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.ATGTGGCTAAGGGAACATTCATGGGAATTCTTAGTTTTCTTGATCATTATAGCTGTTGGAGTTAACCTAAATCATACAACGGCAAGTTCACACCGGATATTAGTCGATACAGATCTAGATACAGACGACTTCTTTGCACTTCTTTACCTTTTGAAGCTCAACAAATCAGAGTTTGATATCAAGGTTTAATCTTTTCATTTCAATGCATGACTTCTCTTTATTCTTTTAATACGCATATGATATCATTTTCAATGCTTCTAATTATTTAACATACACATGAAAATATTTTTTTACAGAATTTCTTAAAGAAATACTAATGCCAAAGTAATTATAATTTTAATATGTACCTCTATTTCTTCTTTGTATCTATCACCACTTTACATGGGGTATTAAGTTGTAATATAAATTTGAGAAATAAAAACTACACGTTGTGTGGGGATGAAAATGCAACATTATGGACTTTGACAACAAAAAATTTCCTTGCCAAACTATATATATACGTAGTACTTCGTATATAAATCCACTCCACTTATTGTACCCATATAAAAAAATATATTCTTTTGAGTAATCGTATAATATTTGAAAATTTTTATGATATTTAAGGTAAATAATGTACCAGGTATGACATATATATATATATATATATATATATATATATATGAGAAAAAATTTATATTCATAGTTTAGATTTCATATCTATGGCGCATATTTCAAATGATAACATGATCATCTTCCTTTATTCAAAAAATAAGATAAATTTTACAAGTTATACAAGTAGATCTTATTGGTCATAGAAATATTTAATTTAATTTTATTATACTTGTTTGATATTTCATAAATGAAGGCAGTGACAATCAACACAAATTCATGGACAAATGTTGGTCATGCTTTGAATCACCTATACGATTTACTTTTCATGATGGGTCGTGACGATATTCATGTGGGAGCTGGAGGTGAAGATGGAATTTCAGAAGATGGTACCATATTTGCAAATGTTGGAGGATATCTACCTATCATCGAGCAGGTATTTTAAAAACTCAACTCAACTTAAAATATTTGGTTAAAACTGGTTTTACTATTATAGCTATAAGTATTAGTTCATTGTAACTATACTTGGTTACCATGTAGGGAATAATGACAACAGGATATTGTCGATATAGACAAGCCATTCCGCTTGGGCAAAGAGGACGATTGGATATTGACTCTAACTATGGACTTCGTAAATCTTTTCTTCCACAGGTAACACTTGAAATTAAAATATAGCTTTATTAATTCTCATTTAATTTTATTCTTTCTGGAATTTTTTGGTATGTACTATCTTAAAAATACACCACTTTTTGAATTTACCACCTTATGTAAAATTTATTTTAAATTAATACCTTAAAGTTCCATTTTTTGTATTTACTACCACTTTATAGTTTTCTCGTTTTAAAAGTGAGATATCTCTTTCGCTTTTTAATCATTTTAAGTGATTCAAAAGTCATTCTTCTCATTTATGTGTATGGATTTCATAGGGATCTTGCTTTTAACATTTTGTAAAAGGTAAAACGAATTAGATATTATTTGTAAAATTTTAAAATATTTATGAATTATCAAACGAATTTTTTTAAAATGTCGTTCTCAATGAAATCCCTATAGAAATAGGAAAATAATGAACTTTGAATCACTTTAAACGATTAAGAAACGAAAGCGTTATCTTAATTTTAAAATAATAAAACTGTAAAGTGGTAGTAAATAATAAAAAGTTGGAATTTTAAGGTAATAATTTAAAATAAAAATTTCATGAGATAGTAAATACAAAAGTGGTGTATTTTTAAGGCAATAAATACCTAAAAATTCCTTCTTTCGGTGTAGGTCTTTCAAAAATATTAATTAATGACAAAATTGAATATAATTTCAGGGGAAGAGGAGATATTTGCCTCTTAACCAGCCAACAACACAACAAATGATGTTTAATGTGATATCTAAAGCTCCAACAACCGTATTTTTGATGGGAGCTCACACCAACTTTGCCCTTTTCCTTATGCGTTACCCTCACTTAAAGAAAAATATCAAACATATTTATGTAATGGGTGGTAGTGTGAGATCTAAAAATCCCTCGGGTTGCAGCACTAAAGACAATATTATGTCATGTCAGCCATTAAAAAATTGTGATCTTGGGAACTTGTTTAGTGATTACACAAGTAATCCTTATGCTGAGTTTAACATATTTCTAGATCCATTTGCTGCATATCAGGTTTGTTAATTTAAATTAGTACTTCCCGTAAAAAATTTACTCCGTATTTGTTTTTATGTACCTTTAGTTACGTTTTCTAACGCATAAATTAAATCATTATATCCTTAATAATTACAATAACCAAAAATGATATTAAAAATGGGTATTTTTTAAATTCCCATTGAGTGAAATCCAACAAGTTCACACACGATGATATTTTTTTCTTGAGTATCAATCAGAAAATATAATCAAAGTGTAGATTATATGAATATAACACAAGAACTAAAAAAGAAGGAAGATAGTATATACTTCATTGTGGAGATACAACGTAACCTAGTGTATTTTTTTCCAGGTTATTCATTCACAGATCCCAATCACCCTGGTTCCCCTTGATGCAACTAACACAATCCCAATGACAAAAGATTTCTTTGAGACATTCGAGAAGAACCAAAAAACCTACGAGGCACAATATTGCTTCAGGTCTTTAAAAATGGCTCGTACTGGATTGTCAGATGACCAATTTTATACGGTATGTTATTTTATCAAATTTGTTTATTTTATTTTCCTTAATACTTTGATGAATGTAATTTGTACCACAATAGTCAATAGGTTATTCGCAATTGTATGCAGAACTATTTTATGTGGGACTCTTTAATGGTTGGTATAGCAGTTTCAATCATGCGTAACCCATACAATGAAAGAGGGGAAAATGATTTTGCGGAAATGGAGTATATGAACATAACTGTCCACACATCCAATAAACCTCACGGAGTTTCAGATGGGTCAAATCCATTTTTTAATGGACGTAAGGTTCCCAAATTTCAGTTGAAGAAACGTGGAGTTCATGATGGTCATGTCCAAAGATCACTCTATGATACATATTGCCTTGTTAAAAATAAGAATGGTAGATGCAAGGTACTACGTACAATTTTTCTAAAATTTTTGCCAAAAATTATCCTTTGCTTCTCTTTCAAAATGATCATGTTTCACTGTTGCAGGACGGCTATACTGAAGAGATAACTGGTCCAGAAGGTGTGAGAATTTTGGTGGCCACAAAAGCGAAACCTAATAAGGATCATAAGAGCATTCTTAACAGAGAGTTTTTTCAGAGTTTCTTAAATGTATGTATCTGTAAGTATTAACGTAATTTATATTTATATTTATATTTTAAATGCTAAAAACCATTAACCAAGATAAAGTTTTTAGATTGTTACATGGTGTAGGTATTAAATCATCCTCATCAATCAGGAAGATTTAACTTCACCACCCAATTTCGTCATTACAAGAAAGTGCTTCACAAACCAGATTTCAAAGTGAAAAAGTTGGGGAAACCGGTTATCTTTGACATGGATATGAGTGCAGGGGACTTTATCGCTCTTTTGTATCTCCTAAAAGTACCTACCGAAATTCTTAACCTTAAGGTATTTCAAATATCTTTAATTATTTGTAATATATCTTGTTGTTAAATAAAATTAATTGTAATAAATTAAGGTTATGTTCTAGCAGGTGTGACACTCAAAGGGTGTGACACTCAAAGGGTGTGACACTATTGAGAAAAATAACAAGTAAAATAACAAGTTTGAACATGTAACTAACATTATAAACATTATAGGCAATATTTGTTACTCCAACCGGCTGGGCTAATGCTGCCACCATCGACGTTGTTTACGATTTGTTACATATGATGGGACGAGATGATATTCCAGTGGGTCTAGGAGATTTTTTTGGAATGAACCAGGCATACTCTCAATTTTCTATTGTCGGAGATTGTAAATATGTAAAAGCGATCCCACAAGGAAGTGGTGGATTTTTAGATTCAGACACTCTTTATGGGCTTGCAAGAGAATTACCGCGTAGTCCAAGAAGGTAGGTTCTTTTGTATCACCCATGTGTATCACCCATGTGTATCACCCATGTGTACATGTTATTTTTTATGAAAATAATAATAAATTATCAATGATATTGATGGCTGGAAAATTATAGATTTTTAAATTTAAATTTTTGTTAGGTACATGCCTAATAACGTGACATTTAATACTCAATTCAATGCGAATCAACGTCAACAACCACTTATTATGGATATATGGGAGGATGTCACCAAGAAAATTGATGATCCACAAACAAAGATTACTATATTGACCAACGGACCTCTCACAACCATATCCAAAATAATTGCTATTGATCAAAATGCAGTCTCTAAAATACAGGTTATCTAGTTGTACTTGTCTTTTTTTTTATGTTGCTTAATCTTATTAAATGAAATATTATTCAAATTCTCACCTCCTTTTACACTCCAGGATTTATATGTTTTAGGAGGACATATACACAACAATACTTCATTTGGAGGAAATCTTTTTACTACGCCTATGAATAAATATGCAGAGTTTAACATTTTTTTGGACCCTTTCTCCGCAAAGAAAGTGATGGAATCAAAACTTCCTATCACATTAATTACTTGGGATTCCCAAAAGAAAGTTAGCTCATTTTTCTCTATCATTGAAAATCTTTCGCGAGCCAAAAAGACCCCAGAAGTTATCTTTGCAAATAAGTTGATATCCACATTGTCGAGGCTACACAAAGAACACCATCGGTATAAGAATGTGGTAAGGTTTCTTTTAGACTTGAATACCGTGATACTATAGTTGTTCCTCTTAAAGTTATTTTCATCAAATTTTCATCTCCACCCCATGTGCAGTGTGCTCACATATAAAGTTCATGGTCTTGGAAACAATTGTGAGAAGATGTATTATAAATTATGGGTTTCTTATATTTTTGATATTATAATATAATATAATTGAACATGATACAGGATACATTTATAGGGGAGATCCTTGGAGCTGTAATTTTGGCTAGTGGCCCATCTTTAAATTCAACCTTTCAAGTTAAGCATATTAGAGTTACTGCAACTGGTCGAGAAGATATAGATGGACAAATGATAATCGACTCACACAAAGGAACAATGGTCAAAGTCCTACAATCTTTTGACAATATTGCCTATTATGAATTCTTTGCTAATCGTCTTGGTGATGAAAAACAATCTGCTGTATTAGGAAGCTTTTCTATACAAAAAAGAATGTGGAACAAAAAACCACCAAGAAGGTTCTGAAGCCCAAGAAAGTTGATAGAATGACATATAAGATATTATTTCCATTGGTGTGGTTATCTTGGCTTAGATGGATCCAACAAGGTTATGATTTTGCAAGGATGCAACCAAATTATTGGTTTTTCTTTTTTTGGAGAAAATAAGACTTTCCATAAAATATTGAGTAAGCGCATAGTGATTAAGATGATATATTTGTGTTCATAAGTTTTATCAAAAGGCTTAATTAGTTATTAACTGTTTTTTAGCTTAATAGTTCCCTTAATATTTCATTGAAAATTTCATCTTACCCAAATTGTTAAATAAGATTTCATAATGATTTTTTATTAGAGTTTTTAAATAAATATCATATTTGTGTGCTAGTTGCAAAATTAAAGAAAACGAAACCTCGATAAAACCATATGTTCCACAATATTTAACGTACTCGAC ATGTGGCTAAGGGAACATTCATGGGAATTCTTAGTTTTCTTGATCATTATAGCTGTTGGAGTTAACCTAAATCATACAACGGCAAGTTCACACCGGATATTAGTCGATACAGATCTAGATACAGACGACTTCTTTGCACTTCTTTACCTTTTGAAGCTCAACAAATCAGAGTTTGATATCAAGGCAGTGACAATCAACACAAATTCATGGACAAATGTTGGTCATGCTTTGAATCACCTATACGATTTACTTTTCATGATGGGTCGTGACGATATTCATGTGGGAGCTGGAGGTGAAGATGGAATTTCAGAAGATGGTACCATATTTGCAAATGTTGGAGGATATCTACCTATCATCGAGCAGGGAATAATGACAACAGGATATTGTCGATATAGACAAGCCATTCCGCTTGGGCAAAGAGGACGATTGGATATTGACTCTAACTATGGACTTCGTAAATCTTTTCTTCCACAGGGGAAGAGGAGATATTTGCCTCTTAACCAGCCAACAACACAACAAATGATGTTTAATGTGATATCTAAAGCTCCAACAACCGTATTTTTGATGGGAGCTCACACCAACTTTGCCCTTTTCCTTATGCGTTACCCTCACTTAAAGAAAAATATCAAACATATTTATGTAATGGGTGGTAGTGTGAGATCTAAAAATCCCTCGGGTTGCAGCACTAAAGACAATATTATGTCATGTCAGCCATTAAAAAATTGTGATCTTGGGAACTTGTTTAGTGATTACACAAGTAATCCTTATGCTGAGTTTAACATATTTCTAGATCCATTTGCTGCATATCAGGTTATTCATTCACAGATCCCAATCACCCTGGTTCCCCTTGATGCAACTAACACAATCCCAATGACAAAAGATTTCTTTGAGACATTCGAGAAGAACCAAAAAACCTACGAGGCACAATATTGCTTCAGGTCTTTAAAAATGGCTCGTACTGGATTGTCAGATGACCAATTTTATACGGTTATTCGCAATTGTATGCAGAACTATTTTATGTGGGACTCTTTAATGGTTGGTATAGCAGTTTCAATCATGCGTAACCCATACAATGAAAGAGGGGAAAATGATTTTGCGGAAATGGAGTATATGAACATAACTGTCCACACATCCAATAAACCTCACGGAGTTTCAGATGGGTCAAATCCATTTTTTAATGGACGTAAGGTTCCCAAATTTCAGTTGAAGAAACGTGGAGTTCATGATGGTCATGTCCAAAGATCACTCTATGATACATATTGCCTTGTTAAAAATAAGAATGGTAGATGCAAGGACGGCTATACTGAAGAGATAACTGGTCCAGAAGGTGTGAGAATTTTGGTGGCCACAAAAGCGAAACCTAATAAGGATCATAAGAGCATTCTTAACAGAGAGTTTTTTCAGAGTTTCTTAAATGTATTAAATCATCCTCATCAATCAGGAAGATTTAACTTCACCACCCAATTTCGTCATTACAAGAAAGTGCTTCACAAACCAGATTTCAAAGTGAAAAAGTTGGGGAAACCGGTTATCTTTGACATGGATATGAGTGCAGGGGACTTTATCGCTCTTTTGTATCTCCTAAAAGTACCTACCGAAATTCTTAACCTTAAGGCAATATTTGTTACTCCAACCGGCTGGGCTAATGCTGCCACCATCGACGTTGTTTACGATTTGTTACATATGATGGGACGAGATGATATTCCAGTGGGTCTAGGAGATTTTTTTGGAATGAACCAGGCATACTCTCAATTTTCTATTGTCGGAGATTGTAAATATGTAAAAGCGATCCCACAAGGAAGTGGTGGATTTTTAGATTCAGACACTCTTTATGGGCTTGCAAGAGAATTACCGCGTAGTCCAAGAAGGTACATGCCTAATAACGTGACATTTAATACTCAATTCAATGCGAATCAACGTCAACAACCACTTATTATGGATATATGGGAGGATGTCACCAAGAAAATTGATGATCCACAAACAAAGATTACTATATTGACCAACGGACCTCTCACAACCATATCCAAAATAATTGCTATTGATCAAAATGCAGTCTCTAAAATACAGGATTTATATGTTTTAGGAGGACATATACACAACAATACTTCATTTGGAGGAAATCTTTTTACTACGCCTATGAATAAATATGCAGAGTTTAACATTTTTTTGGACCCTTTCTCCGCAAAGAAAGTGATGGAATCAAAACTTCCTATCACATTAATTACTTGGGATTCCCAAAAGAAAGTTAGCTCATTTTTCTCTATCATTGAAAATCTTTCGCGAGCCAAAAAGACCCCAGAAGTTATCTTTGCAAATAAGTTGATATCCACATTGTCGAGGCTACACAAAGAACACCATCGGTATAAGAATGTGGATACATTTATAGGGGAGATCCTTGGAGCTGTAATTTTGGCTAGTGGCCCATCTTTAAATTCAACCTTTCAAGTTAAGCATATTAGAGTTACTGCAACTGGTCGAGAAGATATAGATGGACAAATGATAATCGACTCACACAAAGGAACAATGGTCAAAGTCCTACAATCTTTTGACAATATTGCCTATTATGAATTCTTTGCTAATCGTCTTGGTGATGAAAAACAATCTGCTGTATTAGGAAGCTTTTCTATACAAAAAAGAATGTGGAACAAAAAACCACCAAGAAGGTTCTGAAGCCCAAGAAAGTTGATAGAATGACATATAAGATATTATTTCCATTGGTGTGGTTATCTTGGCTTAGATGGATCCAACAAGGTTATGATTTTGCAAGGATGCAACCAAATTATTGGTTTTTCTTTTTTTGGAGAAAATAAGACTTTCCATAAAATATTGAGTAAGCGCATAGTGATTAAGATGATATATTTGTGTTCATAAGTTTTATCAAAAGGCTTAATTAGTTATTAACTGTTTTTTAGCTTAATAGTTCCCTTAATATTTCATTGAAAATTTCATCTTACCCAAATTGTTAAATAAGATTTCATAATGATTTTTTATTAGAGTTTTTAAATAAATATCATATTTGTGTGCTAGTTGCAAAATTAAAGAAAACGAAACCTCGATAAAACCATATGTTCCACAATATTTAACGTACTCGAC