response to alkaloid (ISO) response to ethanol (ISO) response to hormone (ISO) response to insulin (ISO) response to L-glutamate (ISO) response to nicotine (ISO) response to nutrient levels (ISO) response to vitamin E (ISO) transcytosis (IEA)
IGF1R (Sus scrofa - pig)
Pig Assembly Chr Position (strand) Source Genome Browsers JBrowse NCBI UCSC Ensembl Sscrofa11.1 Ensembl 1 137,387,825 - 137,691,058 (-) Ensembl Sscrofa11.1 susScr11 Sscrofa11.1 Sscrofa11.1 1 137,383,623 - 137,691,038 (-) NCBI Sscrofa11.1 Sscrofa11.1 susScr11 Sscrofa11.1 Sscrofa10.2 1 153,523,944 - 153,853,776 (-) NCBI Sscrofa10.2 Sscrofa10.2 susScr3 Pig Cytomap 1 q17-q21 NCBI
IGF1R (Homo sapiens - human)
Human Assembly Chr Position (strand) Source Genome Browsers JBrowse NCBI UCSC Ensembl GRCh38 15 98,648,539 - 98,964,530 (+) NCBI GRCh38 GRCh38 hg38 GRCh38 GRCh38.p14 Ensembl 15 98,648,539 - 98,964,530 (+) Ensembl GRCh38 hg38 GRCh38 GRCh37 15 99,191,768 - 99,507,759 (+) NCBI GRCh37 GRCh37 hg19 GRCh37 Build 36 15 97,010,284 - 97,325,282 (+) NCBI NCBI36 Build 36 hg18 NCBI36 Build 34 15 97,010,287 - 97,319,034 NCBI Celera 15 75,609,678 - 75,924,704 (+) NCBI Celera Cytogenetic Map 15 q26.3 NCBI HuRef 15 75,320,348 - 75,635,223 (+) NCBI HuRef CHM1_1 15 99,034,201 - 99,349,171 (+) NCBI CHM1_1 T2T-CHM13v2.0 15 96,412,912 - 96,728,919 (+) NCBI T2T-CHM13v2.0
Igf1r (Mus musculus - house mouse)
Mouse Assembly Chr Position (strand) Source Genome Browsers JBrowse NCBI UCSC Ensembl GRCm39 7 67,601,486 - 67,883,416 (+) NCBI GRCm39 GRCm39 mm39 GRCm39 Ensembl 7 67,602,575 - 67,883,416 (+) Ensembl GRCm39 Ensembl GRCm38 7 67,952,257 - 68,233,668 (+) NCBI GRCm38 GRCm38 mm10 GRCm38 GRCm38.p6 Ensembl 7 67,952,827 - 68,233,668 (+) Ensembl GRCm38 mm10 GRCm38 MGSCv37 7 75,097,143 - 75,378,553 (+) NCBI GRCm37 MGSCv37 mm9 NCBIm37 MGSCv36 7 67,826,372 - 68,100,293 (+) NCBI MGSCv36 mm8 Celera 7 65,407,649 - 65,690,413 (+) NCBI Celera Cytogenetic Map 7 C NCBI cM Map 7 37.27 NCBI
Igf1r (Rattus norvegicus - Norway rat)
Rat Assembly Chr Position (strand) Source Genome Browsers JBrowse NCBI UCSC Ensembl GRCr8 1 130,959,787 - 131,248,664 (+) NCBI GRCr8 mRatBN7.2 1 121,549,831 - 121,838,548 (+) NCBI mRatBN7.2 mRatBN7.2 mRatBN7.2 Ensembl 1 121,550,743 - 121,831,777 (+) Ensembl mRatBN7.2 Ensembl UTH_Rnor_SHR_Utx 1 129,548,259 - 129,834,935 (+) NCBI Rnor_SHR UTH_Rnor_SHR_Utx UTH_Rnor_SHRSP_BbbUtx_1.0 1 136,718,334 - 137,005,027 (+) NCBI Rnor_SHRSP UTH_Rnor_SHRSP_BbbUtx_1.0 UTH_Rnor_WKY_Bbb_1.0 1 129,519,288 - 129,805,989 (+) NCBI Rnor_WKY UTH_Rnor_WKY_Bbb_1.0 Rnor_6.0 1 128,924,921 - 129,213,816 (+) NCBI Rnor6.0 Rnor_6.0 rn6 Rnor6.0 Rnor_6.0 Ensembl 1 128,924,966 - 129,206,516 (+) Ensembl Rnor6.0 rn6 Rnor6.0 Rnor_5.0 1 129,985,761 - 130,272,589 (+) NCBI Rnor5.0 Rnor_5.0 rn5 Rnor5.0 RGSC_v3.4 1 122,704,976 - 122,990,007 (+) NCBI RGSC3.4 RGSC_v3.4 rn4 RGSC3.4 RGSC_v3.1 1 122,783,318 - 123,068,350 (+) NCBI Celera 1 113,751,636 - 114,029,884 (+) NCBI Celera Cytogenetic Map 1 q22 NCBI
Igf1r (Chinchilla lanigera - long-tailed chinchilla)
Chinchilla Assembly Chr Position (strand) Source Genome Browsers JBrowse NCBI UCSC Ensembl ChiLan1.0 Ensembl NW_004955416 26,102,628 - 26,382,666 (-) Ensembl ChiLan1.0 ChiLan1.0 NW_004955416 26,101,090 - 26,382,660 (-) NCBI ChiLan1.0 ChiLan1.0
IGF1R (Pan paniscus - bonobo/pygmy chimpanzee)
Bonobo Assembly Chr Position (strand) Source Genome Browsers JBrowse NCBI UCSC Ensembl NHGRI_mPanPan1-v2 16 88,195,825 - 88,510,506 (+) NCBI NHGRI_mPanPan1-v2 NHGRI_mPanPan1 15 91,892,588 - 92,207,137 (+) NCBI NHGRI_mPanPan1 Mhudiblu_PPA_v0 15 77,332,926 - 77,648,474 (+) NCBI Mhudiblu_PPA_v0 Mhudiblu_PPA_v0 panPan3 PanPan1.1 15 96,576,930 - 96,832,974 (+) NCBI panpan1.1 PanPan1.1 panPan2 PanPan1.1 Ensembl 15 96,535,164 - 96,832,974 (+) Ensembl panpan1.1 panPan2
IGF1R (Canis lupus familiaris - dog)
Dog Assembly Chr Position (strand) Source Genome Browsers JBrowse NCBI UCSC Ensembl CanFam3.1 3 41,795,337 - 42,096,255 (+) NCBI CanFam3.1 CanFam3.1 canFam3 CanFam3.1 CanFam3.1 Ensembl 3 41,794,623 - 42,090,387 (+) Ensembl CanFam3.1 canFam3 CanFam3.1 Dog10K_Boxer_Tasha 3 44,494,039 - 44,797,005 (+) NCBI Dog10K_Boxer_Tasha ROS_Cfam_1.0 3 42,203,106 - 42,506,274 (+) NCBI ROS_Cfam_1.0 ROS_Cfam_1.0 Ensembl 3 42,203,091 - 42,501,470 (+) Ensembl ROS_Cfam_1.0 Ensembl UMICH_Zoey_3.1 3 41,727,974 - 42,030,799 (+) NCBI UMICH_Zoey_3.1 UNSW_CanFamBas_1.0 3 41,958,900 - 42,261,698 (+) NCBI UNSW_CanFamBas_1.0 UU_Cfam_GSD_1.0 3 42,179,556 - 42,481,580 (+) NCBI UU_Cfam_GSD_1.0
Igf1r (Ictidomys tridecemlineatus - thirteen-lined ground squirrel)
Squirrel Assembly Chr Position (strand) Source Genome Browsers JBrowse NCBI UCSC Ensembl HiC_Itri_2 NW_024408640 141,474,253 - 141,770,018 (-) NCBI HiC_Itri_2 SpeTri2.0 Ensembl NW_004936483 4,564,512 - 4,852,925 (+) Ensembl SpeTri2.0 SpeTri2.0 Ensembl SpeTri2.0 NW_004936483 4,563,995 - 4,860,231 (+) NCBI SpeTri2.0 SpeTri2.0 SpeTri2.0
IGF1R (Chlorocebus sabaeus - green monkey)
Green Monkey Assembly Chr Position (strand) Source Genome Browsers JBrowse NCBI UCSC Ensembl ChlSab1.1 29 17,212,206 - 17,534,036 (+) NCBI ChlSab1.1 ChlSab1.1 chlSab2 ChlSab1.1 Ensembl 29 17,459,404 - 17,526,930 (+) Ensembl ChlSab1.1 ChlSab1.1 Ensembl chlSab2 Vero_WHO_p1.0 NW_023666059 29,058,966 - 29,370,219 (-) NCBI Vero_WHO_p1.0 Vero_WHO_p1.0
Igf1r (Heterocephalus glaber - naked mole-rat)
.
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
10
4
23
3
2
5
14
12
23
3
6
3
Too many to show, limit is 500. Download them if you would like to view them all.
Ensembl Acc Id:
ENSSSCT00000005311 ⟹ ENSSSCP00000005181
Type:
CODING
Position:
Pig Assembly Chr Position (strand) Source Sscrofa11.1 Ensembl 1 137,387,825 - 137,691,058 (-) Ensembl
Ensembl Acc Id:
ENSSSCT00000005312 ⟹ ENSSSCP00000005182
Type:
CODING
Position:
Pig Assembly Chr Position (strand) Source Sscrofa11.1 Ensembl 1 137,387,925 - 137,690,666 (-) Ensembl
RefSeq Acc Id:
NM_214172 ⟹ NP_999337
RefSeq Status:
PROVISIONAL
Type:
CODING
Position:
Pig Assembly Chr Position (strand) Source Sscrofa11.1 1 137,390,085 - 137,690,433 (-) NCBI
Sequence:
AAAGGGAATTTCATCCCAAATAAAAGGAATGAAGTCTGGCTCCGGAGGAGGGTCCCCGACCTCGCTGTGGGGGCTCCTGTTTTTCTCCGCCGCGCTCTCGCTCTGGCCGACGAGTGGAGAAATCTGCG GGCCGGGCATTGACATCCGCAACGACTACCAGCAGCTGAAGCGCCTGGAGAACTGCACGGTGATCGAGGGCTACCTCCACATCCTGCTCATCTCCAAGGCTGAGGACTACCGCAGCTACCGCTTTCCC AAGCTCACGGTCATCACCGAGTACCTGCTGCTGTTCCGTGTGGCTGGCCTTGAGAGCCTTGGCGACCTCTTCCCCAATCTCACGGTCATCCGCGGCTGGAAGCTCTTCTACAACTACGCCCTGGTCAT CTTCGAGATGACCAACCTCAAGGACATCGGGCTCTACAACCTGAGGAATATTACCCGGGGGGCCATCAGGATCGAGAAGAATGCCGACCTCTGCTACCTCTCTACGGTGGACTGGTCCCTGATCCTGG ATGCCGTGTCCAATAACTACATCGTGGGCAACAAGCCCCCTAAGGAATGCGGGGACTTGTGCCCAGGGACGCTGGAGGAGAAGCCGCTGTGTGAGAAGACGACCATCAACAACGAGTACAACTATCGC TGCTGGACCACGAACCGCTGCCAGAAAATGTGCCCGAGCGTGTGCGGGAAGCGGGCGTGCACAGAGAACCACGAGTGCTGCCACCCCGAGTGCCTGGGCAGCTGCAGCGCACCCGACAACGACACAGC CTGTGTGGCCTGCCGCCACTACTACTACGCCGGAGTCTGCGTGCCCAGCTGCCCACCCAACACCTACCGCTTCGAGGGCTGGCGCTGCGTGGACCGCGACTTTTGCGCCAACATCCCCAGTGCGGAGA GCAGTGACTCCGAGGGCTTTGTGATCCATGATGGCGAGTGCATGCAGGAGTGCCCTTCAGGCTTCATCCGCAATGGCAGCCAGAGCATGTACTGTATCCCTTGCGAAGGCCCTTGCCCCAAAGTCTGT GAGGAAGAGAAGAAGACAAAGACCATTGATTCTGTCACTTCTGCTCAGATGCTCCAAGGATGCACCATCTTCAAGGGCAACCTGCTCATTAACATCCGACGCGGCAACAACATTGCCTCGGAGCTAGA GAACTTCATGGGGCTCATCGAGGTGGTGACGGGCTACGTGAAGATCCGCCACTCCCATGCCTTGGTCTCCTTGTCCTTCCTGAAAAATCTTCGCCAGATCCTAGGGGAGGAGCAGCTGGAGGGGAATT ACTCCTTCTACGTCCTTGACAACCAGAACTTGCAGCAGCTGTGGGACTGGGACCATCGCAACCTGACCATCAAAGCTGGGAAAATGTACTTTGCTTTCAATCCCAAATTGTGTGTCTCCGAGATTTAC CGCATGGAGGAAGTGACAGGGACTAAAGGGCGCCAGAGCAAAGGGGACATAAACACCAGGAACAATGGAGAGAGAGCCTCCTGTGAAAGTGACGTCCTGCACTTCACCTCCACCACCACGTGGAAGAA CCGCATCATCATCACCTGGCACCGATACCGGCCCCCTGACTACAGGGACCTCATCAGCTTCACTGTCTACTACAAGGAAGCGCCCTTTAAAAACGTCACGGAGTATGATGGGCAGGATGCCTGTGGCT CCAACAGCTGGAACATGGTGGACGTGGACCTCCCTCCCAATAAGGACGTCGAGCCTGGCATTCTACTGCATGGGCTGAAGCCCTGGACACAGTACGCTGTTTACGTCAAGGCCGTGACCCTCACCATG GTGGAGAATGACCACATCCGTGGGGCCAAGAGTGAGATCTTGTACATTCGCACCAATGCTTCAGTTCCTTCCATTCCCCTGGATGTCCTCTCAGCATCAAACTCCTCTTCTCAGCTGATAGTGAAGTG GAACCCGCCCTCCCTGCCCAATGGCAACCTGAGCTACTACATCGTGCGGTGGCAGCGCCAGCCTCAGGACAGCTATCTCTACCGGCATAATTACTGCTCCAAAGACAAAATCCCCATCAGGAAGTATG CTGATGGCACCATTGATGTCGAGGAGGCTACAGAGAACCCCAAGACTGAAGTGTGTGGCGGGGAGAAGGGACCATGCTGTGCTTGCCCCAAAACAGAAGCTGAGAAGCAGGCAGAGAAGGAGGAGGCT GAGTACCGCAAGGTCTTCGAGAACTTCCTGCACAATGCCATCTTTGTGCCCAGACCTGAACGGAAGCGGAGGGAGGTCATGCAGGTCGCCAACACCACCATGTCCAGCCGGAGCAGAAACACCACAGT GGTGGACACCTACAATGTCACGGACCCAGAGGAGCTTGAGACAGAGTACCCTTTTTTTGAGAGCAGAGTGGATAACAAGGAGAGAACTGTCATTTCCAACCTCCGGCCTTTTACTTTGTACCGAATTG ACATCCACAGCTGTAACCATGAGGCTGAGAAGCTGGGCTGCAGTGCCTCCAACTTTGTCTTTGCAAGAACCATGCCTGCAGAAGGAGCAGATGACATTCCTGGGCCAGTGACCTGGGAGCCACGGCCT GAGAACTCCATCTTTTTAAAGTGGCCAGAACCTGAGAATCCTAATGGATTGATTCTAATGTATGAAATAAAATACGGATCACAAGTCGAGGATCAGCGGGAATGTGTGTCCAGACAGGAGTACAGGAA GTATGGAGGGGCCAAGCTGAACAGGCTCAACCCGGGGAACTACACGGCCCGGATTCAGGCCACCTCTCTCTCCGGGAATGGGTCATGGACGGAACCTGTGTTCTTCTACGTCCAGGCCAAAACGACAT ATGAAAACTTCATCCATCTGATCATCGCCCTACCAGTGGCCGTTCTGTTGATAGTAGGAGGGTTGGTTATAATGTTGTACGTCTTCCACAGAAAGAGAAATAACAGCAGGCTGGGGAATGGAGTGCTG TATGCTTCCGTGAACCCGGAGTACTTCAGCGCAGCTGATGTGTACGTGCCCGACGAGTGGGAGGTCGCCCGGGAGAAGATCACCATGAGCCGGGAGCTGGGACAGGGCTCCTTCGGGATGGTTTATGA AGGCGTCGCCAAGGGTGTGGTCAAAGATGAGCCTGAGACCAGGGTGGCCATTAAGACAGTGAATGAGGCCGCCAGCATGCGTGAGAGGATTGAGTTTCTCAACGAGGCCTCCGTGATGAAGGAGTTCA ACTGTCACCACGTGGTGCGGCTGCTGGGTGTGGTGTCCCAGGGCCAGCCAACGCTGGTCATCATGGAACTGATGACCCGGGGGGACCTCAAAAGTTATCTCCGGTCTCTGAGACCAGAAATGGAGAAT AATCCAGTCCTAGCACCTCCAAGCCTAAGCAAAATGATCCAGATGGCTGGAGAGATTGCAGATGGCATGGCATACCTCAACGCCAATAAGTTTGTCCACAGAGACCTCGCTGCCCGGAACTGTATGGT GGCCGAAGACTTCACAGTCAAAATCGGAGATTTTGGGATGACGAGAGACATCTATGAGACAGACTATTACCGCAAGGGAGGGAAAGGGCTGCTGCCTGTGCGCTGGATGTCCCCTGAGTCCCTCAAGG ACGGAGTCTTCACCACGCACTCTGATGTCTGGTCCTTCGGGGTCGTCCTCTGGGAGATTGCCACGCTGGCCGAGCAGCCATACCAGGGCTTGTCCAACGAGCAAGTCCTTCGCTTCGTCATGGAGGGC GGCCTTCTGGACAAGCCGGACAACTGTCCCGACATGCTGTTTGAGCTGATGCGCATGTGCTGGCAGTACAACCCCAAGATGAGGCCTTCCTTCCTGGAGATCATCAGCAGCATCAAGGACGAGATGGA GCCTGGCTTCCGGGAGGTCTCCTTCTACTACAGTGAGGAGAACAAGCCGCCTGAGCCGGAGGAGCTGGACCTGGAGCCGGAGAACATGGAGAGCGTCCCCCTGGACCCCTCGGCCTCCTCGTCCTCCC TGCCGCTGCCCGACAGACACTCAGGACACAAGGCTGAGAACGGCCCAGGCCCTGGCGTGCTGGTGCTGCGAGCCAGCTTCGACGAGAGACAGCCTTACGCGCACATGAACGGGGGCCGCAAGAACGAG CGGGCCCTGCCTCTGCCCCAGTCCTCGACCTGCTGATCCTGGATCCCGATCCCGTGCAAACAGTACCGTGCGCACGCGGGCGGGCGGGGGGAGAGTTTTAACAATCTATTCACAAGCCTCCTGTACCT CAGTGGATCTTC
hide sequence
RefSeq Acc Id:
XM_021082915 ⟹ XP_020938574
Type:
CODING
Position:
Pig Assembly Chr Position (strand) Source Sscrofa11.1 1 137,383,623 - 137,691,038 (-) NCBI
Sequence:
CGCGGCAGGAGTGCTGAGCGCGGCGCGGCCGGCCCGCCGCTTTGTGTGTGTCCTGGATTTGGGA AGGAGCTCGCGGCGGCGGCGGCGGCGCTGAGGGAGGAGGAGGCGGCGGCGAGTGGAGCCTGGAGGAGGAGGAGGGGGAGCCGCTCATTCATTTTTACTCCGCATTTCTGCCCCCGGCCGGCCTCTCCT GAGACCCAGACTTCGGGGCAATCTTGCGAACTGCGTCGCGCCCTCCCACCGCTAAGGCTCAGGGGTCGGACAGTCTCCCCCTCCTTCTGGGGTCGGGTTTGTTTTTCCTCGCTGAGACGGATTTGGGC TTTGCCTCTTTTCTTTGCAGTTTTTCATCCTCTCCTGCCTCTCTCGGTTTGAAAATGGAGGCCGACGACGCCGACAGCCCGCCCCGGCGCGCCTTGGGTTCCCGACTCCGCCGAGCCCTGGGCCGCGG TTGCCGGCGCTGAGGGGCCGCCCCGTCCGCGCTGCCCGGCGGACCCCCCGACCGGCGCCGCCTTTGGAGTATTGTTTCCTTCGCCCTTGTTTTTGGAGGGGTGGGCGAAGACTGAGTTTGAGACTTTT TCGTTTCCTCCCCCCCTTTTTTTTTGAGAAAGGGGAATTTCGTCCCAAATAAAAGGAATGAAGTCTGGCTCCGGAGGAGGGTCCCCGACCTCGCTGTGGGGGCTCCTGTTTTTCTCCGCCGCGCTCTC GCTCTGGCCGACGAGTGGAGAAATCTGCGGGCCGGGCATTGACATCCGCAACGACTACCAGCAGCTGAAGCGCCTGGAGAACTGCACGGTGATCGAGGGCTACCTCCACATCCTGCTCATCTCCAAGG CTGAGGACTACCGCAGCTACCGCTTTCCCAAGCTCACGGTCATCACCGAGTACCTGCTGCTGTTCCGTGTGGCTGGCCTTGAGAGCCTTGGCGACCTCTTCCCCAATCTCACGGTCATCCGCGGCTGG AAGCTCTTCTACAACTACGCCCTGGTCATCTTCGAGATGACCAACCTCAAGGACATCGGGCTCTACAACCTGAGGAATATTACCCGGGGGGCCATCAGGATCGAGAAGAATGCCGACCTCTGCTACCT CTCTACGGTGGACTGGTCCCTGATCCTGGATGCCGTGTCCAATAACTACATCGTGGGCAACAAGCCCCCTAAGGAATGCGGGGACTTGTGCCCAGGGACGCTGGAGGAGAAGCCGCTGTGTGAGAAGA CGACCATCAACAACGAGTACAACTATCGCTGCTGGACCACGAACCGCTGCCAGAAAATGTGCCCGAGCGTGTGCGGGAAGCGGGCGTGCACAGAGAACCACGAGTGCTGCCACCCCGAGTGCCTGGGC AGCTGCAGCGCACCCGACAACGACACAGCCTGTGTGGCCTGCCGCCACTACTACTACGCCGGAGTCTGCGTGCCCAGCTGCCCACCCAACACCTACCGCTTCGAGGGCTGGCGCTGCGTGGACCGCGA CTTTTGCGCCAACATCCCCAGTGCGGAGAGCAGTGACTCCGAGGGCTTTGTGATCCATGATGGCGAGTGCATGCAGGAGTGCCCTTCAGGCTTCATCCGCAATGGCAGCCAGAGCATGTACTGTATCC CTTGCGAAGGCCCTTGCCCCAAAGTCTGTGAGGAAGAGAAGAAGACAAAGACCATTGATTCTGTCACTTCTGCTCAGATGCTCCAAGGATGCACCATCTTCAAGGGCAACCTGCTCATTAACATCCGA CGCGGCAACAACATTGCCTCGGAGCTAGAGAACTTCATGGGGCTCATCGAGGTGGTGACGGGCTACGTGAAGATCCGCCACTCCCATGCCTTGGTCTCCTTGTCCTTCCTGAAAAATCTTCGCCAGAT CCTAGGGGAGGAGCAGCTGGAGGGGAATTACTCCTTCTACGTCCTTGACAACCAGAACTTGCAGCAGCTGTGGGACTGGGACCATCGCAACCTGACCATCAAAGCTGGGAAAATGTACTTTGCTTTCA ATCCCAAATTGTGTGTCTCCGAGATTTACCGCATGGAGGAAGTGACAGGGACTAAAGGGCGCCAGAGCAAAGGGGACATAAACACCAGGAACAATGGAGAGAGAGCCTCCTGTGAAAGTGACGTCCTG