Overview
Sequences
The following sequences are available for this feature:
Legend: polypeptideCDSexonthree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.ATGAGTTCAATTTCGGTCAAGCAGTCACCCAAGAGCAGCAATTGCTCTGGGGGTTCACAAACTCCTTCGATTTCCGGCTTAATCGGGGGTTTGAAAACGTCGTTTCTCGACAAGGATTATACGGCAGCTGTGAGGAAATTGAAGGAGAGGGAGGAGGGTTTGAGGAAGGAGATAGAGAGGGAGGTGGGTTTGAGGAAGGAGAAGGAAGAACTTGTGGTTAAATTGAGGGAGAAGAGTGACATTTTAGAGACTGATTTTCGGGAGTTGAATATGAAGAATCTTGTGTTGGAGGGGGAATGCAAGTTATTGAAGCGGGAATTGGAAGTAAATGATGATAAGTTGAATGATTTAGATAGGGAATTGAGGTCGGTGAAGGAGAGCGAGAGGATGTCGATCGAGAGGTGTGGTCGTATGGTTGGCGAGCTTAGGGAAATGGAGGGTGAGAAGCAGAGTTTTATTCAAAATTTGTCTGATTTGAGTGATATGGTGGATGAAATGAAGAGAAAGTTTAGGGAAAAGGAAGAAAAAATGGTTGAGGCTTTGGGGAAGAAGGATGCTAAGTTGGAAGAATTGGAGAAGAAGCTGAAATTCGATGCCCATTTGGTAGAATTAAAGAGAGAGAATACGGAGAAGATGAAGGAGCTGGATGAACTAAAGAAAATATTGAAGGGAAAGGAAGAAGAGATGGTTGAGGCTGTGAAGAAGAAGGATGCTCAGTTGGAAAAACTGAAAAGAGATACCCATTTGGAAAAATTAAAGAGGGAGAAAGAGGAGAAGATGAATGAAGTTGAGATTGCGCAACTTAAGGCCCAAGTTAAAGCTCAGAGGGAAGAACTGGAGGGTGTGCAAAGGACGAATGCGTCTTTGGAGGAGCGAAAGGCAGAATTTGATGCCCGTGTTAAAGAGCTAACGAAAGGTAATGAAGAAAAAGATGAGAGAATTAAGAAGTTGGGAGAGGAAATTGAGATTTCAGAGAAGGGAAAAAATGAAATTGTGAAAGAGAGGGATGAGCAAATCCAAGAACTCAGGAAAGAGAGAGAGGGTTTAGGTGTAAAGATCAGGGATTTAAAAGCAAAGTTCGGGCTCGTGGAAGAGAATTTTTTGAAACTTGAGGGGGATGTGATCACTTCTTTGTGTTTGGATTTGGGGAGAAACAAAAGATTTGCAAGTACTTATCTTGGTAAAGTTTTATCCGGAGTAATTAAGGCTCTCGATTCTGGAAAAGTTAGTCATACTTGCAGTGCAGGAATGGCTAAAGATGGAAATCCTCAGGAAGCAGGTATTTATTCTTTTGGTAACGCTATTTGTATTCGATCAATATGACCCATATTTTGCGTGTGGAAGGCTTATTCTTTGTGAGGCTCAATTGAAGCTCGTGAAGGCTGCTTATTTGTTTCCTTCAGTAAATATTTGGAGGATGATGAACTGTGTTTTTTTGTGATTTTGAGACAAATTAGGTTGCGAAGATAAAAAGTTGCGTTAATGTACCAAATAGGCACATATATACTATACTTTGGTAGTTTGGTTTATTGAAATGGTTTTCTATACATTTAAATTATAATGACATAAACAATGTGATAAGCCCATAATTATGAAGGTAGAACAAAAAAAATTGCATCTCTGTTTTTGCTAGATTTAAGGTTTTACCAGATCTCTGTGGTTGCTTCTGTCGTTCGTTTGACTTATGTGAGGATAAGTTAAATTGTTAAGGAGCTAATGGGAAAGGACTTAGGTAAAGATGGGAAATAATATTGTCAAAGAATAGCTTATTTTGCTAGAAAATTTAAGGCTACTTTGATACCTTAAACTGGGTCCGTTTTTCTTAATTGAAGATTTTTTTACTACTTTGCTTCTAAATCACTCCATACCTACTATTTTAGCCATTGCTCTTTGTTTGTTTTATTATCTTAATCTTGCTTGGATTTGAAACTAGATGTGTAAGGGAATGCTTTGTATACTGAAGGATATATCCATGTTTTAAGAATTTTGGAGTGTATAGGAGTATGAATGCAAATATGTAATGACTTAGTATCTGGTTGAAAGGGGTACCTTTGATGTATAAGGACTTTGATCCTTTTACTATAAAGTTGGTAATTAACATTGACAGTGTAAAATGGAAAACATTTGCCCATGCATGTAAGGGGTTTTTCATTCGCTTTAGTATGTTGTTAACCTGCTGACATGATCTGCACTTTGAGCAATCAAGACAGTTGCTAGTGCATACAAGTGATGAAACATTGAATGCAATAACTTAAAATTAGTGCTTCCTTGTGAAGGATCTTAACTATTTGAATTTGGTGGACCTAATGTCTAGGTTGGCATTGCTATCGGCCATTGCAGTGATAAAACTATTCTTGTTTAGGGATTGACATGGTGATGTGGGCAACAGGGCATGTGTAGTAGTTAGTAGTTATGCTGTAAATTTGTGGATGAGATTTTCTTTCATCTTTTTTTTTTTTTTTTTTTTTTTNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNTTTTTTTTTTTTTTTTTTTTTTAACTTGCTTCATCTTGAATGTGATTGACTAGGCATACTAGGCTCTAATGTTCTGTAGTGAACTTGTCAAATACATGATTTCTGCAGTTCTGCTGCTGTAATTTTCTGGGGTTGTCTGTTGTTAGATTATTCACGATTAGTGATGTCAAGTTCTTCATATACGTAGTAATGTTTAACATGGAACTTGCAATACTATGGTTTTCAGATCTACCCAAACGATAATGAGCAATTGAGCATCCATGTAAGATTAAAGTGCCTGTCTCCTTCTCTCTTTTATTTTTCTAATCTAACTAGCTTCCTCCGTGCATGCTGTCAATCTAAATGAATTCACTTTTTGTCTTAACATTTTTATGAAGTGGGCTCGTGGAAATTATGTGAGAGTTACCGTTTAATGATTTCTTGTGTTCGATCATGAAACAATGTAATGATGCCTAAAAAACCTCGGATGTTGAAAATTTTAAATGATGTATGCCTGCTTGGGAAATATTTTAGCATTACTTTACACTGCAAGAGCATAGGCGATGAGTAGAGGGAGATGGGTGCTATACGCGTGGGGAGTCACATCTGCGATCACAAATCACAATGACATGGAATCCTCTTGAATAATGTTCTAATTGTGCTTGATTTAGTCGAGTTAATAAGTGGCTATTTTTCACATGATGCAATTTGATAATCCACATCTTTGCAGACTTTTGCTAGATGATCTTGCTATCCACGATTGTAGAAATCTGTTAGTTCTTGACTAACAGCATGTTGAGCCCCATTTGATACTCTTTCTTTTCACTCCAGATTCGGGATTTGTTCCTCACACCAATGAACCAAAATACTGTTTGAAGTCAGAAAAGCAATCTCCAGATGCTGTCAAGAGGACATTGGATTTTGAGACAGATGAGGCTACTGGCAACAAGAGCACTACATTTGCTGAACCTATCATCATTGACAGTGATGATGATAATGAGACTCTTCTTCATGCTAACACTGTTAAAAACAAACGACATTATCATAATCTTGATGGTTCAAGCAATGATACCCTGGATTCATTACATAAGATGAAGAAATTCAAACAAGAAGTCAAGCAAGAACCGTCAACTCCTGCTTTATCAACTACTAAAAGCGACCATTTTTTCAGCGCTTCGCAGAGGCAATCATTGACTATAAAAAAATGTGATGGAAAGCAGGGGACAGAAGAGAGAGAGCCAACATGTAGTTTTCCTAAAGCTGTTGACAGTAATTGTAGTAATGAAACCCCCAAAGCTGGAAAAACTTGTAGCCTTCGGGTTAAAGAGTTCTTAAACGCTAGCAGGGAAAGGGTGAAAAAGAAAATGCTGGAATGTGGTGCCGATATGTTATGTGCTTTGGAAGAGGATGATGACTTTTGTGCCAAGGCAGTGTGTGCATTGTACAGGCTATCAGGGATGAATGGTTTGATTTTTTCAGGAAGCAAAGGATTTGAAGAGTGTGATCTTGAAAGGTAACAGTTATGTTATATGTAATTTCCTTTTGAATTCTGATAATCTGAAGGTTTTCTGGGATGCATCATGCATGGTTCGATTATCTGTTGACTATTTTTGACATCTATCTCTTCTCACAAGCAATTTAGAATATGTGCTGTGATGTGTCATGACTATTAGTCTATTACTCCCTGCGTTCCCTTATGTTCTTCCCGGTTGGAATTGGGGAGGCTAAGAAAAATGGAATCTTGGTATGATTAGGTGTAAAAGTAATGATTAAAGTTAGAAGATTCTACTTTTAGAATAAATGAAAGAGAGAGAAATGAATATAGAAATAAAGAATCATAAAATAAGGTGGGTGAATGAATTGGGGAATGTCAATGAATTAAATAATACGGGTGGGGAAATCAATGAGAATATTTGGGTAGGCGAATGGAACAAAATGTAGGATATGGTAGGAAATTAAATTGTAGAATAATGGTATTTTGGGGAATTTTTTTTGCCTAAAAATGAAAAGATTCACAATGGATGAACAAATCTGGATTGTTTAGCTAAAATGGCTGTTGATTGTTTAGCTAAAATGTGTAGAGCAAATCTGGATTGTAATCTTACTAGACTAGACCTTGAACAAGCTCCTGCTTTTGTGAGAAATTTCAAAACAATCCCCTTGATTGGCATATCAAGTGGTATTCTTGTAATTATAATGAACAAATATACAATCTAAAAATTGCAATGTACAGTCTATTTGATACTTTAAAAAAATAAAAATAAAAGAAAATAATTCTAATATAAAAAGAGATTGTATATTTAATATTTAGATTGTATATTTTGACAATTTATTTACGAAAATACCCCTTGATATGCTTTGCACGCCAATCATGGAGATTGACCGGGCGGAGCTCTGCTTTTTTTATGTCTGTACTTATGGAGGACAAACCTCCCTGACTTTTATTTGATTTAATATAATTGCCTTCCGCTTGCATCATAAAAAAAAGGTATGCCAATTCGGGAAACGGGAAGAACTTTTAGGAACGGAGGGTTTCTTTGGTAGGGGTAGGAGTTATGGTTTTAGACTTTTAGCTACGAATCATAGTTACAAAAAAAATTGTTTCATCGTTTCCACCGTGATAACAATTCATTAAAAACTCTAGTAGTTGCTATTTTGCCTAAAACATGTACTATCTTGCTTCCAGGGTGGCTGCACTGGCGAAAATTCTAACAGATGGGGGGGATCCAAGTGGCAAACCGAAGAAGTCATTGGTTCAATTACTGCAGGGCGATCTTGGCGATTGCAGACGACTTGCTTTGAAGTATCACAAGCAATTGTTGGATATCTATAGAAAGAGAATGGATCCTCTGTTTTCTCCCTAGTCAAGTGATTTGCACTCTGCAGTACAAGTAAGCTGTCATTGAAAGTCGCCTTCTAATATTTTTGGATGGGATTTTAGAGAATTCTCTTTTGCACAAGTAGAAAAAGTCTGTCAAGTCAGTTCTTTTCTGGGTGTTTCTGACTTGTACATAATGTGAATGAAACTAGTAAATTGGCTATTCTTAGGTCTCAGTTGATCCTTCTTGTTCATCATAGAGTAACGTCGTACATAATGTGAATGGAACTAGCAACTGGGATATACTTAACTTAGGTCTCAGTTGACCCTTCCCCTAACCCGTACAGTAATGTTGTTGATGGGAAGATGGTCATTTTGTTGATGATTTTGGAAGAAGAAAATTGGAGGGTCTGGTTCTACTTTCTCGATTTGATGTTTTCAGGCTTGATATTTATTATTATGGTACGTGATTCGTTAACTACTAACAGGCATCCCCCAGTTGAGAAATTTCAAAACAATCCCCTTGATTGGCATATCAAGTGGCATTTTCGTAAATATAATGAAAATATACAAATCTAAAATGGCGATGTACAATATATTT ATGAGTTCAATTTCGGTCAAGCAGTCACCCAAGAGCAGCAATTGCTCTGGGGGTTCACAAACTCCTTCGATTTCCGGCTTAATCGGGGGTTTGAAAACGTCGTTTCTCGACAAGGATTATACGGCAGCTGTGAGGAAATTGAAGGAGAGGGAGGAGGGTTTGAGGAAGGAGATAGAGAGGGAGGTGGGTTTGAGGAAGGAGAAGGAAGAACTTGTGGTTAAATTGAGGGAGAAGAGTGACATTTTAGAGACTGATTTTCGGGAGTTGAATATGAAGAATCTTGTGTTGGAGGGGGAATGCAAGTTATTGAAGCGGGAATTGGAAGTAAATGATGATAAGTTGAATGATTTAGATAGGGAATTGAGGTCGGTGAAGGAGAGCGAGAGGATGTCGATCGAGAGGTGTGGTCGTATGGTTGGCGAGCTTAGGGAAATGGAGGGTGAGAAGCAGAGTTTTATTCAAAATTTGTCTGATTTGAGTGATATGGTGGATGAAATGAAGAGAAAGTTTAGGGAAAAGGAAGAAAAAATGGTTGAGGCTTTGGGGAAGAAGGATGCTAAGTTGGAAGAATTGGAGAAGAAGCTGAAATTCGATGCCCATTTGGTAGAATTAAAGAGAGAGAATACGGAGAAGATGAAGGAGCTGGATGAACTAAAGAAAATATTGAAGGGAAAGGAAGAAGAGATGGTTGAGGCTGTGAAGAAGAAGGATGCTCAGTTGGAAAAACTGAAAAGAGATACCCATTTGGAAAAATTAAAGAGGGAGAAAGAGGAGAAGATGAATGAAGTTGAGATTGCGCAACTTAAGGCCCAAGTTAAAGCTCAGAGGGAAGAACTGGAGGGTGTGCAAAGGACGAATGCGTCTTTGGAGGAGCGAAAGGCAGAATTTGATGCCCGTGTTAAAGAGCTAACGAAAGGTAATGAAGAAAAAGATGAGAGAATTAAGAAGTTGGGAGAGGAAATTGAGATTTCAGAGAAGGGAAAAAATGAAATTGTGAAAGAGAGGGATGAGCAAATCCAAGAACTCAGGAAAGAGAGAGAGGGTTTAGGTGTAAAGATCAGGGATTTAAAAGCAAAGTTCGGGCTCGTGGAAGAGAATTTTTTGAAACTTGAGGGGGATGTGATCACTTCTTTGTGTTTGGATTTGGGGAGAAACAAAAGATTTGCAAGTACTTATCTTGGTAAAGTTTTATCCGGAGTAATTAAGGCTCTCGATTCTGGAAAAGTTAGTCATACTTGCAGTGCAGGAATGGCTAAAGATGGAAATCCTCAGGAAGCAGATTCGGGATTTGTTCCTCACACCAATGAACCAAAATACTGTTTGAAGTCAGAAAAGCAATCTCCAGATGCTGTCAAGAGGACATTGGATTTTGAGACAGATGAGGCTACTGGCAACAAGAGCACTACATTTGCTGAACCTATCATCATTGACAGTGATGATGATAATGAGACTCTTCTTCATGCTAACACTGTTAAAAACAAACGACATTATCATAATCTTGATGGTTCAAGCAATGATACCCTGGATTCATTACATAAGATGAAGAAATTCAAACAAGAAGTCAAGCAAGAACCGTCAACTCCTGCTTTATCAACTACTAAAAGCGACCATTTTTTCAGCGCTTCGCAGAGGCAATCATTGACTATAAAAAAATGTGATGGAAAGCAGGGGACAGAAGAGAGAGAGCCAACATGTAGTTTTCCTAAAGCTGTTGACAGTAATTGTAGTAATGAAACCCCCAAAGCTGGAAAAACTTGTAGCCTTCGGGTTAAAGAGTTCTTAAACGCTAGCAGGGAAAGGGTGAAAAAGAAAATGCTGGAATGTGGTGCCGATATGTTATGTGCTTTGGAAGAGGATGATGACTTTTGTGCCAAGGCAGTGTGTGCATTGTACAGGCTATCAGGGATGAATGGTTTGATTTTTTCAGGAAGCAAAGGATTTGAAGAGTGTGATCTTGAAAGGGTGGCTGCACTGGCGAAAATTCTAACAGATGGGGGGGATCCAAGTGGCAAACCGAAGAAGTCATTGGTTCAATTACTGCAGGGCGATCTTGGCGATTGCAGACGACTTGCTTTGAAGTATCACAAGCAATTGTTGGATATCTATAGAAAGAGAATGGATCCTCTGTTTTCTCCCTAGTCAAGTGATTTGCACTCTGCAGTACAAGTAAGCTGTCATTGAAAGTCGCCTTCTAATATTTTTGGATGGGATTTTAGAGAATTCTCTTTTGCACAAGTAGAAAAAGTCTGTCAAGTCAGTTCTTTTCTGGGTGTTTCTGACTTGTACATAATGTGAATGAAACTAGTAAATTGGCTATTCTTAGGTCTCAGTTGATCCTTCTTGTTCATCATAGAGTAACGTCGTACATAATGTGAATGGAACTAGCAACTGGGATATACTTAACTTAGGTCTCAGTTGACCCTTCCCCTAACCCGTACAGTAATGTTGTTGATGGGAAGATGGTCATTTTGTTGATGATTTTGGAAGAAGAAAATTGGAGGGTCTGGTTCTACTTTCTCGATTTGATGTTTTCAGGCTTGATATTTATTATTATGGTACGTGATTCGTTAACTACTAACAGGCATCCCCCAGTTGAGAAATTTCAAAACAATCCCCTTGATTGGCATATCAAGTGGCATTTTCGTAAATATAATGAAAATATACAAATCTAAAATGGCGATGTACAATATATTT