Overview
Sequences
The following sequences are available for this feature:
Legend: five_prime_UTRexonpolypeptideCDSthree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.TTTTGTTTTGACTTATCCTCTTATTTTATCTTATTATATTTCATTTTTAATAACTTTACAATTACTATGATTATGAATATGAGTAACTTGTATTCATGCGCACGATTTTGTAGTAATTAATTAGCATCTCATCAAACAAAAAAACTCCGTATACAGGTAGTAATTGCGGGAAGTTTTAGGGTGGGTGTTGATCTGTATTTAGAAGTTGAACTAGTTTTTTGTGTCTGGACTATGCCCCGAGTGTTACGTGGATTATGGGTTTAACTTGTGAAATTCATGACTGAAGAAATACTGTATGTTTTCTTTTAAAAATATGACATGTAAGTTGATATAGCATAAATTTGAGGTCATAGCCCATAGAGAGGAAAGTTTATGGGGTTTTATTTGATAAATTTTTGTTGTATTTATTTGAACTTATTTTTTCTTGAAATAAAGTGAAAAGAATAAAAGATGGCTATATGAAAATGTGTGTTTTCCCATCACTTTCCTTGGTGTTTCGTATCTTGAACAATTTGACGGCAGTACATAAATACGGCAAGTTTATTACTGTAGAGAAGAGGAGCAGTTGTATATAAAGCCTCGAATCTTTGTCATTTGAGCACCTGAGGCTTGGGCAAAAAGCCAGGCCTAACTTGAATAACATAAAACAAAAAAAAAACAGCTTTTACAGAAAAATCAATAATGGCTTCCATGGCGGCTATTTTCACCAAAACCCCAAACCCAACCCTCTCTTTCCCAAAACCATCCAAAACCCAGTTCACCCCATCATTCAATGTCTCATTCCCGACTCGAAGTCCGAATCGCTGTGGTCGAAACCCGATGCGAGTCTCATCGCAGCTGATTTCTCCCGACGGCGGAAGGTTGGTGGACTTGGTTGTGGATGATTCAATCAAGAGAGAGAAAATGAAGGAAGCTCTCGATTTACCGAGGATCAAGCTTTCTAAGATCGATCTACAATGGGTTCATGTTCTTAGTGAAGGGTGGGCTAGCCCACTTTCTGGTTTCATGAAAGAAAATGAGTTCCTCCAAACGCTTCATTTCAATTCGCTCCGACTCGATGACGGTTCGTTTGTCAACATGTCGGTGCCGATCGTTCTCGCCATTAATGATTTGGTGAAGAATCGGATTGGCGACTCTGACCGGGTTGCCCTGTTTGACCCGGATGATGATCACCCGGTCGCTATCCTCTCTGAGTATGTTCCCTTTTATTTATTTGTTTCTTTCTTTTATTTTACTCGTTCGTTTCTCGTTTCTGTTTTTTTTTTTTTTTAAAAAACTTTTTTATTTGGGTTTTAAGTTCTATCTTAAAATATGAAGTTATTTTGTTAAATTCGAAATAAATTAGGTTGTCTCCTATAAATTTATTCACATGTTTGGATTGGTTTGGATTTTTGGAAATTTTAGTTTGAGAGCGAAAATTCCCGGATAACATGTTGTTTTAATTTTAAAGTAATGTTTTTTTTGGACTTACTATTAGAATTTAGAGTTGTCTTAGAATCGTTCATGTTTTTTTTGGGTGCAAATGATTCATAAGGGTGGGGATGAGAATCGATCCCAGGTCATCTGGAACCGAGATGGAAGGTCTAACCAACTGAGCTATCTATCACTCTCTCTCTTAGAGTCGTTCATGTGGATTGAACATAAATAACTCTTATTTATAGTAGTCGTACATGTGAATTGAACCTAGACTTAGTTTATCCTAAACTTATCTGGTTTAGATTTAATTTATCATACGCTTTATCCTGTTAGAACTTAATTAACTTCTACTCCCTCCATTCCTTTTTGTTGTACCCATAAGGAATGTTGGGGGTATTTTAAGAAAACTGAATCTTGGGTTGTATCGGATATGAGTAATGATTGGGTGTAAGAATAATGATTGTGTGTAAGAAAAAGAATAAAGTAAAGAGAGAAAGTATTAAATTAATTGGGGAAAAAGTAGATATTTATTAAAGTATTGAATAAATTGAGTTACAATTTCTGTCACATGGACAAACCCAGAAAATTCAAACCAAAAAATCGACAAAAAATCAACCAAAAATTCGGAAAAAATCAACCCAAGATTCGACCAAATATAACCAAAAAATTCGACCAAGATCAAGGCAAAAAATCAACCAAATCAACTCAAAAATTCGACAAGAAATTCGACCAAAATCAACCCAAAAAATTCAAACAAAAATCAACCCAGAAAATCGATAAAAATCAACCCAAAAATTCGACCACAATCAACCCAAAAAAATAACAAAATTCAACCCAAAATTCGACCAATATCAACGAAAATAAATCGACAAAAATCAACCAAAAAACCATACCAAAATCAACCCAAAATTTCAACAAAAAATAACCCAGAAATTCGTAAAAAAATCGACAAACATCAACCTAAAAAATTCGAAATAAGGCAAAAATAAATTCAAACCAACGTGATCTCAATATCACGATTTTGAGGATTTAGAGGCCAAATTCGACCATGAAAACTCTAGATCTAGAGTTTTCATGGTCGAATTTCACCATCTAAAGCCATAATACGCATTCTACAGCTTTTTCTGGCGGGTGGTGGTGGCGGAGGTGTGGTGGTGGTGGCGATCTAAAATTTCACCTCCAGATCTTAAGAACAGAGATATTGTGGAGGAGAGAGAATCTTAGAGTTTTAAGAAATCAGAGATTTTAGAGGAGAGAGAGAGAGAAAAACGTGAGAGCAAGTATGGAAAATGAAGAACAATTTGGGGTTCTTGAGAGTTGCAGAGGTTTTGGAGGAGAGAGAGAGATAGAGCAAAATGAGAGGAGGAAGGAGAGAAATGAAGAGAGAGAGAGAAATGAATTTTGTCATGAATTCATGATAGGGACGGTTCAAATGGGTGGGGAAATGGGGAAGATTTAAGAATAAAATAAGAAAAGTGGTGAAATTTAGGTGTGAATAAGAGTAGAATCTTAAGGTTTTTTGGTAAATAGTGGGGAATCTTAGGGTAAATTGGTAAAAAAACTATGGCCAAAAATAGTAAAGATTCAGTAGGGGAACAACAAAAAGAAACGCCAAAAAAGGAAATGGGAACAACAAAAAGGAATGGAGGGAGTACTGAACTTACTTGAACTTAGTATCTCTTATTTGAACTTATCTCTGTTTATTGAACCTAACCAATGATGTTTTGGCTTAACAGTAAAAACTGAACACTTGTATAGTTGTATACTTGTATATAATAGGTTACTAGTTTAAATCCTCTCTACTCCATTTGTAACTTATATTGCCTTTAAAAGTTCGTTCGGAAAAGACAATTTATTGAACTTATCTTATAGGTGCTTATTCTTTTTACTGAAGTTGTGTTATCCAAACTTGGTTTTGTTTCTTTGAACACGACTCAATTGAACTTGTTTAGTGTTAACTAGACTGGTCTCGTGCACGCACAAATATTCGAAAATTATTATTTGAATCTTTTTGATGAAATATTTAATTGGAATATTTATTCCCTTAGAGTTAATGCGTAACTAATAAATCTTGAACATACTCATTTTATTAGTTAATTTGAAATTTCCCCCTGCTACGTATTATATATTTTATACGTTGAATATGATAAGGACCAAAATATTTGATATGCAGAGAATGTTAATTTGACCAAATATTGACTAAATATTTTTTCTATAATTGATAACGTCAATTTAACTAAAATATTACCAAAATCATCTACTTAATCCGTCACTTAGTACTCGCCCCGCTTTCCTTTTAAAGTCGTTTCTTAATACTCGCCCCGTTTTCATAAATGACATACTTTTACTAATATTATATTACTCCCTCCGTCTCTTTTTGTTTTTTACGTTTGTCATTTTTCACGCTTTTTAACGATTAATTAATTTGTATCGAGATTTTCAATTTTGGTTATTTAAACAAGATAAATTACGTTTATTTATAATGTTTTCACCTTTATCAAAATTATGATATTGGGAAATGAGAAAAATTTAATGTCCCAATGGAAAAGTGTGAGAGAATAAATGATCCAATGAATTTAATTGGTTAAAATAATAATTGGACACAAATTTTGATAGAATACTAAGTCATTTATGTGATTATATAAAAGGAAATGTAAAGAACATTTTGAAATACCCAAAAAGGAAAACGTAAAGAACAAAAAGAGACGGAGGGAGTATTTTTCTCGCTTAACCATGAATCAATTTATTTTCCTATTTCCTAAAAAACATTAAAAATTTCAAAACCTACCCCACCTCCGCCCCTTTATTTGACACATTTTCCACTTACTATATAATAATAGGCCACTAATCAACTATAATCTAATAAATTAATAAATCAATTAAATTGCCTAAAACTCTGTGTCGGTCAAACCGCGCCGAATATTAAGGGATGGAGGGAATAATATTGTAATATTCTATAATCTTATATTTTTTCTCATACATACATAGCAGTTTATACAAAATTAGAGAAAATATAAAAAAACAAATAAAGTAGATATGTTTTTTAGGAAAGATTTTTTTGGCGGGAAAATTTTGCACCAGGAATAGCAGTTAGTATAATGTACTCCGTAATAGATTTTCCCCAAAAAATTAGTAAAATGAAGTGGGGTGTTAGTTAGGCCATATGAACACTCAAAACACCCGAAAAGGGATCGATTGATTTGGTGTAAAATGTTTTGCTGAAAAATAATTTTACTATTTTTGTCATTTTCCGTTATTTGGTATGACAAATGATGTAAAACAATTTTCCAATAACTTGTACCAGAAAATATTTTTTCATTTGAATGGAAGGGAAATCACATGAAACATTATAAAGATGTTTCACACCAATTCATGAATTTTAATCACTAGCTATTTAGTTTTAGTGGCGTATCAAATCTTCTTTCTTGTCACTATTAGCATTTAAGCTTGACAATGATTTGAGAACTCTAAAAAGAAATGAAGTAATTGTTAACTATTGTTAGAACGAGCACTCTGTAATCCCCAAAAAATGGATAAAATCGTCGTTTCTCAAGCCTTGGCGCGATTTGGAAATGAAATCGATCCCCAACAAATAAAGTATATCCTATATTGATAAACAAAAAATAGAGTTTGAGGAGTAATTTTATTTGTAATTTTGTAAAATGTCACTGGTGTGGACTAAAAACATGACAGATGCATGCAAATTGGGAAGCTTAATATGGATAGCCCCCTCTTTTCTGGTATTTACTTTGAATAATTCCAACTTTTTAGGGCATCATTATTTTCTATTCAAAGCCTTATAGCCTCCGGAATAAACACTGAAATGACCCACTCTAAAGCAGTAGCGGATCCAGAATTTTGAGATAGTGGGGTCACTATTTAAAAATTGATGAAACTTTCACTAAAATTATTTATTTTTTTAAAAAAAATTGAAATTTTAACTATAAAAAAAAAAAAAATTCAAGTGGGGTCAAGGACCCCACTGAGGGCACCGTGGCTCCGCCACTGCTCTAAAGTTAGGTAGTTGTAGCACCAATCTATAGTACTATACACACATAAACCAACGAAAGTGACACAAATGGGTTGAATTCCTAGCCATGGAACTGCTCAAGGAACCTCTCTAGACTAAAGGATGCATTGATTTTTTTTGGTGCGAATGAGCCACAAAGGCAAAATATAAATTACAAATGGGGGCGGGGGGATTCGAACCTGAGACCTATTGTACACAGGCCCTCAGTCTTTACCACTAGGCCAAGACATCATTGGTAAAGGGATGCATTGATGTATTATCAGTTTTGTTATGAATATTCAATATATTTTCACATGATGAAATTCAGTGGTGTGTTCGTGTGTACAATTACATGTGTGTGTGAGATTCTGGAAGGGATGTTTCATGTTTGACTTCTGAAATATGCATCGATATGATGATTCACCTTGGTGTAGCTCTGAATATTTTTACTTGTTATGTTTACATATAAATTGGTAAAAGAAACTTATCATCATCTTTAATTTAATTGTGATCCAGCATTCAGATATACAAGCACAACAAAGAAGAGCGTGTAGCAAGAACATGGGGTACGACTGCTCCTGGTCTTCCTTACGTGGAGGAAACAATAGCCAATGCTGGAGACTGGTTGATTGGAGGTGATTTACAAGTTCTAGAACCTATTAAGTACAATGATGGTCTTGATAGATTCCGGCTATCCCCCTCTCAGCTTCGTGAAGAATTCCTCAAGCGTGATGCTGATGCAGTCTTTGCTTTCCAACTTAGGAATCCAGTGCACAATGGCCATGCTCTACTAATGACTGACACACGTCGTAGGCTTCTTGATATGGGGTATAAGAATCCTATCCTTTTGCTTAATCCACTTGGAGGCTTCACCAAGGCGGATGATGTTCCTCTACATTGGCGTATGAAGCAACATGAAAAGGTTTCTCAATTCATCCTTTCCTTTTGTCAATCCATGGTTTAAGCCTGGTTGATTATCCCTAATTGTAATTTTGTATTTGCAATAAAATAAAATAAAATAAAATATCAGGTGCTTGAAGATGGTGTGTTAGACCCAGAGACGACAGTGGTTTCGATATTTCCTTCCCCAATGCACTATGCTGGTCCAACTGAAGTACAATGGCATGCAAAGGCTCGTATTAATGCTGGGGCAAATTTCTACATTGTAGGACGTGACCCTGCTGGCATGGGTCATCCTCTTGAGAAAAGAGATCTTTACGATGCTGACCATGGTAAAAAAGTGCTCGGAATGGCTCCTGGACTTGAACGGCTCAACATCCTTCCATTCAAGGTTTGAAAGTTTGAGCTTATGTTTCCTTTTTGTCATTCTTATGGTTTAATCTTATTATTATTGTTCCTAAATACTGGATCAGGTTGCCGCCTATGATAAGACTCAAGGTAAAATGGCATTCTTTGATCCTTCAAGGCCTCGAGATTTTCAGTTCATATCAGGCACCAAGGTATTGATCACTTATCAGTTATCCTATCTACAATTCTAACATAGCATATTAGCATATGTAATACTTACTATCTTGTCAGTTTGAAAAACAAGTGTGAATTGATCAAGATTGTTTTAACTACAGATGCGAACTCTTGCAAAGAACAATGAAAATCCCCCAGATGGATTTATGTGCCCCAGTGGATGGAAGGTGTTAGTGGAATACTACGACAGTGTTGCTTCCTCTGACAATGGCAAGATTCCTCAAGCTGCTACTGCTACTGCTACTGCTGCTTTAGCTGTTTGATGAGTTTTCATTGGTTCGATTTCGAAACCTCTACCCTTTGGGAGAAACTCTTTATGATTTCCTATCTCCTGTGGATATTTGTCTCAGAAACTTTGTAAATTTGTATGTTTCTGAATCTCTCTGGTCCAAACCGGCCCTCTAAAAGGTACCAGACAGTGTAGGGTTTCGAGCATTTGCTCCCTACCCAAAGTCTATGGAAGTGTTTCAGGAGGAACAGTCAGTCGTTCCCTGTCATGATTTGAAGGCTTTCACAAACTATCTCTGTAAAATAAGATTGTATGAAATGTGGTGAACTATCACTTTGTATGTTTGATGCTGTGAAACCCAGGGTTGATATGGCTTCAAATCTTGGCACCAGTAACCTAATATTAAGCTTAGAATTACCTAAATGTGGACCTAATCACTTTAAAACGTATTCTGACCGCCTACGCTGTGCAACGCCTGATACTAGTTTTCAGCAGTGTATTACGTAAGAATTTATAAATGGGGGTCAAAAAAAAT TTTTGTTTTGACTTATCCTCTTATTTTATCTTATTATATTTCATTTTTAATAACTTTACAATTACTATGATTATGAATATGAGTAACTTGTATTCATGCGCACGATTTTGTAGTAATTAATTAGCATCTCATCAAACAAAAAAACTCCGTATACAGGTAGTAATTGCGGGAAGTTTTAGGGTGGGTGTTGATCTGTATTTAGAAGTTGAACTAGTTTTTTGTGTCTGGACTATGCCCCGAGTGTTACGTGGATTATGGGTTTAACTTGTGAAATTCATGACTGAAGAAATACTGTATGTTTTCTTTTAAAAATATGACATGTAAGTTGATATAGCATAAATTTGAGGTCATAGCCCATAGAGAGGAAAGTTTATGGGGTTTTATTTGATAAATTTTTGTTGTATTTATTTGAACTTATTTTTTCTTGAAATAAAGTGAAAAGAATAAAAGATGGCTATATGAAAATGTGTGTTTTCCCATCACTTTCCTTGGTGTTTCGTATCTTGAACAATTTGACGGCAGTACATAAATACGGCAAGTTTATTACTGTAGAGAAGAGGAGCAGTTGTATATAAAGCCTCGAATCTTTGTCATTTGAGCACCTGAGGCTTGGGCAAAAAGCCAGGCCTAACTTGAATAACATAAAACAAAAAAAAAACAGCTTTTACAGAAAAATCAATAATGGCTTCCATGGCGGCTATTTTCACCAAAACCCCAAACCCAACCCTCTCTTTCCCAAAACCATCCAAAACCCAGTTCACCCCATCATTCAATGTCTCATTCCCGACTCGAAGTCCGAATCGCTGTGGTCGAAACCCGATGCGAGTCTCATCGCAGCTGATTTCTCCCGACGGCGGAAGGTTGGTGGACTTGGTTGTGGATGATTCAATCAAGAGAGAGAAAATGAAGGAAGCTCTCGATTTACCGAGGATCAAGCTTTCTAAGATCGATCTACAATGGGTTCATGTTCTTAGTGAAGGGTGGGCTAGCCCACTTTCTGGTTTCATGAAAGAAAATGAGTTCCTCCAAACGCTTCATTTCAATTCGCTCCGACTCGATGACGGTTCGTTTGTCAACATGTCGGTGCCGATCGTTCTCGCCATTAATGATTTGGTGAAGAATCGGATTGGCGACTCTGACCGGGTTGCCCTGTTTGACCCGGATGATGATCACCCGGTCGCTATCCTCTCTGACATTCAGATATACAAGCACAACAAAGAAGAGCGTGTAGCAAGAACATGGGGTACGACTGCTCCTGGTCTTCCTTACGTGGAGGAAACAATAGCCAATGCTGGAGACTGGTTGATTGGAGGTGATTTACAAGTTCTAGAACCTATTAAGTACAATGATGGTCTTGATAGATTCCGGCTATCCCCCTCTCAGCTTCGTGAAGAATTCCTCAAGCGTGATGCTGATGCAGTCTTTGCTTTCCAACTTAGGAATCCAGTGCACAATGGCCATGCTCTACTAATGACTGACACACGTCGTAGGCTTCTTGATATGGGGTATAAGAATCCTATCCTTTTGCTTAATCCACTTGGAGGCTTCACCAAGGCGGATGATGTTCCTCTACATTGGCGTATGAAGCAACATGAAAAGGTGCTTGAAGATGGTGTGTTAGACCCAGAGACGACAGTGGTTTCGATATTTCCTTCCCCAATGCACTATGCTGGTCCAACTGAAGTACAATGGCATGCAAAGGCTCGTATTAATGCTGGGGCAAATTTCTACATTGTAGGACGTGACCCTGCTGGCATGGGTCATCCTCTTGAGAAAAGAGATCTTTACGATGCTGACCATGGTAAAAAAGTGCTCGGAATGGCTCCTGGACTTGAACGGCTCAACATCCTTCCATTCAAGGTTGCCGCCTATGATAAGACTCAAGGTAAAATGGCATTCTTTGATCCTTCAAGGCCTCGAGATTTTCAGTTCATATCAGGCACCAAGATGCGAACTCTTGCAAAGAACAATGAAAATCCCCCAGATGGATTTATGTGCCCCAGTGGATGGAAGGTGTTAGTGGAATACTACGACAGTGTTGCTTCCTCTGACAATGGCAAGATTCCTCAAGCTGCTACTGCTACTGCTACTGCTGCTTTAGCTGTTTGATGAGTTTTCATTGGTTCGATTTCGAAACCTCTACCCTTTGGGAGAAACTCTTTATGATTTCCTATCTCCTGTGGATATTTGTCTCAGAAACTTTGTAAATTTGTATGTTTCTGAATCTCTCTGGTCCAAACCGGCCCTCTAAAAGGTACCAGACAGTGTAGGGTTTCGAGCATTTGCTCCCTACCCAAAGTCTATGGAAGTGTTTCAGGAGGAACAGTCAGTCGTTCCCTGTCATGATTTGAAGGCTTTCACAAACTATCTCTGTAAAATAAGATTGTATGAAATGTGGTGAACTATCACTTTGTATGTTTGATGCTGTGAAACCCAGGGTTGATATGGCTTCAAATCTTGGCACCAGTAACCTAATATTAAGCTTAGAATTACCTAAATGTGGACCTAATCACTTTAAAACGTATTCTGACCGCCTACGCTGTGCAACGCCTGATACTAGTTTTCAGCAGTGTATTACGTAAGAATTTATAAATGGGGGTCAAAAAAAAT ATGGCTTCCATGGCGGCTATTTTCACCAAAACCCCAAACCCAACCCTCTCTTTCCCAAAACCATCCAAAACCCAGTTCACCCCATCATTCAATGTCTCATTCCCGACTCGAAGTCCGAATCGCTGTGGTCGAAACCCGATGCGAGTCTCATCGCAGCTGATTTCTCCCGACGGCGGAAGGTTGGTGGACTTGGTTGTGGATGATTCAATCAAGAGAGAGAAAATGAAGGAAGCTCTCGATTTACCGAGGATCAAGCTTTCTAAGATCGATCTACAATGGGTTCATGTTCTTAGTGAAGGGTGGGCTAGCCCACTTTCTGGTTTCATGAAAGAAAATGAGTTCCTCCAAACGCTTCATTTCAATTCGCTCCGACTCGATGACGGTTCGTTTGTCAACATGTCGGTGCCGATCGTTCTCGCCATTAATGATTTGGTGAAGAATCGGATTGGCGACTCTGACCGGGTTGCCCTGTTTGACCCGGATGATGATCACCCGGTCGCTATCCTCTCTGACATTCAGATATACAAGCACAACAAAGAAGAGCGTGTAGCAAGAACATGGGGTACGACTGCTCCTGGTCTTCCTTACGTGGAGGAAACAATAGCCAATGCTGGAGACTGGTTGATTGGAGGTGATTTACAAGTTCTAGAACCTATTAAGTACAATGATGGTCTTGATAGATTCCGGCTATCCCCCTCTCAGCTTCGTGAAGAATTCCTCAAGCGTGATGCTGATGCAGTCTTTGCTTTCCAACTTAGGAATCCAGTGCACAATGGCCATGCTCTACTAATGACTGACACACGTCGTAGGCTTCTTGATATGGGGTATAAGAATCCTATCCTTTTGCTTAATCCACTTGGAGGCTTCACCAAGGCGGATGATGTTCCTCTACATTGGCGTATGAAGCAACATGAAAAGGTGCTTGAAGATGGTGTGTTAGACCCAGAGACGACAGTGGTTTCGATATTTCCTTCCCCAATGCACTATGCTGGTCCAACTGAAGTACAATGGCATGCAAAGGCTCGTATTAATGCTGGGGCAAATTTCTACATTGTAGGACGTGACCCTGCTGGCATGGGTCATCCTCTTGAGAAAAGAGATCTTTACGATGCTGACCATGGTAAAAAAGTGCTCGGAATGGCTCCTGGACTTGAACGGCTCAACATCCTTCCATTCAAGGTTGCCGCCTATGATAAGACTCAAGGTAAAATGGCATTCTTTGATCCTTCAAGGCCTCGAGATTTTCAGTTCATATCAGGCACCAAGATGCGAACTCTTGCAAAGAACAATGAAAATCCCCCAGATGGATTTATGTGCCCCAGTGGATGGAAGGTGTTAGTGGAATACTACGACAGTGTTGCTTCCTCTGACAATGGCAAGATTCCTCAAGCTGCTACTGCTACTGCTACTGCTGCTTTAGCTGTTTGA MASMAAIFTKTPNPTLSFPKPSKTQFTPSFNVSFPTRSPNRCGRNPMRVSSQLISPDGGRLVDLVVDDSIKREKMKEALDLPRIKLSKIDLQWVHVLSEGWASPLSGFMKENEFLQTLHFNSLRLDDGSFVNMSVPIVLAINDLVKNRIGDSDRVALFDPDDDHPVAILSDIQIYKHNKEERVARTWGTTAPGLPYVEETIANAGDWLIGGDLQVLEPIKYNDGLDRFRLSPSQLREEFLKRDADAVFAFQLRNPVHNGHALLMTDTRRRLLDMGYKNPILLLNPLGGFTKADDVPLHWRMKQHEKVLEDGVLDPETTVVSIFPSPMHYAGPTEVQWHAKARINAGANFYIVGRDPAGMGHPLEKRDLYDADHGKKVLGMAPGLERLNILPFKVAAYDKTQGKMAFFDPSRPRDFQFISGTKMRTLAKNNENPPDGFMCPSGWKVLVEYYDSVASSDNGKIPQAATATATAALAV Relationships
The following mRNA feature(s) are a part of this gene:
Homology
BLAST of Spo11735.1 vs. NCBI nr
Match: gi|902172590|gb|KNA08144.1| (hypothetical protein SOVF_165240 [Spinacia oleracea]) HSP 1 Score: 975.3 bits (2520), Expect = 3.800e-281 Identity = 475/475 (100.00%), Postives = 475/475 (100.00%), Query Frame = 1
BLAST of Spo11735.1 vs. NCBI nr
Match: gi|731376505|ref|XP_010667588.1| (PREDICTED: ATP sulfurylase 1, chloroplastic [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 839.7 bits (2168), Expect = 2.500e-240 Identity = 396/465 (85.16%), Postives = 435/465 (93.55%), Query Frame = 1
BLAST of Spo11735.1 vs. NCBI nr
Match: gi|720075290|ref|XP_010279275.1| (PREDICTED: ATP sulfurylase 1, chloroplastic [Nelumbo nucifera]) HSP 1 Score: 774.2 bits (1998), Expect = 1.300e-220 Identity = 373/469 (79.53%), Postives = 416/469 (88.70%), Query Frame = 1
BLAST of Spo11735.1 vs. NCBI nr
Match: gi|694392940|ref|XP_009371929.1| (PREDICTED: ATP sulfurylase 1, chloroplastic-like [Pyrus x bretschneideri]) HSP 1 Score: 770.8 bits (1989), Expect = 1.400e-219 Identity = 373/467 (79.87%), Postives = 414/467 (88.65%), Query Frame = 1
