Symbol:
KCNQ3
Name:
potassium voltage-gated channel subfamily Q member 3
RGD ID:
11845585
Description:
ENCODES a protein that exhibits calmodulin binding (ortholog); protein kinase binding (ortholog); transmembrane transporter binding (ortholog); INVOLVED IN cellular response to ammonium ion (ortholog); ganglion development (ortholog); monoatomic ion transmembrane transport (ortholog); ASSOCIATED WITH autism spectrum disorder (ortholog); autistic disorder (ortholog); benign epilepsy with centrotemporal spikes (ortholog); FOUND IN axon initial segment (ortholog); cell surface (ortholog); dendrite (ortholog)
Type:
protein-coding
RefSeq Status:
MODEL
Previously known as:
potassium voltage-gated channel subfamily KQT member 3; potassium voltage-gated channel, KQT-like subfamily, member 3
RGD Orthologs
Alliance Orthologs
More Info
more info ...
More Info
Latest Assembly:
Mhudiblu_PPA_v0 - Bonobo Mhudiblu_PPA_v0 Assembly
Position:
Bonobo Assembly Chr Position (strand) Source Genome Browsers JBrowse NCBI UCSC Ensembl NHGRI_mPanPan1-v2 7 149,504,271 - 149,869,035 (-) NCBI NHGRI_mPanPan1-v2 NHGRI_mPanPan1 8 125,018,869 - 125,383,609 (-) NCBI NHGRI_mPanPan1 Mhudiblu_PPA_v0 8 128,769,930 - 129,134,671 (-) NCBI Mhudiblu_PPA_v0 Mhudiblu_PPA_v0 panPan3 PanPan1.1 8 131,747,069 - 132,110,448 (-) NCBI panpan1.1 PanPan1.1 panPan2 PanPan1.1 Ensembl 8 131,755,454 - 131,815,237 (-) Ensembl panpan1.1 panPan2
JBrowse:
View Region in Genome Browser (JBrowse)
Model
KCNQ3 (Pan paniscus - bonobo/pygmy chimpanzee)
Bonobo Assembly Chr Position (strand) Source Genome Browsers JBrowse NCBI UCSC Ensembl NHGRI_mPanPan1-v2 7 149,504,271 - 149,869,035 (-) NCBI NHGRI_mPanPan1-v2 NHGRI_mPanPan1 8 125,018,869 - 125,383,609 (-) NCBI NHGRI_mPanPan1 Mhudiblu_PPA_v0 8 128,769,930 - 129,134,671 (-) NCBI Mhudiblu_PPA_v0 Mhudiblu_PPA_v0 panPan3 PanPan1.1 8 131,747,069 - 132,110,448 (-) NCBI panpan1.1 PanPan1.1 panPan2 PanPan1.1 Ensembl 8 131,755,454 - 131,815,237 (-) Ensembl panpan1.1 panPan2
KCNQ3 (Homo sapiens - human)
Human Assembly Chr Position (strand) Source Genome Browsers JBrowse NCBI UCSC Ensembl GRCh38 8 132,120,861 - 132,481,095 (-) NCBI GRCh38 GRCh38 hg38 GRCh38 GRCh38.p14 Ensembl 8 132,120,861 - 132,481,095 (-) Ensembl GRCh38 hg38 GRCh38 GRCh37 8 133,133,108 - 133,493,342 (-) NCBI GRCh37 GRCh37 hg19 GRCh37 Build 36 8 133,210,438 - 133,562,186 (-) NCBI NCBI36 Build 36 hg18 NCBI36 Build 34 8 133,210,437 - 133,562,186 NCBI Celera 8 129,316,946 - 129,668,720 (-) NCBI Celera Cytogenetic Map 8 q24.22 NCBI HuRef 8 128,450,644 - 128,810,822 (-) NCBI HuRef CHM1_1 8 133,173,913 - 133,533,807 (-) NCBI CHM1_1 T2T-CHM13v2.0 8 133,243,767 - 133,604,173 (-) NCBI T2T-CHM13v2.0
Kcnq3 (Mus musculus - house mouse)
Mouse Assembly Chr Position (strand) Source Genome Browsers JBrowse NCBI UCSC Ensembl GRCm39 15 65,858,223 - 66,158,485 (-) NCBI GRCm39 GRCm39 mm39 GRCm39 Ensembl 15 65,858,236 - 66,158,491 (-) Ensembl GRCm39 Ensembl GRCm38 15 65,986,374 - 66,286,636 (-) NCBI GRCm38 GRCm38 mm10 GRCm38 GRCm38.p6 Ensembl 15 65,986,387 - 66,286,642 (-) Ensembl GRCm38 mm10 GRCm38 MGSCv37 15 65,826,477 - 66,117,786 (-) NCBI GRCm37 MGSCv37 mm9 NCBIm37 MGSCv36 15 65,824,844 - 66,115,893 (-) NCBI MGSCv36 mm8 Celera 15 67,502,496 - 67,809,639 (-) NCBI Celera Cytogenetic Map 15 D1 NCBI cM Map 15 29.16 NCBI