CACTTCACCTCCACCACCACGTGGAAGAACCGCATCATCATCACCTGGCACCGATACCGGCCCCCTGACTACAGGGACCTCATCAGCTTCACTGTCTACTACAAGGAAGCGCCCTTTAAAAACGTCAC GGAGTATGATGGGCAGGATGCCTGTGGCTCCAACAGCTGGAACATGGTGGACGTGGACCTCCCTCCCAATAAGGACGTCGAGCCTGGCATTCTACTGCATGGGCTGAAGCCCTGGACACAGTACGCTG TTTACGTCAAGGCCGTGACCCTCACCATGGTGGAGAATGACCACATCCGTGGGGCCAAGAGTGAGATCTTGTACATTCGCACCAATGCTTCAGTTCCTTCCATTCCCCTGGATGTCCTCTCAGCATCA AACTCCTCTTCTCAGCTGATAGTGAAGTGGAACCCGCCCTCCCTGCCCAATGGCAACCTGAGCTACTACATCGTGCGGTGGCAGCGCCAGCCTCAGGACAGCTATCTCTACCGGCATAATTACTGCTC CAAAGCAGACAAAATCCCCATCAGGAAGTATGCTGATGGCACCATTGATGTCGAGGAGGCTACAGAGAACCCCAAGACTGAAGTGTGTGGCGGGGAGAAGGGACCATGCTGTGCTTGCCCCAAAACAG AAGCTGAGAAGCAGGCAGAGAAGGAGGAGGCTGAGTACCGCAAGGTCTTCGAGAACTTCCTGCACAATGCCATCTTTGTGCCCAGACCTGAACGGAAGCGGAGGGAGGTCATGCAGGTCGCCAACACC ACCATGTCCAGCCGGAGCAGAAACACCACAGTGGTGGACACCTACAATGTCACGGACCCAGAGGAGCTTGAGACAGAGTACCCTTTTTTTGAGAGCAGAGTGGATAACAAGGAGAGAACTGTCATTTC CAACCTCCGGCCTTTTACTTTGTACCGAATTGACATCCACAGCTGTAACCATGAGGCTGAGAAGCTGGGCTGCAGTGCCTCCAACTTTGTCTTTGCAAGAACCATGCCTGCAGAAGGAGCAGATGACA TTCCTGGGCCAGTGACCTGGGAGCCACGGCCTGAGAACTCCATCTTTTTAAAGTGGCCAGAACCTGAGAATCCTAATGGATTGATTCTAATGTATGAAATAAAATACGGATCACAAGTCGAGGATCAG CGGGAATGTGTGTCCAGACAGGAGTACAGGAAGTATGGAGGGGCCAAGCTGAACAGGCTCAACCCGGGGAACTACACGGCCCGGATTCAGGCCACCTCTCTCTCCGGGAATGGGTCATGGACGGAACC TGTGTTCTTCTACGTCCAGGCCAAAACGACATATGAAAACTTCATCCATCTGATCATCGCCCTACCAGTGGCCGTTCTGTTGATAGTAGGAGGGTTGGTTATAATGTTGTACGTCTTCCACAGAAAGA GAAATAACAGCAGGCTGGGGAATGGAGTGCTGTATGCTTCCGTGAACCCGGAGTACTTCAGCGCAGCTGATGTGTACGTGCCCGACGAGTGGGAGGTCGCCCGGGAGAAGATCACCATGAGCCGGGAG CTGGGACAGGGCTCCTTCGGGATGGTTTATGAAGGCGTCGCCAAGGGTGTGGTCAAAGATGAGCCTGAGACCAGGGTGGCCATTAAGACAGTGAATGAGGCCGCCAGCATGCGTGAGAGGATTGAGTT TCTCAACGAGGCCTCCGTGATGAAGGAGTTCAACTGTCACCACGTGGTGCGGCTGCTGGGTGTGGTGTCCCAGGGCCAGCCAACGCTGGTCATCATGGAACTGATGACCCGGGGGGACCTCAAAAGTT ATCTCCGGTCTCTGAGACCAGAAATGGAGAATAATCCAGTCCTAGCACCTCCAAGCCTAAGCAAAATGATCCAGATGGCTGGAGAGATTGCAGATGGCATGGCATACCTCAACGCCAATAAGTTTGTC CACAGAGACCTCGCTGCCCGGAACTGTATGGTGGCCGAAGACTTCACAGTCAAAATCGGAGATTTTGGGATGACGAGAGACATCTATGAGACAGACTATTACCGCAAGGGAGGGAAAGGGCTGCTGCC TGTGCGCTGGATGTCCCCTGAGTCCCTCAAGGACGGAGTCTTCACCACGCACTCTGATGTCTGGTCCTTCGGGGTCGTCCTCTGGGAGATTGCCACGCTGGCCGAGCAGCCATACCAGGGCTTGTCCA ACGAGCAAGTCCTTCGCTTCGTCATGGAGGGCGGCCTTCTGGACAAGCCGGACAACTGTCCCGACATGCTGTTTGAGCTGATGCGCATGTGCTGGCAGTACAACCCCAAGATGAGGCCTTCCTTCCTG GAGATCATCAGCAGCATCAAGGATGAGATGGAGCCTGGCTTCCGGGAGGTCTCCTTCTACTACAGTGAGGAGAACAAGCCGCCTGAGCCGGAGGAGCTGGACCTGGAGCCGGAGAACATGGAGAGCGT CCCCCTGGACCCCTCGGCCTCCTCGTCCTCCCTGCCGCTGCCCGACAGACACTCAGGACACAAGGCTGAGAACGGCCCAGGCCCTGGCGTGCTGGTGCTGCGAGCCAGCTTCGACGAGAGACAGCCTT ACGCGCACATGAACGGGGGCCGCAAGAACGAGCGGGCCCTGCCTCTGCCCCAGTCCTCGACCTGCTGATCCTGGATCCCGATCCCGTGCAAACAGTACCGTGCGCACGCGGGCGGGCGGGGGGAGAGT TTTAACAATCTATTCACAGCCTCCTGTACCTCAGTGGATCTCCAGAACTGCCATTGCTGCCCACGGGAGACGGCTTCTCTGCAGTAAACACATTTGGGATGTTCCTTTTTTCAATATGCAAGCAGCTT TTTATTTCCCAACCCAAACCCTTAACTGACACGGGCCTTTAAGAACCTTAATGACAACACTTAATAGCAACAGAACACTTGAGAATCAAGCCTCCTCACCCCCTCCCTGTCCCTCTCTCCTCTTTCTC CCTCTGTCTCTCACCTTTTTCTTTCTGCTTCTCGATGGAAACGCATTTGCTGCAAGCCCAGCCGGGACGCCCTTCATGTAGGATTGAGGAAAGAGCTGTCCCTCCAAGGCCCCACCTTGCCCCAAACA CACCATAGGTCTTTGTAAAAAAACATGTTGAGATGAAAATTTTTAACTGAATCTTGAACCTTTAGGGACATACGAAATTTAAAAAGGGCCATCATTCATCCCAGGTTGTCACCATGTTAACGCTGCCA AATTTCTGCCACAACCCCGCACTTTCTCCCTCACTGTCCCCTCACTGTCGTCTTGTCTCCAGAGACCCCGGGGCGAGCACGGTAGCTGGTCACTTGTAAGAGCCACGCTGATGATGCTCTCCGCCCGA TCGGCCCCAGGGTTCTTTTCAAGTCTCACATTCACACAGGTGTAACTGCTTGTGACAAGGTTGTCACTTGGGGGAACTGGACAGAATGAGACTGTGTCTCAGTGAAGATGGGGAGAAGCGTCCCCGCC CCACCTTCCACACCCCCACCTTCTAACCCCCAGGAATTCTGGAGCAAACAGGCCCTCTCAGGAGCCTGGAAGATAGGCTTTGAGTAAAGGTCATCCCCATGCCAGTCTCCTGTTCCCCCCAACCCCAG CTCCTTCTCGGCCCCCAAGGACACAGACAGGAAGGGGTTTCCAGGGACTCAGCCCAACTGTTTATGCAGGTTTGCAAGGAAAGAAATTCAAACACCACAACAACAGTACGAAGAAAAACAGTAAATGG ATTCAAGCATTCTAAGCTTTGTTGACATTTTCTCTGTTACTAGGACTTCTTCATGGGTCTTACAGTTCTATGTTAGACCATGAAACATTTGCATACACATCGTCTTTAATGTCACTTTTATAACTTTT TTACGGTTCAGATATTCATCTATACGTCTGTACAGAAAAAAAAAAAAGCTGCTATTTTTTTTGTTCTTTATCTTTGTGGATTTAATCTATGAAAACCTTCAGGTCTACCCTTCTTCCCTCTCTGCTCA CTCCAAGAAACTTCTTAATGCTTTGTACTAGAGTGCGTGACTTTCTTCCTCTTTTCCCAGTAATTGATACTTATATAACATAATTTGCCATGAACTGTTTGATGCCTTTTTATAAATACATCCCCCCT ACCGACTCCACCTGCCCCATTAGTTCTGTTCTACCCCATAGGCTCTGTGGGCACGAGGCTGGCGAGGGGAGGCGGCGGAGAGAAGGTGGGCACTTGCCCGGAGAGGCTCCCCTCTCTCCCCAGCCTGC TCTCACACAGCATTTGAGTCTGTTACAGTGCAAGACATGATACAAACTCAGGTCAGAAAAAAAGGTTAAATATTTCGCACATCCTTGTTCAGTGTTCATATTCACCATTGTTGAAAAGTCTCACCTTC TCTTTCCCTTGCCTTTGTTTTGGTTGTGACACACATATATCTATTTTTTTAATTCTTGGGTACAACAGCAGTTTTATCTGCAGACACTAGGCATTTGGATGATTTTTTTTTTTAATGGCTATTTAATC CTTCCATCCCATGGAAAACAGCTGCTGAGTCCAGGGGTGCAGTGGAGTGCGCTCCGGCGGCCCTCTGCGGGCTCCTGCCACCACCCTCCAGACTGACCTACCTGTCTTTAGAACCAGAGACTCCCTAG GGACCCCGGGCAGCGATGGGAGTGGGGCAGAGGGGCAGCATCCTCGGGGTGCCGGCCAGCCAGCTGCCAGGCTGGGACAGCACAGGCGCCCGGAGCCCTGGCGCGGGCGTGCTGTTCCTCTGCCAGGA AGCCAAGTCCTCAGGCTCGGGGGTCTTGTTTTGTTTAGTTTTTAGCACTTCTCACCAGAGTGATGACAGCACAAGAGTTGCTTCTGGGATGGAAATGTTTAAATTATGAGTAAGAACAAGGCTACAAT ACGATGATTGCTAGTTGTGACTGGAGATTGAACACAAAAAAGAAAGTTTGTAGTGCTTTTTTGTGTCAGTAGTTTCATAGTTTCAGTCCCACTGTTCTCTCTAGTCCCTGTCCCATAGTTTTTCCCTT AAAAAAAAAAGAGAAAAAGAAAAAATTAAGAAGGTATTATATGTAGGAGTGTTCTTTTAATTTATTTTGTGATACCAGTTTCAATCACTGTAGAGAAGCCCCATTATGAATTTAAATACTGAGGAAAG GGTTTGTGTGTGTGTGCGCGTGTCAGACGGGACAGTTTTTTGTTTTTGTTTTTGTTTTTTTTTTTTCCCAGACATTTATCTACCTCACTCTTATTTTTTATATGTGTATATATAAAAAAGAATACATC TCACACTTCTCAGCACCTGACAATATGCCGTTGATACTGGTAACCTCATCCACACCGCAGGCCGCACACACCAGGTGACGGGGGGGAGAGGCCAGGCTGTATTCCGGGGTCAAAGCAACACTAACTCA CCTCTGCACTCATTTCATACAGCTCGCCTTCTTCTGCAACTTCTCAGTTTGCATTGCTTCTGTTCTTCTCCTGACTTGGCTTCCCAGGAGGTGGTGAGGGCCGGTGCTGCCTGAGGGGCCCGGGCTGG TTGGTTTTGAAACCAACTGCTTTGTGCAGATTGAGCCGCATACAGATTCCACGGGGGAAGATCAGGTCTCCGGGACAGACAGTGCGGGTGAGGGGCAGGCAGTGCCTCGCTAGCAGGCCCTAAGGCCA TGGGTGGGTGCTGAGCCTCCTCCAGGCCTTCTGCTCCTGGTTGCTGACCCGAAGGCCAGTCCCATGCAGAATGTACAGACAAGAGTCCCCTTCTCCCTCTCCAAACTGTTCTCTCAACCTCACGCTCG CTTCCTCCCCCAGGGGAAAACGAAGACGTACCAAACCTTTGGGCTGGAAGGGGCCCCCGCCAGGGCGGGCTGTGCCTTGTCCCCTCATCCCGCTGCTCAGGGGTGGACGGCACATCCCCATTCCAGCA GCTGCTCTCACAGGCACTGGCGTTTTATCTGGGAAACACGGGGCGGGGGAGGTTCCCAAAGCGTGGCGGCTCTTTCACAGTCCCAGGACTGCAGTTCCGCCCAGGAGCTCTTCCCTCCTGCTAGGACA TCCCCTTCTCCTTTCCCAAGTCCCCTGGGAACTTAAGGTCATTGAGAAATAGTGTTTGATCAGGGTTTTCCCGCTTCCACACTGTAGGTGACCCCTTGGAATAGTGGCCTCTCCTCTCTTTTGCACAT ACCTACCGGTTTCCACAACTGGATTTCTACAGATCATTCAGCTGGTTTTTAGGGTTTTTATTTAAACTGTCCGAGTTGTTGGTGTCACTTTGTTTTTGTTTTACGTAGGTGGTTTTCCTTTAGTAGAA