ATGAGTTCAATTTCGGTCAAGCAGTCACCCAAGAGCAGCAATTGCTCTGGGGGTTCACAAACTCCTTCGATTTCCGGCTTAATCGGGGGTTTGAAAACGTCGTTTCTCGACAAGGATTATACGGCAGCTGTGAGGAAATTGAAGGAGAGGGAGGAGGGTTTGAGGAAGGAGATAGAGAGGGAGGTGGGTTTGAGGAAGGAGAAGGAAGAACTTGTGGTTAAATTGAGGGAGAAGAGTGACATTTTAGAGACTGATTTTCGGGAGTTGAATATGAAGAATCTTGTGTTGGAGGGGGAATGCAAGTTATTGAAGCGGGAATTGGAAGTAAATGATGATAAGTTGAATGATTTAGATAGGGAATTGAGGTCGGTGAAGGAGAGCGAGAGGATGTCGATCGAGAGGTGTGGTCGTATGGTTGGCGAGCTTAGGGAAATGGAGGGTGAGAAGCAGAGTTTTATTCAAAATTTGTCTGATTTGAGTGATATGGTGGATGAAATGAAGAGAAAGTTTAGGGAAAAGGAAGAAAAAATGGTTGAGGCTTTGGGGAAGAAGGATGCTAAGTTGGAAGAATTGGAGAAGAAGCTGAAATTCGATGCCCATTTGGTAGAATTAAAGAGAGAGAATACGGAGAAGATGAAGGAGCTGGATGAACTAAAGAAAATATTGAAGGGAAAGGAAGAAGAGATGGTTGAGGCTGTGAAGAAGAAGGATGCTCAGTTGGAAAAACTGAAAAGAGATACCCATTTGGAAAAATTAAAGAGGGAGAAAGAGGAGAAGATGAATGAAGTTGAGATTGCGCAACTTAAGGCCCAAGTTAAAGCTCAGAGGGAAGAACTGGAGGGTGTGCAAAGGACGAATGCGTCTTTGGAGGAGCGAAAGGCAGAATTTGATGCCCGTGTTAAAGAGCTAACGAAAGGTAATGAAGAAAAAGATGAGAGAATTAAGAAGTTGGGAGAGGAAATTGAGATTTCAGAGAAGGGAAAAAATGAAATTGTGAAAGAGAGGGATGAGCAAATCCAAGAACTCAGGAAAGAGAGAGAGGGTTTAGGTGTAAAGATCAGGGATTTAAAAGCAAAGTTCGGGCTCGTGGAAGAGAATTTTTTGAAACTTGAGGGGGATGTGATCACTTCTTTGTGTTTGGATTTGGGGAGAAACAAAAGATTTGCAAGTACTTATCTTGGTAAAGTTTTATCCGGAGTAATTAAGGCTCTCGATTCTGGAAAAGTTAGTCATACTTGCAGTGCAGGAATGGCTAAAGATGGAAATCCTCAGGAAGCAGATTCGGGATTTGTTCCTCACACCAATGAACCAAAATACTGTTTGAAGTCAGAAAAGCAATCTCCAGATGCTGTCAAGAGGACATTGGATTTTGAGACAGATGAGGCTACTGGCAACAAGAGCACTACATTTGCTGAACCTATCATCATTGACAGTGATGATGATAATGAGACTCTTCTTCATGCTAACACTGTTAAAAACAAACGACATTATCATAATCTTGATGGTTCAAGCAATGATACCCTGGATTCATTACATAAGATGAAGAAATTCAAACAAGAAGTCAAGCAAGAACCGTCAACTCCTGCTTTATCAACTACTAAAAGCGACCATTTTTTCAGCGCTTCGCAGAGGCAATCATTGACTATAAAAAAATGTGATGGAAAGCAGGGGACAGAAGAGAGAGAGCCAACATGTAGTTTTCCTAAAGCTGTTGACAGTAATTGTAGTAATGAAACCCCCAAAGCTGGAAAAACTTGTAGCCTTCGGGTTAAAGAGTTCTTAAACGCTAGCAGGGAAAGGGTGAAAAAGAAAATGCTGGAATGTGGTGCCGATATGTTATGTGCTTTGGAAGAGGATGATGACTTTTGTGCCAAGGCAGTGTGTGCATTGTACAGGCTATCAGGGATGAATGGTTTGATTTTTTCAGGAAGCAAAGGATTTGAAGAGTGTGATCTTGAAAGGGTGGCTGCACTGGCGAAAATTCTAACAGATGGGGGGGATCCAAGTGGCAAACCGAAGAAGTCATTGGTTCAATTACTGCAGGGCGATCTTGGCGATTGCAGACGACTTGCTTTGAAGTATCACAAGCAATTGTTGGATATCTATAGAAAGAGAATGGATCCTCTGTTTTCTCCCTAG