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.AAGAAAAAGCCGTTTCAGCTTCATTGAGCAGCTGCTTGCAGAGAAAGAAAGGAACTACTGGAGCAGAAGCGACTAAACTCCGAAGCTCCAAAACCCTAACAAATTCCCCCAATTTCTACCGACTCAGGTGCATTTTCATCAAATTCAATCGAATATCTTCAAATTCCATTCTATGAAAAATATTTCGTATTGAGTTTTTGCAAATTTATGCTTCGTAACAGTTACAATCGCCGATAAAAATGACTCAAGATGTGGAGATGCATGATACTCAACCCCTCTCGATTTCTCTCTCCTCTGTTGATCCACCTACTTTGAAGCGTATGAACTAATTTCTACACATTGATTTTGTTTTCTCTTTAATCGGGTTTCCCCCAATTTATAGGGTTTTGTTTGGTGTTGTCGATTGTTCTGAATTTCTGCAATTTTCTCGCAGATTTGAAGGAGATTGCGTCGCTCTTGGAAACGGGTTCTTATACTAAGGAAGCCCGTCGGATTTCTCGTGCTATTCGCCTTACCTTTGCTGTTCGTCGTAAGCTTACGGCCCGTGTGCTCCATTTCTTCCTTGATTATGCTCTTACACCGGGTTCCGAAGCTCATGGGAAAATCTCCGCATTTCTTCCCAAGGTAGCATATTTTGATTGATTTGTGTGTTAAATAACATGATTTTACTCTTGATTATGCTTTTGGTTCGAAGTTCATTTTTGTGTGTTTATGGTTTGTAGAAGTGTTGTTTGAAAATTGTGAACTTTAACATAAAGGGTATATATTTCCTGATGTACTTATTGTATTGCGTATCAGATGAAGAGGGAAACAGTAATTGGGTTCTTATATGTAATTGGTTCTAGGATTTGACAAATTGAATTCCGAAAAAGTAAAAACAAAGGAGCTAGAGTACATAGCAGAGTAGAACGAGGTTAATTCTTTGCCTGCAGAAGGTATTGTTTATGACTTATGTTGTTGTGGTCTCACTCGTATCCAATGACTACTTAAGGGCCGAGCCACTCTTGAACTAAAATAACCCCCCTCCCCGCTTAAAAAAAGACAAAAGAGAAACTCCAGCTCACCAAATTTGATGTTAACCATTAGATCTTTAGGCACGAACATCTGGGGCAAAAATAGTTTTCGTCGTTTTGGTGAGTTAAAACTATGGACAAGTTCTACTTTTCACAAAGTTTCCTACGTTTTTCTATGCTGGTTGCTTCACATTAGCTTGCACTTCCTACTGTTACTGAAGTTTTGCTTCATGAATTGACGAGTTTGTTTTGCACCTTCTCTCCCGTCTTCATTTCCGGGAACTGTGTTTCATCTCAAATTAGTAGTCATAGCTAATATGGAAAGTAACCTAGCACATTCCTGACAAGGGGTTAGCTGATCCTTTCAAGTGAAGCTTCCTGAACATTGTTTCAGATATTTTTGGCTTTGCTTTATTGGTAGCAAAACATTGATATAGTGGCTAGGCTACCATGAATATGCATCATGATGCTAATGCCTACGGTACAGTAAAGTAAACTAGTATATTGCCATCACATACTTTTACTTTACCTTGGACCCCGTAGCTTTTGGTCACTTCCTTTTACCCTCTATGTTGAAAACAAGACGAAGGTGGTCAAATGACAAGTATAATTTAACTATGTGGCTAAACCTTGGGTGTTGTAGAAGCAAATATAAATTACGTAGTTGTTACTCACTGTTATTGAAATAGGAATGCATTTGGGAATATGGACGAGGCTTTTTGAACGGGTTGAGCGGTTGATCTAGACATGATTTCAACTGTGTTCTAGGCCAGTTACTTAGTGTTTTGAGCTGAAATAGTCTTACTCTTGTGTGATTACGGGTCTTTCCAAGAATGTGGTACAAAATTCATCTAGGTTCACCTCCCCCCCCCCCCCTCCCCCCTACCTCTTTGGTTTCCCGGCTTTCCCCCTTGGGGTTTGGGTGGGGGGGGGGGTGAGACTTGGGACTGATAAATTAAGAGTTCAAGTCACTTCATCTGTATTCAGGNGGGGTTTGGGGGGGGGGGGGGGGTGAGACTTGGGACTGATAAATTAAGAGTTCAAGTCACTTCATCTGTATTCAGGNGGGGGGGGGGGTGAGACTTGGGACTGATAAATTAAGAGTTCAAGTCACTTCATCTGTATTCAGGTTGCATTCTTTATTTGGTTTGCTGGTTTGGGCCTTTCTACATGTTCAAGATATCTGTGTGTTTGGAGCTTATGATATATATGGAAGGTTTCTAGTTAGTGCTGTTCGGCGTAAGATGGGAATATCCGAATAGCATTGGGGCAATGTAATCTACACTTTTCCTTTTAAAGTATGCTAGCGGCAAGTCCGAGGACATGTTTTAAGGAACATCCATCCATACAGGATCTTAGGCAGAAAATGTAAGAGCTCTTATGATACAGATGTACATGCCAACTTGCCAAGTAGTCATGGTTAATATGAAAACAGAACCAAAAAAATTTATAAACGAAGATGGAAGGGTTATCTGTGGTATTCTTCAAAGTAAAACTTCTTTGGCATTGTTTAAGATATTTTTGGCTCATGTTCTTATCTGATGATTGTTTGTTTGTAGCAAAACAGAAGGGTCTTGGTGTGATTATGATTGATCTAGAGAAGTACATAATGTACATTAGGGTTAAAAAAATAATGTTTGGTGGGAGTTCAAAGATTTGAGACCTGTTCTTGGGATGCAGAATCTACCATGAATGTGCATCATGATACGATGGCCTATGATATTGTATAGTAGGCAAGTAGCATCACATTTATCCTAGAAAAATTGCTAGTGTTTGTAATATTATGGGAAACGTTTCCACTATAAAATTTTGTTCTATGTTAGACACTGTAGTTTATGCCACTTCCTTTTACATTTTCATGTAGAAAACTAGGGGAAAGCTGGTATCAGTGACAAGGTTAACTTATAAACGAGGCTAGCTAAACATTGGGAAAGCTAGTTGTGCAGAGAAAGATAAATGAGGGTAATGTTGTTAATGGTTTGCTGAAATATATTGCACCCTTGGGAAAATGGGTAAGCTTGCTGAATGTGTTGGTTAAGGCATTGGTTTTTACTGTGATTTAGGCTTGCTACCTTAGTGTATGCTAAGAAAATGCAAAGAACTGCTTACAAAATATGTCGTCAGGGTTCGTCTTTTCTTTTTTTACCCTTCTATCTGTTTTCCCTTGTGTGTGTGGGGGGGGGGGGGGNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNGGGGGGGGGGGGGGGGGGGGGGGCTGATATAATAAGATTTCAAGTCACTTGTTTGGTTGTGTTCGAGTTGCATTCTTAGTTTTCTTTGCTGGTGTGGGACTTGCTACATGCCAGAGATTTGTTGTGGAGTTTATGATATGTCAGGTAGGTTTTTAGTTAGCTATGTTGGGTGTGAATTTACATTTTTCTCGTGATTTTGAGAAGCAGCTAGTCATCAAAATATTACTTGATAGAGAATAGAGAGATGATATCATTGAAGTGGCTCCCCCCACCAAATGAACCTGTCAAAACGGCCTTGAACCTAAAAAAAATCGTGTAGCAGTTGTAGGATCAGTTCATCTTTTCCTGTGGACTTCCAAAAGGGAATCTTATCACTTTAAAATAACTTAGCTGTCGCTTTTATTTTATGTTGCAGACGTGAATGCCGAACTGATGAGATGTGAACATTTGAATATATTGTCAATGCTCAATTTAAACTAAATACAGCGGTATTTAGCACGGGCATGGATAAGATATCAACATGAGCAAATATCACGGGACTTGTACATGAACAAATATGCACAGTTAAACAATCAGAGTTGTACTCATGTCTAGTTTATGCCCTCTGGATGATGTAATCAATGGAGGAGCCAGGAATTTTATGTCTAGTCTCCGCCAATGGCTGTAATTCACCCTTCGTTCAGTAAATTGTTGAATTGGATTATGGGAATGTCATGTTTTTTTATATTCTTTTTTCAAAGCAGTCCTCTTTTCCTCCTAATAATGCCTTCTTGCCAAGTACTTATATCCCTGCATAACCTCTCCGCAAATTTTTCTTTGCTGAAAACCTAAGCCTTTAATGCTGTATTCTACCTCTTTATCAGTCGAGGCTTCGTTTTATGGATCTATATTTTCCTATCCAATTTGTTTAAGTAGCTGATTTCTAATTGTAGTGGAAATCAGAAGGCTGTTCAATAGATAGAGGGTATATCGTGTCTGAAGACTGAGGCTTATGTGTCCTTGCCAGAGTGGGTCCAGTATTCTAAGTTCTATCTGGTGTCTTTTTTAGTCAGCATGGATATGGTCTGGATCAACATGGTGGAGTTAACAGAGGTTTACAGTATAATCTTGTTTGAGGATGCAGTTAGCCGCTGCTTAACCCACTCCTTCGTCACCAATGGAGAGAGATAGATAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAGAAGCGTACCCTGTTGAAAATTATGGTACATGCAATAAATTATGGTACATGCAATCTGACTTTCTTCAGTGAGTATCCTCTTTCAAATCATCTCACTCCCCAAATATCATTTGTTGTTGGGAGGCACTGAATACGAACGACAACATCAAACTTGCATAACGCATAACCAGGTTGCAGTTTAGAGATAATACCAAGACCAACATCGCATCTTACTCACTCTGCCTCTACATATGTTTTCACATTAGGGCCGGGTGTGAAGATAACGATAGTTGTAATGTGTAACTTGCATAATGCATAAATAGATTGCAGTTTAGAGATAATACCAAGACCGACATGGTGACATCGCTTATTGGCATCTTACTCACTCTGTCTCTATATATTTTTTCACATTAGTGTTGGGTGTGGAGATAACGATAGTTGTTAAATGTGTAACTTGCATAATGCATAACTAGATTGCAGTTTAGAGATAATACCAAGACCGACATCGATTATTGGCATCTTACTCTTTCTGCCTCTATATATGTTTTCACATTAGGGCCGGGTGTGGAGATAACGATAGTTGTTAAATGTGTGAAGAAAATTGTAGTGCTTAGGAAGAGATAGAGAAAGAAATAGTAAAAGTATTGAATTGTAGATAGAAAAAAGGTTGAAGTGATTGAGAGGACTCAGTCATTTTTTTTTAATAATTTTTTACTATAAATAGGTGAGGAAAACTTCTTTGGAACAATCTTAGAAGAAATGTGACTCTTTTAACTTGTATGCAAATTTTAGTTACTTGCATAATGCTGGTTGTAGCTATTGTTTTGTTATTTCAACATGGAAAACACAACTTATTTTCATAACTTTGGTCGTAGGGAGGTGAACATGAGATGGAAGTTGACACTGCAACTTCTGCTGTGCAACCTTCAGGGAAAAGTACTTTACCGGAACTGGAAATCTTCTGCTACTTGATTGTCTTGTTGTTTCTGATTGATCAGAAGCTGCACAATGAGGTGTGTTTTGTTTCAAGGTACCATTATTCACGTTCATTGTCATATATGTTTCAAGCTAACTCTGAAAATTGTCAGGCTAAAGCTTGTGCTTCTGCAAGCATTGCTCGTTTGAAATCATTGAAAAGAAGGGTTGCTGATGTTCTGGCTTCAAAATTGTATTCCTTCTATTCACTGAGTTATGAACTTACTGGTGATCTTGCTGAAATCCGTGGGTAGGTTTAGAATTTCTGTTTATCTTTCACAATATCAATTTCTCTTCATTGCTTGTATGGAAAAGATTCATAACCATACGCAGTCCTGAAATTTGGATCACAAAGTTATTGATTTCATGGTACATCTGGTTTAGTCCTTTAAGCTAATACTTTTCTCTTCCAGTGAACTCCTTACCTTGCATCGGTTGACGACCTTGCACCACGATGAGCTTGGTCAGGTTTGTATGCTGTCAATGAAAAATATTCTTTTAACGTTTTTGATATATCATATGTTTTCAGGTGTTTACCTGTCTAGTTCTGTATGCTGAGAGTTTAACTTAATTTTGCAGGAAACACTTCTAAATTTGCTGCTTCGCAATTACCTCCATTACAACTTGTATGACCAGGCTGAAAAGCTGAGATCCAAGGCACCTAGTTTCGGGGCCCATTCCAACCAGCAGGTATTCTCTATCATCTATAATTCTAGCAATGTTTTCCTCTGATTTAGTATACACTAATGTGGTATAGCAGCATTTGCAAAATGAGAACTGTGATCCTTGGGCATTGTATTACAGTTTGCACCTTATGTACTAATTCTATGGAAGTTAGATTAAATAGTGTCATCTCAATTTGGTAAAGGTGATGTTGGCAGTTGTTACAGTTAAATAATTTAATCCTAAAATGTTAACCTTGTAGTTTCCCATCCAACAACTTCAATTTAAGCTTTATAGCTGTATAAGACGCTCGAGCTATGTTTGACATTGAAGACTGACTTGTATGCTAGGAGATGGAGGGTTTTTGCATGAAGTTGCTATGAAATCTTTCTGGATATAACATTGCTATTGAGTTTTGACTTTATAACAATAATTTTGCCTAGAGTATCATGCACTGGCCCCGTGTCTTATACATGTCGAAATTCTCCACTAGCTATTTTTGCATGAAGTTGCTCTGAACTCTTTCTTGATATAAAATTGCTAATGAGTTTTGACTTTCTAACAATAATTTTGCCTGGAAAGTTTTCTACATTGTTGTAGTATCATGTACTGGCCTTCTTGTGTCTTAGAAACCACATCTGTTAATCTGTATTAAGACGTACTCTATTATACCAATGTGTTCTGCCAATTTTCATTTGGCTTTCTGGTATGTGGGAAGAGTTGGATTTGAAAACATAGAACTATTGATGTCCCCCAATTTTCCCTGAATCAATTGGTCAAGGTGGAATGGTGGATGTTTCTATATAAAGAGAATTGAGAGGTTCTACTATTTCATCTTGGGCAAATGCTTAATAGTATTCTGTTGGACCCAGCGGGATCCAGATCCGAACCAATTAACGATCAGAGTTGTTATCCGAGTCTGAATCCAACTCCGACTCTGAATTACCTTCCTCCAAGTCTACGTCCGAACCTCCGACCCATCGGACCTCCGAATCCGATTGATTAACAATTCTTTTAAAACAACAACTTGAAACTTATCATTTCAAATTTTCATTAATCGTCAATTTTGAAATATATCTAAAAAGTTTGTATTAACAAAGAACAATCCTATTTCAACTATTTCAACTAAGAGATTATATAAAGATACACATACCCGTCAAAAATACAAATACAAAATAAATAAAAAGAGGCGTGGAATTCAAGAGGCATGCCATCCAAATCTGTATGAGCTTGATCCATTTCAAATTCCGCTCTTTGTCCGCCGTAACTGCAAAGTTCTCGCATCCAATTACAATTCCTTTTCTTCATCTGTTGTTGACTTGTTGTGTAATATTGATTCTTTCTCATCTCCTTCTTTGTCCATAACTGTGTTCGAGTATCTGTCTCTCTCTTTTGGGACTTGGGAGAGAGATAATTCAGATAAAGGAGAGAATAAGAGAAAGGAGATGAAGCAAAGGAAAGATAGGGAAGTATAGGAGAGAGATCGAGAGAGAAGTAAAGTAGAGAGGAGTAGGGAAGTAGCGGCGTGAAAGAGACTAATAGGCTTTAGGCCGTTTGCTCTTTTATCAAATCTATACTATTAATCTATTATTAAAACTCTAAGGCATGGAATGCCATTTCGCCACATGTCGCTTTGTATATAACGATGACATGACGCATCGTCATCTTTAACATGTTATCTCATATATAAGTTTTTTGATCATCAATAAATGTTAGTTATAGATTTCATACATGTGACCTTTCATTTGTTAGTCAGCTATGATAACCATTATGCCACAACTCATTTTGTTGTTTTTTTATACATTCAATATTATATTAACTCAATATAATTAGAAAAATGATCTGAATCATTTCTTAATAGTCTCACATCACTAATTAGTCATTACTTTACGAGTTACTAATCCTTACATGATAAAATTTAGTAAAGCATACTCAAAGCAAGATACATTGTAATGTAACAAATTAAATTAGACTCAAACGAGTTATAATAATCTAATTGATCCATTTTTTTTACTGTCCGGGGCACTAATTAGTTATACTTAAAACCCTAAAAGTAGCAGAATTCTTATATATGGCGGGTCGGACTCGGACTAGATCCGTCGGAGCTGAAACAAGATCCATATCTGATCCATATCCATTCGGACTCGGACTTTTTAAATCGGACTTGGATTCAGACATTTTTCTCTGATTCGGATCGGATTTTTCCCTTCGATTCGGACTCGGGTCGGGTCGGATTCGGATTGAATTGCATTGCCATCCCTAATCATGTTGAAGGAACTGGGTCTGTGCTGAAGTAGGCAGAGACTTTCTGCACTGAGATCTAAGTAAGGTGGAAGCCGCCGGCACGTTGGAGGTGCTTGCTTGCAGCTATTCATAGATCTGAAGTGCTTTTTGTTATGCACCTATCTGGATTATGACCACATCAAGACAATACGGCTAGATTCTGGTTCTCTGATAAACGCCGGGAAAAGTCTTTGTTAGTTTTTGGGACGAGGTTGACTCTGTTTATGCGTTTATATCACGAGTGGAAATATCCATCATCCATGATTCCATGGCTATTTTGGCTCTGTTGGAGAATGCCCCTTAATGTATGGCAAAGGTTGTAAATTCAAACCCTATCCTCCTAGCTAGTTCCGGTGGCATTATAATTTTGTATACAACTTAGGGGAATTCAACTTGAACCCCCAGTGTCACATGTCTCATTCATTCGTTTCAATTTAGACTTCTATATCAAAACTTGATTATTTTGCTTGGGGGTGAAAGTTGTTTGGCATACATGAATGGGGTGTTTTCCAGACTGTTTGTTGTACCTCAGTCTGTTGTGCTGGCCGCATTATCCTGGACCATTTCATGGTTAAAGTGTGGGATAATAGGAATTTGGGAGTTGGAGTAGGTTACAATCTCAATAACGTAGTATTTCCTTCCTTCCTGGTCAAGATGCATCAGTTTTATCTATTGCTGTCTCTTTTTCCACTAACTACTGCTTTCTCTCTTCTAAGTACTATTTTTTTATGTGTCTGGTCTATGATTTTTTGTAATCACATTAATTCTTCATTGCAGCATTGTCGACATCTCTTCTATGTTGGAAAGATCCAGACAATTCAGTTGGAGTATACTGATGCAAAAGAGAGCCTTCTTCAGGCTGCTAGGAAAGCACCTATTGCAGCCCGTGGCTTCAGGATTCAGTGCAATAAATGGGCTGTGATAGTGCGATTACTGCTAGGGGAAATACCTGAAAGAACAATGTTTATGCAGAAAGGCATGGAGAAGGCCTTGCGTCCGTACTTTGAGCTGACGAATGTATGGGTTCATGAATATGATGATATCTTTTGCAGCAGTTGTTCGCATCGTCTTACAAATTGAATTTATATTCTGTCAATTTTGATTTAATGCTGATAATTTAGTTTTCATGATGGGTTTGTAGGCTGTTCGAATTGGTGACTTGGAGCTGTTCAGAGGAGTTACTGAAAAGTTTTCTTCTACTTTTGATAAGGATCGCACTCACAATTTAATTGTCCGCTTGCGGCACAATGTCATTAGGACTGGACTGAGAAACATAAGCATCTCTTATTCCCGCATCTCACTTTCCGATGTTGCTAAGAAGTTGAGATTGGATTCTCCCAACCCTGTTGCCGATGCTGAAAGCATTGTGGCCAAGGCTATTCGTGATGGTGCAATAGATGCCACATTGGATCATGGAAATGGGTGGATGCTATCAAAGGAGACTGGTGACATCTACTCAACAACCGAGCCACAGTCAGCCTTTGATTCTAGAATTGCTTTCTGTCTGAACATGCATAACGAGGCAGTACGGGCTCTACGGTACCCACCTAACTCGCACAAGGAAAAGGAAAGCGCTGAGAAGAGGAGGGAAAGGCAGCAGCAAGAGCAAGAACTTGCAAAACACATTGCTGAGGAAGAAGATGATGATTTTTGA AAGAAAAAGCCGTTTCAGCTTCATTGAGCAGCTGCTTGCAGAGAAAGAAAGGAACTACTGGAGCAGAAGCGACTAAACTCCGAAGCTCCAAAACCCTAACAAATTCCCCCAATTTCTACCGACTCAGTTACAATCGCCGATAAAAATGACTCAAGATGTGGAGATGCATGATACTCAACCCCTCTCGATTTCTCTCTCCTCTGTTGATCCACCTACTTTGAAGCATTTGAAGGAGATTGCGTCGCTCTTGGAAACGGGTTCTTATACTAAGGAAGCCCGTCGGATTTCTCGTGCTATTCGCCTTACCTTTGCTGTTCGTCGTAAGCTTACGGCCCGTGTGCTCCATTTCTTCCTTGATTATGCTCTTACACCGGGTTCCGAAGCTCATGGGAAAATCTCCGCATTTCTTCCCAAGGGAGGTGAACATGAGATGGAAGTTGACACTGCAACTTCTGCTGTGCAACCTTCAGGGAAAAGTACTTTACCGGAACTGGAAATCTTCTGCTACTTGATTGTCTTGTTGTTTCTGATTGATCAGAAGCTGCACAATGAGGCTAAAGCTTGTGCTTCTGCAAGCATTGCTCGTTTGAAATCATTGAAAAGAAGGGTTGCTGATGTTCTGGCTTCAAAATTGTATTCCTTCTATTCACTGAGTTATGAACTTACTGGTGATCTTGCTGAAATCCGTGGTGAACTCCTTACCTTGCATCGGTTGACGACCTTGCACCACGATGAGCTTGGTCAGGAAACACTTCTAAATTTGCTGCTTCGCAATTACCTCCATTACAACTTGTATGACCAGGCTGAAAAGCTGAGATCCAAGGCACCTAGTTTCGGGGCCCATTCCAACCAGCAGCATTGTCGACATCTCTTCTATGTTGGAAAGATCCAGACAATTCAGTTGGAGTATACTGATGCAAAAGAGAGCCTTCTTCAGGCTGCTAGGAAAGCACCTATTGCAGCCCGTGGCTTCAGGATTCAGTGCAATAAATGGGCTGTGATAGTGCGATTACTGCTAGGGGAAATACCTGAAAGAACAATGTTTATGCAGAAAGGCATGGAGAAGGCCTTGCGTCCGTACTTTGAGCTGACGAATGCTGTTCGAATTGGTGACTTGGAGCTGTTCAGAGGAGTTACTGAAAAGTTTTCTTCTACTTTTGATAAGGATCGCACTCACAATTTAATTGTCCGCTTGCGGCACAATGTCATTAGGACTGGACTGAGAAACATAAGCATCTCTTATTCCCGCATCTCACTTTCCGATGTTGCTAAGAAGTTGAGATTGGATTCTCCCAACCCTGTTGCCGATGCTGAAAGCATTGTGGCCAAGGCTATTCGTGATGGTGCAATAGATGCCACATTGGATCATGGAAATGGGTGGATGCTATCAAAGGAGACTGGTGACATCTACTCAACAACCGAGCCACAGTCAGCCTTTGATTCTAGAATTGCTTTCTGTCTGAACATGCATAACGAGGCAGTACGGGCTCTACGGTACCCACCTAACTCGCACAAGGAAAAGGAAAGCGCTGAGAAGAGGAGGGAAAGGCAGCAGCAAGAGCAAGAACTTGCAAAACACATTGCTGAGGAAGAAGATGATGATTTTTGA