Symbol:
Fndc3a
Name:
fibronectin type III domain containing 3a
RGD ID:
1304736
Description:
Predicted to be involved in spermatid development. Predicted to act upstream of or within Sertoli cell development; cell-cell adhesion; and fertilization. Predicted to be located in several cellular components, including Golgi apparatus; acrosomal vesicle; and vesicle membrane. Predicted to be active in cytoplasm; intracellular membrane-bounded organelle; and membrane. Orthologous to human FNDC3A (fibronectin type III domain containing 3A); INTERACTS WITH 17alpha-ethynylestradiol; 17beta-estradiol; acetamide.
Type:
protein-coding
RefSeq Status:
VALIDATED
Previously known as:
fibronectin type III domain containing 3; fibronectin type-III domain-containing protein 3A; Fndc3; LOC306022
RGD Orthologs
Alliance Orthologs
More Info
more info ...
More Info
Latest Assembly:
GRCr8 - GRCr8 Assembly
Position:
Rat Assembly Chr Position (strand) Source Genome Browsers JBrowse NCBI UCSC Ensembl GRCr8 15 54,099,510 - 54,276,963 (-) NCBI GRCr8 mRatBN7.2 15 47,689,909 - 47,867,354 (-) NCBI mRatBN7.2 mRatBN7.2 mRatBN7.2 Ensembl 15 47,689,919 - 47,866,784 (-) Ensembl mRatBN7.2 Ensembl UTH_Rnor_SHR_Utx 15 51,826,854 - 51,970,141 (-) NCBI Rnor_SHR UTH_Rnor_SHR_Utx UTH_Rnor_SHRSP_BbbUtx_1.0 15 52,938,415 - 53,081,704 (-) NCBI Rnor_SHRSP UTH_Rnor_SHRSP_BbbUtx_1.0 UTH_Rnor_WKY_Bbb_1.0 15 49,780,815 - 49,921,305 (-) NCBI Rnor_WKY UTH_Rnor_WKY_Bbb_1.0 Rnor_6.0 15 54,378,865 - 54,582,954 (-) NCBI Rnor6.0 Rnor_6.0 rn6 Rnor6.0 Rnor_6.0 Ensembl 15 54,381,044 - 54,528,480 (-) Ensembl Rnor6.0 rn6 Rnor6.0 Rnor_5.0 15 58,102,190 - 58,306,554 (-) NCBI Rnor5.0 Rnor_5.0 rn5 Rnor5.0 RGSC_v3.4 15 53,124,740 - 53,312,367 (-) NCBI RGSC3.4 RGSC_v3.4 rn4 RGSC3.4 RGSC_v3.1 15 53,140,516 - 53,328,793 (-) NCBI Celera 15 47,348,000 - 47,488,015 (-) NCBI Celera Cytogenetic Map 15 p11 NCBI
JBrowse:
View Region in Genome Browser (JBrowse)
Model
Fndc3a (Rattus norvegicus - Norway rat)
Rat Assembly Chr Position (strand) Source Genome Browsers JBrowse NCBI UCSC Ensembl GRCr8 15 54,099,510 - 54,276,963 (-) NCBI GRCr8 mRatBN7.2 15 47,689,909 - 47,867,354 (-) NCBI mRatBN7.2 mRatBN7.2 mRatBN7.2 Ensembl 15 47,689,919 - 47,866,784 (-) Ensembl mRatBN7.2 Ensembl UTH_Rnor_SHR_Utx 15 51,826,854 - 51,970,141 (-) NCBI Rnor_SHR UTH_Rnor_SHR_Utx UTH_Rnor_SHRSP_BbbUtx_1.0 15 52,938,415 - 53,081,704 (-) NCBI Rnor_SHRSP UTH_Rnor_SHRSP_BbbUtx_1.0 UTH_Rnor_WKY_Bbb_1.0 15 49,780,815 - 49,921,305 (-) NCBI Rnor_WKY UTH_Rnor_WKY_Bbb_1.0 Rnor_6.0 15 54,378,865 - 54,582,954 (-) NCBI Rnor6.0 Rnor_6.0 rn6 Rnor6.0 Rnor_6.0 Ensembl 15 54,381,044 - 54,528,480 (-) Ensembl Rnor6.0 rn6 Rnor6.0 Rnor_5.0 15 58,102,190 - 58,306,554 (-) NCBI Rnor5.0 Rnor_5.0 rn5 Rnor5.0 RGSC_v3.4 15 53,124,740 - 53,312,367 (-) NCBI RGSC3.4 RGSC_v3.4 rn4 RGSC3.4 RGSC_v3.1 15 53,140,516 - 53,328,793 (-) NCBI Celera 15 47,348,000 - 47,488,015 (-) NCBI Celera Cytogenetic Map 15 p11 NCBI
FNDC3A (Homo sapiens - human)
Human Assembly Chr Position (strand) Source Genome Browsers JBrowse NCBI UCSC Ensembl GRCh38 13 48,975,291 - 49,209,779 (+) NCBI GRCh38 GRCh38 hg38 GRCh38 GRCh38.p14 Ensembl 13 48,975,912 - 49,209,779 (+) Ensembl GRCh38 hg38 GRCh38 GRCh37 13 49,550,048 - 49,783,915 (+) NCBI GRCh37 GRCh37 hg19 GRCh37 Build 36 13 48,448,049 - 48,681,916 (+) NCBI NCBI36 Build 36 hg18 NCBI36 Build 34 13 48,448,939 - 48,681,729 NCBI Celera 13 30,605,901 - 30,839,799 (+) NCBI Celera Cytogenetic Map 13 q14.2 NCBI HuRef 13 30,344,082 - 30,577,725 (+) NCBI HuRef CHM1_1 13 49,517,625 - 49,751,465 (+) NCBI CHM1_1 T2T-CHM13v2.0 13 48,193,984 - 48,431,085 (+) NCBI T2T-CHM13v2.0
Fndc3a (Mus musculus - house mouse)
Mouse Assembly Chr Position (strand) Source Genome Browsers JBrowse NCBI UCSC Ensembl GRCm39 14 72,775,388 - 72,948,141 (-) NCBI GRCm39 GRCm39 mm39 GRCm39 Ensembl 14 72,775,386 - 72,947,443 (-) Ensembl GRCm39 Ensembl GRCm38 14 72,537,948 - 72,710,701 (-) NCBI GRCm38 GRCm38 mm10 GRCm38 GRCm38.p6 Ensembl 14 72,537,946 - 72,710,003 (-) Ensembl GRCm38 mm10 GRCm38 MGSCv37 14 72,937,760 - 73,109,810 (-) NCBI GRCm37 MGSCv37 mm9 NCBIm37 MGSCv36 14 71,273,033 - 71,445,085 (-) NCBI MGSCv36 mm8 Celera 14 70,075,554 - 70,248,633 (-) NCBI Celera Cytogenetic Map 14 D2 NCBI cM Map 14 37.62 NCBI
Fndc3a (Chinchilla lanigera - long-tailed chinchilla)
Chinchilla Assembly Chr Position (strand) Source Genome Browsers JBrowse NCBI UCSC Ensembl ChiLan1.0 Ensembl NW_004955431 2,553,892 - 2,696,744 (+) Ensembl ChiLan1.0 ChiLan1.0 NW_004955431 2,553,311 - 2,696,596 (+) NCBI ChiLan1.0 ChiLan1.0
FNDC3A (Pan paniscus - bonobo/pygmy chimpanzee)
Bonobo Assembly Chr Position (strand) Source Genome Browsers JBrowse NCBI UCSC Ensembl NHGRI_mPanPan1-v2 14 50,419,146 - 50,647,201 (+) NCBI NHGRI_mPanPan1-v2 NHGRI_mPanPan1 13 49,070,446 - 49,298,260 (+) NCBI NHGRI_mPanPan1 Mhudiblu_PPA_v0 13 30,119,740 - 30,347,544 (+) NCBI Mhudiblu_PPA_v0 Mhudiblu_PPA_v0 panPan3 PanPan1.1 13 48,820,120 - 49,047,770 (+) NCBI panpan1.1 PanPan1.1 panPan2 PanPan1.1 Ensembl 13 48,820,018 - 49,049,274 (+) Ensembl panpan1.1 panPan2
FNDC3A (Canis lupus familiaris - dog)
Dog Assembly Chr Position (strand) Source Genome Browsers JBrowse NCBI UCSC Ensembl CanFam3.1 22 2,524,173 - 2,700,223 (-) NCBI CanFam3.1 CanFam3.1 canFam3 CanFam3.1 CanFam3.1 Ensembl 22 2,526,381 - 2,700,780 (-) Ensembl CanFam3.1 canFam3 CanFam3.1 Dog10K_Boxer_Tasha 22 2,553,053 - 2,728,963 (-) NCBI Dog10K_Boxer_Tasha ROS_Cfam_1.0 22 2,513,419 - 2,688,986 (-) NCBI ROS_Cfam_1.0 ROS_Cfam_1.0 Ensembl 22 2,513,429 - 2,688,514 (-) Ensembl ROS_Cfam_1.0 Ensembl UMICH_Zoey_3.1 22 2,423,463 - 2,599,487 (-) NCBI UMICH_Zoey_3.1 UNSW_CanFamBas_1.0 22 2,470,964 - 2,646,132 (-) NCBI UNSW_CanFamBas_1.0 UU_Cfam_GSD_1.0 22 2,491,255 - 2,667,301 (-) NCBI UU_Cfam_GSD_1.0
Fndc3a (Ictidomys tridecemlineatus - thirteen-lined ground squirrel)
Squirrel Assembly Chr Position (strand) Source Genome Browsers JBrowse NCBI UCSC Ensembl HiC_Itri_2 NW_024404945 158,670,041 - 158,828,620 (+) NCBI HiC_Itri_2 SpeTri2.0 Ensembl NW_004936565 2,154,599 - 2,312,862 (+) Ensembl SpeTri2.0 SpeTri2.0 Ensembl SpeTri2.0 NW_004936565 2,154,672 - 2,312,670 (+) NCBI SpeTri2.0 SpeTri2.0 SpeTri2.0
FNDC3A (Sus scrofa - pig)
Pig Assembly Chr Position (strand) Source Genome Browsers JBrowse NCBI UCSC Ensembl Sscrofa11.1 Ensembl 11 18,564,280 - 18,757,869 (-) Ensembl Sscrofa11.1 susScr11 Sscrofa11.1 Sscrofa11.1 11 18,564,280 - 18,757,742 (-) NCBI Sscrofa11.1 Sscrofa11.1 susScr11 Sscrofa11.1 Sscrofa10.2 11 18,971,020 - 19,002,968 (+) NCBI Sscrofa10.2 Sscrofa10.2 susScr3
FNDC3A (Chlorocebus sabaeus - green monkey)
Green Monkey Assembly Chr Position (strand) Source Genome Browsers JBrowse NCBI UCSC Ensembl ChlSab1.1 3 26,902,353 - 27,121,248 (+) NCBI ChlSab1.1 ChlSab1.1 chlSab2 ChlSab1.1 Ensembl 3 26,902,353 - 27,121,008 (+) Ensembl ChlSab1.1 ChlSab1.1 Ensembl chlSab2 Vero_WHO_p1.0 NW_023666057 16,770,535 - 16,992,110 (-) NCBI Vero_WHO_p1.0 Vero_WHO_p1.0
Fndc3a (Heterocephalus glaber - naked mole-rat)
.
Predicted Target Of
Count of predictions: 307 Count of miRNA genes: 196 Interacting mature miRNAs: 231 Transcripts: ENSRNOT00000066888 Prediction methods: Microtar, Miranda Result types: miRGate_prediction
631273 Lecl2 Lens clarity QTL 2 0.001 lens clarity trait (VT:0001304) age of onset/diagnosis of cataract (CMO:0001584) 15 10596089 55596089 Rat 1300144 Rf23 Renal function QTL 23 3.61 renal blood flow trait (VT:2000006) absolute change in renal vascular resistance (CMO:0001900) 15 40631268 98288169 Rat 2300167 Bmd63 Bone mineral density QTL 63 5.9 0.0001 femur mineral mass (VT:0010011) volumetric bone mineral density (CMO:0001553) 15 11111142 56111142 Rat 1331729 Rf42 Renal function QTL 42 3.071 kidney blood vessel physiology trait (VT:0100012) absolute change in renal blood flow rate (CMO:0001168) 15 17362897 73690657 Rat 152025253 Hrtrt24 Heart rate QTL 24 3.82 heart pumping trait (VT:2000009) 15 27885774 86257085 Rat 10054130 Srcrt8 Stress Responsive Cort QTL 8 2.18 0.0085 blood corticosterone amount (VT:0005345) plasma corticosterone level (CMO:0001173) 15 22117933 67117933 Rat 1582227 Gluco30 Glucose level QTL 30 3.6 0.0003 blood glucose amount (VT:0000188) absolute change in blood glucose level area under curve (CMO:0002034) 15 28030665 82262678 Rat 1582228 Epfw3 Epididymal fat weight QTL 3 4.1 0.0002 epididymal fat pad mass (VT:0010421) epididymal fat pad weight to body weight ratio (CMO:0000658) 15 28030665 82262678 Rat 2300173 Bmd62 Bone mineral density QTL 62 12.8 0.0001 lumbar vertebra mineral mass (VT:0010511) volumetric bone mineral density (CMO:0001553) 15 11111142 56111142 Rat 1578646 Bmd18 Bone mineral density QTL 18 5.2 femur mineral mass (VT:0010011) trabecular volumetric bone mineral density (CMO:0001729) 15 22806240 98288169 Rat 1578647 Bmd17 Bone mineral density QTL 17 4 femur mineral mass (VT:0010011) total volumetric bone mineral density (CMO:0001728) 15 22806240 98288169 Rat 61424 Scl1 Serum cholesterol level QTL 1 7.7 0.001 blood cholesterol amount (VT:0000180) serum total cholesterol level (CMO:0000363) 15 16725528 80672115 Rat 1582251 Gluco24 Glucose level QTL 24 3.2 0.0008 blood glucose amount (VT:0000188) blood glucose level (CMO:0000046) 15 5530756 50530756 Rat 2293686 Bmd36 Bone mineral density QTL 36 7.4 0.0001 femur strength trait (VT:0010010) femoral neck ultimate force (CMO:0001703) 15 33611058 71477291 Rat 1598828 Glom14 Glomerulus QTL 14 2.5 kidney glomerulus morphology trait (VT:0005325) index of glomerular damage (CMO:0001135) 15 34054139 79054139 Rat 2317750 Glom26 Glomerulus QTL 26 4.3 urine protein amount (VT:0005160) urine protein level (CMO:0000591) 15 12496141 65205939 Rat 2298549 Neuinf12 Neuroinflammation QTL 12 3.5 nervous system integrity trait (VT:0010566) spinal cord beta-2 microglobulin mRNA level (CMO:0002125) 15 1 55302115 Rat 2293691 Bmd37 Bone mineral density QTL 37 6.6 0.0001 femur strength trait (VT:0010010) femur total energy absorbed before break (CMO:0001677) 15 33611058 71477291 Rat 2293688 Bss29 Bone structure and strength QTL 29 5.31 0.0001 femur morphology trait (VT:0000559) femur midshaft cortical cross-sectional area (CMO:0001663) 15 11111142 56111142 Rat 1582242 Gluco28 Glucose level QTL 28 3.3 0.0008 blood glucose amount (VT:0000188) blood glucose level area under curve (AUC) (CMO:0000350) 15 28030665 82262678 Rat 1578660 Bss19 Bone structure and strength QTL 19 4.3 femur morphology trait (VT:0000559) bone trabecular cross-sectional area (CMO:0002311) 15 22806240 98288169 Rat 1582244 Bw79 Body weight QTL 79 4 0.0002 epididymal fat pad mass (VT:0010421) epididymal fat pad weight to body weight ratio (CMO:0000658) 15 28030665 82262678 Rat 7411725 Strs7 Sensitivity to stroke QTL 7 3.8 cerebrum integrity trait (VT:0010549) percentage of study population developing cerebrovascular lesions during a period of time (CMO:0000932) 15 40289901 49308583 Rat 1582214 Stl21 Serum triglyceride level QTL 21 3.1 0.022 blood triglyceride amount (VT:0002644) serum triglyceride level (CMO:0000360) 15 28030665 82262678 Rat
D15Rat16
Rat Assembly Chr Position (strand) Source JBrowse mRatBN7.2 15 47,750,714 - 47,750,839 (+) MAPPER mRatBN7.2 Rnor_6.0 15 54,439,669 - 54,439,793 NCBI Rnor6.0 Rnor_5.0 15 58,162,994 - 58,163,118 UniSTS Rnor5.0 RGSC_v3.4 15 53,185,540 - 53,185,665 RGD RGSC3.4 RGSC_v3.4 15 53,185,541 - 53,185,665 UniSTS RGSC3.4 RGSC_v3.1 15 53,201,320 - 53,201,445 RGD Celera 15 47,406,298 - 47,406,422 UniSTS SHRSP x BN Map 15 33.4699 UniSTS SHRSP x BN Map 15 33.4699 RGD FHH x ACI Map 15 46.36 RGD Cytogenetic Map 15 p11 UniSTS
D15Got110
Rat Assembly Chr Position (strand) Source JBrowse mRatBN7.2 15 47,854,669 - 47,854,874 (+) MAPPER mRatBN7.2 Rnor_6.0 15 54,569,662 - 54,569,866 NCBI Rnor6.0 Rnor_6.0 15 54,554,814 - 54,555,018 NCBI Rnor6.0 Rnor_5.0 15 58,293,473 - 58,293,677 UniSTS Rnor5.0 Rnor_5.0 15 58,278,625 - 58,278,829 UniSTS Rnor5.0 RGSC_v3.4 15 53,300,390 - 53,300,594 UniSTS RGSC3.4 RGSC_v3.4 15 53,300,389 - 53,300,594 RGD RGSC3.4 RGSC_v3.1 15 53,316,169 - 53,316,374 RGD Celera 15 47,509,094 - 47,509,298 UniSTS Cytogenetic Map 15 p11 UniSTS
RH138547
Rat Assembly Chr Position (strand) Source JBrowse mRatBN7.2 15 47,692,969 - 47,693,118 (+) MAPPER mRatBN7.2 Rnor_6.0 15 54,381,926 - 54,382,074 NCBI Rnor6.0 Rnor_5.0 15 58,105,251 - 58,105,399 UniSTS Rnor5.0 RGSC_v3.4 15 53,127,798 - 53,127,946 UniSTS RGSC3.4 Celera 15 47,348,882 - 47,349,030 UniSTS Cytogenetic Map 15 p11 UniSTS
Click on a value in the shaded box below the category label to view a detailed expression data table for that system.
alimentary part of gastrointestinal system
9
11
49
113
91
90
59
25
59
6
218
97
93
45
60
31
Too many to show, limit is 500. Download them if you would like to view them all.