BLAST of Spo11735.1 vs. NCBI nr
Match: gi|225432812|ref|XP_002283572.1| (PREDICTED: ATP sulfurylase 1, chloroplastic [Vitis vinifera]) HSP 1 Score: 768.8 bits (1984), Expect = 5.400e-219 Identity = 366/469 (78.04%), Postives = 418/469 (89.13%), Query Frame = 1
BLAST of Spo11735.1 vs. UniProtKB/TrEMBL
Match: A0A0K9QLM5_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_165240 PE=4 SV=1) HSP 1 Score: 975.3 bits (2520), Expect = 2.600e-281 Identity = 475/475 (100.00%), Postives = 475/475 (100.00%), Query Frame = 1
BLAST of Spo11735.1 vs. UniProtKB/TrEMBL
Match: A0A0J8B5V5_BETVU (Uncharacterized protein OS=Beta vulgaris subsp. vulgaris GN=BVRB_009820 PE=4 SV=1) HSP 1 Score: 839.7 bits (2168), Expect = 1.700e-240 Identity = 396/465 (85.16%), Postives = 435/465 (93.55%), Query Frame = 1
BLAST of Spo11735.1 vs. UniProtKB/TrEMBL
Match: A5AV70_VITVI (Putative uncharacterized protein OS=Vitis vinifera GN=VIT_05s0020g04210 PE=4 SV=1) HSP 1 Score: 768.8 bits (1984), Expect = 3.700e-219 Identity = 366/469 (78.04%), Postives = 418/469 (89.13%), Query Frame = 1
BLAST of Spo11735.1 vs. UniProtKB/TrEMBL
Match: M5XFD8_PRUPE (Uncharacterized protein OS=Prunus persica GN=PRUPE_ppa005353mg PE=4 SV=1) HSP 1 Score: 764.6 bits (1973), Expect = 7.100e-218 Identity = 363/464 (78.23%), Postives = 416/464 (89.66%), Query Frame = 1
BLAST of Spo11735.1 vs. UniProtKB/TrEMBL
Match: W9RXT4_9ROSA (ATP sulfurylase 1 OS=Morus notabilis GN=L484_013341 PE=4 SV=1) HSP 1 Score: 761.9 bits (1966), Expect = 4.600e-217 Identity = 367/465 (78.92%), Postives = 411/465 (88.39%), Query Frame = 1
BLAST of Spo11735.1 vs. ExPASy Swiss-Prot
Match: APS1_ARATH (ATP sulfurylase 1, chloroplastic OS=Arabidopsis thaliana GN=APS1 PE=1 SV=1) HSP 1 Score: 753.8 bits (1945), Expect = 1.100e-216 Identity = 363/463 (78.40%), Postives = 409/463 (88.34%), Query Frame = 1
BLAST of Spo11735.1 vs. ExPASy Swiss-Prot
Match: APS3_ARATH (ATP-sulfurylase 3, chloroplastic OS=Arabidopsis thaliana GN=APS3 PE=1 SV=1) HSP 1 Score: 731.1 bits (1886), Expect = 7.800e-210 Identity = 358/466 (76.82%), Postives = 399/466 (85.62%), Query Frame = 1
BLAST of Spo11735.1 vs. ExPASy Swiss-Prot