Kcnq3 (Rattus norvegicus - Norway rat)
Rat Assembly Chr Position (strand) Source Genome Browsers JBrowse NCBI UCSC Ensembl GRCr8 7 99,614,089 - 99,914,736 (-) NCBI GRCr8 mRatBN7.2 7 97,730,219 - 98,025,652 (-) NCBI mRatBN7.2 mRatBN7.2 mRatBN7.2 Ensembl 7 97,730,465 - 98,025,653 (-) Ensembl mRatBN7.2 Ensembl UTH_Rnor_SHR_Utx 7 99,483,729 - 99,777,542 (-) NCBI Rnor_SHR UTH_Rnor_SHR_Utx UTH_Rnor_SHRSP_BbbUtx_1.0 7 101,685,392 - 101,979,218 (-) NCBI Rnor_SHRSP UTH_Rnor_SHRSP_BbbUtx_1.0 UTH_Rnor_WKY_Bbb_1.0 7 101,604,737 - 101,898,571 (-) NCBI Rnor_WKY UTH_Rnor_WKY_Bbb_1.0 Rnor_6.0 7 106,714,479 - 107,009,639 (-) NCBI Rnor6.0 Rnor_6.0 rn6 Rnor6.0 Rnor_6.0 Ensembl 7 106,717,229 - 107,009,330 (-) Ensembl Rnor6.0 rn6 Rnor6.0 Rnor_5.0 7 106,662,621 - 106,956,409 (-) NCBI Rnor5.0 Rnor_5.0 rn5 Rnor5.0 RGSC_v3.4 7 103,325,185 - 103,627,045 (-) NCBI RGSC3.4 RGSC_v3.4 rn4 RGSC3.4 RGSC_v3.1 7 103,359,425 - 103,661,275 (-) NCBI Celera 7 94,285,105 - 94,579,630 (-) NCBI Celera Cytogenetic Map 7 q33 NCBI
Kcnq3 (Chinchilla lanigera - long-tailed chinchilla)
Chinchilla Assembly Chr Position (strand) Source Genome Browsers JBrowse NCBI UCSC Ensembl ChiLan1.0 Ensembl NW_004955461 6,797,018 - 7,119,569 (-) Ensembl ChiLan1.0 ChiLan1.0 NW_004955461 6,793,877 - 7,119,859 (-) NCBI ChiLan1.0 ChiLan1.0
KCNQ3 (Canis lupus familiaris - dog)
Dog Assembly Chr Position (strand) Source Genome Browsers JBrowse NCBI UCSC Ensembl CanFam3.1 13 28,765,472 - 29,062,371 (-) NCBI CanFam3.1 CanFam3.1 canFam3 CanFam3.1 CanFam3.1 Ensembl 13 28,773,738 - 29,062,370 (-) Ensembl CanFam3.1 canFam3 CanFam3.1 Dog10K_Boxer_Tasha 13 28,738,298 - 29,035,933 (-) NCBI Dog10K_Boxer_Tasha ROS_Cfam_1.0 13 29,120,132 - 29,417,368 (-) NCBI ROS_Cfam_1.0 ROS_Cfam_1.0 Ensembl 13 29,126,114 - 29,417,147 (-) Ensembl ROS_Cfam_1.0 Ensembl UMICH_Zoey_3.1 13 28,847,191 - 29,144,520 (-) NCBI UMICH_Zoey_3.1 UNSW_CanFamBas_1.0 13 28,946,895 - 29,244,508 (-) NCBI UNSW_CanFamBas_1.0 UU_Cfam_GSD_1.0 13 29,258,881 - 29,556,646 (-) NCBI UU_Cfam_GSD_1.0
Kcnq3 (Ictidomys tridecemlineatus - thirteen-lined ground squirrel)
Squirrel Assembly Chr Position (strand) Source Genome Browsers JBrowse NCBI UCSC Ensembl HiC_Itri_2 NW_024405303 9,286,465 - 9,587,259 (+) NCBI HiC_Itri_2 SpeTri2.0 Ensembl NW_004936470 16,712,703 - 17,009,397 (+) Ensembl SpeTri2.0 SpeTri2.0 Ensembl SpeTri2.0 NW_004936470 16,712,508 - 17,009,648 (+) NCBI SpeTri2.0 SpeTri2.0 SpeTri2.0
KCNQ3 (Sus scrofa - pig)
Pig Assembly Chr Position (strand) Source Genome Browsers JBrowse NCBI UCSC Ensembl Sscrofa11.1 Ensembl 4 8,669,121 - 8,970,342 (+) Ensembl Sscrofa11.1 susScr11 Sscrofa11.1 Sscrofa11.1 4 8,669,969 - 8,978,656 (+) NCBI Sscrofa11.1 Sscrofa11.1 susScr11 Sscrofa11.1 Sscrofa10.2 4 8,707,508 - 9,006,805 (+) NCBI Sscrofa10.2 Sscrofa10.2 susScr3
KCNQ3 (Chlorocebus sabaeus - green monkey)
Green Monkey Assembly Chr Position (strand) Source Genome Browsers JBrowse NCBI UCSC Ensembl ChlSab1.1 8 126,566,288 - 126,921,354 (-) NCBI ChlSab1.1 ChlSab1.1 chlSab2 ChlSab1.1 Ensembl 8 126,566,545 - 126,622,712 (-) Ensembl ChlSab1.1 ChlSab1.1 Ensembl chlSab2 Vero_WHO_p1.0 NW_023666039 13,185,447 - 13,545,986 (+) NCBI Vero_WHO_p1.0 Vero_WHO_p1.0
Kcnq3 (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.