Ensembl Acc Id:
ENSRNOT00000066888 ⟹ ENSRNOP00000062773
Type:
CODING
Position:
Rat Assembly Chr Position (strand) Source mRatBN7.2 Ensembl 15 47,691,523 - 47,866,784 (-) Ensembl Rnor_6.0 Ensembl 15 54,381,044 - 54,528,480 (-) Ensembl
Ensembl Acc Id:
ENSRNOT00000096165 ⟹ ENSRNOP00000087923
Type:
CODING
Position:
Rat Assembly Chr Position (strand) Source mRatBN7.2 Ensembl 15 47,691,523 - 47,820,382 (-) Ensembl
Ensembl Acc Id:
ENSRNOT00000100330 ⟹ ENSRNOP00000093978
Type:
CODING
Position:
Rat Assembly Chr Position (strand) Source mRatBN7.2 Ensembl 15 47,691,523 - 47,866,784 (-) Ensembl
Ensembl Acc Id:
ENSRNOT00000101367 ⟹ ENSRNOP00000096946
Type:
CODING
Position:
Rat Assembly Chr Position (strand) Source mRatBN7.2 Ensembl 15 47,689,919 - 47,759,433 (-) Ensembl
Ensembl Acc Id:
ENSRNOT00000111875 ⟹ ENSRNOP00000082902
Type:
CODING
Position:
Rat Assembly Chr Position (strand) Source mRatBN7.2 Ensembl 15 47,691,523 - 47,866,784 (-) Ensembl
RefSeq Acc Id:
NM_001412039 ⟹ NP_001398968
RefSeq Status:
VALIDATED
Type:
CODING
Position:
Rat Assembly Chr Position (strand) Source GRCr8 15 54,099,510 - 54,276,407 (-) NCBI mRatBN7.2 15 47,689,909 - 47,866,807 (-) NCBI
RefSeq Acc Id:
XM_006252296 ⟹ XP_006252358
Type:
CODING
Position:
Rat Assembly Chr Position (strand) Source GRCr8 15 54,099,510 - 54,255,901 (-) NCBI mRatBN7.2 15 47,689,909 - 47,846,054 (-) NCBI Rnor_6.0 15 54,378,865 - 54,542,524 (-) NCBI Rnor_5.0 15 58,102,190 - 58,306,554 (-) NCBI
Sequence:
ATTATAATAATCTAGGAAGCCTATGGAGATTATAATATACCTGTCAAAGAGCTAAGATGGAAGACACACTTCAGAAATCGGGACGTGTGTCTTTTAAAGTCGGCCAGGGAGTAATCAATGGGCACATT TCCCTGTGTCCAGAAAGCAGACACCTAAGATGATCTTTCCCAGTAATACCTAAGCTCTCGCAGGGCCGGATAAAGCAACTGCCCGAAGAAGGCAGTTGGCTCTTGGGGACTGAAAGCAAATCTGGACC TGAATAAGCAGTCCTATTCTGTAGTTGTGGGTATTCTGGAGCTCACTGTGTGTGTCAGGTAGCTGAAACTCATGGCAGTCTCCCTTTGTTAGCCTCTCAACTCCTGAGATTATGTCATCTATTATGCT TGGCCATGTGGGTTGTAAAGGACGAGATGCACTACCAAGTGGCAGAGACTTATTGTTAGGGCTCTGACACTACTAGAAGGGATGGGCCACCTTGTCAGGCTATGTGCGTGGGTGATTCTAGTAGGTTT GGAAAACAGAGCATTAGACCAAAGGTCATTATGCCTTTAGACCTTATGGTATTTGTACTGCTAGATTTTAGAATTACATTTTTCTTTCCCCCTTGGGGACCCTCTAACCAATATGTACCCCATTATTA TATTTTGTAAGCACACAATTTAAAGGGGTTTACAAGTTCAAAAAAAAAAAGGAATTATGTTGGAAGTTGTGAGTTTCTTCCAATGATTGATGTAGGTGATGTTAATATGAAATTTTGAGTTTTAGAAT TGATGCGAAAACAAATTAAGACTTTTGGGGACCATTGGGACAGAATGAAAAAGACACGAATTTGGGGAAGAGGTAATGGCAGTGTTAAGTTTTGAATGTGTGTCTCCAAAATTCTTATTTGAATGTCT TACCCTCAGTGTGATGATGTCAGGAGGCAGGGCTTTGGGAAGATAATGAGACCTAAGATGAGGTCATAAAGGTGGAGCTCCCATGATGAAATTAATGTTCTTATAAGAGAGGCATAGGAACTTCCTCT TCCTCATAGAGAAAACATGAAGATTAGCCATTTGAAAGAGGAAGAAGCAGGTCCTCAAAGAGCCAGATAGCTAGCACATCATCTGACTTTGTAGCCTCCAAAACTAGTTGGAGGGCTTTCCGGTGTAT TGATGCCTTATTGATGATGGCAGAACACCCGCCTTTGCTAGACACAGCTCAGATTTTAAGTAGCGACATCTCTCTTCTGTCTGCCCCTATTGTAAGTGCAGATGGAACACAGCAGGTTATTCTGGTAC AAGTTAATCCAGGGGAAGCATTTACAATAAGAAGAGAAGATGGACAGTTTCAGTGCATTACAGGTCCTGCTCAGGTTCCAATGATGTCCCCAAATGGTTCCGTGCCTCCTATTTATGTGCCTCCTGGA TATGCCCCACAGGTTATTGAAGACAATGGTGTTCGGAGAGTCGTTGTGGTTCCGCAATCACCAGAGTTTCATCCTGGTGGCCACACAGTTATCCACCGCTCCCCACATCCTCCTCTGCCTGGTTTCAT TCCCGTCCCAACCATGATGCCCCCTCCACCACGCCATATGTACTCACCAGTGACTGGAGCTGGCGACATGGCAACACAGTATATGCCACAGTATCAGTCTTCACAAGTATATGCAGATGTAGATGCCC ACTCTACACATGGCAGGTCCAACTTTAGAGATGAAAGATCTACTAAAACATATGAACGTTTGCAGAAAAAGTTAAAGGATCGCCAAGGAACCCAGAAAGATAAAATGAGCAGCCCACCACCATCACCT CAGAAATGCCCTTCTCCCATAAGTGAACACAATGGACTCATAAAAGGGCAGAACACCAGTGGTGTGAACACAGGATCTGCAAGAAACAGATCGGGGCGTGGGAGAGGCTGTACACAGGTTGACCAAGA AATAGAAGAAAAAGATGAAGAAACTAAAGCGTTTGAAGCGTTTCTTTCCAACATCGTCAGACCAGTGGCCTCAGACATTCAGGCAAGGACAGTCCTGCTCACCTGGTCACCTCCTTCCAGCTTCGTTA ACGGCGAAGTGACTGAGACAACTGTACCAGAGTTCTTCAATTATGAAATCCTGGTGTCGAGCACTGGGAAGGAAGGGAAATACAGAAGTGTTTATGTAGGAGAAGAAACAAGTGTCACTTTAAATGAT CTCAAACCAGCCACAGATTACCATGCAAAAGTGCAGGCAGAGTCCAATTCGATCAAGGGAATCCCATCAGAAGCTGAAAGCTTTACGACCTTAAGCTGTGAGCCGGACACCCCCAATGCACCGAGGAT AGCTAACAGAACCAAAAATTCTCTCACGTTGCAGTGGAAGGCACCTAGTGACAATGGTTCTAAAATCCAAAGCTTTATTTTAGAATGGGATGAAGGGAAAGGAAGTGGAGAATTCTGTCAGTGTTACA TGGGCTCACAGAAGCAATTTAAAATTACCAAACTGTCACCAGCAATGGGTTGTAAATTTAGATTATCAGCCAAAAATGACTATGGTGTAAGTGATTTTAGTGAAGAGGTCTTATACTACACCTCAGGC TGTGCCCCCTCTGTACCTGCAAGTCCTGTGCTGACCAAGGCTGGAGTTACTTGGCTGTCCCTACAGTGGACTAAGCCCTCAGGAACACCGTCAGATGAAGGGATTTCTTACATTTTAGAGATGGAGGA GGAAACATCAGGGTATGGCTTTAAGCCGAAATATGATGGAGAAGATCTTGCTTACACAGTGAAAAATTTGAGACGAAGTACAAAGTATAAATTTAAGGTCATTGCTTATAACTCAGAAGGTAAAAGCA GTCCTAGTGAAGTAGTGGAATTCAGCACCTGCCCTGATAAACCAGGAGTACCTGCGAAGCCTTCGGTTAAAGGGAAGGTACACTCACACGGCTTTAAAATTACTTGGGATCCACCAAGAGACAATGGA GGGGCACCCATCAACAAGTATGTGGTGGAGATGGCAGAAGGCTCTAATGGAAGCAAGTGGGATATGATCTACAGTGGCGCCACCAGGGAACATCTTTGTGACCGGCTGACTCCAGGCTGCTACTACCG CCTGCGGGTTTACTGCATTAGTGATGGAGGGCAGAGTGCGGTCTCTGAATCTTTACTTGTGCAGACTCCAGCTGTGCCTCCTGGCCCATGCCTCCCTCCCAGGTTGCAGGGTAGACCCAAAGCAAAAG AAATACAGTTACGATGGGGACCTCCTCAGGTTGACGGCGGATCACCCATTTCCTGTTATGCAGTAGAAATGACTCCTGCAGATAAAGATGAGCCCAGAGATGTTTACCAAGGCTCTGAAGTGGAGTGT ACAGTGAGCAGCCTTCTTCCTGGAAAGACGTACAGCTTCAGACTTCGTGCAGCAAACAGAATAGGGTTTGGACCATTTTCAGAAAAATACGATATCACTACAGCCCCTGGGCCACCCGACCAGTGCAG ACCCCCTCAAGTGACATGCAGATCTGCAACTTGTGCACAAGTGAATTGGGAGATTCCTTTGAGTAACGGAACTGACATCACTGAGTACCGGCTGGAATGGGGAGGAGTTGAAGGAAGTATGCAGATAT GTTACTGTGGACCTGGCCTCAGTTGTGAATTAAAAGGACTTTCACCAGCTACTACCTATTACTGCAGAGTCCAAGCTTTGAGTGTTGTAGGTGCGGGTCCCTTCAGTGAAGTTGTAGCCTGTGTGACG CCACCGTCGGTTCCTGCCATTGTGACTTGTCTTCAGGAAATACGTGATGATGATATAGAATACCCCCATTACTCACCCTCCACCTGCCTTGCAATTAGCTGGGAAGAGCCTTACGACCATGGCTCAGA AATCCTTGCCTATAGCATAGACCTTGGAGACAAGCAGCCCTTGACAGTGGGGAAGGTGACAAGCTATGTCATAAACAGTTTGCAACCAGATACAACATACAGAATACGAATTCAAGCCTTGAATAGCC TTGGAGCTGGGCCTTTCAGCCATACTATTAAATTAAAAACTAAGCCCCTTCCTCCTGATCCACCTCGGCTGGAATGTGTTGCCTTTAACCACCAGAACCTTAAGCTTAAATGGGGAGAAGGAACTCCA AAGACGTTAGCAACAGATGCTGTTCAGTACCACCTTCAGATGGAAGATAAGAACGGAAGGTTTGTCTCCCTGTACAGAGGGCCTTGTCATACGTACAAAGTACAAAGGCTCAGTGAATCCACGTCCTA CAAGTTCTGTATTCAAGCTTGCAATGAAGCTGGGGAAGGTCCTCTGTCCCAAGAGTATGTTTTCACTACTCCAAAATCTGTTCCAGCTGCCTTGAAAGCCCCTAAAATAGAGAAAATAAATGATCACA TTTGTGAAATTACATGGGAATATTTACAGCCAATGAAGGGTGACCCGGTTATTTATAATCTTCAAGTTATGGTGGGAAAAGATTCAGAATTCAAGCAGATTTACAGGGGCCCTGATACTTCATTCCGG TATTCCAGCCTTCAGCTGAATTGTGAGTATCGATTTCGAGTGTGTGCCATTCGCCAATGCCAAGACCCTGCAGGACACCAGGACCTCGTAGGTCCCTACAGCACCACAGTGTTCTTCATCTCCCAGAG GACAGAGCCGCTAGCCAGCAGCAACAGAGACACTGTGGACAGTGCACGGACCCGGCGCACTCTAAGTGACGAGCAGTGTGCTGCAGTCATCCTGGTGTTGTTTGCTTTCTTTTCCATTCTGATTGCCT TTATCATTCAGTACTTTGTAATCAAGTGAAAATATAACTTTATTTTTAACACTATTACATTTTATTTTGTCATGTACTAAAATTATTTCTGTATTGCTTTTACAAAATGGTGGCATTTAGCACTGGCA TTGAGACTATCTATTGAACATGGCTTTGGCATTTTCAGTGCTTCTGTTGTTAGGCTGGCTCTTCATGAAAATTCAGCCACAGAAACATCATTCTGGGGAGGGCTGTTTATTTTGTTCTTAGGTTGGGA CTCTTTTCCCAGTTTCTTTCTTTTTTTTCTCTCCCCCACCCCCCACCCCAGATATGCCTTCTAGTAAAACAAACTTTGTAAAGGACACCGCTATGATTGTTCTGACCCATCAGCAGGAGTAAAACAGT GGTAACCGCATCTGTTTGTCTCGAAGGTGATTGCCATGTGAAAATTTCAGAATGACTAGAATTTACACTAACGTTCTCTACGAAACTTGTTGGAGTCTGATGCTGTGAAAGCAATCTAGTGCTATATT TCTACCTCCTCATTTGTCTTAATTGTTTGGTAAGTGGGATTTTGATGAATAACTGGAGGGCTTAGCAAACAAAAACTGGATGAAGGAATCTGAGTGAGAAAGAAGCTTTCTGTTTGGTGAGTGTGGAG TTCTTCCTTACACACACACACACACACACACACACACACACTCTCACACTCACAAGTGAGCCCGAGAAAGCAGACCAGAAGTACAGATCTTTACTTGAACAGCATCTCTTCTTCTTTTTGGGATTTGA GAACAGAGGACTTTTGAATAATAACTAAATTTGAAATCTGTTTGGCCTCTGTTTTCTAGGCCTTGAAACTATGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGCACAAGCAC ATATGTGTACATTGGGTCTATGTGCAGACTGTCAGGTAAGGAGGTGTGTCCACACTCATGACCTGCTCTAGGCTAGCTTTGAAGGACTCCCAATGGTTTTGCAGCATCTCCTATAACTACTGCTGTTG CCATCAGAATTTCTAATCAAACTCAACCTTTTTGTTTGGGGTACCAAATCTGAAGACAAAATTAATTTGCACCAGTAAACTTCAAGCTGCTTTCTTTCTTGAGAAACTAATGTTTAATGTATAATGTC TGTTTGGATACTGTTCCAAATTGTTGATTGCATGTGGGTACCGTTGCATTAGAGCACTTTGCAAATTGCATAGTTCATTAATGTTTGTGAGCTTGCATTTGTGAGTTATTGAATGATCAGATTGAATT TTCTCATATCACATTGTACATCTCGCCTTGATGTCAATGACTGCCAGTAATAATACAGTCTGCAATGAATTTATATGAAATGTTTGTTTTATCACATGTTATCTGTAGACATCTGTATCTAGCTTCTT TAATTTATTATTTGGACTTTAGAGTAGTGAGTCACTAATTTTTAGTTGCTGAGGTCTGCATTTTAGTGATTACTAAGCACTTCTGTCTGTCAAAAAGAAATGTATGTTTTGTACTTTGAAGATCTCTG AAGAATTTCTCTTATAATAGAATGGGCATGTATTGTAATTGTTTTATGTCAAATGATCTGTGCTATAGAAAAAAACATTAACCTTTATTCAAAAAAGAAACGGATAAACTTGGCCTCTCCAAGTGTAA GAAAACCCTGTCACTCTAATATACTATATGTTTACATTTTATTTAATCTCATATGAATAGGGTGATAACTTGTCCCCCAAACAACTGCGCTTACGATTGTTTTCTAGAACTTCTTAAGTGCCACATTT GGCAGTACAAATGAGTTTTGAGTGTCAGAGCCCAGAGATTTCTATAGAGTTGAATGTCTAAAATGGTAAAATGTGCCACACAGTGGCTTATGTTTTTCATAGTAATTCAAATGAACTCCTATTTTTGA TAGTAAATGTCATTTAATAGTGTACTTGCCATTTGAGCCTCACTGCAATGTTAGTGCAGAGGAGAAAACAATTTTTAATGTAATCTTGATTTTACCTCATATACTGTACATTCCAAAAACTCAACTTT TTAAAGATTATAGATACACTACCAAACATACCACCTTAAAATTGTATAAGGTTGAACTTCATACAAGTGAAAAAATATAATCTCATAAGAATACATAAACTATGTAGCAAAAGTATCTGTAAAATCCA TGGAAAATAAAAGTTGTATCATTCTTTTTTGA
