Overview
Sequences
The following sequences are available for this feature:
Legend: five_prime_UTRexonpolypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below.AGATACGACTCGGTACGAGAGCACATGGGTTTGGGCCTGTCTGGACCGCATTTTTTGACTCGGCCAGGCCAACACTACATTACAGCGGGCTTGCTGTGGGCTCACCCCTTCAGGCCCACAACCATCTTTAGCTAATGCCCTTATAAGGAGAAGGATAAGTAGATGCTGACGTGTCCGATCCTATACAAGCCACGTGGCAAGAATAGAAAACAATCAATTCATTTCCCTCCACAAAACAACGGTAAAAACTAACCAACTCCATTGTACCAGTGTGAACTTTCTCTCTCCTCTATTACAGTAGTACAACAATGGCGACTAGGGAAATCGCACTCTTAGGGTTTCGATTAACCCAATTTCCACCTCTTTCTTCCATATCCAATCGAAACCCTAACAGTGCAGTTCCTTTCAATTCGATTCTCTCCATTCGCAGAAACTCGAATTCTCGCATTTATTCATCATCTATTACTAACAAATCAGAAAAACAAGGAATTTCTGGTAAATTTACCGAAGATGAGAATCGGCTTGTTGATGTTCTAATTGGCATTCAAGGGCGAGGTCGCGCTGCTTCTCCTCAACAGCTTAAGGTATTCATCTCTTCTTTTTGTTTTTTAGTCAAAAAAGTTAATTATTTGATCAATTCTTATTGAAATTGATTATTTTTGTCTGTAATTATTGTAATTTGTTACAGGAAGTGGATCGTGCGGTTCAAGTTCTGGAAGATGTAAAAGGTGTTCCTGATCCGGTTAGTTGTTTGTGTTTTAATGGAATAATTTTGGACTAATTTAACAAACATACTAGGGTAGCTCTAATTTTTCTTGAGCATAACGTATGTGAATTTATTTTTTCCGATCTTATTTGAAGTTATTAGTCTTGAAGTAAGTGGTAATAAGGTGACCTGAACAACGCGTAGTAGCATTAATGTATTATACTCCCTCCGTACCTTTTTTGATTGTCTTGTAAGTCAAAATTCATTTTTTTTAAGAATTAAGGGTAAAATGTGCACATGAGGTTGATAAAGTGGGCCCATGAGACAAAGATAGAGAGAGCAAGTGGAAAAACATTACATTTAAGGTATGGAGCAATCTTAAAGGGACACCCTAAAGCGGAATGGCGGGCAATAAAAAAGGGACGGAGGGAGTATGAATCTAGGTGTCCGAGGTTTGTGTTGGTAATACTTTGATTTGGAACGAGGATTTGGAGTATCTTTGCTTTTGGTGGTGCCTTTTAAGAGAATGTAATGTTTCTTGCAATTCTAGGTTTGGTGAGATTGATGGTTGATTCTAGGGTTGTGTTTAGAATTTGGTAGGATTGCAATTTAGTTTGCAAAATATGTAGATTTTCTCATTATTTCCTGTCACTTGAAAAGGACTAGGAGCTTTTGTTTACCTACCTGTGATTTGATCTTTTCCCTAACAAGAATTGGAGTTTGATCGTGTCCTTTTGTACTAGTGCCATGACTCCAATGCTTCTGGCCTCATTTTATACTTTTGATTTTTTTCAGACGAGCTCTAGTTTGATTGAAGGTAGATGGCGACTGATGTTTACTACAAGGCCAGGAACTGCCTCTCCCATTCAGGTTAATTTCAATCTTGAGTGCTTTTACATATAAATCAATTGGTATTCTGCTACTTTCATCCAAAAGTTTTTGGGTGATGAGTCTTATGACTGATGTCGAGGTTGTTTACATCTTCCCATTATTGATTTTATGCATTCAATTTAGATGAGTCTTGGAAAATAAAACCTCACCCAAGTCTAAATTGTAAGGAGTGACTGTATTCTTACAGTTTTCAGAATATGCTTCGTCAAAGGTAGAAGGTGATGTTTCTTTTGAGAGAGGTGTATAACTATGTAAATGTGCTATGAACTGATATTATGGGGGAGGGTAATTTAGATATTATCTTAATTAGTAGCTTGGGGAATAAGCTGTACTTTCAGTTTATTAATCAAATCTTCATTAGTCTCTTGTTTTTTTATGGTCTGTTATCTTTGCTAATTCATAGCAAAATGTTGCAGTTAGTTTTTTCCTTAACCTATGGATGAATATCTAGACATACAGACTTCCATCTTTTGTTCAGTTTATCTGTTCTTGTTGGCAAGTGATGATTGATTCTCAATTTCACCCTGATCTCTACCGGTACCATAAGCTTACATCTCCTCTATTAAACTTTTTTACTGAATCCAAAATTTATTGTGTTTTTTCCATGACAGAGAACATTTGTAGGAGTTGATTTCTTCAGCGTATTCCAAGAGGTATATCTACGAACAAATGATCCACGAGTGTCCAATATTGTAAAATTCTCAGATGCTGTTGGCGAACTAAAAGTAGAGGCAAGTTATGCTCATTTTCAGACTAACTTCTTAGGTAGTTCATTAGTGATTTAGTTCCTGTAATGATGCACTAGAAAGTCAAACTAGCATCAAACTTGGTGTATATATCTTTTTTCCAGATTCATGAGTTCAATGTGAAAGTGTTTACTGATATCAGTAAACCATTATTTCCTCGGTCTACAGGCTGTAGCATCTGTTAAGGATGGAAAGCGAATTCTTTTCCGGTTTGACAGGGCAGCCTTTTCTTTAAAATTCCTACCATTTAAGGTACCTTATCCGGTGCCATTTAAACTTCTGGGAGACGAAGCAAAGGGTTGGCTTGATACAACATATTTGTCTGATTCTGGAAATATACGTATTTCAAGGGGGAATAAGGTATATAACTTTAGCATATTCATTGCAAAAAAATGATTGAAAGCATATATTTCTTTCTATATCAAAGTTGAAAAATGGACTAAGGACTTCTATCACTATTCCTGTAGTGCAGGGCACCACTTTTGTGCTCCAGAAGGAAATTGAACCTAGGCAAGAGTTGCTTTCTGCAATTTCTACTGGAATTGGAGTGACAGAGGTTGGTTTTCTATGAAGTGTTTAAGAAAACAGCTGGAAAGAATACATATACCTATTTCTGTGTGTGTACTTACTGTGTAGTGTATCCATTACATTTGTTTGCAACTTTTGCAGGCGATTGATAAGTTAATTTCCACAGCTCGAGATAAGGATGGTGAACCTCAGCTTCTAGAGGGGGAATGGAAGATGATCTGGAGTTCTCAGGTGTGGTACATCAGTACATGTCAGAATTGAATCTCCTATGTTTTGTCAGTGATAAGTACAGAATGTTGCTTCTTTTTCATGCTGGTCATTATTAAAAAAGGCCAGGAGATTACAACCTTGCGATGATGGAGAATTTTGAGTTTGGTGTGCATTTTGGAGCAATTAACTAGGATTAGTGCAGTGAAGTTTTGTGTTCATTTGTGAGTAATGGTTATTTTGAAATACAAGTTGGAGGGTTAATATTGGAAGAAAAACTTTTTTCGCTTCTCTATTCATTGTACTCCAAGAGAAAATGGTTTATAATTTTTTTTATTTTTTTTGGGGTTAAAGTTCGATCTTTTGTGGCAGGTGGAGACAGACAGCTGGTTGGAGAATGCAGCAAATGGTCTCATGGGTACACAGGTTAATTTACAGCAAGTTCTGATTTATGTATACTTTGATGTAGAATCATTCTGACATTACTTTTAAGTTTTAACAGATAATCAAGAAAGATGGACAAATGAAGTATTCGGTTGATATTGCACTTGGCTTCAGATTCTCCATGACAGGCTCATATCAGTATGTCATGTTCTCTGTTTAGTTCAATTTGCAGTTAGATTTAAGCAAACAAAAGATGCACATATTTTCTCACTAGGGGCTTAATCTTCTGTGTTTCTACATGCACTTTAAATTTTAGCATTAGAAGAAGTATGATCTTCGATTTATTTCTCAATTACCTTTAGGTTTACGCATCTTTACATTACAGTCTTACAGCACGTGATTCTCCATGACAGGCTCATATCAGTATGCCATGTTCCATATGCAGTTAGAAAAGATGCACATGTTTTCTCACTAGAGGCTTAATATTCTGTGTTTCTAGCTACGTGCACTTTAAAATTTAGTATTAGCGTAATATGATCTTTGATTAATTTCTCAATTACTTTTAGGTTTACACATCTTTACAGTAAAGCCTTACAGCGTGTCATGAATCCCTTGAAAAAGGATCAGCACTGAGAAGGGGATGGTTTACATATCCACTAAGATAGTAACATTACACGGACACAGGATAAAGTAATAACTAGACCTGTTCAACGGGCTGGGGGCCCATTAATAGCCCGAATCCAGCCCGTTGGGCTGAGCCCTTTACTTCTATTAAAGGGTTGGGCTCTTAAAGGGTTAGACGAGCTGAGCCAAGGCTCAAAATTGTTGACAAGGGAACCTGTCCTAGAATTGGAAGCAGGTGCATTGGGAGACAAGATTAAGGAGATACTCCTGATTTCAGAAGACTTCTGAATGTCTTTTTCCTGTATCAAATACATAAATAATACTCAAATTTTTAGATTTAATAGTTTGCAAGTTCTGGTAATTGAGATGTTGGGATGATAAACGAAGTGTCAGTCCGATGTGAAGGGTACTTGAATTAGAATAGAAGACTCAAATTAACATATATTTCCACACAAGATAATGCTTCAGGCTTCTGTTGTTTTTTTTACAATTCTTCTGTTTGTAGTTCTGCAGCACTTCTCTGTGTTTTCAAACGCGTTATTGATGTTGTTTACAGGAAAACATATAGGAAGATACTTCGTATATAATGTAAACGCGTTTTTTTGAAGTTGTTTACAGGAGAACAGAAAGGAAGATGTATAATGTAAACGAGTTTTTGATGTTGTTTACAGGAAAACAGATAGGAAGATGTATAATGTAAACGAGTTTTTGATGTTGTTTACAGGAAAACAGATGGGAAGATATATACTGTAAACGTGTTTTTGATGTTGTTTACAGGAAAACAGACGGGAAGATATATAATGTAAACGTGTTTATGATGTTGTTTACAGGAAAACTGATAAGAAGATATATGATGTAAAAATGGATGATCCAGCTATCGTATTTGGCTCTTTTGGACTCCCAATTAATATGGAAACCCAATTCAACCTTGAGCTTCTGTAAGATATCTATCTATCTGTCTATCTATCGCCTTTTTAATTTATCAGATTCAAACCCTATTTCTGTAACAAGTTTCTTCCCCGAAAAATATGTTGCAGGTATGCAGATGACAGGATCAGAATCACAAGAGGATACAATAAGATTGTGTTTGTTCACTTGCGAGTGTAGACTTGTCTTATTAGGCCGAAATAAGCCACAATTGCAGGAAGTATATATACGACTATTAAACAATAGAAAAGATAATGTAAGCGAGATTCAATCTTAGGTCATGAATATCTTTATGTTTATTGTAGAATATTTCTGTCACAACTTGAAGGGTTGATGCTAATTGGCTCACCAAATTTGAAATGAAATTAGACTTGTTCAAAATCAAAGAGCTACTTTGATAGTGTTAACAGTGTTTATCTCATTACAATGCACTGAAATATAGTATTCATTTGATAGATAGAGCATGAATGGAATATGGCATAACCAAACAAAAATTATAGGCAAGAAAGCACTTAACCAACATTTAATCTAAAAAGAAGACAAATTTGGATCGAATAATTTAGAGTACACAAGTTGACCTTAATTTTGAACTCTAATGCTTGCTTACAACCCTTAATTAAGTTGTGGGATGTGTCCAATGAGCATATAAGGAAATTTGGAGGGTTATCCACGCTTTTTGACCAAATTTGGAGGTTCCGGGACCTGAAATCTCCTCAAATTTTGTGGAATGTTTGATATGGTCATATAACAAGGATCGGTTAAAAAGAAACCAACTTGGTTGACCCTTAAATCCCGGAATGACCTTTGTTCTACAAAATTGAAGGCATGCTTGCGCGTTATTTAACATAATTTCTACACCGAGAGTCCAATCGGGACGATTCCTTTTTGAAACCCCTTATAATTTAAGTCATTTTTCGTACAAAACTCATTTTGTTGAATCGGGTCGTTGCGAGTATCAATATAAGTAGAGCACAAAAAACTATGCTCTAACACTGGACGTGCTAAAATCACTTCGTAAGGACTTTAACACTCACATTTATAGGTATTACTAGTAATTTATAGGTAATTCTAGCATACTAATAATTAATTAGCATTGATGCATTTTAATGAAATAGGTATTTTACTAGATCCAGTGGATGTACAAATGTGATGAGTATGATCCCACTAACTACTTAATTCTTCTACTCTACCCAGAGAAACTGATATGAGCTTGTGCATGAAGAGTGATATTAGTTAATTACAAGTGTTTTAGTGCAAGATGATAACAAGTTTAACATGCTACAGCCGCCGTACGTCAGGGCACCACACCATAAAAAAATATACCCGACTTTTCGTCCGTGATAAAGTACTTCCTCCTATCTATTCAGAATTAGTTGTCACATTGCCTTTAGAGGCAGTAACAGGCCGGGTAATGCAATTGTAAAGAGTTTGTTTCCAATTGACCTATAATACGACTATTTGAGTATAATACTAAAAAGTAATATTATCCAATACCCATTATCTCACTAATTTTTATAAATAGAGCTTGAAACATTGTCATAATATGCAACTTAGTGTTTATTATCTCATTAATCACACTCTAATCTCCTTGGCTTGGTTATTGTGTTTGATAATATAGTGCACTCCCACAAACCAAGTATGAAGGGATCTAGGAGCCAAAAGAATGTCATTTTGCTATTGACATTGCTAGTAATTTTCACTGTGGATGTGAAGTGCCAACTAACTGCTAATTTTTATGCCACAACATGCCCTAATCTCTTTCAGGTTGTGAGGAAACAAGTTCAAATTGCTGCTATGAATGAAATGAGGATGGCGGCCTCGTTACTTCGACTACACTTCCATGATTGTTTTGTCAATGTAAGTTTTTCTAGAATCAAGGGGTGACCTAGTGGTTGAAGGCCCTCCTTACACCCCTGTGATAGATAGTGGTTCGATTCTCACCCCTTATAAGAATGATCCCCGTATTCCACCCCTTCTTGCAAGATAAGCTTTATCTTTTATATTTCTCAATTCAACCCGAGCCATATTTGATCAGCTCTAACAACACTACGTACATTTCTGTACATCGGACCTTTAAGATGTTAGTTCCCTAGGGCTTTGTTTGGTAGAAAAGAAGAGAAAGGAAAAGGAAAATATGGTTTCCCGTGTTTGGTTCCAAAATTTGATTCAATGTGAAAGGAAGGAAAACATCATTAATAAATCTTCCCTTTCCCTTTCTCCCAAAAATAAGGAAATTCGGAAGGAAAAAGAAAAATTAAAAGCTGTCAAATGATTTTCCTTTATTTTCCCCTCACTTTTTTCCATCAAACCAAAAACGGAAAATAAGTTAAGTTTCCTTTCTCTTACCTTATTTTCCCTTCCCTTCTTAATGTTGTACCAAATTAAGCCTAGAGGTTCCGATTGCATGCTATCATACGAACCTGGTTAACGCCTAAATTAGGACCATTCACAACCCCCTATATATACTCCCTTTCTCAGAGGGAAAGATTATGTATATATGCTTTACATAATGCATGAATTACAGTCTAACTTTCGTCCCTGATTACTGATTAGCCTTTAATTTTGTGATTAGGGTTGTGATGGGTCTGTACTATTAGATGGAAGCGACAGTGAGAAGTTCGCTTTTCCTAACCAGAACTCCTTAAGAGGGTTTGATGTTGTGGACACTATCAAAACCGCGGTGGAGAGTACCTGCACTGGAGTTGTGTCCTGTGCTGATATACTGGCCATAGCTGCCCGCGATTCTGTAGTCCTGGTATGCCATCTAAAGAAAAAATAACCTACAGAAAAAGAATGTTGGAAGGGAAAATCCGCAGACTTAGGCCCTGTTCTTTTGCTAAATTTCAGTTTTAGTACTTTTTTTTTGCAGTTCAGTTTAGTTCAGTTAATTCTAGTTCAGTTAATTACAGTTCAGTTCGGTATTCAGTTCAGTATTCAACTCAGCTCAAAACAACATGGCCTTAATCAATATTATGTTAATAGCTTCTTATTAATAAATGAATAAATGTTGCAGAGTGGAGGACCTTCATACAGAGTATTGCTAGGAAGGAGGGATGGGATGGTGGCTAACCAGACAGGCGCAAACACAAACCTTCCTTCTCCTTTTGATCCCTTGGACATCATCATTTCTAAGTTTGCTGCTCAAGGTCTCAACTTAACTGATGTTGTTGCCTTACAAGGTACAATTCTCTTCATACTTCCAAAGTTAGTATCTTTCGACTTTTCTAGGAAATATTTCAGACACTAAGGGTGCGTTTTATTCACCTGATTTTCACTTATTTTTTCTGAACTTATCTTATTTGAACTTAACCAAACTTATCTGAACTTATCAAAACTTATTTTAGTTATAAATTGTGCTTGGTTACCCTTATTTTTCCTAAACTTTGTCTTATTTGAACTTAATTATTTGAGCTTATCTGAACTTATTTTTCCCGAAATAAGTGGAAACAAGATTAACAGAACAAAGCCTTAACACTTCAATCTTCTAAACAATCAATGTTATGGCTTATAACTGCAGGGGCTCATACAATAGGATTAGCAAGATGTGCTGTTTTCAATTCAAGGTTGTTTAACTTCTCTAATTCTGGAGCCCCAGACAGCACTATGGACACTAACCTAGTATCAAAACTGCAGAGCTTGTGCCCTGTCAATGGTGATGGGAACAAGACAACTGCTCTCGACCAGAACTCGACTGACTTATTCGACAACCATTACTTCAAAAACTTGCTCAACAATAAGGGTATTCTAGTTTCAGATCAGGAGCTGTATTCCAGTGATATGGCTAATTCAACAACCAAGAGCCTAGTTGAGAGCTACAGCAATAATCCACACCTCTTTTCTAGTAACTTCATGGACTCTATGATTAATATGGGGAATGCAAATCCATTAACAGGGTCAAGTGGTCAGATTCGAACAAATTGTAGGGTTGTTAACTCATAA AGATACGACTCGGTACGAGAGCACATGGGTTTGGGCCTGTCTGGACCGCATTTTTTGACTCGGCCAGGCCAACACTACATTACAGCGGGCTTGCTGTGGGCTCACCCCTTCAGGCCCACAACCATCTTTAGCTAATGCCCTTATAAGGAGAAGGATAAGTAGATGCTGACGTGTCCGATCCTATACAAGCCACGTGGCAAGAATAGAAAACAATCAATTCATTTCCCTCCACAAAACAACGGTAAAAACTAACCAACTCCATTGTACCAGTGTGAACTTTCTCTCTCCTCTATTACAGTAGTACAACAATGGCGACTAGGGAAATCGCACTCTTAGGGTTTCGATTAACCCAATTTCCACCTCTTTCTTCCATATCCAATCGAAACCCTAACAGTGCAGTTCCTTTCAATTCGATTCTCTCCATTCGCAGAAACTCGAATTCTCGCATTTATTCATCATCTATTACTAACAAATCAGAAAAACAAGGAATTTCTGGTAAATTTACCGAAGATGAGAATCGGCTTGTTGATGTTCTAATTGGCATTCAAGGGCGAGGTCGCGCTGCTTCTCCTCAACAGCTTAAGGAAGTGGATCGTGCGGTTCAAGTTCTGGAAGATGTAAAAGGTGTTCCTGATCCGACGAGCTCTAGTTTGATTGAAGGTAGATGGCGACTGATGTTTACTACAAGGCCAGGAACTGCCTCTCCCATTCAGAGAACATTTGTAGGAGTTGATTTCTTCAGCGTATTCCAAGAGGTATATCTACGAACAAATGATCCACGAGTGTCCAATATTGTAAAATTCTCAGATGCTGTTGGCGAACTAAAAGTAGAGGCTGTAGCATCTGTTAAGGATGGAAAGCGAATTCTTTTCCGGTTTGACAGGGCAGCCTTTTCTTTAAAATTCCTACCATTTAAGGTACCTTATCCGGTGCCATTTAAACTTCTGGGAGACGAAGCAAAGGGTTGGCTTGATACAACATATTTGTCTGATTCTGGAAATATACGTATTTCAAGGGGGAATAAGGGCACCACTTTTGTGCTCCAGAAGGAAATTGAACCTAGGCAAGAGTTGCTTTCTGCAATTTCTACTGGAATTGGAGTGACAGAGGCGATTGATAAGTTAATTTCCACAGCTCGAGATAAGGATGGTGAACCTCAGCTTCTAGAGGGGGAATGGAAGATGATCTGGAGTTCTCAGGTGGAGACAGACAGCTGGTTGGAGAATGCAGCAAATGGTCTCATGGGTACACAGATAATCAAGAAAGATGGACAAATGAAGTATTCGGTTGATATTGCACTTGGCTTCAGATTCTCCATGACAGGCTCATATCAGAAAACTGATAAGAAGATATATGATGTAAAAATGGATGATCCAGCTATCGTATTTGGCTCTTTTGGACTCCCAATTAATATGGAAACCCAATTCAACCTTGAGCTTCTGTATGCAGATGACAGGATCAGAATCACAAGAGGATACAATAAGATTGTAAAAGATAATGTTGTGAGGAAACAAGTTCAAATTGCTGCTATGAATGAAATGAGGATGGCGGCCTCGTTACTTCGACTACACTTCCATGATTGTTTTGTCAATGGTTGTGATGGGTCTGTACTATTAGATGGAAGCGACAGTGAGAAGTTCGCTTTTCCTAACCAGAACTCCTTAAGAGGGTTTGATGTTGTGGACACTATCAAAACCGCGGTGGAGAGTACCTGCACTGGAGTTGTGTCCTGTGCTGATATACTGGCCATAGCTGCCCGCGATTCTGTAGTCCTGAGTGGAGGACCTTCATACAGAGTATTGCTAGGAAGGAGGGATGGGATGGTGGCTAACCAGACAGGCGCAAACACAAACCTTCCTTCTCCTTTTGATCCCTTGGACATCATCATTTCTAAGTTTGCTGCTCAAGGTCTCAACTTAACTGATGTTGTTGCCTTACAAGGGGCTCATACAATAGGATTAGCAAGATGTGCTGTTTTCAATTCAAGGTTGTTTAACTTCTCTAATTCTGGAGCCCCAGACAGCACTATGGACACTAACCTAGTATCAAAACTGCAGAGCTTGTGCCCTGTCAATGGTGATGGGAACAAGACAACTGCTCTCGACCAGAACTCGACTGACTTATTCGACAACCATTACTTCAAAAACTTGCTCAACAATAAGGGTATTCTAGTTTCAGATCAGGAGCTGTATTCCAGTGATATGGCTAATTCAACAACCAAGAGCCTAGTTGAGAGCTACAGCAATAATCCACACCTCTTTTCTAGTAACTTCATGGACTCTATGATTAATATGGGGAATGCAAATCCATTAACAGGGTCAAGTGGTCAGATTCGAACAAATTGTAGGGTTGTTAACTCATAA ATGGCGACTAGGGAAATCGCACTCTTAGGGTTTCGATTAACCCAATTTCCACCTCTTTCTTCCATATCCAATCGAAACCCTAACAGTGCAGTTCCTTTCAATTCGATTCTCTCCATTCGCAGAAACTCGAATTCTCGCATTTATTCATCATCTATTACTAACAAATCAGAAAAACAAGGAATTTCTGGTAAATTTACCGAAGATGAGAATCGGCTTGTTGATGTTCTAATTGGCATTCAAGGGCGAGGTCGCGCTGCTTCTCCTCAACAGCTTAAGGAAGTGGATCGTGCGGTTCAAGTTCTGGAAGATGTAAAAGGTGTTCCTGATCCGACGAGCTCTAGTTTGATTGAAGGTAGATGGCGACTGATGTTTACTACAAGGCCAGGAACTGCCTCTCCCATTCAGAGAACATTTGTAGGAGTTGATTTCTTCAGCGTATTCCAAGAGGTATATCTACGAACAAATGATCCACGAGTGTCCAATATTGTAAAATTCTCAGATGCTGTTGGCGAACTAAAAGTAGAGGCTGTAGCATCTGTTAAGGATGGAAAGCGAATTCTTTTCCGGTTTGACAGGGCAGCCTTTTCTTTAAAATTCCTACCATTTAAGGTACCTTATCCGGTGCCATTTAAACTTCTGGGAGACGAAGCAAAGGGTTGGCTTGATACAACATATTTGTCTGATTCTGGAAATATACGTATTTCAAGGGGGAATAAGGGCACCACTTTTGTGCTCCAGAAGGAAATTGAACCTAGGCAAGAGTTGCTTTCTGCAATTTCTACTGGAATTGGAGTGACAGAGGCGATTGATAAGTTAATTTCCACAGCTCGAGATAAGGATGGTGAACCTCAGCTTCTAGAGGGGGAATGGAAGATGATCTGGAGTTCTCAGGTGGAGACAGACAGCTGGTTGGAGAATGCAGCAAATGGTCTCATGGGTACACAGATAATCAAGAAAGATGGACAAATGAAGTATTCGGTTGATATTGCACTTGGCTTCAGATTCTCCATGACAGGCTCATATCAGAAAACTGATAAGAAGATATATGATGTAAAAATGGATGATCCAGCTATCGTATTTGGCTCTTTTGGACTCCCAATTAATATGGAAACCCAATTCAACCTTGAGCTTCTGTATGCAGATGACAGGATCAGAATCACAAGAGGATACAATAAGATTGTAAAAGATAATGTTGTGAGGAAACAAGTTCAAATTGCTGCTATGAATGAAATGAGGATGGCGGCCTCGTTACTTCGACTACACTTCCATGATTGTTTTGTCAATGGTTGTGATGGGTCTGTACTATTAGATGGAAGCGACAGTGAGAAGTTCGCTTTTCCTAACCAGAACTCCTTAAGAGGGTTTGATGTTGTGGACACTATCAAAACCGCGGTGGAGAGTACCTGCACTGGAGTTGTGTCCTGTGCTGATATACTGGCCATAGCTGCCCGCGATTCTGTAGTCCTGAGTGGAGGACCTTCATACAGAGTATTGCTAGGAAGGAGGGATGGGATGGTGGCTAACCAGACAGGCGCAAACACAAACCTTCCTTCTCCTTTTGATCCCTTGGACATCATCATTTCTAAGTTTGCTGCTCAAGGTCTCAACTTAACTGATGTTGTTGCCTTACAAGGGGCTCATACAATAGGATTAGCAAGATGTGCTGTTTTCAATTCAAGGTTGTTTAACTTCTCTAATTCTGGAGCCCCAGACAGCACTATGGACACTAACCTAGTATCAAAACTGCAGAGCTTGTGCCCTGTCAATGGTGATGGGAACAAGACAACTGCTCTCGACCAGAACTCGACTGACTTATTCGACAACCATTACTTCAAAAACTTGCTCAACAATAAGGGTATTCTAGTTTCAGATCAGGAGCTGTATTCCAGTGATATGGCTAATTCAACAACCAAGAGCCTAGTTGAGAGCTACAGCAATAATCCACACCTCTTTTCTAGTAACTTCATGGACTCTATGATTAATATGGGGAATGCAAATCCATTAACAGGGTCAAGTGGTCAGATTCGAACAAATTGTAGGGTTGTTAACTCATAA MATREIALLGFRLTQFPPLSSISNRNPNSAVPFNSILSIRRNSNSRIYSSSITNKSEKQGISGKFTEDENRLVDVLIGIQGRGRAASPQQLKEVDRAVQVLEDVKGVPDPTSSSLIEGRWRLMFTTRPGTASPIQRTFVGVDFFSVFQEVYLRTNDPRVSNIVKFSDAVGELKVEAVASVKDGKRILFRFDRAAFSLKFLPFKVPYPVPFKLLGDEAKGWLDTTYLSDSGNIRISRGNKGTTFVLQKEIEPRQELLSAISTGIGVTEAIDKLISTARDKDGEPQLLEGEWKMIWSSQVETDSWLENAANGLMGTQIIKKDGQMKYSVDIALGFRFSMTGSYQKTDKKIYDVKMDDPAIVFGSFGLPINMETQFNLELLYADDRIRITRGYNKIVKDNVVRKQVQIAAMNEMRMAASLLRLHFHDCFVNGCDGSVLLDGSDSEKFAFPNQNSLRGFDVVDTIKTAVESTCTGVVSCADILAIAARDSVVLSGGPSYRVLLGRRDGMVANQTGANTNLPSPFDPLDIIISKFAAQGLNLTDVVALQGAHTIGLARCAVFNSRLFNFSNSGAPDSTMDTNLVSKLQSLCPVNGDGNKTTALDQNSTDLFDNHYFKNLLNNKGILVSDQELYSSDMANSTTKSLVESYSNNPHLFSSNFMDSMINMGNANPLTGSSGQIRTNCRVVNS Relationships
The following mRNA feature(s) are a part of this gene:
Homology
BLAST of Spo00692.1 vs. NCBI nr
Match: gi|902218790|gb|KNA18138.1| (hypothetical protein SOVF_073610 [Spinacia oleracea]) HSP 1 Score: 777.3 bits (2006), Expect = 2.200e-221 Identity = 394/394 (100.00%), Postives = 394/394 (100.00%), Query Frame = 1
BLAST of Spo00692.1 vs. NCBI nr
Match: gi|731325467|ref|XP_010673531.1| (PREDICTED: probable plastid-lipid-associated protein 12, chloroplastic [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 659.8 bits (1701), Expect = 5.100e-186 Identity = 332/398 (83.42%), Postives = 367/398 (92.21%), Query Frame = 1
