Overview
Sequences
The following sequences are available for this feature:
Legend: polypeptideexonCDS Hold the cursor over a type above to highlight its positions in the sequence below.ATGGAGAGGCTCATGCTGGTGGCACCACCGGAGAACATGAAGGGCTATAATAGAAAAGGGTTCACCGTGCGGCCCATGATGCATGGCCGACTTTCATTGAACGAGTGGCGAAGTGCACTCTCTGGGATTGAATTTTGTATAAGGTGGGTAGTTCCTTGGTGGGGAATTGCTGCCATGAGACATGCCCCTGGTTCTACTGCTTTGAGGGTGTCAAGCCTCACAATGCTGGTCTTCTACTCGCCTGCCCGAGTGATGAGACAGTATGGCTTGAAACAGGAGATCTCGGACTGTACTGAAGAGAACCCGAAACCTGTTGTGCTGAATGCGAGTCGACTTGAAGTTTGGAGGCGGTATTGGGTTGCCAAACCATTCTTGAGTGTTCAATTCCCACCTGAGCCAGTTACTCTGTCTGCGGGGTATATTATATGGATGAAAGGCCCAAGCTAGAGGGACATTCCTTTCTCTGGACCAGCTAGAGTCCGAGGTTCTAGAGCTGAAGAAGGTGATGGGAGTGCGGCTCGTCCGGTGCTTGACCGATCTGAGTCCAAAGGAGGTTCGTCATCCTCCCGTTTTGGAAGGCTTGCAAGTTCCTTCTCCCGCCGCTTGGGCAAGGGGAAGATTGATGATTGATTGCAGGAGGAGCCAGGGGATAGTACTCAAGGTGCCAAGACTCAAGAGCATAGTCGCCCGACCCTAAATCTTTGTAGGCTGAATGTGTTTGAATTGTACTAGAAGGAATTGTGTTTGAAGATTGTGTTTAGAAAATGTGTTTAGGAGGTGAAAAGGCTTTTGAACTTTGCTTCACTTGATCCCAACCTTGTATTTGAATTAGCTTTGAAGGCCTTAGAGCCAAATAAAAAGTTATTGTGTTAAATTCCGCTTGAACATGCTTTGCTTTGAAATTGGAACATTTGGAATAAAGACAACAATAATTAGATTTTGAATTTTGAGTTTGATTTGATTTTTAGGATGCCCTTAATTGAGGAAATTTTGAATTTTTTGTTTTAAAGCAAAAATTTTGAATTTTTTTGTATTAAAGTGGCCGGTCCTCGGAATGACGTTGCCTACGTGTCCCGTTAAAGAATCAGGCCGGGCGTAGTTCTAACTACCTTACAGGACTTTGAATTGAATTCTCGAATTCGAATATGGTGCTTAGACATAGAACTTCTTGAGTTGATCTGAAGGAAATAATGCCCTTGGTCCAAGTATGCATTTAATGTTAAGTCTAATAAATGCGGTTCAGCATTAATTAAACAAGTTAATAATTCAGTGAGATCAAGTGAGCTGAATGCCTAGCTAGAGGCCGCTTCAGTTCAAGTGGAATTAATGATATTAATCCACAGCTTCCTCTTGACTGAACCCGTAGGGTCACACAAATAGTACGTAAACGGATCAAGTATTTAATGGCATTAAATACTCCATCTATGGATATTCGGAATTGACGGATCTTGGTTTCAGTGGGAGCTGAGATCGTCAAAGGCAAGCAAATATGAATCGTATCGGAAATATAAATATTATCCAAGTCGTAGATGTTGCCGGAAACGGAAACATGGTACGTATCGGAAAATATTATTGGAAATGGAAATATTGCCGGAATGTGAAATATTGCCGGAAACGAAAATATTGTCGGAAACGGAAATATTGTCAGAATCGGAAAATAATTCCGGAAACGGAAATATTAAATATTTGTTCGAAACGGAAATTAATTCCGGAATCGGAAATATTAATCAATACCGCAATTTCAATACCGCAATTTCAATTCCGCACTTTCAATTCCGCATCTTTACTTGCCTAGTCCATTTCTAGGCAATGTGGACCTACTCCCTAGTCCTTTTCTAGGGGGGTCTTGTATTTACTAATTCCGCGCTTTATTTAGTATTGTGATGTTGCTTTATTTGCTTTATCGCTTTCATCACCAACATGCTAAATACAACAAAATACAAAGGTTACATCATGCTTAACGAAGATATTTTTGGACAAACCGGCCTTAGGTTCCTTAAATCAATCTTTAAAGCAAAGTGACCACCGTACAACTAGAAATTCTATTTTTGCTCTAAATTCAAACCCACATAGTCTAATCTAGGGTTTATTTTCGAACTAATGTTGTGCCAACGTACTTGAACATTTCTAAAGCTCGCCGAATAAGCACTTTCGTTCCCGAGCCTGGATCTCACCCATCCGTTTCAAGGATTCAAGGTCTTATCCAAAAATAGAGTCATTTGCGGTCTTTCCAAACAAGACCTTAAATAAAGTTTGGTGGCGACTCCTTCGAGGTGCAAAAATTCAAACTGAGCCGGCCGGCCTCCTAAACCCCCCTTGTAGGAACGGGGAAAAACCCCCCTTACACTAGACCTTACGCAAGCTTTCATGGCAGAAGCTTGTGCCCTCCACAAAGGCCTCAAAGAAGCGAAGAATCTCAACATCAAAAACATTTATATTGAAGGTGATAACCTATTAGTCATCAATGCAGTCAAAGGAACTTGGAACATCCCTTGGAAACTCCACTATATTATTCAGGATATCCAGGATATTCTCAACTTTTTCGACACTTGGGATATCAAGCACGTCTTCAGATAAGCAAATCGAGCAGCAGATTGGATAGCAAATGTAGGACATTTAGTTAGTAATACTATGTGTAGGGGTGTGCACCGGTCCAAAACCGGTCCGGTCCGGACCGGAACCGGAATTGACCAGAACCGGAATCCTAAAATTTCATTGTCCGGAGACCGATCCGGAAAATTCCGGACAGGACCGGTTTTGAACCTGTTAGACCGGATTTTTCATGAAAATTGGCACTCACAATTTAAAAGCCAAAAATGAGTTAATCAAGGAAACCTTCAAGCAAAATAACAAAAACTCATGAATCCAGAAAATCAAACTACACTAAACTTCACAAATATAGATTATTTGCACCAAAGAAATCGAAGCTTCTGCAATCAAACTTTGCTTTTGCCGACAACCAAAATCATCTTCGAAGCTTGAAAATACCCCCAAAATTTTATTCATAGTTAAGGACTCATAAATTGGAGAAAGAGATGGATAAATAAAAACGATGGTCAAATTACTGGGTTTTACTCCTAAAATTGATGGGACCTAAGTATAATTTAAGTATTATGGAGTAGATCTGAGATGAAAGGTATGAGTGTATAAGTGTATAACCGTATGAATATGTGGGAGGAGAGAGAAGAAGGAGAGAGAAAGAATGGGATATGACTTATGGAGAAGACAAATGAGACAATGACGGCTGGAAAGTTGGGGTATTTCCCTAAAAGAATAAAAAGAACATAATCCATTCCTTTAACCGGGTTTCCGGACCAGACCGGAAAATACCGGTTTTTTTCCGGTCCGGTCCGGAATCCGGAATCACTAATTTTACTTGACCGGTGCCCGGTCATGAATTAACCGGTCCGGACCGGACCGGACAATTCAGGTCCCGGTCAAATTATGCACACTCCTAACTATGTGTATTGAATCTTGTAATAGTCCCCAATTACTTTCCATTTTAGATAGTGATTACTTAGGAGAACCTCTCGTGCGGAGGGGCTCCTAAGGTACTTTCTCCTTACCTTTCAAAAAAAAAAATGTTCAAGAAAATACCAACACACCCTTTTGCTTGTTATTGTACGTATACCCGAACTATTAATGACAACTATATTGTAAATGTATTTATGGTTTCGTATCTCTATTATATACACATCCAACTTTAGCATGTCATTTTTAACATTTATGTATTCCTTGTATTTACCTAAAACTTTAACTGCTCGTCTTTTACGCAGTATTTTAACAAAATAATTTTTATAACTTGGGGATCTCCACGCTAGCCCACGGTCCAACGTGAACCAAAAATTGACGAACATTGGGTCGGTTAAGTTAAAAAAGAAAGTGATGAAAGATTGACTATAGAATTAAATTACCGATCGTTGTTCCTCAGTCGTCGTCATCTTCATCCCAACACTGGTCTTTCTTTCTTCTCGCCGTCCTTCTTCCACAACTCACCACCTTCTATCTCCTCCAGGTACAATCTCTCACCTCTCTGCTCACTTCTCCCAATTCGTTTCATTTTGGGTTCAATTCAATGCTTTTACTTTCTTCCAACTAATTTAATTCCATCTTCCCCCCTTTATTTATGTTTTCGAATTTGTTTTATGAGTTGCTACTTCACCCTGATTAATTTGATTGCGGTCACAAATCTTTTAATTGGATCTAGCAGATTTGTCGGCTCTTTGGATCTTTGACATCTTGTTATATCTGAATTGGGATATTGTTCGAATTTGTTAGGTCAGAGTATGATCTTTGCTTTTGGTTTGATTGTTTTGAATATGTGATTCTATTATGATTTTTTTTCCCGAGTTGAGTTTGTTGGTTAATGAGTTGTGTTTGATTGTTGTCGACAAGTTTTTTGTAGCTTATTAATTTAATATATCTACCTGGTGTAACCATGTGTGTTTTTAAGTATCAATGCATCGTATTGAGTTGTTGATTTGGATTGATATCGAATCCTCATAGTTGATGATGCTGGAAATAAAGAGAATTTCTTGTAATGCTTGAGGAAGAGTTTTGTGTTGTACTTATTGTGATCAGGTTGAGGCTTTCCTTTATGATGTAGCCAGGTAAATGACATTTTGAGCATAGAAGCCTTCTCTGCTGCCGAATGTTCTGTTTTGCCGAATATTTTTAGCCCATTTACTCTTATTTAAGGAAAAAGGTGGACTATGTTTTGTTTAAATAGCATTACTGTTGAAATAACTGGTAAAAATTTATAGAAATGGGACTTTGAGTTAAGTTGTGTGACCAAATATAGATGCCGAGGATGCCATTTGTTATGCATTTTTGTTTCTAGCAAGAATCAACTTCCGTTCTTGAATGTTGCTATGGGTGTTCAAGTTCGGTTTTTTTCCAAGGAAGTCCTAAATCTTGGCGCCTCCTTCATTACACTTCTTTAAACTTCTGTTTTGGGGGAAGTTCGGGAGGGGGTGTTTAATTTTATATTTTTATACATATTCATTTTTTGTCTTGTTTCCTAATGTGATAGACAGTCACATGGTTCAAATTTGCTGGAAAAGTCTATAGGATATAGCTTTCTTTTGATGCACTTGTCTCTTATTCCGTGTTTCTATTTTTTTCCTACCTAAATAAATATGTAGTACACCATGCACGTAGAGTTTCATCTACTCTTGATGTTATAAGATTATACTATCTGGTTAATTGCAGATATCCTCTCAAAGGAACCATGTTTGCCAATTCAAACACGACATCATGGGCAATATCTTCAGATAGCTTGGAGAGAAATACCGCAAATGTGCCTAACTCTATTAATGTGGCAAAACTATCTGGTAGCCCCCCAAGCCGAACTTCCCCCCCGGGTCCTGTTGCTATTTTGTGGGACATCGAAAACTGCCCTGTCCCTAGTGATGTCCGCCCTGAAGATGTTGCTGGGAACATCAGAATGGCATTACGGGTCCATCCTGTGATACAAGGAGCTGTCACATTGTTCTCTGCATATGGAGACTTTAATGCATTTCCTAGGAGAGTTAGAGAAGGATGCCAAAGGACAGGTGTTAAACTTGTTGATGTTCCGAATGGGAGAAAAGATGCAGCTGATAAGGCTATTTTGGTTGACATGTTCCTTTTTGCCCTCGACAATTCTCCACCTTCGTCCATCATGCTGATCTCGGGGGATGTGGACTTTGCTCCTGCTCTGCATATTCTTGGTCAACGTGGATATACTGTGATCCTTGTCATTCCTTCAGGTGTGGGTGTTTCATCTGCCTTGTCTAATGCTGGTAGGTTTGTCTGGGATTGGCCTAGTGTGGCACGGGGAGAGGGTTATGTGCCTCCAAATATGGGCCCTCGTGGGGGACCTGATAATGCTGGGTTTTTGATGGGTTTCCATATAAGTGAAAATATTGATGGAAATGATGAGGAAGCAATTGTATATCGAGGACTCTCACAAAGCTATTACAACTCAAGGGATTTTACAATAGTTTCCCAGTCTTTATCCGAGTACAACACTGGTACTTCAGCTGGTTTTCCTGCCTTTACCACTTCACTAAGATCAAATTCTATGCCTTCTGGTTTAAATGAAGTTGCGGGTCCTACATCAGGTTCTGTTGCCTTAATTGACCAAAATGATTCAAATCCGTGGGTACAAATACAACCTGGTGATGTTAACAGTTTGAAGGCACAGTTAGTGAAACTGCTTGAATTGTTTGGTGGATGTTTACCCCTGGTTCGTGTTCCTGCTGAATATCAGAAGGTTTTTGGTAGGACTCTTTACATCTCAGAGTACGGGGCATGCAAGCTCGTGAATCTCCTCAAGAAAATGTCAGATGTTGTGTCTGTTGAAGGGAAGGGTCAAAAGAAGTTTGTGTACCTTCGGAATGGGAGGGCAGGCCCTTGTGCTCCTTCACTTGCACCAAAGAGTAATAAGAAAGGGAAAGGAGTTCAAGAAGAGAACATGGAAACTAATGTTGGTTGTGGCTCATCTGATGAGTTCTCCGACGATGAGAGAGTGGTCGTAGAAGATCAAGAGCGAATAAGTGTTACAGAGAATTCAACTTTGCGCACAGTTGCACAATATGCACTTGAGGACCATAACTTGTTACAATTTAAGCATGAGCTGGAGGAAATATTGGTGAGTTATTCATGTGGAATATTTCTGAGTTATTTTGAAAATATATACCTGCAAAGGTACAAGAAACCTTTAGATTATCGGAAATTTGGGGTAAATGATCTGGAGGAATTGTTCGAGAAGCTGAAAGATGTTGTGCTTTTACACGAGGAACCAGGTACTAAAAAGAAATTTTTAGCTCCTGCTCTTGGTTAA ATGGAGAGGCTCATGCTGGTGGCACCACCGGAGAACATGAAGGGCTATAATAGAAAAGGGTTCACCGTGCGGCCCATGATGCATGGCCGACTTTCATTGAACGAGTGGCGAAGTGCACTCTCTGGGATTGAATTTTGTATAAGGTGGGTAGTTCCTTGGTGGGGAATTGCTGCCATGAGACATGCCCCTGGTTCTACTGCTTTGAGGGTGTCAAGCCTCACAATGCTGGTCTTCTACTCGCCTGCCCGAGTGATGAGACAGTATGGCTTGAAACAGGAGATCTCGGACTGTACTGAAGAGAACCCGAAACCTGTTGTGCTGAATGCGAGTCGACTTGAAGTTTGGAGGCGGTATTGGGTTGCCAAACCATTCTTGAGTGTTCAATTCCCACCTGAGCCAGTTACTCTGTCTGCGGGTCGTCGTCATCTTCATCCCAACACTGGTCTTTCTTTCTTCTCGCCGTCCTTCTTCCACAACTCACCACCTTCTATCTCCTCCAGATATCCTCTCAAAGGAACCATGTTTGCCAATTCAAACACGACATCATGGGCAATATCTTCAGATAGCTTGGAGAGAAATACCGCAAATGTGCCTAACTCTATTAATGTGGCAAAACTATCTGGTAGCCCCCCAAGCCGAACTTCCCCCCCGGGTCCTGTTGCTATTTTGTGGGACATCGAAAACTGCCCTGTCCCTAGTGATGTCCGCCCTGAAGATGTTGCTGGGAACATCAGAATGGCATTACGGGTCCATCCTGTGATACAAGGAGCTGTCACATTGTTCTCTGCATATGGAGACTTTAATGCATTTCCTAGGAGAGTTAGAGAAGGATGCCAAAGGACAGGTGTTAAACTTGTTGATGTTCCGAATGGGAGAAAAGATGCAGCTGATAAGGCTATTTTGGTTGACATGTTCCTTTTTGCCCTCGACAATTCTCCACCTTCGTCCATCATGCTGATCTCGGGGGATGTGGACTTTGCTCCTGCTCTGCATATTCTTGGTCAACGTGGATATACTGTGATCCTTGTCATTCCTTCAGGTGTGGGTGTTTCATCTGCCTTGTCTAATGCTGGTAGGTTTGTCTGGGATTGGCCTAGTGTGGCACGGGGAGAGGGTTATGTGCCTCCAAATATGGGCCCTCGTGGGGGACCTGATAATGCTGGGTTTTTGATGGGTTTCCATATAAGTGAAAATATTGATGGAAATGATGAGGAAGCAATTGTATATCGAGGACTCTCACAAAGCTATTACAACTCAAGGGATTTTACAATAGTTTCCCAGTCTTTATCCGAGTACAACACTGGTACTTCAGCTGGTTTTCCTGCCTTTACCACTTCACTAAGATCAAATTCTATGCCTTCTGGTTTAAATGAAGTTGCGGGTCCTACATCAGGTTCTGTTGCCTTAATTGACCAAAATGATTCAAATCCGTGGGTACAAATACAACCTGGTGATGTTAACAGTTTGAAGGCACAGTTAGTGAAACTGCTTGAATTGTTTGGTGGATGTTTACCCCTGGTTCGTGTTCCTGCTGAATATCAGAAGGTTTTTGGTAGGACTCTTTACATCTCAGAGTACGGGGCATGCAAGCTCGTGAATCTCCTCAAGAAAATGTCAGATGTTGTGTCTGTTGAAGGGAAGGGTCAAAAGAAGTTTGTGTACCTTCGGAATGGGAGGGCAGGCCCTTGTGCTCCTTCACTTGCACCAAAGAGTAATAAGAAAGGGAAAGGAGTTCAAGAAGAGAACATGGAAACTAATGTTGGTTGTGGCTCATCTGATGAGTTCTCCGACGATGAGAGAGTGGTCGTAGAAGATCAAGAGCGAATAAGTGTTACAGAGAATTCAACTTTGCGCACAGTTGCACAATATGCACTTGAGGACCATAACTTGTTACAATTTAAGCATGAGCTGGAGGAAATATTGGTGAGTTATTCATGTGGAATATTTCTGAGTTATTTTGAAAATATATACCTGCAAAGGTACAAGAAACCTTTAGATTATCGGAAATTTGGGGTAAATGATCTGGAGGAATTGTTCGAGAAGCTGAAAGATGTTGTGCTTTTACACGAGGAACCAGGTACTAAAAAGAAATTTTTAGCTCCTGCTCTTGGTTAA ATGGAGAGGCTCATGCTGGTGGCACCACCGGAGAACATGAAGGGCTATAATAGAAAAGGGTTCACCGTGCGGCCCATGATGCATGGCCGACTTTCATTGAACGAGTGGCGAAGTGCACTCTCTGGGATTGAATTTTGTATAAGGTGGGTAGTTCCTTGGTGGGGAATTGCTGCCATGAGACATGCCCCTGGTTCTACTGCTTTGAGGGTGTCAAGCCTCACAATGCTGGTCTTCTACTCGCCTGCCCGAGTGATGAGACAGTATGGCTTGAAACAGGAGATCTCGGACTGTACTGAAGAGAACCCGAAACCTGTTGTGCTGAATGCGAGTCGACTTGAAGTTTGGAGGCGGTATTGGGTTGCCAAACCATTCTTGAGTGTTCAATTCCCACCTGAGCCAGTTACTCTGTCTGCGGGTCGTCGTCATCTTCATCCCAACACTGGTCTTTCTTTCTTCTCGCCGTCCTTCTTCCACAACTCACCACCTTCTATCTCCTCCAGATATCCTCTCAAAGGAACCATGTTTGCCAATTCAAACACGACATCATGGGCAATATCTTCAGATAGCTTGGAGAGAAATACCGCAAATGTGCCTAACTCTATTAATGTGGCAAAACTATCTGGTAGCCCCCCAAGCCGAACTTCCCCCCCGGGTCCTGTTGCTATTTTGTGGGACATCGAAAACTGCCCTGTCCCTAGTGATGTCCGCCCTGAAGATGTTGCTGGGAACATCAGAATGGCATTACGGGTCCATCCTGTGATACAAGGAGCTGTCACATTGTTCTCTGCATATGGAGACTTTAATGCATTTCCTAGGAGAGTTAGAGAAGGATGCCAAAGGACAGGTGTTAAACTTGTTGATGTTCCGAATGGGAGAAAAGATGCAGCTGATAAGGCTATTTTGGTTGACATGTTCCTTTTTGCCCTCGACAATTCTCCACCTTCGTCCATCATGCTGATCTCGGGGGATGTGGACTTTGCTCCTGCTCTGCATATTCTTGGTCAACGTGGATATACTGTGATCCTTGTCATTCCTTCAGGTGTGGGTGTTTCATCTGCCTTGTCTAATGCTGGTAGGTTTGTCTGGGATTGGCCTAGTGTGGCACGGGGAGAGGGTTATGTGCCTCCAAATATGGGCCCTCGTGGGGGACCTGATAATGCTGGGTTTTTGATGGGTTTCCATATAAGTGAAAATATTGATGGAAATGATGAGGAAGCAATTGTATATCGAGGACTCTCACAAAGCTATTACAACTCAAGGGATTTTACAATAGTTTCCCAGTCTTTATCCGAGTACAACACTGGTACTTCAGCTGGTTTTCCTGCCTTTACCACTTCACTAAGATCAAATTCTATGCCTTCTGGTTTAAATGAAGTTGCGGGTCCTACATCAGGTTCTGTTGCCTTAATTGACCAAAATGATTCAAATCCGTGGGTACAAATACAACCTGGTGATGTTAACAGTTTGAAGGCACAGTTAGTGAAACTGCTTGAATTGTTTGGTGGATGTTTACCCCTGGTTCGTGTTCCTGCTGAATATCAGAAGGTTTTTGGTAGGACTCTTTACATCTCAGAGTACGGGGCATGCAAGCTCGTGAATCTCCTCAAGAAAATGTCAGATGTTGTGTCTGTTGAAGGGAAGGGTCAAAAGAAGTTTGTGTACCTTCGGAATGGGAGGGCAGGCCCTTGTGCTCCTTCACTTGCACCAAAGAGTAATAAGAAAGGGAAAGGAGTTCAAGAAGAGAACATGGAAACTAATGTTGGTTGTGGCTCATCTGATGAGTTCTCCGACGATGAGAGAGTGGTCGTAGAAGATCAAGAGCGAATAAGTGTTACAGAGAATTCAACTTTGCGCACAGTTGCACAATATGCACTTGAGGACCATAACTTGTTACAATTTAAGCATGAGCTGGAGGAAATATTGGTGAGTTATTCATGTGGAATATTTCTGAGTTATTTTGAAAATATATACCTGCAAAGGTACAAGAAACCTTTAGATTATCGGAAATTTGGGGTAAATGATCTGGAGGAATTGTTCGAGAAGCTGAAAGATGTTGTGCTTTTACACGAGGAACCAGGTACTAAAAAGAAATTTTTAGCTCCTGCTCTTGGTTAA MERLMLVAPPENMKGYNRKGFTVRPMMHGRLSLNEWRSALSGIEFCIRWVVPWWGIAAMRHAPGSTALRVSSLTMLVFYSPARVMRQYGLKQEISDCTEENPKPVVLNASRLEVWRRYWVAKPFLSVQFPPEPVTLSAGRRHLHPNTGLSFFSPSFFHNSPPSISSRYPLKGTMFANSNTTSWAISSDSLERNTANVPNSINVAKLSGSPPSRTSPPGPVAILWDIENCPVPSDVRPEDVAGNIRMALRVHPVIQGAVTLFSAYGDFNAFPRRVREGCQRTGVKLVDVPNGRKDAADKAILVDMFLFALDNSPPSSIMLISGDVDFAPALHILGQRGYTVILVIPSGVGVSSALSNAGRFVWDWPSVARGEGYVPPNMGPRGGPDNAGFLMGFHISENIDGNDEEAIVYRGLSQSYYNSRDFTIVSQSLSEYNTGTSAGFPAFTTSLRSNSMPSGLNEVAGPTSGSVALIDQNDSNPWVQIQPGDVNSLKAQLVKLLELFGGCLPLVRVPAEYQKVFGRTLYISEYGACKLVNLLKKMSDVVSVEGKGQKKFVYLRNGRAGPCAPSLAPKSNKKGKGVQEENMETNVGCGSSDEFSDDERVVVEDQERISVTENSTLRTVAQYALEDHNLLQFKHELEEILVSYSCGIFLSYFENIYLQRYKKPLDYRKFGVNDLEELFEKLKDVVLLHEEPGTKKKFLAPALG Relationships
This mRNA is a part of the following gene feature(s):
The following polypeptide feature(s) derives from this mRNA:
The following exon feature(s) are a part of this mRNA:
The following CDS feature(s) are a part of this mRNA:
Homology
BLAST of Spo22181.1 vs. NCBI nr
Match: gi|902234646|gb|KNA23530.1| (hypothetical protein SOVF_022110 [Spinacia oleracea]) HSP 1 Score: 1058.1 bits (2735), Expect = 6.600e-306 Identity = 531/531 (100.00%), Postives = 531/531 (100.00%), Query Frame = 1
BLAST of Spo22181.1 vs. NCBI nr
Match: gi|731328651|ref|XP_010675168.1| (PREDICTED: uncharacterized protein LOC104891205 [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 869.4 bits (2245), Expect = 4.300e-249 Identity = 448/535 (83.74%), Postives = 478/535 (89.35%), Query Frame = 1
BLAST of Spo22181.1 vs. NCBI nr
Match: gi|731383305|ref|XP_010647742.1| (PREDICTED: uncharacterized protein LOC104878785 [Vitis vinifera]) HSP 1 Score: 704.9 bits (1818), Expect = 1.400e-199 Identity = 370/531 (69.68%), Postives = 433/531 (81.54%), Query Frame = 1
BLAST of Spo22181.1 vs. NCBI nr