ATGACTCAAGATGTGGAGATGCATGATACTCAACCCCTCTCGATTTCTCTCTCCTCTGTTGATCCACCTACTTTGAAGCATTTGAAGGAGATTGCGTCGCTCTTGGAAACGGGTTCTTATACTAAGGAAGCCCGTCGGATTTCTCGTGCTATTCGCCTTACCTTTGCTGTTCGTCGTAAGCTTACGGCCCGTGTGCTCCATTTCTTCCTTGATTATGCTCTTACACCGGGTTCCGAAGCTCATGGGAAAATCTCCGCATTTCTTCCCAAGGGAGGTGAACATGAGATGGAAGTTGACACTGCAACTTCTGCTGTGCAACCTTCAGGGAAAAGTACTTTACCGGAACTGGAAATCTTCTGCTACTTGATTGTCTTGTTGTTTCTGATTGATCAGAAGCTGCACAATGAGGCTAAAGCTTGTGCTTCTGCAAGCATTGCTCGTTTGAAATCATTGAAAAGAAGGGTTGCTGATGTTCTGGCTTCAAAATTGTATTCCTTCTATTCACTGAGTTATGAACTTACTGGTGATCTTGCTGAAATCCGTGGTGAACTCCTTACCTTGCATCGGTTGACGACCTTGCACCACGATGAGCTTGGTCAGGAAACACTTCTAAATTTGCTGCTTCGCAATTACCTCCATTACAACTTGTATGACCAGGCTGAAAAGCTGAGATCCAAGGCACCTAGTTTCGGGGCCCATTCCAACCAGCAGCATTGTCGACATCTCTTCTATGTTGGAAAGATCCAGACAATTCAGTTGGAGTATACTGATGCAAAAGAGAGCCTTCTTCAGGCTGCTAGGAAAGCACCTATTGCAGCCCGTGGCTTCAGGATTCAGTGCAATAAATGGGCTGTGATAGTGCGATTACTGCTAGGGGAAATACCTGAAAGAACAATGTTTATGCAGAAAGGCATGGAGAAGGCCTTGCGTCCGTACTTTGAGCTGACGAATGCTGTTCGAATTGGTGACTTGGAGCTGTTCAGAGGAGTTACTGAAAAGTTTTCTTCTACTTTTGATAAGGATCGCACTCACAATTTAATTGTCCGCTTGCGGCACAATGTCATTAGGACTGGACTGAGAAACATAAGCATCTCTTATTCCCGCATCTCACTTTCCGATGTTGCTAAGAAGTTGAGATTGGATTCTCCCAACCCTGTTGCCGATGCTGAAAGCATTGTGGCCAAGGCTATTCGTGATGGTGCAATAGATGCCACATTGGATCATGGAAATGGGTGGATGCTATCAAAGGAGACTGGTGACATCTACTCAACAACCGAGCCACAGTCAGCCTTTGATTCTAGAATTGCTTTCTGTCTGAACATGCATAACGAGGCAGTACGGGCTCTACGGTACCCACCTAACTCGCACAAGGAAAAGGAAAGCGCTGAGAAGAGGAGGGAAAGGCAGCAGCAAGAGCAAGAACTTGCAAAACACATTGCTGAGGAAGAAGATGATGATTTTTGA MTQDVEMHDTQPLSISLSSVDPPTLKHLKEIASLLETGSYTKEARRISRAIRLTFAVRRKLTARVLHFFLDYALTPGSEAHGKISAFLPKGGEHEMEVDTATSAVQPSGKSTLPELEIFCYLIVLLFLIDQKLHNEAKACASASIARLKSLKRRVADVLASKLYSFYSLSYELTGDLAEIRGELLTLHRLTTLHHDELGQETLLNLLLRNYLHYNLYDQAEKLRSKAPSFGAHSNQQHCRHLFYVGKIQTIQLEYTDAKESLLQAARKAPIAARGFRIQCNKWAVIVRLLLGEIPERTMFMQKGMEKALRPYFELTNAVRIGDLELFRGVTEKFSSTFDKDRTHNLIVRLRHNVIRTGLRNISISYSRISLSDVAKKLRLDSPNPVADAESIVAKAIRDGAIDATLDHGNGWMLSKETGDIYSTTEPQSAFDSRIAFCLNMHNEAVRALRYPPNSHKEKESAEKRRERQQQEQELAKHIAEEEDDDF Relationships
This mRNA is a part of the following gene feature(s):
The following polypeptide feature(s) derives from this mRNA:
The following five_prime_UTR feature(s) are a part of this mRNA:
The following CDS feature(s) are a part of this mRNA:
The following exon feature(s) are a part of this mRNA:
Homology
BLAST of Spo16573.1 vs. NCBI nr
Match: gi|902205416|gb|KNA15159.1| (hypothetical protein SOVF_099120 [Spinacia oleracea]) HSP 1 Score: 937.2 bits (2421), Expect = 1.200e-269 Identity = 487/487 (100.00%), Postives = 487/487 (100.00%), Query Frame = 1
BLAST of Spo16573.1 vs. NCBI nr