ATGTGGCTAAGGGAACATTCATGGGAATTCTTAGTTTTCTTGATCATTATAGCTGTTGGAGTTAACCTAAATCATACAACGGCAAGTTCACACCGGATATTAGTCGATACAGATCTAGATACAGACGACTTCTTTGCACTTCTTTACCTTTTGAAGCTCAACAAATCAGAGTTTGATATCAAGGCAGTGACAATCAACACAAATTCATGGACAAATGTTGGTCATGCTTTGAATCACCTATACGATTTACTTTTCATGATGGGTCGTGACGATATTCATGTGGGAGCTGGAGGTGAAGATGGAATTTCAGAAGATGGTACCATATTTGCAAATGTTGGAGGATATCTACCTATCATCGAGCAGGGAATAATGACAACAGGATATTGTCGATATAGACAAGCCATTCCGCTTGGGCAAAGAGGACGATTGGATATTGACTCTAACTATGGACTTCGTAAATCTTTTCTTCCACAGGGGAAGAGGAGATATTTGCCTCTTAACCAGCCAACAACACAACAAATGATGTTTAATGTGATATCTAAAGCTCCAACAACCGTATTTTTGATGGGAGCTCACACCAACTTTGCCCTTTTCCTTATGCGTTACCCTCACTTAAAGAAAAATATCAAACATATTTATGTAATGGGTGGTAGTGTGAGATCTAAAAATCCCTCGGGTTGCAGCACTAAAGACAATATTATGTCATGTCAGCCATTAAAAAATTGTGATCTTGGGAACTTGTTTAGTGATTACACAAGTAATCCTTATGCTGAGTTTAACATATTTCTAGATCCATTTGCTGCATATCAGGTTATTCATTCACAGATCCCAATCACCCTGGTTCCCCTTGATGCAACTAACACAATCCCAATGACAAAAGATTTCTTTGAGACATTCGAGAAGAACCAAAAAACCTACGAGGCACAATATTGCTTCAGGTCTTTAAAAATGGCTCGTACTGGATTGTCAGATGACCAATTTTATACGGTTATTCGCAATTGTATGCAGAACTATTTTATGTGGGACTCTTTAATGGTTGGTATAGCAGTTTCAATCATGCGTAACCCATACAATGAAAGAGGGGAAAATGATTTTGCGGAAATGGAGTATATGAACATAACTGTCCACACATCCAATAAACCTCACGGAGTTTCAGATGGGTCAAATCCATTTTTTAATGGACGTAAGGTTCCCAAATTTCAGTTGAAGAAACGTGGAGTTCATGATGGTCATGTCCAAAGATCACTCTATGATACATATTGCCTTGTTAAAAATAAGAATGGTAGATGCAAGGACGGCTATACTGAAGAGATAACTGGTCCAGAAGGTGTGAGAATTTTGGTGGCCACAAAAGCGAAACCTAATAAGGATCATAAGAGCATTCTTAACAGAGAGTTTTTTCAGAGTTTCTTAAATGTATTAAATCATCCTCATCAATCAGGAAGATTTAACTTCACCACCCAATTTCGTCATTACAAGAAAGTGCTTCACAAACCAGATTTCAAAGTGAAAAAGTTGGGGAAACCGGTTATCTTTGACATGGATATGAGTGCAGGGGACTTTATCGCTCTTTTGTATCTCCTAAAAGTACCTACCGAAATTCTTAACCTTAAGGCAATATTTGTTACTCCAACCGGCTGGGCTAATGCTGCCACCATCGACGTTGTTTACGATTTGTTACATATGATGGGACGAGATGATATTCCAGTGGGTCTAGGAGATTTTTTTGGAATGAACCAGGCATACTCTCAATTTTCTATTGTCGGAGATTGTAAATATGTAAAAGCGATCCCACAAGGAAGTGGTGGATTTTTAGATTCAGACACTCTTTATGGGCTTGCAAGAGAATTACCGCGTAGTCCAAGAAGGTACATGCCTAATAACGTGACATTTAATACTCAATTCAATGCGAATCAACGTCAACAACCACTTATTATGGATATATGGGAGGATGTCACCAAGAAAATTGATGATCCACAAACAAAGATTACTATATTGACCAACGGACCTCTCACAACCATATCCAAAATAATTGCTATTGATCAAAATGCAGTCTCTAAAATACAGGATTTATATGTTTTAGGAGGACATATACACAACAATACTTCATTTGGAGGAAATCTTTTTACTACGCCTATGAATAAATATGCAGAGTTTAACATTTTTTTGGACCCTTTCTCCGCAAAGAAAGTGATGGAATCAAAACTTCCTATCACATTAATTACTTGGGATTCCCAAAAGAAAGTTAGCTCATTTTTCTCTATCATTGAAAATCTTTCGCGAGCCAAAAAGACCCCAGAAGTTATCTTTGCAAATAAGTTGATATCCACATTGTCGAGGCTACACAAAGAACACCATCGGTATAAGAATGTGGATACATTTATAGGGGAGATCCTTGGAGCTGTAATTTTGGCTAGTGGCCCATCTTTAAATTCAACCTTTCAAGTTAAGCATATTAGAGTTACTGCAACTGGTCGAGAAGATATAGATGGACAAATGATAATCGACTCACACAAAGGAACAATGGTCAAAGTCCTACAATCTTTTGACAATATTGCCTATTATGAATTCTTTGCTAATCGTCTTGGTGATGAAAAACAATCTGCTGTATTAGGAAGCTTTTCTATACAAAAAAGAATGTGGAACAAAAAACCACCAAGAAGGTTCTGA