Match: gi|147795296|emb|CAN64994.1| (hypothetical protein VITISV_001778 [Vitis vinifera]) HSP 1 Score: 702.2 bits (1811), Expect = 9.100e-199 Identity = 368/531 (69.30%), Postives = 431/531 (81.17%), Query Frame = 1
BLAST of Spo22181.1 vs. NCBI nr
Match: gi|802640711|ref|XP_012078960.1| (PREDICTED: uncharacterized protein LOC105639493 [Jatropha curcas]) HSP 1 Score: 701.4 bits (1809), Expect = 1.600e-198 Identity = 373/539 (69.20%), Postives = 425/539 (78.85%), Query Frame = 1
BLAST of Spo22181.1 vs. UniProtKB/TrEMBL
Match: A0A0K9RVH5_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_022110 PE=4 SV=1) HSP 1 Score: 1058.1 bits (2735), Expect = 4.600e-306 Identity = 531/531 (100.00%), Postives = 531/531 (100.00%), Query Frame = 1
BLAST of Spo22181.1 vs. UniProtKB/TrEMBL
Match: A0A0J8FC21_BETVU (Uncharacterized protein OS=Beta vulgaris subsp. vulgaris GN=BVRB_4g084230 PE=4 SV=1) HSP 1 Score: 869.4 bits (2245), Expect = 3.000e-249 Identity = 448/535 (83.74%), Postives = 478/535 (89.35%), Query Frame = 1
BLAST of Spo22181.1 vs. UniProtKB/TrEMBL
Match: F6HQA0_VITVI (Putative uncharacterized protein OS=Vitis vinifera GN=VIT_03s0063g00270 PE=4 SV=1) HSP 1 Score: 704.9 bits (1818), Expect = 9.800e-200 Identity = 370/531 (69.68%), Postives = 433/531 (81.54%), Query Frame = 1
BLAST of Spo22181.1 vs. UniProtKB/TrEMBL
Match: A5AX04_VITVI (Putative uncharacterized protein OS=Vitis vinifera GN=VITISV_001778 PE=4 SV=1) HSP 1 Score: 702.2 bits (1811), Expect = 6.400e-199 Identity = 368/531 (69.30%), Postives = 431/531 (81.17%), Query Frame = 1
BLAST of Spo22181.1 vs. UniProtKB/TrEMBL
Match: A0A067KKE0_JATCU (Uncharacterized protein OS=Jatropha curcas GN=JCGZ_14790 PE=4 SV=1) HSP 1 Score: 701.4 bits (1809), Expect = 1.100e-198 Identity = 373/539 (69.20%), Postives = 425/539 (78.85%), Query Frame = 1
BLAST of Spo22181.1 vs. ExPASy Swiss-Prot
Match: MARF1_MOUSE (Meiosis arrest female protein 1 OS=Mus musculus GN=Marf1 PE=1 SV=3) HSP 1 Score: 54.7 bits (130), Expect = 4.800e-6 Identity = 39/127 (30.71%), Postives = 60/127 (47.24%), Query Frame = 1
BLAST of Spo22181.1 vs. ExPASy Swiss-Prot