MSSISVKQSPKSSNCSGGSQTPSISGLIGGLKTSFLDKDYTAAVRKLKEREEGLRKEIEREVGLRKEKEELVVKLREKSDILETDFRELNMKNLVLEGECKLLKRELEVNDDKLNDLDRELRSVKESERMSIERCGRMVGELREMEGEKQSFIQNLSDLSDMVDEMKRKFREKEEKMVEALGKKDAKLEELEKKLKFDAHLVELKRENTEKMKELDELKKILKGKEEEMVEAVKKKDAQLEKLKRDTHLEKLKREKEEKMNEVEIAQLKAQVKAQREELEGVQRTNASLEERKAEFDARVKELTKGNEEKDERIKKLGEEIEISEKGKNEIVKERDEQIQELRKEREGLGVKIRDLKAKFGLVEENFLKLEGDVITSLCLDLGRNKRFASTYLGKVLSGVIKALDSGKVSHTCSAGMAKDGNPQEADSGFVPHTNEPKYCLKSEKQSPDAVKRTLDFETDEATGNKSTTFAEPIIIDSDDDNETLLHANTVKNKRHYHNLDGSSNDTLDSLHKMKKFKQEVKQEPSTPALSTTKSDHFFSASQRQSLTIKKCDGKQGTEEREPTCSFPKAVDSNCSNETPKAGKTCSLRVKEFLNASRERVKKKMLECGADMLCALEEDDDFCAKAVCALYRLSGMNGLIFSGSKGFEECDLERVAALAKILTDGGDPSGKPKKSLVQLLQGDLGDCRRLALKYHKQLLDIYRKRMDPLFSP Relationships
This mRNA is a part of the following gene feature(s):
The following polypeptide feature(s) derives from this mRNA:
The following CDS feature(s) are a part of this mRNA:
The following three_prime_UTR feature(s) are a part of this mRNA:
The following exon feature(s) are a part of this mRNA:
Homology
BLAST of Spo25082.1 vs. NCBI nr
Match: gi|902201079|gb|KNA13893.1| (hypothetical protein SOVF_112540 [Spinacia oleracea]) HSP 1 Score: 1331.6 bits (3445), Expect = 0.000e+0 Identity = 712/712 (100.00%), Postives = 712/712 (100.00%), Query Frame = 1
BLAST of Spo25082.1 vs. NCBI nr
Match: gi|731326294|ref|XP_010673946.1| (PREDICTED: uncharacterized protein LOC104890237 [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 499.6 bits (1285), Expect = 9.100e-138 Identity = 338/743 (45.49%), Postives = 458/743 (61.64%), Query Frame = 1
BLAST of Spo25082.1 vs. NCBI nr
Match: gi|720017519|ref|XP_010261491.1| (PREDICTED: uncharacterized protein LOC104600314 isoform X1 [Nelumbo nucifera]) HSP 1 Score: 92.4 bits (228), Expect = 3.400e-15 Identity = 54/123 (43.90%), Postives = 72/123 (58.54%), Query Frame = 1
BLAST of Spo25082.1 vs. NCBI nr
Match: gi|720017522|ref|XP_010261492.1| (PREDICTED: uncharacterized protein LOC104600314 isoform X2 [Nelumbo nucifera]) HSP 1 Score: 92.4 bits (228), Expect = 3.400e-15 Identity = 54/123 (43.90%), Postives = 72/123 (58.54%), Query Frame = 1