hide sequence
RefSeq Acc Id:
XM_006252297 ⟹ XP_006252359
Type:
CODING
Position:
Rat Assembly Chr Position (strand) Source GRCr8 15 54,099,510 - 54,275,983 (-) NCBI mRatBN7.2 15 47,689,909 - 47,866,408 (-) NCBI Rnor_6.0 15 54,378,865 - 54,566,481 (-) NCBI Rnor_5.0 15 58,102,190 - 58,306,554 (-) NCBI
Sequence:
CGGCCACCGCGGAGCGCTGCCCGCTCACCTGAGGGTTAAATCCTCGAAAACACGCCCTTCGGGT CTGCGCCCCGGCGGCCGCTGCCCGTGCCTGGCGGCTCCTCTCCCCAGAGTTGGAGGGCTTTCCGGTGTATTGATGCCTTATTGATGATGGCAGAACACCCGCCTTTGCTAGACACAGCTCAGATTTTA AGTAGCGACATCTCTCTTCTGTCTGCCCCTATTGTAAGTGCAGATGGAACACAGCAGGTTATTCTGGTACAAGTTAATCCAGGGGAAGCATTTACAATAAGAAGAGAAGATGGACAGTTTCAGTGCAT TACAGGTCCTGCTCAGGTTCCAATGATGTCCCCAAATGGTTCCGTGCCTCCTATTTATGTGCCTCCTGGATATGCCCCACAGGTTATTGAAGACAATGGTGTTCGGAGAGTCGTTGTGGTTCCGCAAT CACCAGAGTTTCATCCTGGTGGCCACACAGTTATCCACCGCTCCCCACATCCTCCTCTGCCTGGTTTCATTCCCGTCCCAACCATGATGCCCCCTCCACCACGCCATATGTACTCACCAGTGACTGGA GCTGGCGACATGGCAACACAGTATATGCCACAGTATCAGTCTTCACAAGTATATGCAGATGTAGATGCCCACTCTACACATGGCAGGTCCAACTTTAGAGATGAAAGATCTACTAAAACATATGAACG TTTGCAGAAAAAGTTAAAGGATCGCCAAGGAACCCAGAAAGATAAAATGAGCAGCCCACCACCATCACCTCAGAAATGCCCTTCTCCCATAAGTGAACACAATGGACTCATAAAAGGGCAGAACACCA GTGGTGTGAACACAGGATCTGCAAGAAACAGATCGGGGCGTGGGAGAGGCTGTACACAGGTTGACCAAGAAATAGAAGAAAAAGATGAAGAAACTAAAGCGTTTGAAGCGTTTCTTTCCAACATCGTC AGACCAGTGGCCTCAGACATTCAGGCAAGGACAGTCCTGCTCACCTGGTCACCTCCTTCCAGCTTCGTTAACGGCGAAGTGACTGAGACAACTGTACCAGAGTTCTTCAATTATGAAATCCTGGTGTC GAGCACTGGGAAGGAAGGGAAATACAGAAGTGTTTATGTAGGAGAAGAAACAAGTGTCACTTTAAATGATCTCAAACCAGCCACAGATTACCATGCAAAAGTGCAGGCAGAGTCCAATTCGATCAAGG GAATCCCATCAGAAGCTGAAAGCTTTACGACCTTAAGCTGTGAGCCGGACACCCCCAATGCACCGAGGATAGCTAACAGAACCAAAAATTCTCTCACGTTGCAGTGGAAGGCACCTAGTGACAATGGT TCTAAAATCCAAAGCTTTATTTTAGAATGGGATGAAGGGAAAGGAAGTGGAGAATTCTGTCAGTGTTACATGGGCTCACAGAAGCAATTTAAAATTACCAAACTGTCACCAGCAATGGGTTGTAAATT TAGATTATCAGCCAAAAATGACTATGGTGTAAGTGATTTTAGTGAAGAGGTCTTATACTACACCTCAGGCTGTGCCCCCTCTGTACCTGCAAGTCCTGTGCTGACCAAGGCTGGAGTTACTTGGCTGT CCCTACAGTGGACTAAGCCCTCAGGAACACCGTCAGATGAAGGGATTTCTTACATTTTAGAGATGGAGGAGGAAACATCAGGGTATGGCTTTAAGCCGAAATATGATGGAGAAGATCTTGCTTACACA GTGAAAAATTTGAGACGAAGTACAAAGTATAAATTTAAGGTCATTGCTTATAACTCAGAAGGTAAAAGCAGTCCTAGTGAAGTAGTGGAATTCAGCACCTGCCCTGATAAACCAGGAGTACCTGCGAA GCCTTCGGTTAAAGGGAAGGTACACTCACACGGCTTTAAAATTACTTGGGATCCACCAAGAGACAATGGAGGGGCACCCATCAACAAGTATGTGGTGGAGATGGCAGAAGGCTCTAATGGAAGCAAGT GGGATATGATCTACAGTGGCGCCACCAGGGAACATCTTTGTGACCGGCTGACTCCAGGCTGCTACTACCGCCTGCGGGTTTACTGCATTAGTGATGGAGGGCAGAGTGCGGTCTCTGAATCTTTACTT GTGCAGACTCCAGCTGTGCCTCCTGGCCCATGCCTCCCTCCCAGGTTGCAGGGTAGACCCAAAGCAAAAGAAATACAGTTACGATGGGGACCTCCTCAGGTTGACGGCGGATCACCCATTTCCTGTTA TGCAGTAGAAATGACTCCTGCAGATAAAGATGAGCCCAGAGATGTTTACCAAGGCTCTGAAGTGGAGTGTACAGTGAGCAGCCTTCTTCCTGGAAAGACGTACAGCTTCAGACTTCGTGCAGCAAACA GAATAGGGTTTGGACCATTTTCAGAAAAATACGATATCACTACAGCCCCTGGGCCACCCGACCAGTGCAGACCCCCTCAAGTGACATGCAGATCTGCAACTTGTGCACAAGTGAATTGGGAGATTCCT TTGAGTAACGGAACTGACATCACTGAGTACCGGCTGGAATGGGGAGGAGTTGAAGGAAGTATGCAGATATGTTACTGTGGACCTGGCCTCAGTTGTGAATTAAAAGGACTTTCACCAGCTACTACCTA TTACTGCAGAGTCCAAGCTTTGAGTGTTGTAGGTGCGGGTCCCTTCAGTGAAGTTGTAGCCTGTGTGACGCCACCGTCGGTTCCTGCCATTGTGACTTGTCTTCAGGAAATACGTGATGATGATATAG AATACCCCCATTACTCACCCTCCACCTGCCTTGCAATTAGCTGGGAAGAGCCTTACGACCATGGCTCAGAAATCCTTGCCTATAGCATAGACCTTGGAGACAAGCAGCCCTTGACAGTGGGGAAGGTG ACAAGCTATGTCATAAACAGTTTGCAACCAGATACAACATACAGAATACGAATTCAAGCCTTGAATAGCCTTGGAGCTGGGCCTTTCAGCCATACTATTAAATTAAAAACTAAGCCCCTTCCTCCTGA TCCACCTCGGCTGGAATGTGTTGCCTTTAACCACCAGAACCTTAAGCTTAAATGGGGAGAAGGAACTCCAAAGACGTTAGCAACAGATGCTGTTCAGTACCACCTTCAGATGGAAGATAAGAACGGAA GGTTTGTCTCCCTGTACAGAGGGCCTTGTCATACGTACAAAGTACAAAGGCTCAGTGAATCCACGTCCTACAAGTTCTGTATTCAAGCTTGCAATGAAGCTGGGGAAGGTCCTCTGTCCCAAGAGTAT GTTTTCACTACTCCAAAATCTGTTCCAGCTGCCTTGAAAGCCCCTAAAATAGAGAAAATAAATGATCACATTTGTGAAATTACATGGGAATATTTACAGCCAATGAAGGGTGACCCGGTTATTTATAA TCTTCAAGTTATGGTGGGAAAAGATTCAGAATTCAAGCAGATTTACAGGGGCCCTGATACTTCATTCCGGTATTCCAGCCTTCAGCTGAATTGTGAGTATCGATTTCGAGTGTGTGCCATTCGCCAAT GCCAAGACCCTGCAGGACACCAGGACCTCGTAGGTCCCTACAGCACCACAGTGTTCTTCATCTCCCAGAGGACAGAGCCGCTAGCCAGCAGCAACAGAGACACTGTGGACAGTGCACGGACCCGGCGC ACTCTAAGTGACGAGCAGTGTGCTGCAGTCATCCTGGTGTTGTTTGCTTTCTTTTCCATTCTGATTGCCTTTATCATTCAGTACTTTGTAATCAAGTGAAAATATAACTTTATTTTTAACACTATTAC ATTTTATTTTGTCATGTACTAAAATTATTTCTGTATTGCTTTTACAAAATGGTGGCATTTAGCACTGGCATTGAGACTATCTATTGAACATGGCTTTGGCATTTTCAGTGCTTCTGTTGTTAGGCTGG CTCTTCATGAAAATTCAGCCACAGAAACATCATTCTGGGGAGGGCTGTTTATTTTGTTCTTAGGTTGGGACTCTTTTCCCAGTTTCTTTCTTTTTTTTCTCTCCCCCACCCCCCACCCCAGATATGCC TTCTAGTAAAACAAACTTTGTAAAGGACACCGCTATGATTGTTCTGACCCATCAGCAGGAGTAAAACAGTGGTAACCGCATCTGTTTGTCTCGAAGGTGATTGCCATGTGAAAATTTCAGAATGACTA GAATTTACACTAACGTTCTCTACGAAACTTGTTGGAGTCTGATGCTGTGAAAGCAATCTAGTGCTATATTTCTACCTCCTCATTTGTCTTAATTGTTTGGTAAGTGGGATTTTGATGAATAACTGGAG GGCTTAGCAAACAAAAACTGGATGAAGGAATCTGAGTGAGAAAGAAGCTTTCTGTTTGGTGAGTGTGGAGTTCTTCCTTACACACACACACACACACACACACACACACACTCTCACACTCACAAGTG AGCCCGAGAAAGCAGACCAGAAGTACAGATCTTTACTTGAACAGCATCTCTTCTTCTTTTTGGGATTTGAGAACAGAGGACTTTTGAATAATAACTAAATTTGAAATCTGTTTGGCCTCTGTTTTCTA GGCCTTGAAACTATGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGCACAAGCACATATGTGTACATTGGGTCTATGTGCAGACTGTCAGGTAAGGAGGTGTGTCCACACTCA TGACCTGCTCTAGGCTAGCTTTGAAGGACTCCCAATGGTTTTGCAGCATCTCCTATAACTACTGCTGTTGCCATCAGAATTTCTAATCAAACTCAACCTTTTTGTTTGGGGTACCAAATCTGAAGACA AAATTAATTTGCACCAGTAAACTTCAAGCTGCTTTCTTTCTTGAGAAACTAATGTTTAATGTATAATGTCTGTTTGGATACTGTTCCAAATTGTTGATTGCATGTGGGTACCGTTGCATTAGAGCACT TTGCAAATTGCATAGTTCATTAATGTTTGTGAGCTTGCATTTGTGAGTTATTGAATGATCAGATTGAATTTTCTCATATCACATTGTACATCTCGCCTTGATGTCAATGACTGCCAGTAATAATACAG TCTGCAATGAATTTATATGAAATGTTTGTTTTATCACATGTTATCTGTAGACATCTGTATCTAGCTTCTTTAATTTATTATTTGGACTTTAGAGTAGTGAGTCACTAATTTTTAGTTGCTGAGGTCTG CATTTTAGTGATTACTAAGCACTTCTGTCTGTCAAAAAGAAATGTATGTTTTGTACTTTGAAGATCTCTGAAGAATTTCTCTTATAATAGAATGGGCATGTATTGTAATTGTTTTATGTCAAATGATC TGTGCTATAGAAAAAAACATTAACCTTTATTCAAAAAAGAAACGGATAAACTTGGCCTCTCCAAGTGTAAGAAAACCCTGTCACTCTAATATACTATATGTTTACATTTTATTTAATCTCATATGAAT AGGGTGATAACTTGTCCCCCAAACAACTGCGCTTACGATTGTTTTCTAGAACTTCTTAAGTGCCACATTTGGCAGTACAAATGAGTTTTGAGTGTCAGAGCCCAGAGATTTCTATAGAGTTGAATGTC TAAAATGGTAAAATGTGCCACACAGTGGCTTATGTTTTTCATAGTAATTCAAATGAACTCCTATTTTTGATAGTAAATGTCATTTAATAGTGTACTTGCCATTTGAGCCTCACTGCAATGTTAGTGCA GAGGAGAAAACAATTTTTAATGTAATCTTGATTTTACCTCATATACTGTACATTCCAAAAACTCAACTTTTTAAAGATTATAGATACACTACCAAACATACCACCTTAAAATTGTATAAGGTTGAACT TCATACAAGTGAAAAAATATAATCTCATAAGAATACATAAACTATGTAGCAAAAGTATCTGTAAAATCCATGGAAAATAAAAGTTGTATCATTCTTTTTTGA
hide sequence
RefSeq Acc Id:
XM_006252298 ⟹ XP_006252360
Type:
CODING
Position:
Rat Assembly Chr Position (strand) Source GRCr8 15 54,099,510 - 54,276,963 (-) NCBI mRatBN7.2 15 47,689,909 - 47,867,354 (-) NCBI Rnor_6.0 15 54,378,865 - 54,582,954 (-) NCBI Rnor_5.0 15 58,102,190 - 58,306,554 (-) NCBI
Sequence:
TAAGGAAATTGCTGCCGCCACCACTTCGGTCGCCGCTGTGGTAGAAATCAAGAGTTGGAGGGCTTTCCGGTGTATTGATGCCTTATTGATGATGGCAGAACACCCGCCTTTGCTAGACACAGCTCAGA TTTTAAGTAGCGACATCTCTCTTCTGTCTGCCCCTATTGTAAGTGCAGATGGAACACAGCAGGTTATTCTGGTACAAGTTAATCCAGGGGAAGCATTTACAATAAGAAGAGAAGATGGACAGTTTCAG TGCATTACAGGTCCTGCTCAGGTTCCAATGATGTCCCCAAATGGTTCCGTGCCTCCTATTTATGTGCCTCCTGGATATGCCCCACAGGTTATTGAAGACAATGGTGTTCGGAGAGTCGTTGTGGTTCC GCAATCACCAGAGTTTCATCCTGGTGGCCACACAGTTATCCACCGCTCCCCACATCCTCCTCTGCCTGGTTTCATTCCCGTCCCAACCATGATGCCCCCTCCACCACGCCATATGTACTCACCAGTGA CTGGAGCTGGCGACATGGCAACACAGTATATGCCACAGTATCAGTCTTCACAAGTATATGCAGATGTAGATGCCCACTCTACACATGGCAGGTCCAACTTTAGAGATGAAAGATCTACTAAAACATAT GAACGTTTGCAGAAAAAGTTAAAGGATCGCCAAGGAACCCAGAAAGATAAAATGAGCAGCCCACCACCATCACCTCAGAAATGCCCTTCTCCCATAAGTGAACACAATGGACTCATAAAAGGGCAGAA CACCAGTGGTGTGAACACAGGATCTGCAAGAAACAGATCGGGGCGTGGGAGAGGCTGTACACAGGTTGACCAAGAAATAGAAGAAAAAGATGAAGAAACTAAAGCGTTTGAAGCGTTTCTTTCCAACA TCGTCAGACCAGTGGCCTCAGACATTCAGGCAAGGACAGTCCTGCTCACCTGGTCACCTCCTTCCAGCTTCGTTAACGGCGAAGTGACTGAGACAACTGTACCAGAGTTCTTCAATTATGAAATCCTG GTGTCGAGCACTGGGAAGGAAGGGAAATACAGAAGTGTTTATGTAGGAGAAGAAACAAGTGTCACTTTAAATGATCTCAAACCAGCCACAGATTACCATGCAAAAGTGCAGGCAGAGTCCAATTCGAT CAAGGGAATCCCATCAGAAGCTGAAAGCTTTACGACCTTAAGCTGTGAGCCGGACACCCCCAATGCACCGAGGATAGCTAACAGAACCAAAAATTCTCTCACGTTGCAGTGGAAGGCACCTAGTGACA ATGGTTCTAAAATCCAAAGCTTTATTTTAGAATGGGATGAAGGGAAAGGAAGTGGAGAATTCTGTCAGTGTTACATGGGCTCACAGAAGCAATTTAAAATTACCAAACTGTCACCAGCAATGGGTTGT AAATTTAGATTATCAGCCAAAAATGACTATGGTGTAAGTGATTTTAGTGAAGAGGTCTTATACTACACCTCAGGCTGTGCCCCCTCTGTACCTGCAAGTCCTGTGCTGACCAAGGCTGGAGTTACTTG GCTGTCCCTACAGTGGACTAAGCCCTCAGGAACACCGTCAGATGAAGGGATTTCTTACATTTTAGAGATGGAGGAGGAAACATCAGGGTATGGCTTTAAGCCGAAATATGATGGAGAAGATCTTGCTT ACACAGTGAAAAATTTGAGACGAAGTACAAAGTATAAATTTAAGGTCATTGCTTATAACTCAGAAGGTAAAAGCAGTCCTAGTGAAGTAGTGGAATTCAGCACCTGCCCTGATAAACCAGGAGTACCT GCGAAGCCTTCGGTTAAAGGGAAGGTACACTCACACGGCTTTAAAATTACTTGGGATCCACCAAGAGACAATGGAGGGGCACCCATCAACAAGTATGTGGTGGAGATGGCAGAAGGCTCTAATGGAAG CAAGTGGGATATGATCTACAGTGGCGCCACCAGGGAACATCTTTGTGACCGGCTGACTCCAGGCTGCTACTACCGCCTGCGGGTTTACTGCATTAGTGATGGAGGGCAGAGTGCGGTCTCTGAATCTT TACTTGTGCAGACTCCAGCTGTGCCTCCTGGCCCATGCCTCCCTCCCAGGTTGCAGGGTAGACCCAAAGCAAAAGAAATACAGTTACGATGGGGACCTCCTCAGGTTGACGGCGGATCACCCATTTCC TGTTATGCAGTAGAAATGACTCCTGCAGATAAAGATGAGCCCAGAGATGTTTACCAAGGCTCTGAAGTGGAGTGTACAGTGAGCAGCCTTCTTCCTGGAAAGACGTACAGCTTCAGACTTCGTGCAGC AAACAGAATAGGGTTTGGACCATTTTCAGAAAAATACGATATCACTACAGCCCCTGGGCCACCCGACCAGTGCAGACCCCCTCAAGTGACATGCAGATCTGCAACTTGTGCACAAGTGAATTGGGAGA TTCCTTTGAGTAACGGAACTGACATCACTGAGTACCGGCTGGAATGGGGAGGAGTTGAAGGAAGTATGCAGATATGTTACTGTGGACCTGGCCTCAGTTGTGAATTAAAAGGACTTTCACCAGCTACT ACCTATTACTGCAGAGTCCAAGCTTTGAGTGTTGTAGGTGCGGGTCCCTTCAGTGAAGTTGTAGCCTGTGTGACGCCACCGTCGGTTCCTGCCATTGTGACTTGTCTTCAGGAAATACGTGATGATGA TATAGAATACCCCCATTACTCACCCTCCACCTGCCTTGCAATTAGCTGGGAAGAGCCTTACGACCATGGCTCAGAAATCCTTGCCTATAGCATAGACCTTGGAGACAAGCAGCCCTTGACAGTGGGGA AGGTGACAAGCTATGTCATAAACAGTTTGCAACCAGATACAACATACAGAATACGAATTCAAGCCTTGAATAGCCTTGGAGCTGGGCCTTTCAGCCATACTATTAAATTAAAAACTAAGCCCCTTCCT CCTGATCCACCTCGGCTGGAATGTGTTGCCTTTAACCACCAGAACCTTAAGCTTAAATGGGGAGAAGGAACTCCAAAGACGTTAGCAACAGATGCTGTTCAGTACCACCTTCAGATGGAAGATAAGAA CGGAAGGTTTGTCTCCCTGTACAGAGGGCCTTGTCATACGTACAAAGTACAAAGGCTCAGTGAATCCACGTCCTACAAGTTCTGTATTCAAGCTTGCAATGAAGCTGGGGAAGGTCCTCTGTCCCAAG AGTATGTTTTCACTACTCCAAAATCTGTTCCAGCTGCCTTGAAAGCCCCTAAAATAGAGAAAATAAATGATCACATTTGTGAAATTACATGGGAATATTTACAGCCAATGAAGGGTGACCCGGTTATT TATAATCTTCAAGTTATGGTGGGAAAAGATTCAGAATTCAAGCAGATTTACAGGGGCCCTGATACTTCATTCCGGTATTCCAGCCTTCAGCTGAATTGTGAGTATCGATTTCGAGTGTGTGCCATTCG CCAATGCCAAGACCCTGCAGGACACCAGGACCTCGTAGGTCCCTACAGCACCACAGTGTTCTTCATCTCCCAGAGGACAGAGCCGCTAGCCAGCAGCAACAGAGACACTGTGGACAGTGCACGGACCC GGCGCACTCTAAGTGACGAGCAGTGTGCTGCAGTCATCCTGGTGTTGTTTGCTTTCTTTTCCATTCTGATTGCCTTTATCATTCAGTACTTTGTAATCAAGTGAAAATATAACTTTATTTTTAACACT ATTACATTTTATTTTGTCATGTACTAAAATTATTTCTGTATTGCTTTTACAAAATGGTGGCATTTAGCACTGGCATTGAGACTATCTATTGAACATGGCTTTGGCATTTTCAGTGCTTCTGTTGTTAG GCTGGCTCTTCATGAAAATTCAGCCACAGAAACATCATTCTGGGGAGGGCTGTTTATTTTGTTCTTAGGTTGGGACTCTTTTCCCAGTTTCTTTCTTTTTTTTCTCTCCCCCACCCCCCACCCCAGAT ATGCCTTCTAGTAAAACAAACTTTGTAAAGGACACCGCTATGATTGTTCTGACCCATCAGCAGGAGTAAAACAGTGGTAACCGCATCTGTTTGTCTCGAAGGTGATTGCCATGTGAAAATTTCAGAAT GACTAGAATTTACACTAACGTTCTCTACGAAACTTGTTGGAGTCTGATGCTGTGAAAGCAATCTAGTGCTATATTTCTACCTCCTCATTTGTCTTAATTGTTTGGTAAGTGGGATTTTGATGAATAAC TGGAGGGCTTAGCAAACAAAAACTGGATGAAGGAATCTGAGTGAGAAAGAAGCTTTCTGTTTGGTGAGTGTGGAGTTCTTCCTTACACACACACACACACACACACACACACACACTCTCACACTCAC AAGTGAGCCCGAGAAAGCAGACCAGAAGTACAGATCTTTACTTGAACAGCATCTCTTCTTCTTTTTGGGATTTGAGAACAGAGGACTTTTGAATAATAACTAAATTTGAAATCTGTTTGGCCTCTGTT TTCTAGGCCTTGAAACTATGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGCACAAGCACATATGTGTACATTGGGTCTATGTGCAGACTGTCAGGTAAGGAGGTGTGTCCAC ACTCATGACCTGCTCTAGGCTAGCTTTGAAGGACTCCCAATGGTTTTGCAGCATCTCCTATAACTACTGCTGTTGCCATCAGAATTTCTAATCAAACTCAACCTTTTTGTTTGGGGTACCAAATCTGA AGACAAAATTAATTTGCACCAGTAAACTTCAAGCTGCTTTCTTTCTTGAGAAACTAATGTTTAATGTATAATGTCTGTTTGGATACTGTTCCAAATTGTTGATTGCATGTGGGTACCGTTGCATTAGA GCACTTTGCAAATTGCATAGTTCATTAATGTTTGTGAGCTTGCATTTGTGAGTTATTGAATGATCAGATTGAATTTTCTCATATCACATTGTACATCTCGCCTTGATGTCAATGACTGCCAGTAATAA TACAGTCTGCAATGAATTTATATGAAATGTTTGTTTTATCACATGTTATCTGTAGACATCTGTATCTAGCTTCTTTAATTTATTATTTGGACTTTAGAGTAGTGAGTCACTAATTTTTAGTTGCTGAG GTCTGCATTTTAGTGATTACTAAGCACTTCTGTCTGTCAAAAAGAAATGTATGTTTTGTACTTTGAAGATCTCTGAAGAATTTCTCTTATAATAGAATGGGCATGTATTGTAATTGTTTTATGTCAAA TGATCTGTGCTATAGAAAAAAACATTAACCTTTATTCAAAAAAGAAACGGATAAACTTGGCCTCTCCAAGTGTAAGAAAACCCTGTCACTCTAATATACTATATGTTTACATTTTATTTAATCTCATA TGAATAGGGTGATAACTTGTCCCCCAAACAACTGCGCTTACGATTGTTTTCTAGAACTTCTTAAGTGCCACATTTGGCAGTACAAATGAGTTTTGAGTGTCAGAGCCCAGAGATTTCTATAGAGTTGA ATGTCTAAAATGGTAAAATGTGCCACACAGTGGCTTATGTTTTTCATAGTAATTCAAATGAACTCCTATTTTTGATAGTAAATGTCATTTAATAGTGTACTTGCCATTTGAGCCTCACTGCAATGTTA GTGCAGAGGAGAAAACAATTTTTAATGTAATCTTGATTTTACCTCATATACTGTACATTCCAAAAACTCAACTTTTTAAAGATTATAGATACACTACCAAACATACCACCTTAAAATTGTATAAGGTT GAACTTCATACAAGTGAAAAAATATAATCTCATAAGAATACATAAACTATGTAGCAAAAGTATCTGTAAAATCCATGGAAAATAAAAGTTGTATCATTCTTTTTTGA
hide sequence
RefSeq Acc Id:
XM_006252299 ⟹ XP_006252361
Type:
CODING
Position:
Rat Assembly Chr Position (strand) Source GRCr8 15 54,099,510 - 54,229,356 (-) NCBI mRatBN7.2 15 47,689,909 - 47,821,615 (-) NCBI Rnor_6.0 15 54,378,865 - 54,518,427 (-) NCBI Rnor_5.0 15 58,102,190 - 58,306,554 (-) NCBI
Sequence:
CACACACCTATAAACTTAACACTTACCCAAAGAGTATCTGAGTCTCATTGGTCAATATTAACTGTCTAGTTGATGCTGACAAGAATATAATACGTCATACTTTTCTATGTATTTGAAATACTTTACAA AAAATTCAAAGATATGAGATTATATATTTTAGAATAGTTGATAAAGATTTTAAATGTTATATCTTGACTTTTAGATTTGAGCTGATAACCAACAGATAGTAAAAAACATTTCAAAAATAGATATGGGA AATAAGAAAATTCCTTGAAGAAAATTGTTTTGGCTCAGGAAAACATACAAGGGAAAAACCCAGGAAGATGCCCCTGAGGGTGGCAAATGCTATCAGCTTTAGAAAGCTGCTGGACTGTGTGTGAACCA TGAACTTGAGGCACCTAGTGGAGTCACTATCTCCATGTGTGGTGAGCTTCATTTTTACACCAGCCACATAAACAAAGCAGACAGGGCTCTCTTTTTAAAAGAATAGCACCATTAAGACTGAGATCACA TTGCACATTTGTACTCCCAATACTTAGGAGGCTAAGGCAGGAGGATTGCTTGAGGTTTTGGCCAGCTTGGACTATGTAGCAATACCCTATCTCAAAGAAACAAAGCAAAACAAAAACAACAAAAAACT AAACAAAAAATATTCTAGATTAGTACTTGGTATATAATTTCTTCACTCTTAACTTGGGAAGAACTTGACAAGGAATCTAGCTGAGGATTTCCCTGGGATCTAAACTGGTTATAGCAACACAGAGATGC AAAGAGATAAACCCTTGTGATGGTCTTTCAAGCATATGCTTCTGTAATCACAAATGATTCTGCTGCTTTTGTCAGATTTTCTGTAGGAACGGCTATAAAAGTTTATATAGAACTAAGGATGACAATTC TATTCCATGAATGATCCTTTCCAGATAGTCAGCTGCAAGAGCACTGAATGGTACAGGTAAAACTAGAGCATCCTCTGGTTCTACTAGTCCCCAGTTAACAAAGTTAGCAAGTTTATTTAGTGCCAACT AACAGATGCGGAATCATCAGATTTTTAATTTCAGTTTATTGGATTGTTCAAGTATCTCCGCATTCTTTACTGAATATGTTAAAATATAGGTAATATAAATATTGAGATTAAAAAGTTGTAACGTATGC TATGCAAACTGTAATCAAAGCAAGTGGCACTCTGTTTAATTGAACTACATATAGACTTTAAGTTTCTAGAGGTATCAGTTTTATAATAGGAAAGACCAGTCTTGGGTTTATAGAGATGGGTCAGTGGT TAAGAGCATGCTCTTGGAGAGGACTTGATTTTGGGTCCTGGCACCCATATTGCACAGCTTATAACTTTGCCTATAACTTGTACTGCAGAGGATCCAACATCCGTTGCTGGCCTTCATGGGAAACTGCA CTTACATGCACATACTCCCGTGCAGACATACACATATATACATAATTTTAAAATAAAAACTCTTAATAAAAGAATAGGCCAGTCTTCATGTAACACTGCAATTTCCAAATACCCAACATGCTGACAGA ATTGAAAGAAAAGATAGTCAAGTAAACAAATTCAAAGTTTTTTTTTGTAAAGATAATCAAATTTCTAATAGGTTAGGCACTTAACACAAAAAGTCTTACATACTAAAATCAAGAATGTAAGGTCTTAC AGAAAAAAAAAGATAATTGGTTTATACAATTGCATGCCAAAAAATGTGTCCTATATATGAACTAGACAAATATCTAGAAGAATGTAAAAGAAATAAAATGAATAAAGAAAAAAAGTTAGTCTGAGTAA AGTAATGCCAAGTAAAGAGATTGTTGTATGAATGTGTGCATGCAGACACACATACAAATGAAAGCTGTCATAAAGGAGAGACTTGGTGGCTTCTCCTGTGAATTTCAGAAATGTTTAAGGCAGGTTAG TATTTTATCTAAATCAAACAGTCATCACAATGACTTGATACTATAGGATACTATAGGCCAGTGTTCTTTATGAATACAGATACAGAATCTTCACAAGTCCTGGCGAGCAACATCAAGATGATTATACA GAACAACTAAGAGGGGTCTTGAGCTAGTACTGGGATGAAGGAGCCAGAGCCCCATGGTCATCTTTATAGGCCCTTAAGTATTGGCATGAACCCAGTTCCCCTTCCGATGCAAGCAAAACAGCATCCAT TCAGGTGGAGAGCAGTCTAGAGGAGCTTCTTCCTTCTCAACAGTGTGCGTGTTCCAGGACTCACACTCACTGTACACTGAAAAGCTGAATGCATCTCCTCCCAGACTAAGATCAGGACATAGATGTAC GTGGTAACACATGTTGGCAAACATGCACAAGTTGAACTCTTCGTGCATTGCTGGTAGGAATATGGTCTGTAAGTCTACTTTATGAGATAGTTGATGTGTCTGTGTAAAAATTGTATAGCATTATTTGT AACAAATATGATACAAGCATTTTAAATGTCCACCAACGGATAGATAAACAAGATGTTTGTATCTATACAGTATCATTCAACCACATAATAATATGAATTACTTCAGTATTTGTTACACCTGAATGGAC