AGAAAACACTAACAGTGTAGTGCCCATCATAACAAATGCTTCAGAAACACTTAAATAAAAACTTTTGCTTGTGTGATGGTGCAGTCATTTTACTGGACCAAATCACCCACCTTGACTATACCAAGGCA TCATGTATCCACAGTTCTAGCCTAATTTTATGCTGATTTCCCCCACCTCTTCTCAGTTTCCTCCTTTGTATGCTCCAAATAACTTAATCAAACTGAGTTGTGGCATTCTCCATGCAGCCTCCTTCTGA CAGCAGCTCACTGCTTGAAGTGACGTGAACCACTGAGGCACATCGTTGAATTGATGTGAGCATTAAAACATTACCACACACAGCCCTTCCCTGAGGCAGCGGGAGCTGGTGTATTCTGGAGACGTTGT TGAACTTCAACTGGGTAACACCCAGACCACCCCAGGTCTCCATTATGGGATGTCCTGACGTTTAACACAGGTGGAATGAGCTTCCTCCTTGGAAGATAGAAGACCATGTTCATGGCCGACACTGGCCT TTCCTTTCAGCCTCTTTCTTATGACTTGGAACAACATTTCAATAGTGGTGGTTATTGTGGAACTAGCCAACGGCAAAGTGCTTGGCATGGCATGGTGTGTTTCAGTTGGGATAACAGATCTAAGAGCC AAGTAAGATGCCAAACTCTAGGCCAGTCTGTTCCACCGAGGCCTCTTTCTCAGCAGCCTACCTCTGCCGGCAGGTGGCTGCACTGAATGAAGGCCACTGTTACGGCAAGGTCACACTAGCTCAGATCA GTGAGAAGGCTAGGATGCTTGGTCCAAGGTCCTCAGCTGTCACTGTTGGGTCCTCCGGCTAGACAGTGTCAAAGGAAGTTACTCCTTTCCAAAACACAGGCGCCCTCCAGTTGACAGTAAAGCTCCAT GGTATGCCTTGACCCATTCCAACAGTCCCAGTAGTGCATTTAAGGTTTGGGGTTTGTTCTTTCGTTAATGTTACTTTTGTGTTTGTCGGCTGTCTTTTCATTTCCTGGGCTAAGCAGCATTGGGAGAT ATGGACCAGAGATCCACCCTTTAAGAACCAGTGATGAAAATCAAACTTTCTTACTCCACTCTGACATAGTTGGTGGTACAAAGGAGAACTTCAAGAGAGGATGTTGTTTAGCTTGAACCTCTGTTGCC AGAGATGCTGAAGATACAGACCTTGGACAGGCCAAAAGTTTTCGTTTTTGGCTCCCAGCTTAGATGACTAGTTGGTCATTTTGAGAAAAAGCAGATGAACACTCCTTGATGGTGGAATGATGAGGCAG CAGGAAACCACTGTAACAGGGATCATGAATGACATGGAGAGAGGAATCACGAGCAGAAGGTGCAGGGCTTGGAAGAAGTGTGGGCTGTGTTTGGAACTTGATGGTTTCTGAAGGGATCAGACCACATC AAGGCTCAAGAGTCATCCATGGGCATTTGGTTTCAACAAATAAACCTAACATCCTACTTTCGAAACTGCTACTGCAGAGTTCAGTCAAATTGTTCAAGAATACAAACTGCATCGCACCCGTCAGTTGT CAGTTCTGGGGCATGACTTTAGGGTTTTGTTTTATTTTGTTTATGCAAGAACATAATGATCACTCATCTGTATGTCCACGTTTGTGTGTGTCCACATCTTCCTGGTAAACATCGTTTTAATTAGTCAC TCATTAGCGTTTTCAATAGGGCTCTTAAGTCCAGTAGATTACGGGTAGTCAGTTGACGAAGATCTGGTTTACAAGAACTAATTAAATGTTTCATTGCATTTTTGTAAGAACATAGAATAATTTTATAA AATGTTTGTAGTTTATAATTGCCGAAAATAATTTAAAGACACCTTTTTTCTCTGTGTGTGCAAATGTGTGTTTGTGATCCATTTTTTTAGGACACCTGTTTACTAGCTAGCTTTACAATATGCCAAAA ACAGATTTTTCCCTGACCCAAGCCGTGGTTCACCCTCTTTTCCCCCCATGCTTTGTGCCCTAGTTTATAACAAAGGAATGATGATGATTTAAGAAGTAGTTCTGTATCTTCAGTATCTTGGTCTTCCA GAACCCTCTGGTTGGGAAGGGGATCATCTTTTACTGGTCATTTCCCTTTGGAGTGTAGCTACTTTAACAGACCGAACGAACCTCATTGGCCAAGGAAACAGCAGAGGTGTTACAGCCTGGCGGTGCCT GTGGCACCATAAGCATCTGGTTTGGCAGGTTTGGTAGTTGTCCTCTTATGCAGTGCCTCGAGATGGAAGGACTCCATTGCACATCTAGTGGCTTTCACCGTGACACAGCACACAGACTTATCATACAA AAGCTGATAATTCTGGTGCCCGAAAGCCACTGGCTTACATGCCTCATATCATGACTAATGCTTTGTTATTACATGTAAGAGATTCTATTTATTTTTATTTAAGGCAGAACACCGAAGATAGTTCTTTT TCAATATAGTACAAATTTGTTGTAATAAAAACCATGCACATGCAAGATTTTTTTAAGTTTGACACCATTCCCTCTGGTTCCCAATGGACTATTTGCCATGTCTACACAACTCCACAAAATCCCCATCG TTGGAAACATCTGGATGTTTTGCACTACATGGGAGAAAGGTCCAGAAACAATTTGGGTTTTGTTTGTAACTTTCCATTTGGATGTCTGGCGTTGCATAGACACCATCCACAGGTGGAACAGATGCTTG GCAAAAACACCTGTCTGCTTTCTAAGCCAGTGAGGTTGAGGTGAGAGGTTTGCCAGAGTTTGTCTACCTCTGGGACAGAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAATTCAA ACCAGAAGGCGCGATGGAATGGATGCATCGCAAATAATGCATTTTCTGAGTTTTCTTGTTTTAAAAAAAAGTTTTTAAAAAAAAAAACTAAAAAAAAAAAAAA
hide sequence
RefSeq Acc Id:
XM_021082918 ⟹ XP_020938577
Type:
CODING
Position:
Pig Assembly Chr Position (strand) Source Sscrofa11.1 1 137,383,623 - 137,689,849 (-) NCBI
Sequence:
GCAGCACCCTCGCTGCTTGGGCGGACTCTGTGCCCGGTAGCAGGAGTGGGCAGCCCACCAGCCTCAGGGGTGCCCGGCGGAGAGGCCCCGCAGTCCCCAGGACAGGTTACCAAATATCCTAGCGCGGC CTCCTGTCGTCCAGCCTTGCCCCTTGGGCTCTTTGGGTTCCTGGCCTTCCCTGTCGCTTTCACCGGACTCCGTGCGGTCACCTGCCCCCCGTTTCTTGGGGCTGCTCAGTATGGCTCAGGGATGCGGG AAGCGTTCTCGCCTAGATCTCCACCCCTCCATGCACCCCCTGGAAAAGTGCGAGGTCCGGGCCCTGTATCAGTCGGGCTCTTCCGGGAAGCGCGTCCAGACCCCTAGTAAGAGTTCTGGGATCTTCTC CCAGTTTCTACCGGACTCTGGACGCTCTTGGCGGAACTAGGGGGTGGTAGGACAGCATCCGAGTGTGCGGGAGTGGGTGTGTGGTCGGAGCCGACGTGCATTTCCACACACGTGCTCACAACGCGAGG CTTTAGCTGCAGCCACATGGCTGCTCAGGGACACCCAGACGCCCGGCCCTGGCGAAAGGTATCTTGTGTCGTCGTTTATGGAGCTCCAGGGTCTGCGACGGAGGGTGTTTTGTTTTGCAAGCGCGCAG CCCTGGCCTTGGTTTCGTGGCCATAGTTTTGTTGCACTCCCCCCCTCCCTGCCCCGCACTTCCTTTGTACACAGTTAATAAGGATATCGCTCCACACGCTATCGCTTGCAATCTGATAGCTTTTGTTT TGGTAGCGTCGGGTAGGGGGCAGGGAAGTGCTGGGAGGGAGGGAGAACTTAGGGCCCCGCGGGTGTGTGGAGGGGTGAAAGGAGAGGGTTCTTTTCTTCTCAAAACATTAAAATGAGGCTTACTGGTA CATTCTCGATGGCAGGGTAACTTGAACACGATTAAAGTTTAAATGCAGTCACAGAACTGGGGCTGGGAACGGCGAGGGCGTGTTGTCTGCGGGCCGGGCATTGACATCCGCAACGACTACCAGCAGCT GAAGCGCCTGGAGAACTGCACGGTGATCGAGGGCTACCTCCACATCCTGCTCATCTCCAAGGCTGAGGACTACCGCAGCTACCGCTTTCCCAAGCTCACGGTCATCACCGAGTACCTGCTGCTGTTCC GTGTGGCTGGCCTTGAGAGCCTTGGCGACCTCTTCCCCAATCTCACGGTCATCCGCGGCTGGAAGCTCTTCTACAACTACGCCCTGGTCATCTTCGAGATGACCAACCTCAAGGACATCGGGCTCTAC AACCTGAGGAATATTACCCGGGGGGCCATCAGGATCGAGAAGAATGCCGACCTCTGCTACCTCTCTACGGTGGACTGGTCCCTGATCCTGGATGCCGTGTCCAATAACTACATCGTGGGCAACAAGCC CCCTAAGGAATGCGGGGACTTGTGCCCAGGGACGCTGGAGGAGAAGCCGCTGTGTGAGAAGACGACCATCAACAACGAGTACAACTATCGCTGCTGGACCACGAACCGCTGCCAGAAAATGTGCCCGA GCGTGTGCGGGAAGCGGGCGTGCACAGAGAACCACGAGTGCTGCCACCCCGAGTGCCTGGGCAGCTGCAGCGCACCCGACAACGACACAGCCTGTGTGGCCTGCCGCCACTACTACTACGCCGGAGTC TGCGTGCCCAGCTGCCCACCCAACACCTACCGCTTCGAGGGCTGGCGCTGCGTGGACCGCGACTTTTGCGCCAACATCCCCAGTGCGGAGAGCAGTGACTCCGAGGGCTTTGTGATCCATGATGGCGA GTGCATGCAGGAGTGCCCTTCAGGCTTCATCCGCAATGGCAGCCAGAGCATGTACTGTATCCCTTGCGAAGGCCCTTGCCCCAAAGTCTGTGAGGAAGAGAAGAAGACAAAGACCATTGATTCTGTCA CTTCTGCTCAGATGCTCCAAGGATGCACCATCTTCAAGGGCAACCTGCTCATTAACATCCGACGCGGCAACAACATTGCCTCGGAGCTAGAGAACTTCATGGGGCTCATCGAGGTGGTGACGGGCTAC GTGAAGATCCGCCACTCCCATGCCTTGGTCTCCTTGTCCTTCCTGAAAAATCTTCGCCAGATCCTAGGGGAGGAGCAGCTGGAGGGGAATTACTCCTTCTACGTCCTTGACAACCAGAACTTGCAGCA GCTGTGGGACTGGGACCATCGCAACCTGACCATCAAAGCTGGGAAAATGTACTTTGCTTTCAATCCCAAATTGTGTGTCTCCGAGATTTACCGCATGGAGGAAGTGACAGGGACTAAAGGGCGCCAGA GCAAAGGGGACATAAACACCAGGAACAATGGAGAGAGAGCCTCCTGTGAAAGTGACGTCCTGCACTTCACCTCCACCACCACGTGGAAGAACCGCATCATCATCACCTGGCACCGATACCGGCCCCCT GACTACAGGGACCTCATCAGCTTCACTGTCTACTACAAGGAAGCGCCCTTTAAAAACGTCACGGAGTATGATGGGCAGGATGCCTGTGGCTCCAACAGCTGGAACATGGTGGACGTGGACCTCCCTCC CAATAAGGACGTCGAGCCTGGCATTCTACTGCATGGGCTGAAGCCCTGGACACAGTACGCTGTTTACGTCAAGGCCGTGACCCTCACCATGGTGGAGAATGACCACATCCGTGGGGCCAAGAGTGAGA TCTTGTACATTCGCACCAATGCTTCAGTTCCTTCCATTCCCCTGGATGTCCTCTCAGCATCAAACTCCTCTTCTCAGCTGATAGTGAAGTGGAACCCGCCCTCCCTGCCCAATGGCAACCTGAGCTAC TACATCGTGCGGTGGCAGCGCCAGCCTCAGGACAGCTATCTCTACCGGCATAATTACTGCTCCAAAGCAGACAAAATCCCCATCAGGAAGTATGCTGATGGCACCATTGATGTCGAGGAGGCTACAGA GAACCCCAAGACTGAAGTGTGTGGCGGGGAGAAGGGACCATGCTGTGCTTGCCCCAAAACAGAAGCTGAGAAGCAGGCAGAGAAGGAGGAGGCTGAGTACCGCAAGGTCTTCGAGAACTTCCTGCACA ATGCCATCTTTGTGCCCAGACCTGAACGGAAGCGGAGGGAGGTCATGCAGGTCGCCAACACCACCATGTCCAGCCGGAGCAGAAACACCACAGTGGTGGACACCTACAATGTCACGGACCCAGAGGAG