MWLREHSWEFLVFLIIIAVGVNLNHTTASSHRILVDTDLDTDDFFALLYLLKLNKSEFDIKAVTINTNSWTNVGHALNHLYDLLFMMGRDDIHVGAGGEDGISEDGTIFANVGGYLPIIEQGIMTTGYCRYRQAIPLGQRGRLDIDSNYGLRKSFLPQGKRRYLPLNQPTTQQMMFNVISKAPTTVFLMGAHTNFALFLMRYPHLKKNIKHIYVMGGSVRSKNPSGCSTKDNIMSCQPLKNCDLGNLFSDYTSNPYAEFNIFLDPFAAYQVIHSQIPITLVPLDATNTIPMTKDFFETFEKNQKTYEAQYCFRSLKMARTGLSDDQFYTVIRNCMQNYFMWDSLMVGIAVSIMRNPYNERGENDFAEMEYMNITVHTSNKPHGVSDGSNPFFNGRKVPKFQLKKRGVHDGHVQRSLYDTYCLVKNKNGRCKDGYTEEITGPEGVRILVATKAKPNKDHKSILNREFFQSFLNVLNHPHQSGRFNFTTQFRHYKKVLHKPDFKVKKLGKPVIFDMDMSAGDFIALLYLLKVPTEILNLKAIFVTPTGWANAATIDVVYDLLHMMGRDDIPVGLGDFFGMNQAYSQFSIVGDCKYVKAIPQGSGGFLDSDTLYGLARELPRSPRRYMPNNVTFNTQFNANQRQQPLIMDIWEDVTKKIDDPQTKITILTNGPLTTISKIIAIDQNAVSKIQDLYVLGGHIHNNTSFGGNLFTTPMNKYAEFNIFLDPFSAKKVMESKLPITLITWDSQKKVSSFFSIIENLSRAKKTPEVIFANKLISTLSRLHKEHHRYKNVDTFIGEILGAVILASGPSLNSTFQVKHIRVTATGREDIDGQMIIDSHKGTMVKVLQSFDNIAYYEFFANRLGDEKQSAVLGSFSIQKRMWNKKPPRRF Relationships
The following mRNA feature(s) are a part of this gene:
Homology
BLAST of Spo13534.1 vs. NCBI nr
Match: gi|902186962|gb|KNA10812.1| (hypothetical protein SOVF_140830 isoform A [Spinacia oleracea]) HSP 1 Score: 1307.4 bits (3382), Expect = 0.000e+0 Identity = 644/653 (98.62%), Postives = 646/653 (98.93%), Query Frame = 1
BLAST of Spo13534.1 vs. NCBI nr
Match: gi|731352963|ref|XP_010687819.1| (PREDICTED: uncharacterized protein LOC104901895 [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 1229.2 bits (3179), Expect = 0.000e+0 Identity = 617/885 (69.72%), Postives = 717/885 (81.02%), Query Frame = 1
BLAST of Spo13534.1 vs. NCBI nr
Match: gi|731388968|ref|XP_010649815.1| (PREDICTED: uncharacterized protein LOC100263026 [Vitis vinifera]) HSP 1 Score: 1155.6 bits (2988), Expect = 0.000e+0 Identity = 571/886 (64.45%), Postives = 696/886 (78.56%), Query Frame = 1
BLAST of Spo13534.1 vs. NCBI nr
Match: gi|1009141673|ref|XP_015888320.1| (PREDICTED: uncharacterized protein LOC107423298 [Ziziphus jujuba]) HSP 1 Score: 1150.2 bits (2974), Expect = 0.000e+0 Identity = 572/881 (64.93%), Postives = 691/881 (78.43%), Query Frame = 1