Ensembl Acc Id:
ENSPPAT00000050265 ⟹ ENSPPAP00000027425
Type:
CODING
Position:
Bonobo Assembly Chr Position (strand) Source PanPan1.1 Ensembl 8 131,755,454 - 131,815,237 (-) Ensembl
Ensembl Acc Id:
ENSPPAT00000050275 ⟹ ENSPPAP00000027435
Type:
CODING
Position:
Bonobo Assembly Chr Position (strand) Source PanPan1.1 Ensembl 8 131,755,454 - 131,813,990 (-) Ensembl
Ensembl Acc Id:
ENSPPAT00000050288 ⟹ ENSPPAP00000027448
Type:
CODING
Position:
Bonobo Assembly Chr Position (strand) Source PanPan1.1 Ensembl 8 131,755,454 - 131,812,551 (-) Ensembl
Ensembl Acc Id:
ENSPPAT00000050292 ⟹ ENSPPAP00000027452
Type:
CODING
Position:
Bonobo Assembly Chr Position (strand) Source PanPan1.1 Ensembl 8 131,755,454 - 131,812,551 (-) Ensembl
RefSeq Acc Id:
XM_014346019 ⟹ XP_014201505
Type:
CODING
Position:
Bonobo Assembly Chr Position (strand) Source NHGRI_mPanPan1-v2 7 149,504,271 - 149,868,780 (-) NCBI NHGRI_mPanPan1 8 125,018,869 - 125,383,199 (-) NCBI Mhudiblu_PPA_v0 8 128,778,315 - 129,134,254 (-) NCBI PanPan1.1 8 131,747,069 - 132,110,448 (-) NCBI
Sequence:
CCAAGTACCGGCGCATCCAAACTTTGATCTACGACGCCCTGGAGAGACCGCGGGGCTGGGCGCTGCTTTACCACGCGTTGGTGTTCCTGATTGTCCTGGGGTGCTTGATTCTGGCTGTCCTGACCACA TTCAAGGAGTATGAGACTGTCTCGGGAGACTGGCTTCTGTTACTGGAGACATTTGCTATTTTCATCTTTGGAGCCGAGTTTGCTTTGAGGATCTGGGCTGCTGGATGTTGCTGCCGATACAAAGGCTG GCGGGGCCGACTGAAGTTTGCCAGGAAGCCCCTGTGCATGTTGGACATCTTTGTGCTGATTGCCTCTGTGCCAGTGGTTGCTGTGGGAAACCAAGGCAATGTTCTGGCCACCTCCCTGCGAAGCCTGC GCTTCCTGCAGATCCTGCGCATGCTGCGGATGGACCGGAGAGGCGGCACCTGGAAGCTTCTGGGCTCAGCCATCTGTGCCCACAGCAAAGAACTCATCACGGCCTGGTACATCGGTTTCCTGACACTC ATCCTTTCTTCATTTCTTGTCTACCTGGTTGAGAAAGACGTCCCAGAGGTGGATGCACAAGGAGAGGAGATGAAAGAGGAGTTTGAGACCTATGCAGATGCCCTGTGGTGGGGCCTGATCACACTGGC CACCATTGGCTATGGAGACAAGACACCCAAAACGTGGGAAGGCCGTCTGATTGCCGCCACCTTTTCCTTAATTGGCGTCTCCTTTTTTGCCCTTCCAGCGGGCATCCTGGGGTCCGGGCTGGCCCTCA AGGTGCAGGAGCAACACCGTCAGAAGCACTTTGAGAAAAGGAGGAAGCCAGCTGCTGAGCTCATTCAGGCTGCCTGGAGGTATTATGCTACCAACCCCAACAGGATTGACCTGGTGGCGACATGGAGA TTTTATGAATCAGTGGTCTCTTTTCCTTTCTTCAGGAAAGAACAGCTGGAGGCAGCATCCAGCCAAAAGCTGGGTCTCTTGGATCGGGTTCGCCTTTCTAATCCTCGTGGTAGCAATACTAAAGGAAA GCTATTTACCCCTCTGAATGTAGATGCCATAGAAGAAAGTCCTTCTAAAGAACCAAAGCCTGTTGGCTTAAACAATAAAGAGCGTTTCCGCACGGCCTTCCGCATGAAAGCCTACGCTTTCTGGCAGA