BLAST of Spo25082.1 vs. NCBI nr
Match: gi|902230707|gb|KNA21965.1| (hypothetical protein SOVF_038500 isoform B [Spinacia oleracea]) HSP 1 Score: 89.7 bits (221), Expect = 2.200e-14 Identity = 45/64 (70.31%), Postives = 53/64 (82.81%), Query Frame = 1
BLAST of Spo25082.1 vs. UniProtKB/TrEMBL
Match: A0A0K9R302_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_112540 PE=4 SV=1) HSP 1 Score: 1331.6 bits (3445), Expect = 0.000e+0 Identity = 712/712 (100.00%), Postives = 712/712 (100.00%), Query Frame = 1
BLAST of Spo25082.1 vs. UniProtKB/TrEMBL
Match: A0A0J8CS12_BETVU (Uncharacterized protein OS=Beta vulgaris subsp. vulgaris GN=BVRB_4g075340 PE=4 SV=1) HSP 1 Score: 499.6 bits (1285), Expect = 6.300e-138 Identity = 338/743 (45.49%), Postives = 458/743 (61.64%), Query Frame = 1
BLAST of Spo25082.1 vs. UniProtKB/TrEMBL
Match: A0A0K9RR00_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_038500 PE=4 SV=1) HSP 1 Score: 89.7 bits (221), Expect = 1.500e-14 Identity = 45/64 (70.31%), Postives = 53/64 (82.81%), Query Frame = 1
BLAST of Spo25082.1 vs. UniProtKB/TrEMBL
Match: A0A0K9RSS1_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_038500 PE=4 SV=1) HSP 1 Score: 89.7 bits (221), Expect = 1.500e-14 Identity = 45/64 (70.31%), Postives = 53/64 (82.81%), Query Frame = 1
BLAST of Spo25082.1 vs. UniProtKB/TrEMBL
Match: E0CUL7_VITVI (Putative uncharacterized protein OS=Vitis vinifera GN=VIT_16s0050g02290 PE=4 SV=1) HSP 1 Score: 84.7 bits (208), Expect = 4.900e-13 Identity = 54/121 (44.63%), Postives = 64/121 (52.89%), Query Frame = 1
BLAST of Spo25082.1 vs. TAIR (Arabidopsis)
Match: AT5G53220.1 (unknown protein) HSP 1 Score: 65.9 bits (159), Expect = 1.200e-10 Identity = 71/260 (27.31%), Postives = 119/260 (45.77%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo25082.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo25082.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo25082.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 0
BLAST of Spo25082.1 vs. TAIR (Arabidopsis)
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. TAIR) Total hits: 1
InterPro
Analysis Name: InterPro Annotations of S. oleracea
Date Performed: 2018-06-29
|