Match: APS4_ARATH (ATP sulfurylase 4, chloroplastic OS=Arabidopsis thaliana GN=APS4 PE=2 SV=1) HSP 1 Score: 706.8 bits (1823), Expect = 1.600e-202 Identity = 341/431 (79.12%), Postives = 380/431 (88.17%), Query Frame = 1
BLAST of Spo11735.1 vs. ExPASy Swiss-Prot
Match: APS2_ARATH (ATP sulfurylase 2 OS=Arabidopsis thaliana GN=APS2 PE=1 SV=1) HSP 1 Score: 651.7 bits (1680), Expect = 6.000e-186 Identity = 304/411 (73.97%), Postives = 353/411 (85.89%), Query Frame = 1
BLAST of Spo11735.1 vs. ExPASy Swiss-Prot
Match: PAPS2_HUMAN (Bifunctional 3'-phosphoadenosine 5'-phosphosulfate synthase 2 OS=Homo sapiens GN=PAPSS2 PE=1 SV=2) HSP 1 Score: 495.4 bits (1274), Expect = 7.200e-139 Identity = 231/377 (61.27%), Postives = 294/377 (77.98%), Query Frame = 1
BLAST of Spo11735.1 vs. TAIR (Arabidopsis)
Match: AT3G22890.1 (ATP sulfurylase 1) HSP 1 Score: 753.8 bits (1945), Expect = 6.300e-218 Identity = 363/463 (78.40%), Postives = 409/463 (88.34%), Query Frame = 1
BLAST of Spo11735.1 vs. TAIR (Arabidopsis)
Match: AT4G14680.1 (Pseudouridine synthase/archaeosine transglycosylase-like family protein) HSP 1 Score: 731.1 bits (1886), Expect = 4.400e-211 Identity = 358/466 (76.82%), Postives = 399/466 (85.62%), Query Frame = 1
BLAST of Spo11735.1 vs. TAIR (Arabidopsis)
Match: AT5G43780.1 (Pseudouridine synthase/archaeosine transglycosylase-like family protein) HSP 1 Score: 706.8 bits (1823), Expect = 8.800e-204 Identity = 341/431 (79.12%), Postives = 380/431 (88.17%), Query Frame = 1
BLAST of Spo11735.1 vs. TAIR (Arabidopsis)
Match: AT1G19920.1 (Pseudouridine synthase/archaeosine transglycosylase-like family protein) HSP 1 Score: 651.7 bits (1680), Expect = 3.400e-187 Identity = 304/411 (73.97%), Postives = 353/411 (85.89%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo11735.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo11735.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo11735.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 5
BLAST of Spo11735.1 vs. TAIR (Arabidopsis)
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. TAIR) Total hits: 4
InterPro
Analysis Name: InterPro Annotations of S. oleracea
Date Performed: 2018-06-29
GO Annotation
GO Assignments
This gene is annotated with the following GO terms.
RNA-Seq Expression
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