Match: gi|731374298|ref|XP_010666922.1| (PREDICTED: probable 26S proteasome non-ATPase regulatory subunit 3 [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 902.1 bits (2330), Expect = 4.200e-259 Identity = 468/487 (96.10%), Postives = 475/487 (97.54%), Query Frame = 1
BLAST of Spo16573.1 vs. NCBI nr
Match: gi|590594546|ref|XP_007017882.1| (PAM domain (PCI/PINT associated module) protein isoform 1 [Theobroma cacao]) HSP 1 Score: 782.7 bits (2020), Expect = 3.700e-223 Identity = 407/487 (83.57%), Postives = 439/487 (90.14%), Query Frame = 1
BLAST of Spo16573.1 vs. NCBI nr
Match: gi|1012214141|ref|XP_015933964.1| (PREDICTED: probable 26S proteasome non-ATPase regulatory subunit 3 [Arachis duranensis]) HSP 1 Score: 772.7 bits (1994), Expect = 3.800e-220 Identity = 396/487 (81.31%), Postives = 439/487 (90.14%), Query Frame = 1
BLAST of Spo16573.1 vs. NCBI nr
Match: gi|965660511|dbj|BAT76930.1| (hypothetical protein VIGAN_01500300 [Vigna angularis var. angularis]) HSP 1 Score: 771.9 bits (1992), Expect = 6.500e-220 Identity = 398/487 (81.72%), Postives = 437/487 (89.73%), Query Frame = 1
BLAST of Spo16573.1 vs. UniProtKB/TrEMBL
Match: A0A0K9R856_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_099120 PE=4 SV=1) HSP 1 Score: 937.2 bits (2421), Expect = 8.100e-270 Identity = 487/487 (100.00%), Postives = 487/487 (100.00%), Query Frame = 1
BLAST of Spo16573.1 vs. UniProtKB/TrEMBL
Match: A0A0J8B3L8_BETVU (Uncharacterized protein OS=Beta vulgaris subsp. vulgaris GN=BVRB_005460 PE=4 SV=1) HSP 1 Score: 902.1 bits (2330), Expect = 2.900e-259 Identity = 468/487 (96.10%), Postives = 475/487 (97.54%), Query Frame = 1
BLAST of Spo16573.1 vs. UniProtKB/TrEMBL
Match: A0A061FEG6_THECC (PAM domain (PCI/PINT associated module) protein isoform 1 OS=Theobroma cacao GN=TCM_034280 PE=4 SV=1) HSP 1 Score: 782.7 bits (2020), Expect = 2.600e-223 Identity = 407/487 (83.57%), Postives = 439/487 (90.14%), Query Frame = 1
BLAST of Spo16573.1 vs. UniProtKB/TrEMBL
Match: A0A0S3R8A0_PHAAN (Uncharacterized protein OS=Vigna angularis var. angularis GN=Vigan.01G500300 PE=4 SV=1) HSP 1 Score: 771.9 bits (1992), Expect = 4.500e-220 Identity = 398/487 (81.72%), Postives = 437/487 (89.73%), Query Frame = 1
BLAST of Spo16573.1 vs. UniProtKB/TrEMBL
Match: A0A151RUU9_CAJCA (Putative 26S proteasome non-ATPase regulatory subunit 3 OS=Cajanus cajan GN=KK1_032105 PE=4 SV=1) HSP 1 Score: 771.5 bits (1991), Expect = 5.900e-220 Identity = 398/487 (81.72%), Postives = 439/487 (90.14%), Query Frame = 1