TTAGAAAGCAAGTAAAATGAAAGAAACCTGTCATGAAAATCTACAAAAGTTCCGAGTTAAAGAAAATATTCTAGAATTGACTTTGGTAGTAGGAAAGTAGCTTGGTAGTAGAGCACTTGCCCCTCATG TACGGATCCCCAGCGCCAGGAAAAGTTTACTGGCTATGATGGCTTTTGGTTTTATAACTGTATTCTACAAGTTACTGAATTCTACACTTTATAGGGCAGATTTTATGGTAAATGGATTATGACTTGGT AAAAACAGTTTAAAGCCCATCTACCTTTTATTTTTACATAATTTGAATATGATCATCAATGATAGCTATTACACCGAGTTTCCGTCTATCTCTAACAATTGGGTTAAAAATGTGGAGCTGCTTTTAGA CTTTTACCATGGATAGATGATTATTTCCAGGTATATGCCAAGCACCTTGGACACAGACGTTATCTGCTTCATTCCCCATTTATCTTCTTAGTTTGTATATAAGTGAATAGACTAACATTCTCCAAATC CAGAAATACCAAAACTGGAACTTTCCAAACAAAGTAAATTTAGAAATAACATACTCTTAAATTCTGCCAGCTGAAATCGGATGATCCAGAACCAAATGCTTCTGTAGTTCTTTGTTGATTTAGTTGCT ATGGTAACCAGGTACATTCATGTACAATGGGAAGCTTCTTATACATTGGCTAATTTGACAATAAGGTTGGGGTGGATATGGATGAGTGTAACTCATAAGTGGTTTAACTCATAAGTGGTTGTAACTTG CCATTCTACATCTATGTATGTTATATTAAGTAATTCTAAAATTGAATGGAATGCTGCCAGAATGGAGTTTACCTTGTTAGACTAAGCACCAGGACAGTCAAAATCCATTTTGTCAATGGAAATTGTGT TTAGTTGGAGCAGAAGCTGTTGCATTTCATGGCAGCTGTTGACAGCTGTGGCAGCAGCAGGAGAATGAGGACATTGAAGAAAACACATGCAACAGTTATTCTGGTACAAGTTAATCCAGGGGAAGCAT TTACAATAAGAAGAGAAGATGGACAGTTTCAGTGCATTACAGGTCCTGCTCAGGTTCCAATGATGTCCCCAAATGGTTCCGTGCCTCCTATTTATGTGCCTCCTGGATATGCCCCACAGGTTATTGAA GACAATGGTGTTCGGAGAGTCGTTGTGGTTCCGCAATCACCAGAGTTTCATCCTGGTGGCCACACAGTTATCCACCGCTCCCCACATCCTCCTCTGCCTGGTTTCATTCCCGTCCCAACCATGATGCC CCCTCCACCACGCCATATGTACTCACCAGTGACTGGAGCTGGCGACATGGCAACACAGTATATGCCACAGTATCAGTCTTCACAAGTATATGCAGATGTAGATGCCCACTCTACACATGGCAGGTCCA ACTTTAGAGATGAAAGATCTACTAAAACATATGAACGTTTGCAGAAAAAGTTAAAGGATCGCCAAGGAACCCAGAAAGATAAAATGAGCAGCCCACCACCATCACCTCAGAAATGCCCTTCTCCCATA AGTGAACACAATGGACTCATAAAAGGGCAGAACACCAGTGGTGTGAACACAGGATCTGCAAGAAACAGATCGGGGCGTGGGAGAGGCTGTACACAGGTTGACCAAGAAATAGAAGAAAAAGATGAAGA AACTAAAGCGTTTGAAGCGTTTCTTTCCAACATCGTCAGACCAGTGGCCTCAGACATTCAGGCAAGGACAGTCCTGCTCACCTGGTCACCTCCTTCCAGCTTCGTTAACGGCGAAGTGACTGAGACAA CTGTACCAGAGTTCTTCAATTATGAAATCCTGGTGTCGAGCACTGGGAAGGAAGGGAAATACAGAAGTGTTTATGTAGGAGAAGAAACAAGTGTCACTTTAAATGATCTCAAACCAGCCACAGATTAC CATGCAAAAGTGCAGGCAGAGTCCAATTCGATCAAGGGAATCCCATCAGAAGCTGAAAGCTTTACGACCTTAAGCTGTGAGCCGGACACCCCCAATGCACCGAGGATAGCTAACAGAACCAAAAATTC TCTCACGTTGCAGTGGAAGGCACCTAGTGACAATGGTTCTAAAATCCAAAGCTTTATTTTAGAATGGGATGAAGGGAAAGGAAGTGGAGAATTCTGTCAGTGTTACATGGGCTCACAGAAGCAATTTA AAATTACCAAACTGTCACCAGCAATGGGTTGTAAATTTAGATTATCAGCCAAAAATGACTATGGTGTAAGTGATTTTAGTGAAGAGGTCTTATACTACACCTCAGGCTGTGCCCCCTCTGTACCTGCA AGTCCTGTGCTGACCAAGGCTGGAGTTACTTGGCTGTCCCTACAGTGGACTAAGCCCTCAGGAACACCGTCAGATGAAGGGATTTCTTACATTTTAGAGATGGAGGAGGAAACATCAGGGTATGGCTT TAAGCCGAAATATGATGGAGAAGATCTTGCTTACACAGTGAAAAATTTGAGACGAAGTACAAAGTATAAATTTAAGGTCATTGCTTATAACTCAGAAGGTAAAAGCAGTCCTAGTGAAGTAGTGGAAT TCAGCACCTGCCCTGATAAACCAGGAGTACCTGCGAAGCCTTCGGTTAAAGGGAAGGTACACTCACACGGCTTTAAAATTACTTGGGATCCACCAAGAGACAATGGAGGGGCACCCATCAACAAGTAT GTGGTGGAGATGGCAGAAGGCTCTAATGGAAGCAAGTGGGATATGATCTACAGTGGCGCCACCAGGGAACATCTTTGTGACCGGCTGACTCCAGGCTGCTACTACCGCCTGCGGGTTTACTGCATTAG TGATGGAGGGCAGAGTGCGGTCTCTGAATCTTTACTTGTGCAGACTCCAGCTGTGCCTCCTGGCCCATGCCTCCCTCCCAGGTTGCAGGGTAGACCCAAAGCAAAAGAAATACAGTTACGATGGGGAC CTCCTCAGGTTGACGGCGGATCACCCATTTCCTGTTATGCAGTAGAAATGACTCCTGCAGATAAAGATGAGCCCAGAGATGTTTACCAAGGCTCTGAAGTGGAGTGTACAGTGAGCAGCCTTCTTCCT GGAAAGACGTACAGCTTCAGACTTCGTGCAGCAAACAGAATAGGGTTTGGACCATTTTCAGAAAAATACGATATCACTACAGCCCCTGGGCCACCCGACCAGTGCAGACCCCCTCAAGTGACATGCAG ATCTGCAACTTGTGCACAAGTGAATTGGGAGATTCCTTTGAGTAACGGAACTGACATCACTGAGTACCGGCTGGAATGGGGAGGAGTTGAAGGAAGTATGCAGATATGTTACTGTGGACCTGGCCTCA GTTGTGAATTAAAAGGACTTTCACCAGCTACTACCTATTACTGCAGAGTCCAAGCTTTGAGTGTTGTAGGTGCGGGTCCCTTCAGTGAAGTTGTAGCCTGTGTGACGCCACCGTCGGTTCCTGCCATT GTGACTTGTCTTCAGGAAATACGTGATGATGATATAGAATACCCCCATTACTCACCCTCCACCTGCCTTGCAATTAGCTGGGAAGAGCCTTACGACCATGGCTCAGAAATCCTTGCCTATAGCATAGA CCTTGGAGACAAGCAGCCCTTGACAGTGGGGAAGGTGACAAGCTATGTCATAAACAGTTTGCAACCAGATACAACATACAGAATACGAATTCAAGCCTTGAATAGCCTTGGAGCTGGGCCTTTCAGCC ATACTATTAAATTAAAAACTAAGCCCCTTCCTCCTGATCCACCTCGGCTGGAATGTGTTGCCTTTAACCACCAGAACCTTAAGCTTAAATGGGGAGAAGGAACTCCAAAGACGTTAGCAACAGATGCT GTTCAGTACCACCTTCAGATGGAAGATAAGAACGGAAGGTTTGTCTCCCTGTACAGAGGGCCTTGTCATACGTACAAAGTACAAAGGCTCAGTGAATCCACGTCCTACAAGTTCTGTATTCAAGCTTG CAATGAAGCTGGGGAAGGTCCTCTGTCCCAAGAGTATGTTTTCACTACTCCAAAATCTGTTCCAGCTGCCTTGAAAGCCCCTAAAATAGAGAAAATAAATGATCACATTTGTGAAATTACATGGGAAT ATTTACAGCCAATGAAGGGTGACCCGGTTATTTATAATCTTCAAGTTATGGTGGGAAAAGATTCAGAATTCAAGCAGATTTACAGGGGCCCTGATACTTCATTCCGGTATTCCAGCCTTCAGCTGAAT TGTGAGTATCGATTTCGAGTGTGTGCCATTCGCCAATGCCAAGACCCTGCAGGACACCAGGACCTCGTAGGTCCCTACAGCACCACAGTGTTCTTCATCTCCCAGAGGACAGAGCCGCTAGCCAGCAG CAACAGAGACACTGTGGACAGTGCACGGACCCGGCGCACTCTAAGTGACGAGCAGTGTGCTGCAGTCATCCTGGTGTTGTTTGCTTTCTTTTCCATTCTGATTGCCTTTATCATTCAGTACTTTGTAA TCAAGTGAAAATATAACTTTATTTTTAACACTATTACATTTTATTTTGTCATGTACTAAAATTATTTCTGTATTGCTTTTACAAAATGGTGGCATTTAGCACTGGCATTGAGACTATCTATTGAACAT GGCTTTGGCATTTTCAGTGCTTCTGTTGTTAGGCTGGCTCTTCATGAAAATTCAGCCACAGAAACATCATTCTGGGGAGGGCTGTTTATTTTGTTCTTAGGTTGGGACTCTTTTCCCAGTTTCTTTCT TTTTTTTCTCTCCCCCACCCCCCACCCCAGATATGCCTTCTAGTAAAACAAACTTTGTAAAGGACACCGCTATGATTGTTCTGACCCATCAGCAGGAGTAAAACAGTGGTAACCGCATCTGTTTGTCT CGAAGGTGATTGCCATGTGAAAATTTCAGAATGACTAGAATTTACACTAACGTTCTCTACGAAACTTGTTGGAGTCTGATGCTGTGAAAGCAATCTAGTGCTATATTTCTACCTCCTCATTTGTCTTA ATTGTTTGGTAAGTGGGATTTTGATGAATAACTGGAGGGCTTAGCAAACAAAAACTGGATGAAGGAATCTGAGTGAGAAAGAAGCTTTCTGTTTGGTGAGTGTGGAGTTCTTCCTTACACACACACAC ACACACACACACACACACACTCTCACACTCACAAGTGAGCCCGAGAAAGCAGACCAGAAGTACAGATCTTTACTTGAACAGCATCTCTTCTTCTTTTTGGGATTTGAGAACAGAGGACTTTTGAATAA TAACTAAATTTGAAATCTGTTTGGCCTCTGTTTTCTAGGCCTTGAAACTATGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGCACAAGCACATATGTGTACATTGGGTCTAT GTGCAGACTGTCAGGTAAGGAGGTGTGTCCACACTCATGACCTGCTCTAGGCTAGCTTTGAAGGACTCCCAATGGTTTTGCAGCATCTCCTATAACTACTGCTGTTGCCATCAGAATTTCTAATCAAA CTCAACCTTTTTGTTTGGGGTACCAAATCTGAAGACAAAATTAATTTGCACCAGTAAACTTCAAGCTGCTTTCTTTCTTGAGAAACTAATGTTTAATGTATAATGTCTGTTTGGATACTGTTCCAAAT TGTTGATTGCATGTGGGTACCGTTGCATTAGAGCACTTTGCAAATTGCATAGTTCATTAATGTTTGTGAGCTTGCATTTGTGAGTTATTGAATGATCAGATTGAATTTTCTCATATCACATTGTACAT CTCGCCTTGATGTCAATGACTGCCAGTAATAATACAGTCTGCAATGAATTTATATGAAATGTTTGTTTTATCACATGTTATCTGTAGACATCTGTATCTAGCTTCTTTAATTTATTATTTGGACTTTA GAGTAGTGAGTCACTAATTTTTAGTTGCTGAGGTCTGCATTTTAGTGATTACTAAGCACTTCTGTCTGTCAAAAAGAAATGTATGTTTTGTACTTTGAAGATCTCTGAAGAATTTCTCTTATAATAGA ATGGGCATGTATTGTAATTGTTTTATGTCAAATGATCTGTGCTATAGAAAAAAACATTAACCTTTATTCAAAAAAGAAACGGATAAACTTGGCCTCTCCAAGTGTAAGAAAACCCTGTCACTCTAATA TACTATATGTTTACATTTTATTTAATCTCATATGAATAGGGTGATAACTTGTCCCCCAAACAACTGCGCTTACGATTGTTTTCTAGAACTTCTTAAGTGCCACATTTGGCAGTACAAATGAGTTTTGA GTGTCAGAGCCCAGAGATTTCTATAGAGTTGAATGTCTAAAATGGTAAAATGTGCCACACAGTGGCTTATGTTTTTCATAGTAATTCAAATGAACTCCTATTTTTGATAGTAAATGTCATTTAATAGT GTACTTGCCATTTGAGCCTCACTGCAATGTTAGTGCAGAGGAGAAAACAATTTTTAATGTAATCTTGATTTTACCTCATATACTGTACATTCCAAAAACTCAACTTTTTAAAGATTATAGATACACTA CCAAACATACCACCTTAAAATTGTATAAGGTTGAACTTCATACAAGTGAAAAAATATAATCTCATAAGAATACATAAACTATGTAGCAAAAGTATCTGTAAAATCCATGGAAAATAAAAGTTGTATCA TTCTTTTTTGA
hide sequence
RefSeq Acc Id:
XM_006252300 ⟹ XP_006252362
Type:
CODING
Position:
Rat Assembly Chr Position (strand) Source GRCr8 15 54,099,510 - 54,212,759 (-) NCBI mRatBN7.2 15 47,689,909 - 47,802,969 (-) NCBI Rnor_6.0 15 54,378,865 - 54,494,188 (-) NCBI Rnor_5.0 15 58,102,190 - 58,306,554 (-) NCBI
Sequence:
TGAATTATAATGGTAATATCTGATATGCAGGCTAGTCTTACGTAACCCTGATGAAAGGGCCCTT AAAAACTCCAATGGGGTAATAACCTACGAATGAGAACCACTGGATTAGAGAACCACTGGATTAGGGCAAAGCAAGACTGAAACTCAGTAAGCCAAAAACTAAACCCTGTAACTCCCAAGTTAGACACC TGAAGCTCTTGATGATAGTAGAGGTTGATTCTAAAGGCTATGGATGGGTAACACATTACCCATATAGCCAGTATGCTGTGACGTCCTGTGAGCCTTTGCACATCCAGGTCTTTATTGTAACTTAGACT TCCTCATCCCAGCTTCATGCAGTGGCCTCTCGTGGTCCCCTTACAGAGAATGTAGCCCTACCACACACTGTCTGGTCTTAGTGGCTTTCCAAAACTGTGTCAAAATTCTTCATCATGTGTACATGGAA AACCAGCACCTTGTGGACATTGCTGTCATTTCTGTTGCTGGATGCTGCTGTATGTAGCCTGTTCCCCTTGGACCACAACTGCAGTACCCTCTATTTGCGGATCCTTGGGAAATACCTAGGGTGCTATT TGTGAACAGGGAACCCCTTTCAGGGCCATTCTCAGTCCAGGTTCACTCATTTATAGTTAGTATTTTCACAAAACCTTTTTGCTTTTTCTTGTGGTAGATGTGGGTAAGAGCAGAGAACAGTCTGGATG CTCTTCTGACTTGAAACTTTCGTGCCAGATAACTCAGTTCATTACTTTCTAATTTGGCCTCACTTAAGTTCTCAGGACACAGGGACAGTGAAGGCGGATTCTTCGCCAGAATATGACACAAATGTCTT CTGGACAGTTACACTTTGGATCGATGCAGCCTATTATGGTTATTCTGGTACAAGTTAATCCAGGGGAAGCATTTACAATAAGAAGAGAAGATGGACAGTTTCAGTGCATTACAGGTCCTGCTCAGGTT CCAATGATGTCCCCAAATGGTTCCGTGCCTCCTATTTATGTGCCTCCTGGATATGCCCCACAGGTTATTGAAGACAATGGTGTTCGGAGAGTCGTTGTGGTTCCGCAATCACCAGAGTTTCATCCTGG TGGCCACACAGTTATCCACCGCTCCCCACATCCTCCTCTGCCTGGTTTCATTCCCGTCCCAACCATGATGCCCCCTCCACCACGCCATATGTACTCACCAGTGACTGGAGCTGGCGACATGGCAACAC AGTATATGCCACAGTATCAGTCTTCACAAGTATATGCAGATGTAGATGCCCACTCTACACATGGCAGGTCCAACTTTAGAGATGAAAGATCTACTAAAACATATGAACGTTTGCAGAAAAAGTTAAAG GATCGCCAAGGAACCCAGAAAGATAAAATGAGCAGCCCACCACCATCACCTCAGAAATGCCCTTCTCCCATAAGTGAACACAATGGACTCATAAAAGGGCAGAACACCAGTGGTGTGAACACAGGATC TGCAAGAAACAGATCGGGGCGTGGGAGAGGCTGTACACAGGTTGACCAAGAAATAGAAGAAAAAGATGAAGAAACTAAAGCGTTTGAAGCGTTTCTTTCCAACATCGTCAGACCAGTGGCCTCAGACA TTCAGGCAAGGACAGTCCTGCTCACCTGGTCACCTCCTTCCAGCTTCGTTAACGGCGAAGTGACTGAGACAACTGTACCAGAGTTCTTCAATTATGAAATCCTGGTGTCGAGCACTGGGAAGGAAGGG AAATACAGAAGTGTTTATGTAGGAGAAGAAACAAGTGTCACTTTAAATGATCTCAAACCAGCCACAGATTACCATGCAAAAGTGCAGGCAGAGTCCAATTCGATCAAGGGAATCCCATCAGAAGCTGA AAGCTTTACGACCTTAAGCTGTGAGCCGGACACCCCCAATGCACCGAGGATAGCTAACAGAACCAAAAATTCTCTCACGTTGCAGTGGAAGGCACCTAGTGACAATGGTTCTAAAATCCAAAGCTTTA TTTTAGAATGGGATGAAGGGAAAGGAAGTGGAGAATTCTGTCAGTGTTACATGGGCTCACAGAAGCAATTTAAAATTACCAAACTGTCACCAGCAATGGGTTGTAAATTTAGATTATCAGCCAAAAAT GACTATGGTGTAAGTGATTTTAGTGAAGAGGTCTTATACTACACCTCAGGCTGTGCCCCCTCTGTACCTGCAAGTCCTGTGCTGACCAAGGCTGGAGTTACTTGGCTGTCCCTACAGTGGACTAAGCC CTCAGGAACACCGTCAGATGAAGGGATTTCTTACATTTTAGAGATGGAGGAGGAAACATCAGGGTATGGCTTTAAGCCGAAATATGATGGAGAAGATCTTGCTTACACAGTGAAAAATTTGAGACGAA GTACAAAGTATAAATTTAAGGTCATTGCTTATAACTCAGAAGGTAAAAGCAGTCCTAGTGAAGTAGTGGAATTCAGCACCTGCCCTGATAAACCAGGAGTACCTGCGAAGCCTTCGGTTAAAGGGAAG GTACACTCACACGGCTTTAAAATTACTTGGGATCCACCAAGAGACAATGGAGGGGCACCCATCAACAAGTATGTGGTGGAGATGGCAGAAGGCTCTAATGGAAGCAAGTGGGATATGATCTACAGTGG CGCCACCAGGGAACATCTTTGTGACCGGCTGACTCCAGGCTGCTACTACCGCCTGCGGGTTTACTGCATTAGTGATGGAGGGCAGAGTGCGGTCTCTGAATCTTTACTTGTGCAGACTCCAGCTGTGC CTCCTGGCCCATGCCTCCCTCCCAGGTTGCAGGGTAGACCCAAAGCAAAAGAAATACAGTTACGATGGGGACCTCCTCAGGTTGACGGCGGATCACCCATTTCCTGTTATGCAGTAGAAATGACTCCT GCAGATAAAGATGAGCCCAGAGATGTTTACCAAGGCTCTGAAGTGGAGTGTACAGTGAGCAGCCTTCTTCCTGGAAAGACGTACAGCTTCAGACTTCGTGCAGCAAACAGAATAGGGTTTGGACCATT TTCAGAAAAATACGATATCACTACAGCCCCTGGGCCACCCGACCAGTGCAGACCCCCTCAAGTGACATGCAGATCTGCAACTTGTGCACAAGTGAATTGGGAGATTCCTTTGAGTAACGGAACTGACA TCACTGAGTACCGGCTGGAATGGGGAGGAGTTGAAGGAAGTATGCAGATATGTTACTGTGGACCTGGCCTCAGTTGTGAATTAAAAGGACTTTCACCAGCTACTACCTATTACTGCAGAGTCCAAGCT TTGAGTGTTGTAGGTGCGGGTCCCTTCAGTGAAGTTGTAGCCTGTGTGACGCCACCGTCGGTTCCTGCCATTGTGACTTGTCTTCAGGAAATACGTGATGATGATATAGAATACCCCCATTACTCACC CTCCACCTGCCTTGCAATTAGCTGGGAAGAGCCTTACGACCATGGCTCAGAAATCCTTGCCTATAGCATAGACCTTGGAGACAAGCAGCCCTTGACAGTGGGGAAGGTGACAAGCTATGTCATAAACA GTTTGCAACCAGATACAACATACAGAATACGAATTCAAGCCTTGAATAGCCTTGGAGCTGGGCCTTTCAGCCATACTATTAAATTAAAAACTAAGCCCCTTCCTCCTGATCCACCTCGGCTGGAATGT GTTGCCTTTAACCACCAGAACCTTAAGCTTAAATGGGGAGAAGGAACTCCAAAGACGTTAGCAACAGATGCTGTTCAGTACCACCTTCAGATGGAAGATAAGAACGGAAGGTTTGTCTCCCTGTACAG AGGGCCTTGTCATACGTACAAAGTACAAAGGCTCAGTGAATCCACGTCCTACAAGTTCTGTATTCAAGCTTGCAATGAAGCTGGGGAAGGTCCTCTGTCCCAAGAGTATGTTTTCACTACTCCAAAAT CTGTTCCAGCTGCCTTGAAAGCCCCTAAAATAGAGAAAATAAATGATCACATTTGTGAAATTACATGGGAATATTTACAGCCAATGAAGGGTGACCCGGTTATTTATAATCTTCAAGTTATGGTGGGA AAAGATTCAGAATTCAAGCAGATTTACAGGGGCCCTGATACTTCATTCCGGTATTCCAGCCTTCAGCTGAATTGTGAGTATCGATTTCGAGTGTGTGCCATTCGCCAATGCCAAGACCCTGCAGGACA CCAGGACCTCGTAGGTCCCTACAGCACCACAGTGTTCTTCATCTCCCAGAGGACAGAGCCGCTAGCCAGCAGCAACAGAGACACTGTGGACAGTGCACGGACCCGGCGCACTCTAAGTGACGAGCAGT GTGCTGCAGTCATCCTGGTGTTGTTTGCTTTCTTTTCCATTCTGATTGCCTTTATCATTCAGTACTTTGTAATCAAGTGAAAATATAACTTTATTTTTAACACTATTACATTTTATTTTGTCATGTAC TAAAATTATTTCTGTATTGCTTTTACAAAATGGTGGCATTTAGCACTGGCATTGAGACTATCTATTGAACATGGCTTTGGCATTTTCAGTGCTTCTGTTGTTAGGCTGGCTCTTCATGAAAATTCAGC CACAGAAACATCATTCTGGGGAGGGCTGTTTATTTTGTTCTTAGGTTGGGACTCTTTTCCCAGTTTCTTTCTTTTTTTTCTCTCCCCCACCCCCCACCCCAGATATGCCTTCTAGTAAAACAAACTTT GTAAAGGACACCGCTATGATTGTTCTGACCCATCAGCAGGAGTAAAACAGTGGTAACCGCATCTGTTTGTCTCGAAGGTGATTGCCATGTGAAAATTTCAGAATGACTAGAATTTACACTAACGTTCT CTACGAAACTTGTTGGAGTCTGATGCTGTGAAAGCAATCTAGTGCTATATTTCTACCTCCTCATTTGTCTTAATTGTTTGGTAAGTGGGATTTTGATGAATAACTGGAGGGCTTAGCAAACAAAAACT GGATGAAGGAATCTGAGTGAGAAAGAAGCTTTCTGTTTGGTGAGTGTGGAGTTCTTCCTTACACACACACACACACACACACACACACACACTCTCACACTCACAAGTGAGCCCGAGAAAGCAGACCA GAAGTACAGATCTTTACTTGAACAGCATCTCTTCTTCTTTTTGGGATTTGAGAACAGAGGACTTTTGAATAATAACTAAATTTGAAATCTGTTTGGCCTCTGTTTTCTAGGCCTTGAAACTATGTGTG TGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGCACAAGCACATATGTGTACATTGGGTCTATGTGCAGACTGTCAGGTAAGGAGGTGTGTCCACACTCATGACCTGCTCTAGGCTAGC TTTGAAGGACTCCCAATGGTTTTGCAGCATCTCCTATAACTACTGCTGTTGCCATCAGAATTTCTAATCAAACTCAACCTTTTTGTTTGGGGTACCAAATCTGAAGACAAAATTAATTTGCACCAGTA AACTTCAAGCTGCTTTCTTTCTTGAGAAACTAATGTTTAATGTATAATGTCTGTTTGGATACTGTTCCAAATTGTTGATTGCATGTGGGTACCGTTGCATTAGAGCACTTTGCAAATTGCATAGTTCA TTAATGTTTGTGAGCTTGCATTTGTGAGTTATTGAATGATCAGATTGAATTTTCTCATATCACATTGTACATCTCGCCTTGATGTCAATGACTGCCAGTAATAATACAGTCTGCAATGAATTTATATG AAATGTTTGTTTTATCACATGTTATCTGTAGACATCTGTATCTAGCTTCTTTAATTTATTATTTGGACTTTAGAGTAGTGAGTCACTAATTTTTAGTTGCTGAGGTCTGCATTTTAGTGATTACTAAG CACTTCTGTCTGTCAAAAAGAAATGTATGTTTTGTACTTTGAAGATCTCTGAAGAATTTCTCTTATAATAGAATGGGCATGTATTGTAATTGTTTTATGTCAAATGATCTGTGCTATAGAAAAAAACA TTAACCTTTATTCAAAAAAGAAACGGATAAACTTGGCCTCTCCAAGTGTAAGAAAACCCTGTCACTCTAATATACTATATGTTTACATTTTATTTAATCTCATATGAATAGGGTGATAACTTGTCCCC CAAACAACTGCGCTTACGATTGTTTTCTAGAACTTCTTAAGTGCCACATTTGGCAGTACAAATGAGTTTTGAGTGTCAGAGCCCAGAGATTTCTATAGAGTTGAATGTCTAAAATGGTAAAATGTGCC ACACAGTGGCTTATGTTTTTCATAGTAATTCAAATGAACTCCTATTTTTGATAGTAAATGTCATTTAATAGTGTACTTGCCATTTGAGCCTCACTGCAATGTTAGTGCAGAGGAGAAAACAATTTTTA ATGTAATCTTGATTTTACCTCATATACTGTACATTCCAAAAACTCAACTTTTTAAAGATTATAGATACACTACCAAACATACCACCTTAAAATTGTATAAGGTTGAACTTCATACAAGTGAAAAAATA TAATCTCATAAGAATACATAAACTATGTAGCAAAAGTATCTGTAAAATCCATGGAAAATAAAAGTTGTATCATTCTTTTTTGA
hide sequence
RefSeq Acc Id:
XM_006252301 ⟹ XP_006252363
Type:
CODING
Position:
Rat Assembly Chr Position (strand) Source GRCr8 15 54,099,510 - 54,169,597 (-) NCBI mRatBN7.2 15 47,689,909 - 47,759,991 (-) NCBI Rnor_6.0 15 54,378,865 - 54,450,715 (-) NCBI Rnor_5.0 15 58,102,190 - 58,306,554 (-) NCBI
Sequence:
TGCTATGGTCATGGTGTCTCTTCACAGAGATAAAAGCTTATGACAAGGGTATAAGTGCCAAGGCATGCATATGGACGATTTGCAGGAATTCAGTTGTGTTTGTCCACCATGTGGAAACTAGGGGTTGA ATTTAGGCTGTCAAGTGCTAACTGCAACCACCTTTATCCTGAACCACCTCTTCAAAAGTAAGATGTATCCATTTTCATTTACTAATCTCCCCCAATGCCTGGACAAAGTCTAGCATGAGGAGGATGAC GTTACAGAAGATAATACTATCTAATGTTTATAAGCGTCAAAATTAAGTAAGTTGATTAGATTGTTTTTCTTCTAGTATTTCTTTTCATGGTACTGGAATGGGACCTAGTACCTTGTGCACTGTTAGGC TAGCTAAGTAGTCTACCATTAATATACTTCCCAACTAGAAAACTGTAAGGATAAGAATGAGAGCAGCATTTAGAGGAGCAGAAGCACGAGTGGTACTTGATGGAGTGGCTTGATGGAGAGTAGGTACA GCAGTATCCATCGCTGGGGTCACTTCAGTGTGCTTAATGGCTGGCATGATTTTCTTTTCTATCCATCAAATATTGTATAACAAGTTTTTATTAGTAATCTAAAAGGGAATATTAGGTCTCTTTATACT AATTTTGGTAAGATTAGCTGTGAAACAGGATGTAGTTATAGTTGTAAGAAATAAGATGGGCCTCCAAATTCAGCTTTAAGAACAAAGCAGGTACTGGAGCAGAGAAATCATAGATCTAGAGTTTGGAC ATTGAAGTCATTATCTTGATGACAGCAAGTGTTGGGGCAGAAAGAAAAAAACACAACTCACTGTCAAAATACTCAGAGAACTTCAGAGGGCAGAGTGGCAGCTGTGAGAGAGGACCAGGAAGTAAGCG CCCATCCCACAGCCTCAGGGGAAATTCGGTCATAATGGAATAAAAGGTCAACAGTTAACCTTCTCCACTCAGAACAAGTGTCTCTTCTCCTCTGGGGTGTCTGACATCCCTTAATTGAGTCAAGTTGA CTGTGTCTTGTCAGGTTTAATTTTTTATCTTCAGGAGAGAAACTGGGCCTTTAAATACCACCTGCCCTTAACATGTGATTATCATATGAAGCAACCCTGCCTTTGCCTGTGTACCCTCAACAAGTTAC TTACTTAGCTGTTCCTGCCTCTAGTAATGATGCTGCTTGCATTAACAAGTAGAACACTCCAGATGGTCCCTCTCAACTATGTAATCATTAGTTTTGAGAGTCAAATGATCATACTTTTACTTAGAATA ATGATCAGTTATTGTATGGCACCAAACTCTATTTCAGGCACTTCCTTGTCTAACTTGAGTCTCCCAACAGTGCTTTGAGGTTGATCATATTAACTTTTCCACAGGAGACAGATTCCAATAGTACTTCG CTGCCATGCTAGTTAAGTATTAGAGCTCATTATAACTTTCATCTGGTACTCAAAGCCATTTCACCACTGTGCTACATGTCACAGATACCAGCTATTACTTTTATGTGTGTGTAAGCAATTAATAAAGT TCCTCTGAATTTATATGACATCTTAATTGACATAGCATCATATTTTTCACCTCTTGTAATAGTAGTTTTCACTTTCCTGCTTTTTGGTATGTTTATTTTATAAATAATGTATTTATTCGTTATAGAGC AAGAATACTATCCACTAAGAATCTTTCCTTAATGCCAAGAGTAAGTTCTATTTTTAAAATAATCATTAAAAAGAAAGTACACTGACAATAAAAGCAGAAACCTTCATTAGCTTTCAAGGAAAACAAAA