CTTGAGACAGAGTACCCTTTTTTTGAGAGCAGAGTGGATAACAAGGAGAGAACTGTCATTTCCAACCTCCGGCCTTTTACTTTGTACCGAATTGACATCCACAGCTGTAACCATGAGGCTGAGAAGCT GGGCTGCAGTGCCTCCAACTTTGTCTTTGCAAGAACCATGCCTGCAGAAGGAGCAGATGACATTCCTGGGCCAGTGACCTGGGAGCCACGGCCTGAGAACTCCATCTTTTTAAAGTGGCCAGAACCTG AGAATCCTAATGGATTGATTCTAATGTATGAAATAAAATACGGATCACAAGTCGAGGATCAGCGGGAATGTGTGTCCAGACAGGAGTACAGGAAGTATGGAGGGGCCAAGCTGAACAGGCTCAACCCG GGGAACTACACGGCCCGGATTCAGGCCACCTCTCTCTCCGGGAATGGGTCATGGACGGAACCTGTGTTCTTCTACGTCCAGGCCAAAACGACATATGAAAACTTCATCCATCTGATCATCGCCCTACC AGTGGCCGTTCTGTTGATAGTAGGAGGGTTGGTTATAATGTTGTACGTCTTCCACAGAAAGAGAAATAACAGCAGGCTGGGGAATGGAGTGCTGTATGCTTCCGTGAACCCGGAGTACTTCAGCGCAG CTGATGTGTACGTGCCCGACGAGTGGGAGGTCGCCCGGGAGAAGATCACCATGAGCCGGGAGCTGGGACAGGGCTCCTTCGGGATGGTTTATGAAGGCGTCGCCAAGGGTGTGGTCAAAGATGAGCCT GAGACCAGGGTGGCCATTAAGACAGTGAATGAGGCCGCCAGCATGCGTGAGAGGATTGAGTTTCTCAACGAGGCCTCCGTGATGAAGGAGTTCAACTGTCACCACGTGGTGCGGCTGCTGGGTGTGGT GTCCCAGGGCCAGCCAACGCTGGTCATCATGGAACTGATGACCCGGGGGGACCTCAAAAGTTATCTCCGGTCTCTGAGACCAGAAATGGAGAATAATCCAGTCCTAGCACCTCCAAGCCTAAGCAAAA TGATCCAGATGGCTGGAGAGATTGCAGATGGCATGGCATACCTCAACGCCAATAAGTTTGTCCACAGAGACCTCGCTGCCCGGAACTGTATGGTGGCCGAAGACTTCACAGTCAAAATCGGAGATTTT GGGATGACGAGAGACATCTATGAGACAGACTATTACCGCAAGGGAGGGAAAGGGCTGCTGCCTGTGCGCTGGATGTCCCCTGAGTCCCTCAAGGACGGAGTCTTCACCACGCACTCTGATGTCTGGTC CTTCGGGGTCGTCCTCTGGGAGATTGCCACGCTGGCCGAGCAGCCATACCAGGGCTTGTCCAACGAGCAAGTCCTTCGCTTCGTCATGGAGGGCGGCCTTCTGGACAAGCCGGACAACTGTCCCGACA TGCTGTTTGAGCTGATGCGCATGTGCTGGCAGTACAACCCCAAGATGAGGCCTTCCTTCCTGGAGATCATCAGCAGCATCAAGGATGAGATGGAGCCTGGCTTCCGGGAGGTCTCCTTCTACTACAGT GAGGAGAACAAGCCGCCTGAGCCGGAGGAGCTGGACCTGGAGCCGGAGAACATGGAGAGCGTCCCCCTGGACCCCTCGGCCTCCTCGTCCTCCCTGCCGCTGCCCGACAGACACTCAGGACACAAGGC TGAGAACGGCCCAGGCCCTGGCGTGCTGGTGCTGCGAGCCAGCTTCGACGAGAGACAGCCTTACGCGCACATGAACGGGGGCCGCAAGAACGAGCGGGCCCTGCCTCTGCCCCAGTCCTCGACCTGCT GATCCTGGATCCCGATCCCGTGCAAACAGTACCGTGCGCACGCGGGCGGGCGGGGGGAGAGTTTTAACAATCTATTCACAGCCTCCTGTACCTCAGTGGATCTCCAGAACTGCCATTGCTGCCCACGG GAGACGGCTTCTCTGCAGTAAACACATTTGGGATGTTCCTTTTTTCAATATGCAAGCAGCTTTTTATTTCCCAACCCAAACCCTTAACTGACACGGGCCTTTAAGAACCTTAATGACAACACTTAATA GCAACAGAACACTTGAGAATCAAGCCTCCTCACCCCCTCCCTGTCCCTCTCTCCTCTTTCTCCCTCTGTCTCTCACCTTTTTCTTTCTGCTTCTCGATGGAAACGCATTTGCTGCAAGCCCAGCCGGG ACGCCCTTCATGTAGGATTGAGGAAAGAGCTGTCCCTCCAAGGCCCCACCTTGCCCCAAACACACCATAGGTCTTTGTAAAAAAACATGTTGAGATGAAAATTTTTAACTGAATCTTGAACCTTTAGG GACATACGAAATTTAAAAAGGGCCATCATTCATCCCAGGTTGTCACCATGTTAACGCTGCCAAATTTCTGCCACAACCCCGCACTTTCTCCCTCACTGTCCCCTCACTGTCGTCTTGTCTCCAGAGAC CCCGGGGCGAGCACGGTAGCTGGTCACTTGTAAGAGCCACGCTGATGATGCTCTCCGCCCGATCGGCCCCAGGGTTCTTTTCAAGTCTCACATTCACACAGGTGTAACTGCTTGTGACAAGGTTGTCA CTTGGGGGAACTGGACAGAATGAGACTGTGTCTCAGTGAAGATGGGGAGAAGCGTCCCCGCCCCACCTTCCACACCCCCACCTTCTAACCCCCAGGAATTCTGGAGCAAACAGGCCCTCTCAGGAGCC TGGAAGATAGGCTTTGAGTAAAGGTCATCCCCATGCCAGTCTCCTGTTCCCCCCAACCCCAGCTCCTTCTCGGCCCCCAAGGACACAGACAGGAAGGGGTTTCCAGGGACTCAGCCCAACTGTTTATG CAGGTTTGCAAGGAAAGAAATTCAAACACCACAACAACAGTACGAAGAAAAACAGTAAATGGATTCAAGCATTCTAAGCTTTGTTGACATTTTCTCTGTTACTAGGACTTCTTCATGGGTCTTACAGT TCTATGTTAGACCATGAAACATTTGCATACACATCGTCTTTAATGTCACTTTTATAACTTTTTTACGGTTCAGATATTCATCTATACGTCTGTACAGAAAAAAAAAAAAGCTGCTATTTTTTTTGTTC TTTATCTTTGTGGATTTAATCTATGAAAACCTTCAGGTCTACCCTTCTTCCCTCTCTGCTCACTCCAAGAAACTTCTTAATGCTTTGTACTAGAGTGCGTGACTTTCTTCCTCTTTTCCCAGTAATTG ATACTTATATAACATAATTTGCCATGAACTGTTTGATGCCTTTTTATAAATACATCCCCCCTACCGACTCCACCTGCCCCATTAGTTCTGTTCTACCCCATAGGCTCTGTGGGCACGAGGCTGGCGAG GGGAGGCGGCGGAGAGAAGGTGGGCACTTGCCCGGAGAGGCTCCCCTCTCTCCCCAGCCTGCTCTCACACAGCATTTGAGTCTGTTACAGTGCAAGACATGATACAAACTCAGGTCAGAAAAAAAGGT TAAATATTTCGCACATCCTTGTTCAGTGTTCATATTCACCATTGTTGAAAAGTCTCACCTTCTCTTTCCCTTGCCTTTGTTTTGGTTGTGACACACATATATCTATTTTTTTAATTCTTGGGTACAAC AGCAGTTTTATCTGCAGACACTAGGCATTTGGATGATTTTTTTTTTTAATGGCTATTTAATCCTTCCATCCCATGGAAAACAGCTGCTGAGTCCAGGGGTGCAGTGGAGTGCGCTCCGGCGGCCCTCT GCGGGCTCCTGCCACCACCCTCCAGACTGACCTACCTGTCTTTAGAACCAGAGACTCCCTAGGGACCCCGGGCAGCGATGGGAGTGGGGCAGAGGGGCAGCATCCTCGGGGTGCCGGCCAGCCAGCTG CCAGGCTGGGACAGCACAGGCGCCCGGAGCCCTGGCGCGGGCGTGCTGTTCCTCTGCCAGGAAGCCAAGTCCTCAGGCTCGGGGGTCTTGTTTTGTTTAGTTTTTAGCACTTCTCACCAGAGTGATGA CAGCACAAGAGTTGCTTCTGGGATGGAAATGTTTAAATTATGAGTAAGAACAAGGCTACAATACGATGATTGCTAGTTGTGACTGGAGATTGAACACAAAAAAGAAAGTTTGTAGTGCTTTTTTGTGT CAGTAGTTTCATAGTTTCAGTCCCACTGTTCTCTCTAGTCCCTGTCCCATAGTTTTTCCCTTAAAAAAAAAAGAGAAAAAGAAAAAATTAAGAAGGTATTATATGTAGGAGTGTTCTTTTAATTTATT TTGTGATACCAGTTTCAATCACTGTAGAGAAGCCCCATTATGAATTTAAATACTGAGGAAAGGGTTTGTGTGTGTGTGCGCGTGTCAGACGGGACAGTTTTTTGTTTTTGTTTTTGTTTTTTTTTTTT CCCAGACATTTATCTACCTCACTCTTATTTTTTATATGTGTATATATAAAAAAGAATACATCTCACACTTCTCAGCACCTGACAATATGCCGTTGATACTGGTAACCTCATCCACACCGCAGGCCGCA CACACCAGGTGACGGGGGGGAGAGGCCAGGCTGTATTCCGGGGTCAAAGCAACACTAACTCACCTCTGCACTCATTTCATACAGCTCGCCTTCTTCTGCAACTTCTCAGTTTGCATTGCTTCTGTTCT TCTCCTGACTTGGCTTCCCAGGAGGTGGTGAGGGCCGGTGCTGCCTGAGGGGCCCGGGCTGGTTGGTTTTGAAACCAACTGCTTTGTGCAGATTGAGCCGCATACAGATTCCACGGGGGAAGATCAGG TCTCCGGGACAGACAGTGCGGGTGAGGGGCAGGCAGTGCCTCGCTAGCAGGCCCTAAGGCCATGGGTGGGTGCTGAGCCTCCTCCAGGCCTTCTGCTCCTGGTTGCTGACCCGAAGGCCAGTCCCATG CAGAATGTACAGACAAGAGTCCCCTTCTCCCTCTCCAAACTGTTCTCTCAACCTCACGCTCGCTTCCTCCCCCAGGGGAAAACGAAGACGTACCAAACCTTTGGGCTGGAAGGGGCCCCCGCCAGGGC GGGCTGTGCCTTGTCCCCTCATCCCGCTGCTCAGGGGTGGACGGCACATCCCCATTCCAGCAGCTGCTCTCACAGGCACTGGCGTTTTATCTGGGAAACACGGGGCGGGGGAGGTTCCCAAAGCGTGG CGGCTCTTTCACAGTCCCAGGACTGCAGTTCCGCCCAGGAGCTCTTCCCTCCTGCTAGGACATCCCCTTCTCCTTTCCCAAGTCCCCTGGGAACTTAAGGTCATTGAGAAATAGTGTTTGATCAGGGT TTTCCCGCTTCCACACTGTAGGTGACCCCTTGGAATAGTGGCCTCTCCTCTCTTTTGCACATACCTACCGGTTTCCACAACTGGATTTCTACAGATCATTCAGCTGGTTTTTAGGGTTTTTATTTAAA CTGTCCGAGTTGTTGGTGTCACTTTGTTTTTGTTTTACGTAGGTGGTTTTCCTTTAGTAGAAAGAAAACACTAACAGTGTAGTGCCCATCATAACAAATGCTTCAGAAACACTTAAATAAAAACTTTT GCTTGTGTGATGGTGCAGTCATTTTACTGGACCAAATCACCCACCTTGACTATACCAAGGCATCATGTATCCACAGTTCTAGCCTAATTTTATGCTGATTTCCCCCACCTCTTCTCAGTTTCCTCCTT TGTATGCTCCAAATAACTTAATCAAACTGAGTTGTGGCATTCTCCATGCAGCCTCCTTCTGACAGCAGCTCACTGCTTGAAGTGACGTGAACCACTGAGGCACATCGTTGAATTGATGTGAGCATTAA AACATTACCACACACAGCCCTTCCCTGAGGCAGCGGGAGCTGGTGTATTCTGGAGACGTTGTTGAACTTCAACTGGGTAACACCCAGACCACCCCAGGTCTCCATTATGGGATGTCCTGACGTTTAAC ACAGGTGGAATGAGCTTCCTCCTTGGAAGATAGAAGACCATGTTCATGGCCGACACTGGCCTTTCCTTTCAGCCTCTTTCTTATGACTTGGAACAACATTTCAATAGTGGTGGTTATTGTGGAACTAG CCAACGGCAAAGTGCTTGGCATGGCATGGTGTGTTTCAGTTGGGATAACAGATCTAAGAGCCAAGTAAGATGCCAAACTCTAGGCCAGTCTGTTCCACCGAGGCCTCTTTCTCAGCAGCCTACCTCTG CCGGCAGGTGGCTGCACTGAATGAAGGCCACTGTTACGGCAAGGTCACACTAGCTCAGATCAGTGAGAAGGCTAGGATGCTTGGTCCAAGGTCCTCAGCTGTCACTGTTGGGTCCTCCGGCTAGACAG