GTTCTGAAGATGCCGGGACAGGTGACCCCATGGCGGAAGACAGGGGCTATGGGAATGACTTCCCCATCGAAGACATGATCCCCACCCTGAAGGCCGCCATCCGAGCCGTCAGAATTCTACAATTCCGT CTCTATAAAAAAAAATTCAAGGAGACTTTGAGGCCTTACGATGTGAAGGATGTGATTGAGCAGTATTCTGCCGGGCATCTCGACATGCTTTCCAGGATAAAGTACCTTCAGACCAGAATAGATATGAT TTTCACCCCTGGACCTCCCTCCACGCCAAAACACAAGAAGTCTCAGAAAGGGAATGAACCATATGTAGCCAGACCATCCACATCAGAAATCGAAGACCAAAGCATGATGGGGAAGTTTGTAAAAGTTG AAAGACAGGTTCAGGACATGGGGAAGAAGCTGGACTTCCTCGTGGATATGCACATGCAACACATGGAACGGTTGCAGGTGCAGGTCACGGAGTATTACCCAACCAAGGGCACCTCCTCGCCAGCTGAA GCAGAGAAGAAAGAGGACAACAGGTATTCCGATTTGAAAACCATCATCTGCAACTATTCTGAGACAGGCCCCCCGGAACCACCCTACAGCTTCCACCAGGTGCCCATTGACAAAGTCAGCCCTTATGG GTTTTTTGCACATGACCCTGTGAACCTGCCCCGAGGGGGACCCAGTTCTGGAAAGGTTCAGGCAACTCCTCCTTCCTTGGCAACAACGTATGTGGAGAGGCCCACGGTCCTGCCTATCTTGACTCTTC TCGACTCCCGAGTGAGCTGCCACTCCCAGGCTGACCTGCAGGGCCCCTACTCGGACCGAATCTCCCCCCGGCAGAGACGTAGCATCACGCGAGACAGCGACACACCTCTGTCCCTGATGTCGGTCAAC CACGAGGAGCTGGAGAGGTCTCCAAGTGGCTTCAGCATCTCCCAGGACAGAGATGATTATGTGTTCGGCCCCAATGGGGGGTCGAGCTGGATGAGGGAGAAGCGGTACCTCGCCGAGGGTGAGACGGA CACAGACACCGACCCCTTCACGCCCAGCGGCTCCATGCCTCTGTCGTCCACAGGGGATGGGATTTCTGATTCAGTATGGACCCCTTCCAATAAGCCCATTTAAAAGAGGTCACTGGCTGACCCCTCCT TGTAATGTAGACAGACTTTGTATAGTTCACTTACTCTCACACCTGACGCTTACCAGCGGGGACACCAATGGCTGCATCAAATGCATGCGTGTGCGTGGTGGCCCCACCCAGGCAGGGGCTTCCCACAG CCTCTTCCTCCCCATGTCACCACAACAAAGTGCTTCCTTTTCAGCATGGTTTGCATGACTTTACACTATATAAATGGTTCCGCTAATCTCTTCTAGGATACACATTTATCTGCTGTTCTTACTTTTAA TCACGATTGGACCAGTACAGGGAGAAATTACTGATGAGCCATTCTTTTTGTCTGTTTGGTTGGCTGGTTTGGGTTTTGGTTTGGTAAGCAGAGAAAGTAGTTTAAGTTATTTCTAGGATCACTGCCCT CTTGTGTAAAACGCTCCAGCAATTAACTGTTTTTGAAAGCAAGGAAATAATTTTCTCAACAAAACCACATTGTGTATCAGTGGGGCTGCCTACTGAGCTAACATTAGGAAAGGAATGAGATAGTCATT TTGTCTCTAAAACAAAGAATTTAAACAAATATTTAAGGCAAAACCTTTTAAAAGCTCTCCAAAAGACCTCACTTGGCCTGATGTTACTTAGTATCATGCCTCAGTTTCCTTATCTGTAAAAAGTGGTG GTAATGCCAAGTGTAGCATTTCTGATGAGTTATGAATTGGCTGGCAGGGAGAAAACACACACACACACACACACACAAAGTTAAAATAGTTTCCAATTTACGTAGCCAAGGACAATGGAATTTATCAG AAGTGAAGTGCCCCTCTGGGCAGGAGCTAAGTTCAGTGCCTTTAAAATGAAGTTCCAACTCCCATTTCTTCCCATGATACTGAAGTACAAAATATCCATCTAAAATAGAAATTAAAGTCAAGAAGGCA CACAGAAATTATCTAGTCCAAGGACTTCCTTTTATAAATGAAGAATCTTAGGCTCCGGTAAAGTGACACACCCAGAGTCACTCAGTTGTCCCATAGAGAACCAGGACTCAAAAGTCAGGTCTGCCCAC TCTCCCTGCCCTTGTTTCCCCTCACCACACCACTCTTCCATTTATATAATGCATCCTAGAGATTGTGTCAAGATATATGACTTTGTGTCACGTGGAAAGCACCCAGTTTATCCAGCAGGAGGGGGATT TCCACTTTTATTGCAAAACATGCTTGCTTGATGCAATGCATTTCAGATCTAGAAAACAATAATGCAAGCAAGCTACATTTACAGATGTGTAAACAGGCAAAATTTCCAGAACCGTCCAATTTTACTTT TCCAAATTTATGGAACCAACCCAGATTTTTTAAATGAAAATACTAAAACCATATGTAACCGTAAGACAAGCTAAAATGTAAGCAGACAGCCTGGGAAGCACTGCCCTACTGTACAGGTGTGATATTAA GCACAAGCCATCCTCTGGCCTCTTATGAGATGTTGTTATTCTCTGAAAAACTTCGATGGAAAAGGTTTCTGTTAGGCTTAGACTGAATTAGCTAAATGACCACACCACAGTATTATTGTATCACTCTT CTCACACACCTAGGCACTGGTTGTGGATAGTTGCCATGGTGACAATCAAGATAATCCAGATGACCTAAACAAATGTCTGTATGCAGCTGACACTGCTATTCTCCCTCACAGTCTTGTCAAGAGCCACA GTAGCTATGGCAGACGTTTGGTTGATGGTTTCATCATTTCCTAATACAAGAGTCTGGCACTATGTTGGAGAGAGGAATCACTTCCTCAGAGATAGGTTACTTTCAACTCACATGTCAACAGTTACTGT ACAAAAAGCTCAGAATACAGAAATGATTAGAGCTTGACCCCTGACCTTAGGAACTTACTTAGAACCAAAGCCCAAAGTCCCAGGCCAAGGGCAGACATTGTGAGCAGCAGAAGGGTGTTTTTTATGGA GAGCCCCACAAATGGATGGGTGTAGACCTTGAAGTCTGAGATGGGAAATATACCAGAATGCTCAATGCATCAGACATGAAGCCCCATGGGCTTCCATTTGACATGCTGGCAATCTGAAGGACAAAGGG CATGGGTTATTTGGGCCTTTTCCCCACTCCTTCAATATGGCTGAAAGTGCCAGTGGGGATTACAACCTAAGAAACCCTATGCCCCTTCCTGAGGGCTTGATTATTGAATCCTGATCTTCCTGGAATCT TTCACTTGAGATGATCACCTGCCTAACATCCAACATGTTACTATGCTCTTCTTTATGTACATGAGTTACTGGAAACCAACAATAAAGGAGAGTGAGTCATACTCTCCACATATGCACCAATTAATTTT GTAACTTATTAATATTCTTGAAGAACTTACTATCTTAGGTATTTTACCAATAGATGCATTTTCCAGCAACTCAATGGAGTTCTACCTTAAAGTATTTACCATTGATCCAAAATTGGAGGAACTACCTT AGATTCTTTTAATAACCTAGAAAGGATTGGAGCTTGTGTTATTTCCTAAACCATAGGCAGGCAGTCTAGCTTCCCTGCTGGATCATAAGACCAGGACAGCAGAGATTGGGTTTGTATTGATCAGTAGT AGGGAAGTATTGATCGTCTAACATCTAGTAAGTTGTCTTTATCAGTATAGACATAGACAAAATACATGTTTTAGGAATGAATAAATAATAATAACCTTAAGAGCTGTTTTTTTCCCATTTAAGAAAAC AAAAAGGAAAAGAGAAAAATGATCTTCTGGAATAACTCTGCTTTGATATTCCCCTTTTGTTCCCCCAAAAAATATATTCCAGAAAGGCAAACCAAACCTGCTCAAGTTGCCTATGCACAGACAATCTC AACAATATGGCTCACAGTGAGCAAGCAGAAATTCAGGGTCTGGAATTGAATGTGAGTTATGGGAAGAAACAGTGTGTGCTTTCACAAAGATCCTTTTGTCAGACAAAGGAACAGCATGATAATCCAAT GGAACTGGTTAACAACATGACCCAAGATGACATGACCACAGATATACTAGTCGTTCTGAAACTTGCCCAAGAAATTGCAATCGTTTCAGCAGAACTCCATGAAATATTGACAAATTAATTCCATCATC AAAGTAGGAGGGATATTATCAGGTAAAACTATGATCTCATGTATGTATTTGGTCTTTCTGGGTCACAATGTGACATGAAAAATTTTAAAGGTCATATTTTAGCAAGATCAAAATGAATTAGATAAATC AACTTCACAAATGTTAAGCGAAACATGATCCTATTGAGCTGAGAAAGAAATACTTGAGATCGTTTGAGTTTTGACTATCAAATGTCAGCACAAAAGCAAATATCAAAAGCTTAAGAAAAAAATATTTC AGGAAAAGAAAAACACATCAAATTGAGAAAGTGCTATTGAATAACTTTGTTTTTAGAACTGGAAATTTAGGCTTAGTAGACATGACATTGATATTACAAAGCCCTAGTTTTCATGAAAACATAACTAG ATAATCCCAAGGTGTATAGGTTAAAATGAACTAATTAATCAACAATTATGCATCCTGTGTCTATTTTGTGCAAGGTATTTCCTAGACACTGTAGTTTAAAAGAATAATTTCCTGTAGAAAAACCTAGT CTAATAGGACCTACTCATAATTTGGCAAAATCATTCTCATAATTCCATGCTACTGAAATGGGGGTGTAATAAAGAAAAAGTCATTTGTTTATTCATTTAACAGGGTTTATTAAGCACCAATATATGCC CAGAACTGTGCAGTGCACTGGAAGTTCAGAGATAGGAAAATCACAGTTTCTGCCATCAAAATGCTAGGAATCTAGAGGTCTCAAACATCAGAGGTCCCTTCAAACTATGTCTACCAGGAAAATAAAAT ACCTGATTTCATCCCTGCAAACAACTCTATACAGACAGAAATGCTTCCTAGCTTGGAAACTATAGAAAATTGAACATGAAAATGAGAGCAAAGATTCTACATCAAAATGGCAATGATCCAATCAGCCC AGTGAAGGCTGAGTGGGTTGAATGGGGACTTCGAGTTTGGATTCAATGCTTTGAACTTCATAGCTCCAGAGAAGCTGTGCAAAAAGGGGGGATTCTAGGGAATCTGAGGAAGATTGTTGGAGAAACCA GCTTTCTTTCGTCTCCTAATCCCTGCTAAGATTGACACCAGTCAAGGAGCTGAGTTACTTTCATTTCATCATGTTGACCAAGAGAAGCTTATGATACAGACTATGACACAGCACCTATTTCAAGAGAA AGATGTTACTCTACTTATGGGAACCTGCAGATCAAATTCTCCTGGGGCAAGAGAAGAAATTTGTTCTGCAGCCTAAGAAGTCAACTGTACTTTGGACAGTGCTGCCAAACACACCCCAGGATTCTCCC ACCCCTGTGCTTTCCCAGAAGATGCCACATAGCTGGTATTTGGTTTTCATGAATAACCAAAGATTCTTATTTGCTTCCTGAACCCCAGGCGTCCTTAGGAATTTGCTTCATGTCCTCACTTGTCCTTG AAGGCTTGTTTTCAGGATGAACTTTTAAAGTCTAAGCTGTTTATATTCAAATCAACCCAACGCTATTGTTGCTGATATTATACCATTCCAAACTGAGCCAACTGGCCCCTAAACAAGCCAGCAGGCAG CCCCTCACTAATGCCCAGTTTAGAACATGTTAGGACCAGGCTATCTGCATAGCTTTAGTGGTTTTAGAAGCCAGTAATGGCAGTGTAAAAGACAGGAATCATACAGAGATGACCTGGAAGAAAATTTG AGTTTCAGCACATTCAAAAGCATTTGACTCTTCTGCCGTGTTTTGATTTTCAAGTGAGACAATCAATGTACACACAAAGCCCCTAGTACAATGACTGATGCATACTAGGGACTGTTATTTATGTTATT TTTTTTACAGTATGCATGGACTTCATTGTCTCAGTCTTTGGTGTTACTTATGAACTCTAAATTTACACCAAAAAATTTTTTTTCAGAAAAAGAATCGTGGAGAAACAATCCTAATTATTAAATCAAAT GCTTTCACAATTGCTTTTTAAAGAAGTACATCTCTGCAAATAAAAATGCTTGCTCTTGTCTACCACAATAAGGAACAGAAGGAATCTTGGAATGAAGAGAGGCAGGAATGTTGGATCTCAGTGGCTGA GTTGTGGCAATTCCATTGGACATATAGTACCAGATGTTGCACCATCTGGATGATGTGTAGGAGATAAAGCCAAATTGCAAAAATAAAGGACTCATGATTTCCCAAGGAAAGTCAACTGTGCATGGTGG CTATCAGACAACACCCTAGCAATGAATCGGGGAACTTGCAGAAGAAAGAGTTAATGCTTGCTTAAACCTTCCCTGGGGAGATTTGTTCCCAGGCTTTCACGGCTTTAACCTCAGCAACCCTGTAAGAA