BLAST of Spo00692.1 vs. NCBI nr
Match: gi|902218791|gb|KNA18139.1| (hypothetical protein SOVF_073620 [Spinacia oleracea]) HSP 1 Score: 562.0 bits (1447), Expect = 1.400e-156 Identity = 287/287 (100.00%), Postives = 287/287 (100.00%), Query Frame = 1
BLAST of Spo00692.1 vs. NCBI nr
Match: gi|720031807|ref|XP_010265926.1| (PREDICTED: probable plastid-lipid-associated protein 12, chloroplastic isoform X1 [Nelumbo nucifera]) HSP 1 Score: 547.0 bits (1408), Expect = 4.800e-152 Identity = 285/392 (72.70%), Postives = 326/392 (83.16%), Query Frame = 1
BLAST of Spo00692.1 vs. NCBI nr
Match: gi|694374245|ref|XP_009364088.1| (PREDICTED: probable plastid-lipid-associated protein 12, chloroplastic [Pyrus x bretschneideri]) HSP 1 Score: 520.0 bits (1338), Expect = 6.300e-144 Identity = 262/365 (71.78%), Postives = 306/365 (83.84%), Query Frame = 1
BLAST of Spo00692.1 vs. UniProtKB/TrEMBL
Match: A0A0K9RF78_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_073610 PE=4 SV=1) HSP 1 Score: 777.3 bits (2006), Expect = 1.500e-221 Identity = 394/394 (100.00%), Postives = 394/394 (100.00%), Query Frame = 1
BLAST of Spo00692.1 vs. UniProtKB/TrEMBL
Match: A0A0J8CLJ7_BETVU (Uncharacterized protein OS=Beta vulgaris subsp. vulgaris GN=BVRB_4g071570 PE=4 SV=1) HSP 1 Score: 659.8 bits (1701), Expect = 3.500e-186 Identity = 332/398 (83.42%), Postives = 367/398 (92.21%), Query Frame = 1
BLAST of Spo00692.1 vs. UniProtKB/TrEMBL
Match: A0A0K9RGQ6_SPIOL (Peroxidase OS=Spinacia oleracea GN=SOVF_073620 PE=3 SV=1) HSP 1 Score: 562.0 bits (1447), Expect = 1.000e-156 Identity = 287/287 (100.00%), Postives = 287/287 (100.00%), Query Frame = 1
BLAST of Spo00692.1 vs. UniProtKB/TrEMBL
Match: D7SLD3_VITVI (Putative uncharacterized protein OS=Vitis vinifera GN=VIT_06s0004g01220 PE=4 SV=1) HSP 1 Score: 512.7 bits (1319), Expect = 7.000e-142 Identity = 266/390 (68.21%), Postives = 310/390 (79.49%), Query Frame = 1
BLAST of Spo00692.1 vs. UniProtKB/TrEMBL
Match: W9QMU5_9ROSA (Putative plastid-lipid-associated protein 12 OS=Morus notabilis GN=L484_018429 PE=4 SV=1) HSP 1 Score: 511.9 bits (1317), Expect = 1.200e-141 Identity = 258/373 (69.17%), Postives = 309/373 (82.84%), Query Frame = 1
BLAST of Spo00692.1 vs. ExPASy Swiss-Prot
Match: PAP12_ARATH (Probable plastid-lipid-associated protein 12, chloroplastic OS=Arabidopsis thaliana GN=PAP12 PE=2 SV=1) HSP 1 Score: 468.4 bits (1204), Expect = 1.400e-130 Identity = 230/360 (63.89%), Postives = 287/360 (79.72%), Query Frame = 1