TGTCAAAGGAAGTTACTCCTTTCCAAAACACAGGCGCCCTCCAGTTGACAGTAAAGCTCCATGGTATGCCTTGACCCATTCCAACAGTCCCAGTAGTGCATTTAAGGTTTGGGGTTTGTTCTTTCGTT AATGTTACTTTTGTGTTTGTCGGCTGTCTTTTCATTTCCTGGGCTAAGCAGCATTGGGAGATATGGACCAGAGATCCACCCTTTAAGAACCAGTGATGAAAATCAAACTTTCTTACTCCACTCTGACA TAGTTGGTGGTACAAAGGAGAACTTCAAGAGAGGATGTTGTTTAGCTTGAACCTCTGTTGCCAGAGATGCTGAAGATACAGACCTTGGACAGGCCAAAAGTTTTCGTTTTTGGCTCCCAGCTTAGATG ACTAGTTGGTCATTTTGAGAAAAAGCAGATGAACACTCCTTGATGGTGGAATGATGAGGCAGCAGGAAACCACTGTAACAGGGATCATGAATGACATGGAGAGAGGAATCACGAGCAGAAGGTGCAGG GCTTGGAAGAAGTGTGGGCTGTGTTTGGAACTTGATGGTTTCTGAAGGGATCAGACCACATCAAGGCTCAAGAGTCATCCATGGGCATTTGGTTTCAACAAATAAACCTAACATCCTACTTTCGAAAC TGCTACTGCAGAGTTCAGTCAAATTGTTCAAGAATACAAACTGCATCGCACCCGTCAGTTGTCAGTTCTGGGGCATGACTTTAGGGTTTTGTTTTATTTTGTTTATGCAAGAACATAATGATCACTCA TCTGTATGTCCACGTTTGTGTGTGTCCACATCTTCCTGGTAAACATCGTTTTAATTAGTCACTCATTAGCGTTTTCAATAGGGCTCTTAAGTCCAGTAGATTACGGGTAGTCAGTTGACGAAGATCTG GTTTACAAGAACTAATTAAATGTTTCATTGCATTTTTGTAAGAACATAGAATAATTTTATAAAATGTTTGTAGTTTATAATTGCCGAAAATAATTTAAAGACACCTTTTTTCTCTGTGTGTGCAAATG TGTGTTTGTGATCCATTTTTTTAGGACACCTGTTTACTAGCTAGCTTTACAATATGCCAAAAACAGATTTTTCCCTGACCCAAGCCGTGGTTCACCCTCTTTTCCCCCCATGCTTTGTGCCCTAGTTT ATAACAAAGGAATGATGATGATTTAAGAAGTAGTTCTGTATCTTCAGTATCTTGGTCTTCCAGAACCCTCTGGTTGGGAAGGGGATCATCTTTTACTGGTCATTTCCCTTTGGAGTGTAGCTACTTTA ACAGACCGAACGAACCTCATTGGCCAAGGAAACAGCAGAGGTGTTACAGCCTGGCGGTGCCTGTGGCACCATAAGCATCTGGTTTGGCAGGTTTGGTAGTTGTCCTCTTATGCAGTGCCTCGAGATGG AAGGACTCCATTGCACATCTAGTGGCTTTCACCGTGACACAGCACACAGACTTATCATACAAAAGCTGATAATTCTGGTGCCCGAAAGCCACTGGCTTACATGCCTCATATCATGACTAATGCTTTGT TATTACATGTAAGAGATTCTATTTATTTTTATTTAAGGCAGAACACCGAAGATAGTTCTTTTTCAATATAGTACAAATTTGTTGTAATAAAAACCATGCACATGCAAGATTTTTTTAAGTTTGACACC ATTCCCTCTGGTTCCCAATGGACTATTTGCCATGTCTACACAACTCCACAAAATCCCCATCGTTGGAAACATCTGGATGTTTTGCACTACATGGGAGAAAGGTCCAGAAACAATTTGGGTTTTGTTTG TAACTTTCCATTTGGATGTCTGGCGTTGCATAGACACCATCCACAGGTGGAACAGATGCTTGGCAAAAACACCTGTCTGCTTTCTAAGCCAGTGAGGTTGAGGTGAGAGGTTTGCCAGAGTTTGTCTA CCTCTGGGACAGAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAATTCAAACCAGAAGGCGCGATGGAATGGATGCATCGCAAATAATGCATTTTCTGAGTTTTCTTGTTTTAAAA AAAAGTTTTTAAAAAAAAAAACTAAAAAAAAAAAAAA
hide sequence
RefSeq Acc Id:
XM_021082920 ⟹ XP_020938579
Type:
CODING
Position:
Pig Assembly Chr Position (strand) Source Sscrofa11.1 1 137,383,623 - 137,638,348 (-) NCBI
Sequence:
CTTCTACAACTACGCCCTGGTCATCTTCGAGATGACCAACCTCAAGGACATCGGGCTCTACAAC CTGAGGAATATTACCCGGGGGGCCATCAGGATCGAGAAGAATGCCGACCTCTGCTACCTCTCTACGGTGGACTGGTCCCTGATCCTGGATGCCGTGTCCAATAACTACATCGTGGGCAACAAGCCCCC TAAGGAATGCGGGGACTTGTGCCCAGGGACGCTGGAGGAGAAGCCGCTGTGTGAGAAGACGACCATCAACAACGAGTACAACTATCGCTGCTGGACCACGAACCGCTGCCAGAAAACTCCAGGCCTGT CTGTTTGTACTGATACGAAGGCTGGCCCGCTCCCCAGGGCCACTGCAGGAGAACCTCTGGGTGTGCCCGAGCGTGTGCGGGAAGCGGGCGTGCACAGAGAACCACGAGTGCTGCCACCCCGAGTGCCT GGGCAGCTGCAGCGCACCCGACAACGACACAGCCTGTGTGGCCTGCCGCCACTACTACTACGCCGGAGTCTGCGTGCCCAGCTGCCCACCCAACACCTACCGCTTCGAGGGCTGGCGCTGCGTGGACC GCGACTTTTGCGCCAACATCCCCAGTGCGGAGAGCAGTGACTCCGAGGGCTTTGTGATCCATGATGGCGAGTGCATGCAGGAGTGCCCTTCAGGCTTCATCCGCAATGGCAGCCAGAGCATGTACTGT ATCCCTTGCGAAGGCCCTTGCCCCAAAGTCTGTGAGGAAGAGAAGAAGACAAAGACCATTGATTCTGTCACTTCTGCTCAGATGCTCCAAGGATGCACCATCTTCAAGGGCAACCTGCTCATTAACAT CCGACGCGGCAACAACATTGCCTCGGAGCTAGAGAACTTCATGGGGCTCATCGAGGTGGTGACGGGCTACGTGAAGATCCGCCACTCCCATGCCTTGGTCTCCTTGTCCTTCCTGAAAAATCTTCGCC AGATCCTAGGGGAGGAGCAGCTGGAGGGGAATTACTCCTTCTACGTCCTTGACAACCAGAACTTGCAGCAGCTGTGGGACTGGGACCATCGCAACCTGACCATCAAAGCTGGGAAAATGTACTTTGCT TTCAATCCCAAATTGTGTGTCTCCGAGATTTACCGCATGGAGGAAGTGACAGGGACTAAAGGGCGCCAGAGCAAAGGGGACATAAACACCAGGAACAATGGAGAGAGAGCCTCCTGTGAAAGTGACGT CCTGCACTTCACCTCCACCACCACGTGGAAGAACCGCATCATCATCACCTGGCACCGATACCGGCCCCCTGACTACAGGGACCTCATCAGCTTCACTGTCTACTACAAGGAAGCGCCCTTTAAAAACG TCACGGAGTATGATGGGCAGGATGCCTGTGGCTCCAACAGCTGGAACATGGTGGACGTGGACCTCCCTCCCAATAAGGACGTCGAGCCTGGCATTCTACTGCATGGGCTGAAGCCCTGGACACAGTAC GCTGTTTACGTCAAGGCCGTGACCCTCACCATGGTGGAGAATGACCACATCCGTGGGGCCAAGAGTGAGATCTTGTACATTCGCACCAATGCTTCAGTTCCTTCCATTCCCCTGGATGTCCTCTCAGC ATCAAACTCCTCTTCTCAGCTGATAGTGAAGTGGAACCCGCCCTCCCTGCCCAATGGCAACCTGAGCTACTACATCGTGCGGTGGCAGCGCCAGCCTCAGGACAGCTATCTCTACCGGCATAATTACT GCTCCAAAGCAGACAAAATCCCCATCAGGAAGTATGCTGATGGCACCATTGATGTCGAGGAGGCTACAGAGAACCCCAAGACTGAAGTGTGTGGCGGGGAGAAGGGACCATGCTGTGCTTGCCCCAAA ACAGAAGCTGAGAAGCAGGCAGAGAAGGAGGAGGCTGAGTACCGCAAGGTCTTCGAGAACTTCCTGCACAATGCCATCTTTGTGCCCAGACCTGAACGGAAGCGGAGGGAGGTCATGCAGGTCGCCAA CACCACCATGTCCAGCCGGAGCAGAAACACCACAGTGGTGGACACCTACAATGTCACGGACCCAGAGGAGCTTGAGACAGAGTACCCTTTTTTTGAGAGCAGAGTGGATAACAAGGAGAGAACTGTCA TTTCCAACCTCCGGCCTTTTACTTTGTACCGAATTGACATCCACAGCTGTAACCATGAGGCTGAGAAGCTGGGCTGCAGTGCCTCCAACTTTGTCTTTGCAAGAACCATGCCTGCAGAAGGAGCAGAT GACATTCCTGGGCCAGTGACCTGGGAGCCACGGCCTGAGAACTCCATCTTTTTAAAGTGGCCAGAACCTGAGAATCCTAATGGATTGATTCTAATGTATGAAATAAAATACGGATCACAAGTCGAGGA TCAGCGGGAATGTGTGTCCAGACAGGAGTACAGGAAGTATGGAGGGGCCAAGCTGAACAGGCTCAACCCGGGGAACTACACGGCCCGGATTCAGGCCACCTCTCTCTCCGGGAATGGGTCATGGACGG AACCTGTGTTCTTCTACGTCCAGGCCAAAACGACATATGAAAACTTCATCCATCTGATCATCGCCCTACCAGTGGCCGTTCTGTTGATAGTAGGAGGGTTGGTTATAATGTTGTACGTCTTCCACAGA AAGAGAAATAACAGCAGGCTGGGGAATGGAGTGCTGTATGCTTCCGTGAACCCGGAGTACTTCAGCGCAGCTGATGTGTACGTGCCCGACGAGTGGGAGGTCGCCCGGGAGAAGATCACCATGAGCCG GGAGCTGGGACAGGGCTCCTTCGGGATGGTTTATGAAGGCGTCGCCAAGGGTGTGGTCAAAGATGAGCCTGAGACCAGGGTGGCCATTAAGACAGTGAATGAGGCCGCCAGCATGCGTGAGAGGATTG AGTTTCTCAACGAGGCCTCCGTGATGAAGGAGTTCAACTGTCACCACGTGGTGCGGCTGCTGGGTGTGGTGTCCCAGGGCCAGCCAACGCTGGTCATCATGGAACTGATGACCCGGGGGGACCTCAAA AGTTATCTCCGGTCTCTGAGACCAGAAATGGAGAATAATCCAGTCCTAGCACCTCCAAGCCTAAGCAAAATGATCCAGATGGCTGGAGAGATTGCAGATGGCATGGCATACCTCAACGCCAATAAGTT TGTCCACAGAGACCTCGCTGCCCGGAACTGTATGGTGGCCGAAGACTTCACAGTCAAAATCGGAGATTTTGGGATGACGAGAGACATCTATGAGACAGACTATTACCGCAAGGGAGGGAAAGGGCTGC TGCCTGTGCGCTGGATGTCCCCTGAGTCCCTCAAGGACGGAGTCTTCACCACGCACTCTGATGTCTGGTCCTTCGGGGTCGTCCTCTGGGAGATTGCCACGCTGGCCGAGCAGCCATACCAGGGCTTG TCCAACGAGCAAGTCCTTCGCTTCGTCATGGAGGGCGGCCTTCTGGACAAGCCGGACAACTGTCCCGACATGCTGTTTGAGCTGATGCGCATGTGCTGGCAGTACAACCCCAAGATGAGGCCTTCCTT CCTGGAGATCATCAGCAGCATCAAGGATGAGATGGAGCCTGGCTTCCGGGAGGTCTCCTTCTACTACAGTGAGGAGAACAAGCCGCCTGAGCCGGAGGAGCTGGACCTGGAGCCGGAGAACATGGAGA GCGTCCCCCTGGACCCCTCGGCCTCCTCGTCCTCCCTGCCGCTGCCCGACAGACACTCAGGACACAAGGCTGAGAACGGCCCAGGCCCTGGCGTGCTGGTGCTGCGAGCCAGCTTCGACGAGAGACAG CCTTACGCGCACATGAACGGGGGCCGCAAGAACGAGCGGGCCCTGCCTCTGCCCCAGTCCTCGACCTGCTGATCCTGGATCCCGATCCCGTGCAAACAGTACCGTGCGCACGCGGGCGGGCGGGGGGA GAGTTTTAACAATCTATTCACAGCCTCCTGTACCTCAGTGGATCTCCAGAACTGCCATTGCTGCCCACGGGAGACGGCTTCTCTGCAGTAAACACATTTGGGATGTTCCTTTTTTCAATATGCAAGCA