AATTGTGATTCATATTTTGATTTGTTATCATAGATGCAAAGAGACATAATTTCATGGATTCTAAGATACACAGAGCAAGAAGAGATTTTGATCACCCAGAACAACCACCTGTCTTTTTAGATCAAGAA GCAGAAGCTCAGAGCAAAGAACATCACACCACGTCCCTCAGTGATTGAAGCAGTGATTGAGTCACAGAATAAATCTGGAACTCAGGTCTTCTGATCTTTGCTCCAGATGTTAGAGACAAAACTTAAAG TAAAATACCAAGTGAAATCAAAGCATCACGATTGAGCCCAGAACATGAAAAAGAACTTCCTGGCCCACTTGAGAAACTATTAAACCGAACATACCTTTGGGGACTTCTTCCTTTCTCTGGAATAAGAT TGATGTTTCCGTGCTGTGAAAGACGACAATGTTCCTTCTCCCAGAATCCTGCTGTCTTCAAAAGGCCTAGCAAAAACCACTGCTGCTGGGTGCAGTTGAGAAAGGGAATGAAGAACAATCCCATGGCC ATGCAGGCACTCCTCCCCTCCACCTCTCTGCCCTCCACCCCTCTGCCCTCTCCTACCTTGTTCCTTCTTGGTCCTGCCATGTTTGGACTGGTTCACCTTTTTGGCCCATCACTTGGGCTCATTCAGCA ACAGTCATGCCTTAGGTTACATCCTCATCTATAGGCCAATTAAACAGGGTTTCTTCTTGATAAATCCCTATGGTTTTGATTTTAGGAAGTCAGGCATGATTTCTTTTGGGATCTATATGACCCAAAGT GGCCAGTTTTACCAAAGGTGTCCCTTTGCACTGGGATCTCTGGGTCTCATTTGAACACAGCTTGGGTCCTCTTGCCTTGTCCCAGAGAATCCCCATGTTGTCAGGACATAAGCAGATACTCTAGGGCC TTCACCAAAAGCTACAAAGAAGCAAACAGGACTCAACTTAGGACATCTTATGGTTATGTAACTAAGAGATTATTTTAGGAAGTAAACAGGCCTCTGTTGGCTCAAATGAACATCTTCATTGTTAGTTT CCACTTACATTGTTCTTGGGATAAATCTGCCAGAATTTGGCAGGGCTCCCCAGCAGTCCTTGTGAATCCCTGTGGTAGGATGTTTCCGTTCTCCTGAGTCAGGCTGAAGTGAAAGCTCCTAAGAGATA TTCAGAAAGAAGGATGGTCAAGTTCTAGAACAACAATAGTTGGCCCAGCAATTTTAAAGATTGTCATTCTACCTAAGCCTTCATCCTCCAGATAGCACTGTTATGGGCTTAAAATAAGCTTCAAGGGA AATAATGAATTTCTTTGACACCGCCAAAAATCGGCTGTATATAAGAATAACTTGAGAATGGCTTACAATGAGGTAGTCAAAAGCCCAGCTCAGTGCTCAGGAATGTATTTGTAATTCCTCTTAGACTT GTCGAATGGACTGCAATTTGATACCTAAGAGTCATAAAAAATGAGGGCATATTTTATGTTAATGTTCCCTTCTCTTCCTCTGCCCACAAAAGTGAGGTCAGGGAAGGGGAGAGAAACTTATCCTAAGC GCTCCTTATGAGTTGCTTGTGACATGATAGCTCTCTCTAAAGTTCATGCAATCCTCATCGCAACCCCATGAGGGAGATGTTATTGTCTCCATCTTATAGATGAGGAAACTGAAGACAAGACCTTGTCA AAGGTCACACATTGTAAGAAGTAGAGCTGCATATTTAACCAAAGCCCATGGACCTGGAAAGCTCATTCTCTCTCCCCCTTCTTCCTCTCAAATCAGGCCCTAGCTCCTCCACAATGCTTCGGGCTTCT ACGTTCACTCAGCTTTACAGTAAAATGATCACAGACCCATGAGTTCCCTGGAGAGTAGAGTGATGCCTGGGTCAGCTGTTCCTCTTGTCTGTTCAGCAGGTCCTTTGAGTGGCTTCACAATCCAGCTG TCAGTGGCAGAAAATAATGCCTCATAAATTATTCACCTGGTTCACATTGGAATCCATTAGCTCTCGGGGCTTGGTGTGGCTGCAGATCATCCACAAGTGCCCCTTGTTCTCTGCCCCCAAGGAGTTCC TGTCATTGTTTTTAACCAAACAAGTTCAAATATCTCCACGTCTCTGCTGACTCTGGTCTTTTGTCTCTAGACTGTACCTTTATTTCTGAGCTCTGAAATTCTGCAGAAACAGGTGAGTCTATAAAAAC ATTCTGTGGGAGGCCAAAAGCTCAGAACAGTTGTGTCTCTCTTTCTCAGTATTAAAAGATCAAGGTTTCCCATGGAAGCCAACCTGATCTGGTAATTGGGCCCTTCTATACCCCTCTGAATACTTTTC CAAGGAGGGGGCAGTTCCCACCCCCATAGTTCCCCTGAGGGTTAAGAGTCCAGGTGGTGGCCAAGTTGCAAGATTTGGGGCAGCCATTTTGCCAAGGATCAGAGATTCGCTGTCGGAGAGGTAAAGTC GGCTCTGTGCCATCCTGCAAAATCAACTTAGAAAGATAGGTGGACTTCATCAGATTTGTCAGTCCTTCCTTGTTTTAAAGAGAAAAATGATCTCTGCCTTGCTTCAGATAGGATATGGCTATTTTTTT CCTTCTTTTTCTAATGTAGCAGTGATGGAAAACACCAGTCTTTGAAGAACAAATGGAGGTTCCCAGTGACATGAATCCATTATATTTGATTTTGGATTGTATTTTTTAACCCCTTTTTATGGCATAGA ATTCTGGTGCCTTGCTCCCTGGGTTTGTCTCTGTGCTACGAGTAGGCTTTCTTCACATTCTGGCTTACAGGGGAACACAACTATTCCACAAGTGGCCTTTAGTGCTCTTTATAATATGATTTCCTGTA ATTTTTAAACTGTATGTGTAATTTATATTCTGGCTCTGTCCAATATTTGAACAACTTTAATAGGTTGATTTCCATATATATTATGCAAATAATTCTTACCTGATTTTTTATGTTCTATCTTAAATAAA TACTGCACCACTTATTAATAAATAGACATTTCAGTGATTA
hide sequence
RefSeq Acc Id:
XM_034966614 ⟹ XP_034822505
Type:
CODING
Position:
Bonobo Assembly Chr Position (strand) Source NHGRI_mPanPan1-v2 7 149,504,271 - 149,869,035 (-) NCBI NHGRI_mPanPan1 8 125,018,869 - 125,383,609 (-) NCBI Mhudiblu_PPA_v0 8 128,769,930 - 129,134,671 (-) NCBI
RefSeq Acc Id:
XP_014201505 ⟸ XM_014346019
- Peptide Label:
isoform X2
- UniProtKB:
A0A2R9BCS9 (UniProtKB/TrEMBL)
- Sequence:
MLDIFVLIASVPVVAVGNQGNVLATSLRSLRFLQILRMLRMDRRGGTWKLLGSAICAHSKELITAWYIGFLTLILSSFLVYLVEKDVPEVDAQGEEMKEEFETYADALWWGLITLATIGYGDKTPKTW EGRLIAATFSLIGVSFFALPAGILGSGLALKVQEQHRQKHFEKRRKPAAELIQAAWRYYATNPNRIDLVATWRFYESVVSFPFFRKEQLEAASSQKLGLLDRVRLSNPRGSNTKGKLFTPLNVDAIEE SPSKEPKPVGLNNKERFRTAFRMKAYAFWQSSEDAGTGDPMAEDRGYGNDFPIEDMIPTLKAAIRAVRILQFRLYKKKFKETLRPYDVKDVIEQYSAGHLDMLSRIKYLQTRIDMIFTPGPPSTPKHK KSQKGNEPYVARPSTSEIEDQSMMGKFVKVERQVQDMGKKLDFLVDMHMQHMERLQVQVTEYYPTKGTSSPAEAEKKEDNRYSDLKTIICNYSETGPPEPPYSFHQVPIDKVSPYGFFAHDPVNLPRG GPSSGKVQATPPSLATTYVERPTVLPILTLLDSRVSCHSQADLQGPYSDRISPRQRRSITRDSDTPLSLMSVNHEELERSPSGFSISQDRDDYVFGPNGGSSWMREKRYLAEGETDTDTDPFTPSGSM PLSSTGDGISDSVWTPSNKPI
hide sequence
RefSeq Acc Id:
XP_034822505 ⟸ XM_034966614
- Peptide Label:
isoform X1
- UniProtKB:
A0A2R9BCS9 (UniProtKB/TrEMBL)
Ensembl Acc Id:
ENSPPAP00000027425 ⟸ ENSPPAT00000050265
Ensembl Acc Id:
ENSPPAP00000027435 ⟸ ENSPPAT00000050275
Ensembl Acc Id:
ENSPPAP00000027448 ⟸ ENSPPAT00000050288
Ensembl Acc Id:
ENSPPAP00000027452 ⟸ ENSPPAT00000050292