BLAST of Spo16573.1 vs. ExPASy Swiss-Prot
Match: PSMD3_TOBAC (Probable 26S proteasome non-ATPase regulatory subunit 3 OS=Nicotiana tabacum GN=21D7 PE=2 SV=1) HSP 1 Score: 753.1 bits (1943), Expect = 2.000e-216 Identity = 395/488 (80.94%), Postives = 430/488 (88.11%), Query Frame = 1
BLAST of Spo16573.1 vs. ExPASy Swiss-Prot
Match: PSMD3_DAUCA (Probable 26S proteasome non-ATPase regulatory subunit 3 OS=Daucus carota GN=21D7 PE=1 SV=2) HSP 1 Score: 745.0 bits (1922), Expect = 5.300e-214 Identity = 382/489 (78.12%), Postives = 436/489 (89.16%), Query Frame = 1
BLAST of Spo16573.1 vs. ExPASy Swiss-Prot
Match: PSD3A_ARATH (26S proteasome non-ATPase regulatory subunit 3 homolog A OS=Arabidopsis thaliana GN=RPN3A PE=1 SV=3) HSP 1 Score: 738.4 bits (1905), Expect = 5.000e-212 Identity = 385/488 (78.89%), Postives = 431/488 (88.32%), Query Frame = 1
BLAST of Spo16573.1 vs. ExPASy Swiss-Prot
Match: PSD3B_ARATH (26S proteasome non-ATPase regulatory subunit 3 homolog B OS=Arabidopsis thaliana GN=RPN3B PE=1 SV=2) HSP 1 Score: 721.1 bits (1860), Expect = 8.200e-207 Identity = 374/487 (76.80%), Postives = 424/487 (87.06%), Query Frame = 1
BLAST of Spo16573.1 vs. ExPASy Swiss-Prot
Match: PSMD3_HUMAN (26S proteasome non-ATPase regulatory subunit 3 OS=Homo sapiens GN=PSMD3 PE=1 SV=2) HSP 1 Score: 366.7 bits (940), Expect = 3.900e-100 Identity = 212/474 (44.73%), Postives = 307/474 (64.77%), Query Frame = 1
BLAST of Spo16573.1 vs. TAIR (Arabidopsis)
Match: AT1G20200.1 (PAM domain (PCI/PINT associated module) protein) HSP 1 Score: 738.4 bits (1905), Expect = 2.800e-213 Identity = 385/488 (78.89%), Postives = 431/488 (88.32%), Query Frame = 1
BLAST of Spo16573.1 vs. TAIR (Arabidopsis)
Match: AT1G75990.1 (PAM domain (PCI/PINT associated module) protein) HSP 1 Score: 721.1 bits (1860), Expect = 4.600e-208 Identity = 374/487 (76.80%), Postives = 424/487 (87.06%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo16573.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo16573.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo16573.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 5
BLAST of Spo16573.1 vs. TAIR (Arabidopsis)
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. TAIR) Total hits: 2
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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