BLAST of Spo13534.1 vs. NCBI nr
Match: gi|661897231|emb|CDO98943.1| (unnamed protein product [Coffea canephora]) HSP 1 Score: 1149.0 bits (2971), Expect = 0.000e+0 Identity = 555/883 (62.85%), Postives = 698/883 (79.05%), Query Frame = 1
BLAST of Spo13534.1 vs. UniProtKB/TrEMBL
Match: A0A0K9QU45_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_140830 PE=4 SV=1) HSP 1 Score: 1307.4 bits (3382), Expect = 0.000e+0 Identity = 644/653 (98.62%), Postives = 646/653 (98.93%), Query Frame = 1
BLAST of Spo13534.1 vs. UniProtKB/TrEMBL
Match: D7T6L9_VITVI (Putative uncharacterized protein OS=Vitis vinifera GN=VIT_05s0020g02200 PE=4 SV=1) HSP 1 Score: 1155.6 bits (2988), Expect = 0.000e+0 Identity = 571/886 (64.45%), Postives = 696/886 (78.56%), Query Frame = 1
BLAST of Spo13534.1 vs. UniProtKB/TrEMBL
Match: A0A068TUB6_COFCA (Uncharacterized protein OS=Coffea canephora GN=GSCOC_T00025917001 PE=4 SV=1) HSP 1 Score: 1149.0 bits (2971), Expect = 0.000e+0 Identity = 555/883 (62.85%), Postives = 698/883 (79.05%), Query Frame = 1
BLAST of Spo13534.1 vs. UniProtKB/TrEMBL
Match: A0A067KV70_JATCU (Uncharacterized protein OS=Jatropha curcas GN=JCGZ_02050 PE=4 SV=1) HSP 1 Score: 1138.6 bits (2944), Expect = 0.000e+0 Identity = 553/880 (62.84%), Postives = 694/880 (78.86%), Query Frame = 1
BLAST of Spo13534.1 vs. UniProtKB/TrEMBL
Match: B9RSW6_RICCO (Inosine-uridine preferring nucleoside hydrolase, putative OS=Ricinus communis GN=RCOM_0679090 PE=4 SV=1) HSP 1 Score: 1136.3 bits (2938), Expect = 0.000e+0 Identity = 558/884 (63.12%), Postives = 696/884 (78.73%), Query Frame = 1
BLAST of Spo13534.1 vs. ExPASy Swiss-Prot
Match: RIHA_CITK8 (Pyrimidine-specific ribonucleoside hydrolase RihA OS=Citrobacter koseri (strain ATCC BAA-895 / CDC 4225-83 / SGSC4696) GN=rihA PE=3 SV=1) HSP 1 Score: 68.2 bits (165), Expect = 5.300e-10 Identity = 75/269 (27.88%), Postives = 107/269 (39.78%), Query Frame = 1
BLAST of Spo13534.1 vs. ExPASy Swiss-Prot
Match: RIHA_SALSV (Pyrimidine-specific ribonucleoside hydrolase RihA OS=Salmonella schwarzengrund (strain CVM19633) GN=rihA PE=3 SV=1) HSP 1 Score: 63.2 bits (152), Expect = 1.700e-8 Identity = 71/257 (27.63%), Postives = 101/257 (39.30%), Query Frame = 1
BLAST of Spo13534.1 vs. ExPASy Swiss-Prot