CAAGCCTGAAATATATTCCACCTGTAAGGAACTTCTCATTCACTTCCATTGTGTGCGCAGTTCACTATGTGTTACAGACATTGCTTAAATATTAAGCCTGAAATGCTCACAAATCATACACAAATATT TTGGTTCAAGGCTTTGGAATTAATTTTACCCCTAACTTTCTATGTGAAAGCCAGCAGCAGGCTGGGTTAATAACACAAAAGAGGATGGTTTTCCGTCGAATGCGTATCCACCAGGTTCCTTTGATTAG CGTTTACTTTGGCACTTAAGGCAGAACGGGTTCATTCAGGGAAGCAGCTGAAGAAGCGTTTAAGTCGTTTTGGGTGAAGAAGCCTTTAAATCATTTGGGTAGCACCCAAGCAGACGCTTTGCGCTGTT TCCTCTCCCGGTTTTTCCCGGTTCACTGCAGGTCACGTGATACCGGTCACGTGACTCGGTCAAAGGATCTTTTCCTCTTACCAGCTTTGAGGGGAAAAAAAAAGCGAAACTGTTCTCCAATTAAAGCT GCTAACGTGTACTACGCCGTTTCCTTGTTGGATTTTCTTGTTCGCTGACTGCTGCTCCTGTAGAAACAAAATGAGTGGTCCTGCTCAGGTTCCAATGATGTCCCCAAATGGTTCCGTGCCTCCTATTT ATGTGCCTCCTGGATATGCCCCACAGGTTATTGAAGACAATGGTGTTCGGAGAGTCGTTGTGGTTCCGCAATCACCAGAGTTTCATCCTGGTGGCCACACAGTTATCCACCGCTCCCCACATCCTCCT CTGCCTGGTTTCATTCCCGTCCCAACCATGATGCCCCCTCCACCACGCCATATGTACTCACCAGTGACTGGAGCTGGCGACATGGCAACACAGTATATGCCACAGTATCAGTCTTCACAAGTATATGC AGATGTAGATGCCCACTCTACACATGGCAGGTCCAACTTTAGAGATGAAAGATCTACTAAAACATATGAACGTTTGCAGAAAAAGTTAAAGGATCGCCAAGGAACCCAGAAAGATAAAATGAGCAGCC CACCACCATCACCTCAGAAATGCCCTTCTCCCATAAGTGAACACAATGGACTCATAAAAGGGCAGAACACCAGTGGTGTGAACACAGGATCTGCAAGAAACAGATCGGGGCGTGGGAGAGGCTGTACA CAGGTTGACCAAGAAATAGAAGAAAAAGATGAAGAAACTAAAGCGTTTGAAGCGTTTCTTTCCAACATCGTCAGACCAGTGGCCTCAGACATTCAGGCAAGGACAGTCCTGCTCACCTGGTCACCTCC TTCCAGCTTCGTTAACGGCGAAGTGACTGAGACAACTGTACCAGAGTTCTTCAATTATGAAATCCTGGTGTCGAGCACTGGGAAGGAAGGGAAATACAGAAGTGTTTATGTAGGAGAAGAAACAAGTG TCACTTTAAATGATCTCAAACCAGCCACAGATTACCATGCAAAAGTGCAGGCAGAGTCCAATTCGATCAAGGGAATCCCATCAGAAGCTGAAAGCTTTACGACCTTAAGCTGTGAGCCGGACACCCCC AATGCACCGAGGATAGCTAACAGAACCAAAAATTCTCTCACGTTGCAGTGGAAGGCACCTAGTGACAATGGTTCTAAAATCCAAAGCTTTATTTTAGAATGGGATGAAGGGAAAGGAAGTGGAGAATT CTGTCAGTGTTACATGGGCTCACAGAAGCAATTTAAAATTACCAAACTGTCACCAGCAATGGGTTGTAAATTTAGATTATCAGCCAAAAATGACTATGGTGTAAGTGATTTTAGTGAAGAGGTCTTAT ACTACACCTCAGGCTGTGCCCCCTCTGTACCTGCAAGTCCTGTGCTGACCAAGGCTGGAGTTACTTGGCTGTCCCTACAGTGGACTAAGCCCTCAGGAACACCGTCAGATGAAGGGATTTCTTACATT TTAGAGATGGAGGAGGAAACATCAGGGTATGGCTTTAAGCCGAAATATGATGGAGAAGATCTTGCTTACACAGTGAAAAATTTGAGACGAAGTACAAAGTATAAATTTAAGGTCATTGCTTATAACTC AGAAGGTAAAAGCAGTCCTAGTGAAGTAGTGGAATTCAGCACCTGCCCTGATAAACCAGGAGTACCTGCGAAGCCTTCGGTTAAAGGGAAGGTACACTCACACGGCTTTAAAATTACTTGGGATCCAC CAAGAGACAATGGAGGGGCACCCATCAACAAGTATGTGGTGGAGATGGCAGAAGGCTCTAATGGAAGCAAGTGGGATATGATCTACAGTGGCGCCACCAGGGAACATCTTTGTGACCGGCTGACTCCA GGCTGCTACTACCGCCTGCGGGTTTACTGCATTAGTGATGGAGGGCAGAGTGCGGTCTCTGAATCTTTACTTGTGCAGACTCCAGCTGTGCCTCCTGGCCCATGCCTCCCTCCCAGGTTGCAGGGTAG ACCCAAAGCAAAAGAAATACAGTTACGATGGGGACCTCCTCAGGTTGACGGCGGATCACCCATTTCCTGTTATGCAGTAGAAATGACTCCTGCAGATAAAGATGAGCCCAGAGATGTTTACCAAGGCT CTGAAGTGGAGTGTACAGTGAGCAGCCTTCTTCCTGGAAAGACGTACAGCTTCAGACTTCGTGCAGCAAACAGAATAGGGTTTGGACCATTTTCAGAAAAATACGATATCACTACAGCCCCTGGGCCA CCCGACCAGTGCAGACCCCCTCAAGTGACATGCAGATCTGCAACTTGTGCACAAGTGAATTGGGAGATTCCTTTGAGTAACGGAACTGACATCACTGAGTACCGGCTGGAATGGGGAGGAGTTGAAGG AAGTATGCAGATATGTTACTGTGGACCTGGCCTCAGTTGTGAATTAAAAGGACTTTCACCAGCTACTACCTATTACTGCAGAGTCCAAGCTTTGAGTGTTGTAGGTGCGGGTCCCTTCAGTGAAGTTG TAGCCTGTGTGACGCCACCGTCGGTTCCTGCCATTGTGACTTGTCTTCAGGAAATACGTGATGATGATATAGAATACCCCCATTACTCACCCTCCACCTGCCTTGCAATTAGCTGGGAAGAGCCTTAC GACCATGGCTCAGAAATCCTTGCCTATAGCATAGACCTTGGAGACAAGCAGCCCTTGACAGTGGGGAAGGTGACAAGCTATGTCATAAACAGTTTGCAACCAGATACAACATACAGAATACGAATTCA AGCCTTGAATAGCCTTGGAGCTGGGCCTTTCAGCCATACTATTAAATTAAAAACTAAGCCCCTTCCTCCTGATCCACCTCGGCTGGAATGTGTTGCCTTTAACCACCAGAACCTTAAGCTTAAATGGG GAGAAGGAACTCCAAAGACGTTAGCAACAGATGCTGTTCAGTACCACCTTCAGATGGAAGATAAGAACGGAAGGTTTGTCTCCCTGTACAGAGGGCCTTGTCATACGTACAAAGTACAAAGGCTCAGT GAATCCACGTCCTACAAGTTCTGTATTCAAGCTTGCAATGAAGCTGGGGAAGGTCCTCTGTCCCAAGAGTATGTTTTCACTACTCCAAAATCTGTTCCAGCTGCCTTGAAAGCCCCTAAAATAGAGAA AATAAATGATCACATTTGTGAAATTACATGGGAATATTTACAGCCAATGAAGGGTGACCCGGTTATTTATAATCTTCAAGTTATGGTGGGAAAAGATTCAGAATTCAAGCAGATTTACAGGGGCCCTG ATACTTCATTCCGGTATTCCAGCCTTCAGCTGAATTGTGAGTATCGATTTCGAGTGTGTGCCATTCGCCAATGCCAAGACCCTGCAGGACACCAGGACCTCGTAGGTCCCTACAGCACCACAGTGTTC TTCATCTCCCAGAGGACAGAGCCGCTAGCCAGCAGCAACAGAGACACTGTGGACAGTGCACGGACCCGGCGCACTCTAAGTGACGAGCAGTGTGCTGCAGTCATCCTGGTGTTGTTTGCTTTCTTTTC CATTCTGATTGCCTTTATCATTCAGTACTTTGTAATCAAGTGAAAATATAACTTTATTTTTAACACTATTACATTTTATTTTGTCATGTACTAAAATTATTTCTGTATTGCTTTTACAAAATGGTGGC ATTTAGCACTGGCATTGAGACTATCTATTGAACATGGCTTTGGCATTTTCAGTGCTTCTGTTGTTAGGCTGGCTCTTCATGAAAATTCAGCCACAGAAACATCATTCTGGGGAGGGCTGTTTATTTTG TTCTTAGGTTGGGACTCTTTTCCCAGTTTCTTTCTTTTTTTTCTCTCCCCCACCCCCCACCCCAGATATGCCTTCTAGTAAAACAAACTTTGTAAAGGACACCGCTATGATTGTTCTGACCCATCAGC AGGAGTAAAACAGTGGTAACCGCATCTGTTTGTCTCGAAGGTGATTGCCATGTGAAAATTTCAGAATGACTAGAATTTACACTAACGTTCTCTACGAAACTTGTTGGAGTCTGATGCTGTGAAAGCAA TCTAGTGCTATATTTCTACCTCCTCATTTGTCTTAATTGTTTGGTAAGTGGGATTTTGATGAATAACTGGAGGGCTTAGCAAACAAAAACTGGATGAAGGAATCTGAGTGAGAAAGAAGCTTTCTGTT TGGTGAGTGTGGAGTTCTTCCTTACACACACACACACACACACACACACACACACTCTCACACTCACAAGTGAGCCCGAGAAAGCAGACCAGAAGTACAGATCTTTACTTGAACAGCATCTCTTCTTC TTTTTGGGATTTGAGAACAGAGGACTTTTGAATAATAACTAAATTTGAAATCTGTTTGGCCTCTGTTTTCTAGGCCTTGAAACTATGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGTGT GTGTGCACAAGCACATATGTGTACATTGGGTCTATGTGCAGACTGTCAGGTAAGGAGGTGTGTCCACACTCATGACCTGCTCTAGGCTAGCTTTGAAGGACTCCCAATGGTTTTGCAGCATCTCCTAT AACTACTGCTGTTGCCATCAGAATTTCTAATCAAACTCAACCTTTTTGTTTGGGGTACCAAATCTGAAGACAAAATTAATTTGCACCAGTAAACTTCAAGCTGCTTTCTTTCTTGAGAAACTAATGTT TAATGTATAATGTCTGTTTGGATACTGTTCCAAATTGTTGATTGCATGTGGGTACCGTTGCATTAGAGCACTTTGCAAATTGCATAGTTCATTAATGTTTGTGAGCTTGCATTTGTGAGTTATTGAAT GATCAGATTGAATTTTCTCATATCACATTGTACATCTCGCCTTGATGTCAATGACTGCCAGTAATAATACAGTCTGCAATGAATTTATATGAAATGTTTGTTTTATCACATGTTATCTGTAGACATCT GTATCTAGCTTCTTTAATTTATTATTTGGACTTTAGAGTAGTGAGTCACTAATTTTTAGTTGCTGAGGTCTGCATTTTAGTGATTACTAAGCACTTCTGTCTGTCAAAAAGAAATGTATGTTTTGTAC TTTGAAGATCTCTGAAGAATTTCTCTTATAATAGAATGGGCATGTATTGTAATTGTTTTATGTCAAATGATCTGTGCTATAGAAAAAAACATTAACCTTTATTCAAAAAAGAAACGGATAAACTTGGC CTCTCCAAGTGTAAGAAAACCCTGTCACTCTAATATACTATATGTTTACATTTTATTTAATCTCATATGAATAGGGTGATAACTTGTCCCCCAAACAACTGCGCTTACGATTGTTTTCTAGAACTTCT TAAGTGCCACATTTGGCAGTACAAATGAGTTTTGAGTGTCAGAGCCCAGAGATTTCTATAGAGTTGAATGTCTAAAATGGTAAAATGTGCCACACAGTGGCTTATGTTTTTCATAGTAATTCAAATGA ACTCCTATTTTTGATAGTAAATGTCATTTAATAGTGTACTTGCCATTTGAGCCTCACTGCAATGTTAGTGCAGAGGAGAAAACAATTTTTAATGTAATCTTGATTTTACCTCATATACTGTACATTCC AAAAACTCAACTTTTTAAAGATTATAGATACACTACCAAACATACCACCTTAAAATTGTATAAGGTTGAACTTCATACAAGTGAAAAAATATAATCTCATAAGAATACATAAACTATGTAGCAAAAGT ATCTGTAAAATCCATGGAAAATAAAAGTTGTATCATTCTTTTTTGA
hide sequence
RefSeq Acc Id:
XM_039093358 ⟹ XP_038949286
Type:
CODING
Position:
Rat Assembly Chr Position (strand) Source GRCr8 15 54,099,510 - 54,233,970 (-) NCBI mRatBN7.2 15 47,689,909 - 47,824,369 (-) NCBI
RefSeq Acc Id:
XP_006252360 ⟸ XM_006252298
- Peptide Label:
isoform X1
- UniProtKB:
A0A8I5ZVT2 (UniProtKB/TrEMBL), A6HTP1 (UniProtKB/TrEMBL), D3ZEA0 (UniProtKB/TrEMBL), D3ZUE6 (UniProtKB/TrEMBL)
- Sequence:
MMAEHPPLLDTAQILSSDISLLSAPIVSADGTQQVILVQVNPGEAFTIRREDGQFQCITGPAQVPMMSPNGSVPPIYVPPGYAPQVIEDNGVRRVVVVPQSPEFHPGGHTVIHRSPHPPLPGFIPVPT MMPPPPRHMYSPVTGAGDMATQYMPQYQSSQVYADVDAHSTHGRSNFRDERSTKTYERLQKKLKDRQGTQKDKMSSPPPSPQKCPSPISEHNGLIKGQNTSGVNTGSARNRSGRGRGCTQVDQEIEEK DEETKAFEAFLSNIVRPVASDIQARTVLLTWSPPSSFVNGEVTETTVPEFFNYEILVSSTGKEGKYRSVYVGEETSVTLNDLKPATDYHAKVQAESNSIKGIPSEAESFTTLSCEPDTPNAPRIANRT KNSLTLQWKAPSDNGSKIQSFILEWDEGKGSGEFCQCYMGSQKQFKITKLSPAMGCKFRLSAKNDYGVSDFSEEVLYYTSGCAPSVPASPVLTKAGVTWLSLQWTKPSGTPSDEGISYILEMEEETSG YGFKPKYDGEDLAYTVKNLRRSTKYKFKVIAYNSEGKSSPSEVVEFSTCPDKPGVPAKPSVKGKVHSHGFKITWDPPRDNGGAPINKYVVEMAEGSNGSKWDMIYSGATREHLCDRLTPGCYYRLRVY CISDGGQSAVSESLLVQTPAVPPGPCLPPRLQGRPKAKEIQLRWGPPQVDGGSPISCYAVEMTPADKDEPRDVYQGSEVECTVSSLLPGKTYSFRLRAANRIGFGPFSEKYDITTAPGPPDQCRPPQV TCRSATCAQVNWEIPLSNGTDITEYRLEWGGVEGSMQICYCGPGLSCELKGLSPATTYYCRVQALSVVGAGPFSEVVACVTPPSVPAIVTCLQEIRDDDIEYPHYSPSTCLAISWEEPYDHGSEILAY SIDLGDKQPLTVGKVTSYVINSLQPDTTYRIRIQALNSLGAGPFSHTIKLKTKPLPPDPPRLECVAFNHQNLKLKWGEGTPKTLATDAVQYHLQMEDKNGRFVSLYRGPCHTYKVQRLSESTSYKFCI QACNEAGEGPLSQEYVFTTPKSVPAALKAPKIEKINDHICEITWEYLQPMKGDPVIYNLQVMVGKDSEFKQIYRGPDTSFRYSSLQLNCEYRFRVCAIRQCQDPAGHQDLVGPYSTTVFFISQRTEPL ASSNRDTVDSARTRRTLSDEQCAAVILVLFAFFSILIAFIIQYFVIK
hide sequence
RefSeq Acc Id:
XP_006252359 ⟸ XM_006252297
- Peptide Label:
isoform X1
- UniProtKB:
A0A8I5ZVT2 (UniProtKB/TrEMBL), A6HTP1 (UniProtKB/TrEMBL), D3ZEA0 (UniProtKB/TrEMBL), D3ZUE6 (UniProtKB/TrEMBL)
- Sequence:
MMAEHPPLLDTAQILSSDISLLSAPIVSADGTQQVILVQVNPGEAFTIRREDGQFQCITGPAQV PMMSPNGSVPPIYVPPGYAPQVIEDNGVRRVVVVPQSPEFHPGGHTVIHRSPHPPLPGFIPVPTMMPPPPRHMYSPVTGAGDMATQYMPQYQSSQVYADVDAHSTHGRSNFRDERSTKTYERLQKKLK DRQGTQKDKMSSPPPSPQKCPSPISEHNGLIKGQNTSGVNTGSARNRSGRGRGCTQVDQEIEEKDEETKAFEAFLSNIVRPVASDIQARTVLLTWSPPSSFVNGEVTETTVPEFFNYEILVSSTGKEG KYRSVYVGEETSVTLNDLKPATDYHAKVQAESNSIKGIPSEAESFTTLSCEPDTPNAPRIANRTKNSLTLQWKAPSDNGSKIQSFILEWDEGKGSGEFCQCYMGSQKQFKITKLSPAMGCKFRLSAKN DYGVSDFSEEVLYYTSGCAPSVPASPVLTKAGVTWLSLQWTKPSGTPSDEGISYILEMEEETSGYGFKPKYDGEDLAYTVKNLRRSTKYKFKVIAYNSEGKSSPSEVVEFSTCPDKPGVPAKPSVKGK VHSHGFKITWDPPRDNGGAPINKYVVEMAEGSNGSKWDMIYSGATREHLCDRLTPGCYYRLRVYCISDGGQSAVSESLLVQTPAVPPGPCLPPRLQGRPKAKEIQLRWGPPQVDGGSPISCYAVEMTP ADKDEPRDVYQGSEVECTVSSLLPGKTYSFRLRAANRIGFGPFSEKYDITTAPGPPDQCRPPQVTCRSATCAQVNWEIPLSNGTDITEYRLEWGGVEGSMQICYCGPGLSCELKGLSPATTYYCRVQA LSVVGAGPFSEVVACVTPPSVPAIVTCLQEIRDDDIEYPHYSPSTCLAISWEEPYDHGSEILAYSIDLGDKQPLTVGKVTSYVINSLQPDTTYRIRIQALNSLGAGPFSHTIKLKTKPLPPDPPRLEC VAFNHQNLKLKWGEGTPKTLATDAVQYHLQMEDKNGRFVSLYRGPCHTYKVQRLSESTSYKFCIQACNEAGEGPLSQEYVFTTPKSVPAALKAPKIEKINDHICEITWEYLQPMKGDPVIYNLQVMVG KDSEFKQIYRGPDTSFRYSSLQLNCEYRFRVCAIRQCQDPAGHQDLVGPYSTTVFFISQRTEPLASSNRDTVDSARTRRTLSDEQCAAVILVLFAFFSILIAFIIQYFVIK
hide sequence
RefSeq Acc Id:
XP_006252358 ⟸ XM_006252296
- Peptide Label:
isoform X1
- UniProtKB:
A0A8I5ZVT2 (UniProtKB/TrEMBL), A6HTP1 (UniProtKB/TrEMBL), D3ZEA0 (UniProtKB/TrEMBL), D3ZUE6 (UniProtKB/TrEMBL)
- Sequence:
MMAEHPPLLDTAQILSSDISLLSAPIVSADGTQQVILVQVNPGEAFTIRREDGQFQCITGPAQVPMMSPNGSVPPIYVPPGYAPQVIEDNGVRRVVVVPQSPEFHPGGHTVIHRSPHPPLPGFIPVPT MMPPPPRHMYSPVTGAGDMATQYMPQYQSSQVYADVDAHSTHGRSNFRDERSTKTYERLQKKLKDRQGTQKDKMSSPPPSPQKCPSPISEHNGLIKGQNTSGVNTGSARNRSGRGRGCTQVDQEIEEK DEETKAFEAFLSNIVRPVASDIQARTVLLTWSPPSSFVNGEVTETTVPEFFNYEILVSSTGKEGKYRSVYVGEETSVTLNDLKPATDYHAKVQAESNSIKGIPSEAESFTTLSCEPDTPNAPRIANRT KNSLTLQWKAPSDNGSKIQSFILEWDEGKGSGEFCQCYMGSQKQFKITKLSPAMGCKFRLSAKNDYGVSDFSEEVLYYTSGCAPSVPASPVLTKAGVTWLSLQWTKPSGTPSDEGISYILEMEEETSG YGFKPKYDGEDLAYTVKNLRRSTKYKFKVIAYNSEGKSSPSEVVEFSTCPDKPGVPAKPSVKGKVHSHGFKITWDPPRDNGGAPINKYVVEMAEGSNGSKWDMIYSGATREHLCDRLTPGCYYRLRVY CISDGGQSAVSESLLVQTPAVPPGPCLPPRLQGRPKAKEIQLRWGPPQVDGGSPISCYAVEMTPADKDEPRDVYQGSEVECTVSSLLPGKTYSFRLRAANRIGFGPFSEKYDITTAPGPPDQCRPPQV TCRSATCAQVNWEIPLSNGTDITEYRLEWGGVEGSMQICYCGPGLSCELKGLSPATTYYCRVQALSVVGAGPFSEVVACVTPPSVPAIVTCLQEIRDDDIEYPHYSPSTCLAISWEEPYDHGSEILAY SIDLGDKQPLTVGKVTSYVINSLQPDTTYRIRIQALNSLGAGPFSHTIKLKTKPLPPDPPRLECVAFNHQNLKLKWGEGTPKTLATDAVQYHLQMEDKNGRFVSLYRGPCHTYKVQRLSESTSYKFCI QACNEAGEGPLSQEYVFTTPKSVPAALKAPKIEKINDHICEITWEYLQPMKGDPVIYNLQVMVGKDSEFKQIYRGPDTSFRYSSLQLNCEYRFRVCAIRQCQDPAGHQDLVGPYSTTVFFISQRTEPL ASSNRDTVDSARTRRTLSDEQCAAVILVLFAFFSILIAFIIQYFVIK
hide sequence
RefSeq Acc Id:
XP_006252361 ⟸ XM_006252299
- Peptide Label:
isoform X2
- UniProtKB:
A0A8I6A5F5 (UniProtKB/TrEMBL), A0A8I6AXU9 (UniProtKB/TrEMBL)
- Sequence:
MAAVDSCGSSRRMRTLKKTHATVILVQVNPGEAFTIRREDGQFQCITGPAQVPMMSPNGSVPPI YVPPGYAPQVIEDNGVRRVVVVPQSPEFHPGGHTVIHRSPHPPLPGFIPVPTMMPPPPRHMYSPVTGAGDMATQYMPQYQSSQVYADVDAHSTHGRSNFRDERSTKTYERLQKKLKDRQGTQKDKMSS PPPSPQKCPSPISEHNGLIKGQNTSGVNTGSARNRSGRGRGCTQVDQEIEEKDEETKAFEAFLSNIVRPVASDIQARTVLLTWSPPSSFVNGEVTETTVPEFFNYEILVSSTGKEGKYRSVYVGEETS VTLNDLKPATDYHAKVQAESNSIKGIPSEAESFTTLSCEPDTPNAPRIANRTKNSLTLQWKAPSDNGSKIQSFILEWDEGKGSGEFCQCYMGSQKQFKITKLSPAMGCKFRLSAKNDYGVSDFSEEVL YYTSGCAPSVPASPVLTKAGVTWLSLQWTKPSGTPSDEGISYILEMEEETSGYGFKPKYDGEDLAYTVKNLRRSTKYKFKVIAYNSEGKSSPSEVVEFSTCPDKPGVPAKPSVKGKVHSHGFKITWDP PRDNGGAPINKYVVEMAEGSNGSKWDMIYSGATREHLCDRLTPGCYYRLRVYCISDGGQSAVSESLLVQTPAVPPGPCLPPRLQGRPKAKEIQLRWGPPQVDGGSPISCYAVEMTPADKDEPRDVYQG SEVECTVSSLLPGKTYSFRLRAANRIGFGPFSEKYDITTAPGPPDQCRPPQVTCRSATCAQVNWEIPLSNGTDITEYRLEWGGVEGSMQICYCGPGLSCELKGLSPATTYYCRVQALSVVGAGPFSEV VACVTPPSVPAIVTCLQEIRDDDIEYPHYSPSTCLAISWEEPYDHGSEILAYSIDLGDKQPLTVGKVTSYVINSLQPDTTYRIRIQALNSLGAGPFSHTIKLKTKPLPPDPPRLECVAFNHQNLKLKW GEGTPKTLATDAVQYHLQMEDKNGRFVSLYRGPCHTYKVQRLSESTSYKFCIQACNEAGEGPLSQEYVFTTPKSVPAALKAPKIEKINDHICEITWEYLQPMKGDPVIYNLQVMVGKDSEFKQIYRGP DTSFRYSSLQLNCEYRFRVCAIRQCQDPAGHQDLVGPYSTTVFFISQRTEPLASSNRDTVDSARTRRTLSDEQCAAVILVLFAFFSILIAFIIQYFVIK
hide sequence
RefSeq Acc Id:
XP_006252362 ⟸ XM_006252300
- Peptide Label:
isoform X3
- UniProtKB:
A0A8I6AXU9 (UniProtKB/TrEMBL)
- Sequence:
MTQMSSGQLHFGSMQPIMVILVQVNPGEAFTIRREDGQFQCITGPAQVPMMSPNGSVPPIYVPPGYAPQVIEDNGVRRVVVVPQSPEFHPGGHTVIHRSPHPPLPGFIPVPTMMPPPPRHMYSPVTGA GDMATQYMPQYQSSQVYADVDAHSTHGRSNFRDERSTKTYERLQKKLKDRQGTQKDKMSSPPPSPQKCPSPISEHNGLIKGQNTSGVNTGSARNRSGRGRGCTQVDQEIEEKDEETKAFEAFLSNIVR PVASDIQARTVLLTWSPPSSFVNGEVTETTVPEFFNYEILVSSTGKEGKYRSVYVGEETSVTLNDLKPATDYHAKVQAESNSIKGIPSEAESFTTLSCEPDTPNAPRIANRTKNSLTLQWKAPSDNGS KIQSFILEWDEGKGSGEFCQCYMGSQKQFKITKLSPAMGCKFRLSAKNDYGVSDFSEEVLYYTSGCAPSVPASPVLTKAGVTWLSLQWTKPSGTPSDEGISYILEMEEETSGYGFKPKYDGEDLAYTV KNLRRSTKYKFKVIAYNSEGKSSPSEVVEFSTCPDKPGVPAKPSVKGKVHSHGFKITWDPPRDNGGAPINKYVVEMAEGSNGSKWDMIYSGATREHLCDRLTPGCYYRLRVYCISDGGQSAVSESLLV QTPAVPPGPCLPPRLQGRPKAKEIQLRWGPPQVDGGSPISCYAVEMTPADKDEPRDVYQGSEVECTVSSLLPGKTYSFRLRAANRIGFGPFSEKYDITTAPGPPDQCRPPQVTCRSATCAQVNWEIPL SNGTDITEYRLEWGGVEGSMQICYCGPGLSCELKGLSPATTYYCRVQALSVVGAGPFSEVVACVTPPSVPAIVTCLQEIRDDDIEYPHYSPSTCLAISWEEPYDHGSEILAYSIDLGDKQPLTVGKVT SYVINSLQPDTTYRIRIQALNSLGAGPFSHTIKLKTKPLPPDPPRLECVAFNHQNLKLKWGEGTPKTLATDAVQYHLQMEDKNGRFVSLYRGPCHTYKVQRLSESTSYKFCIQACNEAGEGPLSQEYV FTTPKSVPAALKAPKIEKINDHICEITWEYLQPMKGDPVIYNLQVMVGKDSEFKQIYRGPDTSFRYSSLQLNCEYRFRVCAIRQCQDPAGHQDLVGPYSTTVFFISQRTEPLASSNRDTVDSARTRRT LSDEQCAAVILVLFAFFSILIAFIIQYFVIK
hide sequence
RefSeq Acc Id:
XP_006252363 ⟸ XM_006252301
- Peptide Label:
isoform X5
- UniProtKB:
A0A8I6AMX6 (UniProtKB/TrEMBL), A0A8I6AXU9 (UniProtKB/TrEMBL)
- Sequence:
MSGPAQVPMMSPNGSVPPIYVPPGYAPQVIEDNGVRRVVVVPQSPEFHPGGHTVIHRSPHPPLP GFIPVPTMMPPPPRHMYSPVTGAGDMATQYMPQYQSSQVYADVDAHSTHGRSNFRDERSTKTYERLQKKLKDRQGTQKDKMSSPPPSPQKCPSPISEHNGLIKGQNTSGVNTGSARNRSGRGRGCTQV DQEIEEKDEETKAFEAFLSNIVRPVASDIQARTVLLTWSPPSSFVNGEVTETTVPEFFNYEILVSSTGKEGKYRSVYVGEETSVTLNDLKPATDYHAKVQAESNSIKGIPSEAESFTTLSCEPDTPNA PRIANRTKNSLTLQWKAPSDNGSKIQSFILEWDEGKGSGEFCQCYMGSQKQFKITKLSPAMGCKFRLSAKNDYGVSDFSEEVLYYTSGCAPSVPASPVLTKAGVTWLSLQWTKPSGTPSDEGISYILE MEEETSGYGFKPKYDGEDLAYTVKNLRRSTKYKFKVIAYNSEGKSSPSEVVEFSTCPDKPGVPAKPSVKGKVHSHGFKITWDPPRDNGGAPINKYVVEMAEGSNGSKWDMIYSGATREHLCDRLTPGC YYRLRVYCISDGGQSAVSESLLVQTPAVPPGPCLPPRLQGRPKAKEIQLRWGPPQVDGGSPISCYAVEMTPADKDEPRDVYQGSEVECTVSSLLPGKTYSFRLRAANRIGFGPFSEKYDITTAPGPPD QCRPPQVTCRSATCAQVNWEIPLSNGTDITEYRLEWGGVEGSMQICYCGPGLSCELKGLSPATTYYCRVQALSVVGAGPFSEVVACVTPPSVPAIVTCLQEIRDDDIEYPHYSPSTCLAISWEEPYDH GSEILAYSIDLGDKQPLTVGKVTSYVINSLQPDTTYRIRIQALNSLGAGPFSHTIKLKTKPLPPDPPRLECVAFNHQNLKLKWGEGTPKTLATDAVQYHLQMEDKNGRFVSLYRGPCHTYKVQRLSES TSYKFCIQACNEAGEGPLSQEYVFTTPKSVPAALKAPKIEKINDHICEITWEYLQPMKGDPVIYNLQVMVGKDSEFKQIYRGPDTSFRYSSLQLNCEYRFRVCAIRQCQDPAGHQDLVGPYSTTVFFI SQRTEPLASSNRDTVDSARTRRTLSDEQCAAVILVLFAFFSILIAFIIQYFVIK
hide sequence
Ensembl Acc Id:
ENSRNOP00000062773 ⟸ ENSRNOT00000066888
RefSeq Acc Id:
XP_038949286 ⟸ XM_039093358
- Peptide Label:
isoform X4
- UniProtKB:
A0A8I6AXU9 (UniProtKB/TrEMBL)
Ensembl Acc Id:
ENSRNOP00000082902 ⟸ ENSRNOT00000111875
Ensembl Acc Id:
ENSRNOP00000096946 ⟸ ENSRNOT00000101367
Ensembl Acc Id:
ENSRNOP00000087923 ⟸ ENSRNOT00000096165
Ensembl Acc Id:
ENSRNOP00000093978 ⟸ ENSRNOT00000100330
RefSeq Acc Id:
NP_001398968 ⟸ NM_001412039
- UniProtKB:
A6HTP1 (UniProtKB/TrEMBL), D3ZEA0 (UniProtKB/TrEMBL), D3ZUE6 (UniProtKB/TrEMBL), A0A8I5ZVT2 (UniProtKB/TrEMBL)
Date
Current Symbol
Current Name
Previous Symbol
Previous Name
Description
Reference
Status
2008-04-30
Fndc3a
fibronectin type III domain containing 3a
Fndc3a_predicted
fibronectin type III domain containing 3a (predicted)
'predicted' is removed
2292626
APPROVED
2006-03-30
Fndc3a_predicted
fibronectin type III domain containing 3a (predicted)
Fndc3_predicted
fibronectin type III domain containing 3 (predicted)
Symbol and Name updated
1299863
APPROVED
2005-01-12
Fndc3_predicted
fibronectin type III domain containing 3 (predicted)
Symbol and Name status set to approved
70820
APPROVED