GCTTTTTATTTCCCAACCCAAACCCTTAACTGACACGGGCCTTTAAGAACCTTAATGACAACACTTAATAGCAACAGAACACTTGAGAATCAAGCCTCCTCACCCCCTCCCTGTCCCTCTCTCCTCTT TCTCCCTCTGTCTCTCACCTTTTTCTTTCTGCTTCTCGATGGAAACGCATTTGCTGCAAGCCCAGCCGGGACGCCCTTCATGTAGGATTGAGGAAAGAGCTGTCCCTCCAAGGCCCCACCTTGCCCCA AACACACCATAGGTCTTTGTAAAAAAACATGTTGAGATGAAAATTTTTAACTGAATCTTGAACCTTTAGGGACATACGAAATTTAAAAAGGGCCATCATTCATCCCAGGTTGTCACCATGTTAACGCT GCCAAATTTCTGCCACAACCCCGCACTTTCTCCCTCACTGTCCCCTCACTGTCGTCTTGTCTCCAGAGACCCCGGGGCGAGCACGGTAGCTGGTCACTTGTAAGAGCCACGCTGATGATGCTCTCCGC CCGATCGGCCCCAGGGTTCTTTTCAAGTCTCACATTCACACAGGTGTAACTGCTTGTGACAAGGTTGTCACTTGGGGGAACTGGACAGAATGAGACTGTGTCTCAGTGAAGATGGGGAGAAGCGTCCC CGCCCCACCTTCCACACCCCCACCTTCTAACCCCCAGGAATTCTGGAGCAAACAGGCCCTCTCAGGAGCCTGGAAGATAGGCTTTGAGTAAAGGTCATCCCCATGCCAGTCTCCTGTTCCCCCCAACC CCAGCTCCTTCTCGGCCCCCAAGGACACAGACAGGAAGGGGTTTCCAGGGACTCAGCCCAACTGTTTATGCAGGTTTGCAAGGAAAGAAATTCAAACACCACAACAACAGTACGAAGAAAAACAGTAA ATGGATTCAAGCATTCTAAGCTTTGTTGACATTTTCTCTGTTACTAGGACTTCTTCATGGGTCTTACAGTTCTATGTTAGACCATGAAACATTTGCATACACATCGTCTTTAATGTCACTTTTATAAC TTTTTTACGGTTCAGATATTCATCTATACGTCTGTACAGAAAAAAAAAAAAGCTGCTATTTTTTTTGTTCTTTATCTTTGTGGATTTAATCTATGAAAACCTTCAGGTCTACCCTTCTTCCCTCTCTG CTCACTCCAAGAAACTTCTTAATGCTTTGTACTAGAGTGCGTGACTTTCTTCCTCTTTTCCCAGTAATTGATACTTATATAACATAATTTGCCATGAACTGTTTGATGCCTTTTTATAAATACATCCC CCCTACCGACTCCACCTGCCCCATTAGTTCTGTTCTACCCCATAGGCTCTGTGGGCACGAGGCTGGCGAGGGGAGGCGGCGGAGAGAAGGTGGGCACTTGCCCGGAGAGGCTCCCCTCTCTCCCCAGC CTGCTCTCACACAGCATTTGAGTCTGTTACAGTGCAAGACATGATACAAACTCAGGTCAGAAAAAAAGGTTAAATATTTCGCACATCCTTGTTCAGTGTTCATATTCACCATTGTTGAAAAGTCTCAC CTTCTCTTTCCCTTGCCTTTGTTTTGGTTGTGACACACATATATCTATTTTTTTAATTCTTGGGTACAACAGCAGTTTTATCTGCAGACACTAGGCATTTGGATGATTTTTTTTTTTAATGGCTATTT AATCCTTCCATCCCATGGAAAACAGCTGCTGAGTCCAGGGGTGCAGTGGAGTGCGCTCCGGCGGCCCTCTGCGGGCTCCTGCCACCACCCTCCAGACTGACCTACCTGTCTTTAGAACCAGAGACTCC CTAGGGACCCCGGGCAGCGATGGGAGTGGGGCAGAGGGGCAGCATCCTCGGGGTGCCGGCCAGCCAGCTGCCAGGCTGGGACAGCACAGGCGCCCGGAGCCCTGGCGCGGGCGTGCTGTTCCTCTGCC AGGAAGCCAAGTCCTCAGGCTCGGGGGTCTTGTTTTGTTTAGTTTTTAGCACTTCTCACCAGAGTGATGACAGCACAAGAGTTGCTTCTGGGATGGAAATGTTTAAATTATGAGTAAGAACAAGGCTA CAATACGATGATTGCTAGTTGTGACTGGAGATTGAACACAAAAAAGAAAGTTTGTAGTGCTTTTTTGTGTCAGTAGTTTCATAGTTTCAGTCCCACTGTTCTCTCTAGTCCCTGTCCCATAGTTTTTC CCTTAAAAAAAAAAGAGAAAAAGAAAAAATTAAGAAGGTATTATATGTAGGAGTGTTCTTTTAATTTATTTTGTGATACCAGTTTCAATCACTGTAGAGAAGCCCCATTATGAATTTAAATACTGAGG AAAGGGTTTGTGTGTGTGTGCGCGTGTCAGACGGGACAGTTTTTTGTTTTTGTTTTTGTTTTTTTTTTTTCCCAGACATTTATCTACCTCACTCTTATTTTTTATATGTGTATATATAAAAAAGAATA CATCTCACACTTCTCAGCACCTGACAATATGCCGTTGATACTGGTAACCTCATCCACACCGCAGGCCGCACACACCAGGTGACGGGGGGGAGAGGCCAGGCTGTATTCCGGGGTCAAAGCAACACTAA CTCACCTCTGCACTCATTTCATACAGCTCGCCTTCTTCTGCAACTTCTCAGTTTGCATTGCTTCTGTTCTTCTCCTGACTTGGCTTCCCAGGAGGTGGTGAGGGCCGGTGCTGCCTGAGGGGCCCGGG CTGGTTGGTTTTGAAACCAACTGCTTTGTGCAGATTGAGCCGCATACAGATTCCACGGGGGAAGATCAGGTCTCCGGGACAGACAGTGCGGGTGAGGGGCAGGCAGTGCCTCGCTAGCAGGCCCTAAG GCCATGGGTGGGTGCTGAGCCTCCTCCAGGCCTTCTGCTCCTGGTTGCTGACCCGAAGGCCAGTCCCATGCAGAATGTACAGACAAGAGTCCCCTTCTCCCTCTCCAAACTGTTCTCTCAACCTCACG CTCGCTTCCTCCCCCAGGGGAAAACGAAGACGTACCAAACCTTTGGGCTGGAAGGGGCCCCCGCCAGGGCGGGCTGTGCCTTGTCCCCTCATCCCGCTGCTCAGGGGTGGACGGCACATCCCCATTCC AGCAGCTGCTCTCACAGGCACTGGCGTTTTATCTGGGAAACACGGGGCGGGGGAGGTTCCCAAAGCGTGGCGGCTCTTTCACAGTCCCAGGACTGCAGTTCCGCCCAGGAGCTCTTCCCTCCTGCTAG GACATCCCCTTCTCCTTTCCCAAGTCCCCTGGGAACTTAAGGTCATTGAGAAATAGTGTTTGATCAGGGTTTTCCCGCTTCCACACTGTAGGTGACCCCTTGGAATAGTGGCCTCTCCTCTCTTTTGC ACATACCTACCGGTTTCCACAACTGGATTTCTACAGATCATTCAGCTGGTTTTTAGGGTTTTTATTTAAACTGTCCGAGTTGTTGGTGTCACTTTGTTTTTGTTTTACGTAGGTGGTTTTCCTTTAGT AGAAAGAAAACACTAACAGTGTAGTGCCCATCATAACAAATGCTTCAGAAACACTTAAATAAAAACTTTTGCTTGTGTGATGGTGCAGTCATTTTACTGGACCAAATCACCCACCTTGACTATACCAA GGCATCATGTATCCACAGTTCTAGCCTAATTTTATGCTGATTTCCCCCACCTCTTCTCAGTTTCCTCCTTTGTATGCTCCAAATAACTTAATCAAACTGAGTTGTGGCATTCTCCATGCAGCCTCCTT CTGACAGCAGCTCACTGCTTGAAGTGACGTGAACCACTGAGGCACATCGTTGAATTGATGTGAGCATTAAAACATTACCACACACAGCCCTTCCCTGAGGCAGCGGGAGCTGGTGTATTCTGGAGACG TTGTTGAACTTCAACTGGGTAACACCCAGACCACCCCAGGTCTCCATTATGGGATGTCCTGACGTTTAACACAGGTGGAATGAGCTTCCTCCTTGGAAGATAGAAGACCATGTTCATGGCCGACACTG GCCTTTCCTTTCAGCCTCTTTCTTATGACTTGGAACAACATTTCAATAGTGGTGGTTATTGTGGAACTAGCCAACGGCAAAGTGCTTGGCATGGCATGGTGTGTTTCAGTTGGGATAACAGATCTAAG AGCCAAGTAAGATGCCAAACTCTAGGCCAGTCTGTTCCACCGAGGCCTCTTTCTCAGCAGCCTACCTCTGCCGGCAGGTGGCTGCACTGAATGAAGGCCACTGTTACGGCAAGGTCACACTAGCTCAG ATCAGTGAGAAGGCTAGGATGCTTGGTCCAAGGTCCTCAGCTGTCACTGTTGGGTCCTCCGGCTAGACAGTGTCAAAGGAAGTTACTCCTTTCCAAAACACAGGCGCCCTCCAGTTGACAGTAAAGCT CCATGGTATGCCTTGACCCATTCCAACAGTCCCAGTAGTGCATTTAAGGTTTGGGGTTTGTTCTTTCGTTAATGTTACTTTTGTGTTTGTCGGCTGTCTTTTCATTTCCTGGGCTAAGCAGCATTGGG AGATATGGACCAGAGATCCACCCTTTAAGAACCAGTGATGAAAATCAAACTTTCTTACTCCACTCTGACATAGTTGGTGGTACAAAGGAGAACTTCAAGAGAGGATGTTGTTTAGCTTGAACCTCTGT TGCCAGAGATGCTGAAGATACAGACCTTGGACAGGCCAAAAGTTTTCGTTTTTGGCTCCCAGCTTAGATGACTAGTTGGTCATTTTGAGAAAAAGCAGATGAACACTCCTTGATGGTGGAATGATGAG GCAGCAGGAAACCACTGTAACAGGGATCATGAATGACATGGAGAGAGGAATCACGAGCAGAAGGTGCAGGGCTTGGAAGAAGTGTGGGCTGTGTTTGGAACTTGATGGTTTCTGAAGGGATCAGACCA CATCAAGGCTCAAGAGTCATCCATGGGCATTTGGTTTCAACAAATAAACCTAACATCCTACTTTCGAAACTGCTACTGCAGAGTTCAGTCAAATTGTTCAAGAATACAAACTGCATCGCACCCGTCAG TTGTCAGTTCTGGGGCATGACTTTAGGGTTTTGTTTTATTTTGTTTATGCAAGAACATAATGATCACTCATCTGTATGTCCACGTTTGTGTGTGTCCACATCTTCCTGGTAAACATCGTTTTAATTAG TCACTCATTAGCGTTTTCAATAGGGCTCTTAAGTCCAGTAGATTACGGGTAGTCAGTTGACGAAGATCTGGTTTACAAGAACTAATTAAATGTTTCATTGCATTTTTGTAAGAACATAGAATAATTTT ATAAAATGTTTGTAGTTTATAATTGCCGAAAATAATTTAAAGACACCTTTTTTCTCTGTGTGTGCAAATGTGTGTTTGTGATCCATTTTTTTAGGACACCTGTTTACTAGCTAGCTTTACAATATGCC AAAAACAGATTTTTCCCTGACCCAAGCCGTGGTTCACCCTCTTTTCCCCCCATGCTTTGTGCCCTAGTTTATAACAAAGGAATGATGATGATTTAAGAAGTAGTTCTGTATCTTCAGTATCTTGGTCT TCCAGAACCCTCTGGTTGGGAAGGGGATCATCTTTTACTGGTCATTTCCCTTTGGAGTGTAGCTACTTTAACAGACCGAACGAACCTCATTGGCCAAGGAAACAGCAGAGGTGTTACAGCCTGGCGGT GCCTGTGGCACCATAAGCATCTGGTTTGGCAGGTTTGGTAGTTGTCCTCTTATGCAGTGCCTCGAGATGGAAGGACTCCATTGCACATCTAGTGGCTTTCACCGTGACACAGCACACAGACTTATCAT ACAAAAGCTGATAATTCTGGTGCCCGAAAGCCACTGGCTTACATGCCTCATATCATGACTAATGCTTTGTTATTACATGTAAGAGATTCTATTTATTTTTATTTAAGGCAGAACACCGAAGATAGTTC TTTTTCAATATAGTACAAATTTGTTGTAATAAAAACCATGCACATGCAAGATTTTTTTAAGTTTGACACCATTCCCTCTGGTTCCCAATGGACTATTTGCCATGTCTACACAACTCCACAAAATCCCC ATCGTTGGAAACATCTGGATGTTTTGCACTACATGGGAGAAAGGTCCAGAAACAATTTGGGTTTTGTTTGTAACTTTCCATTTGGATGTCTGGCGTTGCATAGACACCATCCACAGGTGGAACAGATG CTTGGCAAAAACACCTGTCTGCTTTCTAAGCCAGTGAGGTTGAGGTGAGAGGTTTGCCAGAGTTTGTCTACCTCTGGGACAGAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAAT TCAAACCAGAAGGCGCGATGGAATGGATGCATCGCAAATAATGCATTTTCTGAGTTTTCTTGTTTTAAAAAAAAGTTTTTAAAAAAAAAAACTAAAAAAAAAAAAAA