Match: RIHA_SALDC (Pyrimidine-specific ribonucleoside hydrolase RihA OS=Salmonella dublin (strain CT_02021853) GN=rihA PE=3 SV=1) HSP 1 Score: 62.8 bits (151), Expect = 2.200e-8 Identity = 71/257 (27.63%), Postives = 101/257 (39.30%), Query Frame = 1
BLAST of Spo13534.1 vs. ExPASy Swiss-Prot
Match: RIHA_SALA4 (Pyrimidine-specific ribonucleoside hydrolase RihA OS=Salmonella agona (strain SL483) GN=rihA PE=3 SV=1) HSP 1 Score: 62.4 bits (150), Expect = 2.900e-8 Identity = 71/257 (27.63%), Postives = 101/257 (39.30%), Query Frame = 1
BLAST of Spo13534.1 vs. ExPASy Swiss-Prot
Match: RIHA_SALTI (Pyrimidine-specific ribonucleoside hydrolase RihA OS=Salmonella typhi GN=rihA PE=3 SV=1) HSP 1 Score: 62.0 bits (149), Expect = 3.800e-8 Identity = 71/257 (27.63%), Postives = 101/257 (39.30%), Query Frame = 1
BLAST of Spo13534.1 vs. TAIR (Arabidopsis)
Match: AT5G18860.1 (inosine-uridine preferring nucleoside hydrolase family protein) HSP 1 Score: 1053.5 bits (2723), Expect = 7.200e-308 Identity = 528/887 (59.53%), Postives = 668/887 (75.31%), Query Frame = 1
BLAST of Spo13534.1 vs. TAIR (Arabidopsis)
Match: AT5G18890.1 (Inosine-uridine preferring nucleoside hydrolase family protein) HSP 1 Score: 585.1 bits (1507), Expect = 7.300e-167 Identity = 291/539 (53.99%), Postives = 390/539 (72.36%), Query Frame = 1
BLAST of Spo13534.1 vs. TAIR (Arabidopsis)
Match: AT5G18870.1 (Inosine-uridine preferring nucleoside hydrolase family protein) HSP 1 Score: 331.3 bits (848), Expect = 1.900e-90 Identity = 163/262 (62.21%), Postives = 197/262 (75.19%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo13534.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5 Position : 0 Zoom : x 1
BLAST of Spo13534.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5 Position : 0 Zoom : x 1
BLAST of Spo13534.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 5 Position : 0 Zoom : x 1
BLAST of Spo13534.1 vs. TAIR (Arabidopsis)
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. TAIR) Total hits: 3 Position : 0 Zoom : x 1
InterPro
Analysis Name: InterPro Annotations of S. oleracea
Date Performed: 2018-06-29 Position : 0 Zoom : x 1
GO Annotation
GO Assignments
This gene is annotated with the following GO terms.
RNA-Seq Expression
Co-expression
|