Match: MARF1_RAT (Meiosis arrest female protein 1 OS=Rattus norvegicus GN=Marf1 PE=1 SV=2) HSP 1 Score: 54.7 bits (130), Expect = 4.800e-6 Identity = 39/127 (30.71%), Postives = 60/127 (47.24%), Query Frame = 1
BLAST of Spo22181.1 vs. ExPASy Swiss-Prot
Match: MARF1_XENTR (Meiosis arrest female protein 1 homolog OS=Xenopus tropicalis GN=marf1 PE=2 SV=1) HSP 1 Score: 53.9 bits (128), Expect = 8.200e-6 Identity = 40/144 (27.78%), Postives = 64/144 (44.44%), Query Frame = 1
BLAST of Spo22181.1 vs. TAIR (Arabidopsis)
Match: AT2G15560.1 (Putative endonuclease or glycosyl hydrolase) HSP 1 Score: 484.2 bits (1245), Expect = 1.400e-136 Identity = 278/534 (52.06%), Postives = 351/534 (65.73%), Query Frame = 1
BLAST of Spo22181.1 vs. TAIR (Arabidopsis)
Match: AT3G62210.1 (Putative endonuclease or glycosyl hydrolase) HSP 1 Score: 121.7 bits (304), Expect = 1.800e-27 Identity = 68/150 (45.33%), Postives = 88/150 (58.67%), Query Frame = 1
BLAST of Spo22181.1 vs. TAIR (Arabidopsis)
Match: AT3G62200.1 (Putative endonuclease or glycosyl hydrolase) HSP 1 Score: 120.6 bits (301), Expect = 4.000e-27 Identity = 68/150 (45.33%), Postives = 90/150 (60.00%), Query Frame = 1
BLAST of Spo22181.1 vs. TAIR (Arabidopsis)
Match: AT5G61190.1 (putative endonuclease or glycosyl hydrolase with C2H2-type zinc finger domain) HSP 1 Score: 112.1 bits (279), Expect = 1.400e-24 Identity = 65/150 (43.33%), Postives = 87/150 (58.00%), Query Frame = 1
BLAST of Spo22181.1 vs. TAIR (Arabidopsis)
Match: AT5G09840.1 (Putative endonuclease or glycosyl hydrolase) HSP 1 Score: 107.1 bits (266), Expect = 4.600e-23 Identity = 56/171 (32.75%), Postives = 93/171 (54.39%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo22181.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo22181.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo22181.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 3
BLAST of Spo22181.1 vs. TAIR (Arabidopsis)
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. TAIR) Total hits: 5
InterPro
Analysis Name: InterPro Annotations of S. oleracea
Date Performed: 2018-06-29
GO Annotation
GO Assignments
This mRNA is annotated with the following GO terms.
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