hide sequence
RefSeq Acc Id:
XP_020938574 ⟸ XM_021082915
- Peptide Label:
isoform X1
- UniProtKB:
A0A8D1VS60 (UniProtKB/TrEMBL)
- Sequence:
MKSGSGGGSPTSLWGLLFFSAALSLWPTSGEICGPGIDIRNDYQQLKRLENCTVIEGYLHILLISKAEDYRSYRFPKLTVITEYLLLFRVAGLESLGDLFPNLTVIRGWKLFYNYALVIFEMTNLKDI GLYNLRNITRGAIRIEKNADLCYLSTVDWSLILDAVSNNYIVGNKPPKECGDLCPGTLEEKPLCEKTTINNEYNYRCWTTNRCQKMCPSVCGKRACTENHECCHPECLGSCSAPDNDTACVACRHYYY AGVCVPSCPPNTYRFEGWRCVDRDFCANIPSAESSDSEGFVIHDGECMQECPSGFIRNGSQSMYCIPCEGPCPKVCEEEKKTKTIDSVTSAQMLQGCTIFKGNLLINIRRGNNIASELENFMGLIEVV TGYVKIRHSHALVSLSFLKNLRQILGEEQLEGNYSFYVLDNQNLQQLWDWDHRNLTIKAGKMYFAFNPKLCVSEIYRMEEVTGTKGRQSKGDINTRNNGERASCESDVLHFTSTTTWKNRIIITWHRY RPPDYRDLISFTVYYKEAPFKNVTEYDGQDACGSNSWNMVDVDLPPNKDVEPGILLHGLKPWTQYAVYVKAVTLTMVENDHIRGAKSEILYIRTNASVPSIPLDVLSASNSSSQLIVKWNPPSLPNGN LSYYIVRWQRQPQDSYLYRHNYCSKADKIPIRKYADGTIDVEEATENPKTEVCGGEKGPCCACPKTEAEKQAEKEEAEYRKVFENFLHNAIFVPRPERKRREVMQVANTTMSSRSRNTTVVDTYNVTD PEELETEYPFFESRVDNKERTVISNLRPFTLYRIDIHSCNHEAEKLGCSASNFVFARTMPAEGADDIPGPVTWEPRPENSIFLKWPEPENPNGLILMYEIKYGSQVEDQRECVSRQEYRKYGGAKLNR LNPGNYTARIQATSLSGNGSWTEPVFFYVQAKTTYENFIHLIIALPVAVLLIVGGLVIMLYVFHRKRNNSRLGNGVLYASVNPEYFSAADVYVPDEWEVAREKITMSRELGQGSFGMVYEGVAKGVVK DEPETRVAIKTVNEAASMRERIEFLNEASVMKEFNCHHVVRLLGVVSQGQPTLVIMELMTRGDLKSYLRSLRPEMENNPVLAPPSLSKMIQMAGEIADGMAYLNANKFVHRDLAARNCMVAEDFTVKI GDFGMTRDIYETDYYRKGGKGLLPVRWMSPESLKDGVFTTHSDVWSFGVVLWEIATLAEQPYQGLSNEQVLRFVMEGGLLDKPDNCPDMLFELMRMCWQYNPKMRPSFLEIISSIKDEMEPGFREVSF YYSEENKPPEPEELDLEPENMESVPLDPSASSSSLPLPDRHSGHKAENGPGPGVLVLRASFDERQPYAHMNGGRKNERALPLPQSSTC
hide sequence
RefSeq Acc Id:
XP_020938577 ⟸ XM_021082918
- Peptide Label:
isoform X2
- UniProtKB:
A0A8D0IK16 (UniProtKB/TrEMBL)
- Sequence:
MQSQNWGWERRGRVVCGPGIDIRNDYQQLKRLENCTVIEGYLHILLISKAEDYRSYRFPKLTVITEYLLLFRVAGLESLGDLFPNLTVIRGWKLFYNYALVIFEMTNLKDIGLYNLRNITRGAIRIEK NADLCYLSTVDWSLILDAVSNNYIVGNKPPKECGDLCPGTLEEKPLCEKTTINNEYNYRCWTTNRCQKMCPSVCGKRACTENHECCHPECLGSCSAPDNDTACVACRHYYYAGVCVPSCPPNTYRFEG WRCVDRDFCANIPSAESSDSEGFVIHDGECMQECPSGFIRNGSQSMYCIPCEGPCPKVCEEEKKTKTIDSVTSAQMLQGCTIFKGNLLINIRRGNNIASELENFMGLIEVVTGYVKIRHSHALVSLSF LKNLRQILGEEQLEGNYSFYVLDNQNLQQLWDWDHRNLTIKAGKMYFAFNPKLCVSEIYRMEEVTGTKGRQSKGDINTRNNGERASCESDVLHFTSTTTWKNRIIITWHRYRPPDYRDLISFTVYYKE APFKNVTEYDGQDACGSNSWNMVDVDLPPNKDVEPGILLHGLKPWTQYAVYVKAVTLTMVENDHIRGAKSEILYIRTNASVPSIPLDVLSASNSSSQLIVKWNPPSLPNGNLSYYIVRWQRQPQDSYL YRHNYCSKADKIPIRKYADGTIDVEEATENPKTEVCGGEKGPCCACPKTEAEKQAEKEEAEYRKVFENFLHNAIFVPRPERKRREVMQVANTTMSSRSRNTTVVDTYNVTDPEELETEYPFFESRVDN KERTVISNLRPFTLYRIDIHSCNHEAEKLGCSASNFVFARTMPAEGADDIPGPVTWEPRPENSIFLKWPEPENPNGLILMYEIKYGSQVEDQRECVSRQEYRKYGGAKLNRLNPGNYTARIQATSLSG NGSWTEPVFFYVQAKTTYENFIHLIIALPVAVLLIVGGLVIMLYVFHRKRNNSRLGNGVLYASVNPEYFSAADVYVPDEWEVAREKITMSRELGQGSFGMVYEGVAKGVVKDEPETRVAIKTVNEAAS MRERIEFLNEASVMKEFNCHHVVRLLGVVSQGQPTLVIMELMTRGDLKSYLRSLRPEMENNPVLAPPSLSKMIQMAGEIADGMAYLNANKFVHRDLAARNCMVAEDFTVKIGDFGMTRDIYETDYYRK GGKGLLPVRWMSPESLKDGVFTTHSDVWSFGVVLWEIATLAEQPYQGLSNEQVLRFVMEGGLLDKPDNCPDMLFELMRMCWQYNPKMRPSFLEIISSIKDEMEPGFREVSFYYSEENKPPEPEELDLE PENMESVPLDPSASSSSLPLPDRHSGHKAENGPGPGVLVLRASFDERQPYAHMNGGRKNERALPLPQSSTC
hide sequence
RefSeq Acc Id:
XP_020938579 ⟸ XM_021082920
- Peptide Label:
isoform X3
- UniProtKB:
A0A8D0IFQ8 (UniProtKB/TrEMBL)
- Sequence:
MPCPITTSWATSPLRNAGTCAQGRWRRSRCVRRRPSTTSTTIAAGPRTAARKLQACLFVLIRRLARSPGPLQENLWVCPSVCGKRACTENHECCHPECLGSCSAPDNDTACVACRHYYYAGVCVPSCP PNTYRFEGWRCVDRDFCANIPSAESSDSEGFVIHDGECMQECPSGFIRNGSQSMYCIPCEGPCPKVCEEEKKTKTIDSVTSAQMLQGCTIFKGNLLINIRRGNNIASELENFMGLIEVVTGYVKIRHS HALVSLSFLKNLRQILGEEQLEGNYSFYVLDNQNLQQLWDWDHRNLTIKAGKMYFAFNPKLCVSEIYRMEEVTGTKGRQSKGDINTRNNGERASCESDVLHFTSTTTWKNRIIITWHRYRPPDYRDLI SFTVYYKEAPFKNVTEYDGQDACGSNSWNMVDVDLPPNKDVEPGILLHGLKPWTQYAVYVKAVTLTMVENDHIRGAKSEILYIRTNASVPSIPLDVLSASNSSSQLIVKWNPPSLPNGNLSYYIVRWQ RQPQDSYLYRHNYCSKADKIPIRKYADGTIDVEEATENPKTEVCGGEKGPCCACPKTEAEKQAEKEEAEYRKVFENFLHNAIFVPRPERKRREVMQVANTTMSSRSRNTTVVDTYNVTDPEELETEYP FFESRVDNKERTVISNLRPFTLYRIDIHSCNHEAEKLGCSASNFVFARTMPAEGADDIPGPVTWEPRPENSIFLKWPEPENPNGLILMYEIKYGSQVEDQRECVSRQEYRKYGGAKLNRLNPGNYTAR IQATSLSGNGSWTEPVFFYVQAKTTYENFIHLIIALPVAVLLIVGGLVIMLYVFHRKRNNSRLGNGVLYASVNPEYFSAADVYVPDEWEVAREKITMSRELGQGSFGMVYEGVAKGVVKDEPETRVAI KTVNEAASMRERIEFLNEASVMKEFNCHHVVRLLGVVSQGQPTLVIMELMTRGDLKSYLRSLRPEMENNPVLAPPSLSKMIQMAGEIADGMAYLNANKFVHRDLAARNCMVAEDFTVKIGDFGMTRDI YETDYYRKGGKGLLPVRWMSPESLKDGVFTTHSDVWSFGVVLWEIATLAEQPYQGLSNEQVLRFVMEGGLLDKPDNCPDMLFELMRMCWQYNPKMRPSFLEIISSIKDEMEPGFREVSFYYSEENKPP EPEELDLEPENMESVPLDPSASSSSLPLPDRHSGHKAENGPGPGVLVLRASFDERQPYAHMNGGRKNERALPLPQSSTC
hide sequence
RefSeq Acc Id:
NP_999337 ⟸ NM_214172
- Peptide Label:
precursor
- UniProtKB:
F1CK17 (UniProtKB/TrEMBL), A0A4X1UKG1 (UniProtKB/TrEMBL), A0A8D1VS60 (UniProtKB/TrEMBL), A0A8D0IGG5 (UniProtKB/TrEMBL)
- Sequence:
MKSGSGGGSPTSLWGLLFFSAALSLWPTSGEICGPGIDIRNDYQQLKRLENCTVIEGYLHILLISKAEDYRSYRFPKLTVITEYLLLFRVAGLESLGDLFPNLTVIRGWKLFYNYALVIFEMTNLKDI GLYNLRNITRGAIRIEKNADLCYLSTVDWSLILDAVSNNYIVGNKPPKECGDLCPGTLEEKPLCEKTTINNEYNYRCWTTNRCQKMCPSVCGKRACTENHECCHPECLGSCSAPDNDTACVACRHYYY AGVCVPSCPPNTYRFEGWRCVDRDFCANIPSAESSDSEGFVIHDGECMQECPSGFIRNGSQSMYCIPCEGPCPKVCEEEKKTKTIDSVTSAQMLQGCTIFKGNLLINIRRGNNIASELENFMGLIEVV TGYVKIRHSHALVSLSFLKNLRQILGEEQLEGNYSFYVLDNQNLQQLWDWDHRNLTIKAGKMYFAFNPKLCVSEIYRMEEVTGTKGRQSKGDINTRNNGERASCESDVLHFTSTTTWKNRIIITWHRY RPPDYRDLISFTVYYKEAPFKNVTEYDGQDACGSNSWNMVDVDLPPNKDVEPGILLHGLKPWTQYAVYVKAVTLTMVENDHIRGAKSEILYIRTNASVPSIPLDVLSASNSSSQLIVKWNPPSLPNGN LSYYIVRWQRQPQDSYLYRHNYCSKDKIPIRKYADGTIDVEEATENPKTEVCGGEKGPCCACPKTEAEKQAEKEEAEYRKVFENFLHNAIFVPRPERKRREVMQVANTTMSSRSRNTTVVDTYNVTDP EELETEYPFFESRVDNKERTVISNLRPFTLYRIDIHSCNHEAEKLGCSASNFVFARTMPAEGADDIPGPVTWEPRPENSIFLKWPEPENPNGLILMYEIKYGSQVEDQRECVSRQEYRKYGGAKLNRL NPGNYTARIQATSLSGNGSWTEPVFFYVQAKTTYENFIHLIIALPVAVLLIVGGLVIMLYVFHRKRNNSRLGNGVLYASVNPEYFSAADVYVPDEWEVAREKITMSRELGQGSFGMVYEGVAKGVVKD EPETRVAIKTVNEAASMRERIEFLNEASVMKEFNCHHVVRLLGVVSQGQPTLVIMELMTRGDLKSYLRSLRPEMENNPVLAPPSLSKMIQMAGEIADGMAYLNANKFVHRDLAARNCMVAEDFTVKIG DFGMTRDIYETDYYRKGGKGLLPVRWMSPESLKDGVFTTHSDVWSFGVVLWEIATLAEQPYQGLSNEQVLRFVMEGGLLDKPDNCPDMLFELMRMCWQYNPKMRPSFLEIISSIKDEMEPGFREVSFY YSEENKPPEPEELDLEPENMESVPLDPSASSSSLPLPDRHSGHKAENGPGPGVLVLRASFDERQPYAHMNGGRKNERALPLPQSSTC
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Ensembl Acc Id:
ENSSSCP00000005182 ⟸ ENSSSCT00000005312
Ensembl Acc Id:
ENSSSCP00000005181 ⟸ ENSSSCT00000005311