BLAST of Spo00692.1 vs. ExPASy Swiss-Prot
Match: PERN_ARMRU (Peroxidase N OS=Armoracia rusticana GN=HRPN PE=2 SV=1) HSP 1 Score: 382.9 bits (982), Expect = 7.500e-105 Identity = 191/286 (66.78%), Postives = 238/286 (83.22%), Query Frame = 1
BLAST of Spo00692.1 vs. ExPASy Swiss-Prot
Match: PER59_ARATH (Peroxidase 59 OS=Arabidopsis thaliana GN=PER59 PE=1 SV=2) HSP 1 Score: 373.6 bits (958), Expect = 4.500e-102 Identity = 188/287 (65.51%), Postives = 234/287 (81.53%), Query Frame = 1
BLAST of Spo00692.1 vs. ExPASy Swiss-Prot
Match: PERA2_ARMRU (Peroxidase A2 OS=Armoracia rusticana GN=HRPA2 PE=1 SV=1) HSP 1 Score: 318.9 bits (816), Expect = 1.300e-85 Identity = 166/289 (57.44%), Postives = 213/289 (73.70%), Query Frame = 1
BLAST of Spo00692.1 vs. ExPASy Swiss-Prot
Match: PER54_ARATH (Peroxidase 54 OS=Arabidopsis thaliana GN=PER54 PE=2 SV=1) HSP 1 Score: 318.5 bits (815), Expect = 1.700e-85 Identity = 164/289 (56.75%), Postives = 213/289 (73.70%), Query Frame = 1
BLAST of Spo00692.1 vs. TAIR (Arabidopsis)
Match: AT1G51110.1 (Plastid-lipid associated protein PAP / fibrillin family protein) HSP 1 Score: 468.4 bits (1204), Expect = 7.600e-132 Identity = 230/360 (63.89%), Postives = 287/360 (79.72%), Query Frame = 1
BLAST of Spo00692.1 vs. TAIR (Arabidopsis)
Match: AT5G19890.1 (Peroxidase superfamily protein) HSP 1 Score: 373.6 bits (958), Expect = 2.600e-103 Identity = 188/287 (65.51%), Postives = 234/287 (81.53%), Query Frame = 1
BLAST of Spo00692.1 vs. TAIR (Arabidopsis)
Match: AT5G06730.1 (Peroxidase superfamily protein) HSP 1 Score: 318.5 bits (815), Expect = 9.700e-87 Identity = 164/289 (56.75%), Postives = 213/289 (73.70%), Query Frame = 1
BLAST of Spo00692.1 vs. TAIR (Arabidopsis)
Match: AT5G06720.1 (peroxidase 2) HSP 1 Score: 318.2 bits (814), Expect = 1.300e-86 Identity = 164/289 (56.75%), Postives = 213/289 (73.70%), Query Frame = 1
BLAST of Spo00692.1 vs. TAIR (Arabidopsis)
Match: AT2G18150.1 (Peroxidase superfamily protein) HSP 1 Score: 290.8 bits (743), Expect = 2.200e-78 Identity = 152/292 (52.05%), Postives = 200/292 (68.49%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo00692.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo00692.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo00692.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 5
BLAST of Spo00692.1 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 gene is annotated with the following GO terms.
RNA-Seq Expression
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