Overview
Sequences
The following sequences are available for this feature:
Legend: exonfive_prime_UTRpolypeptideCDSthree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.TTGAAATCGCGTGAGCTTAAAACTAGTACGAGTGTGTTGTAAAAAAAGAAAGAAAAAAGAGAATATCGAGAAAATTAGAATCTCTGCTTTCCTTTCCTTTCCCCCCTATTCATGATTTCATTCATTCATACAAACTCTCCATCTTACACTTCCTTTATCTTGCTATGGTGGTCCGATGGCGGGCGACAAAGCTCATCGTCAATGAAAGATGAGTGATTCTTCAAAAACCCTAACCCTAACCCTAACCCTAATTGAACTTCCCAATTAGGGAATTTTCCAACCGACAACCCGTTCTTCCGCCACTGCTAAAACCCCATGCCGAGCGACACCGTCATGAAGCCGTCTGTTCCGTCGCCGATTCTCGATCGTTTTCGGTTTCTTCTTAAAGAGAGAGAAGCTGAGTTTAGGGGTTCCGACGACGACGAAGATGACCTAGTTTGTATTCCTCCGCCGTCTATGGAGGAGATTGTGAGATTTTACGACGATGTTTTGTCGGAATTGACGTTTAACTCGAAGCCAATAATCACAGATCTTACGATTATTGCCGGTGAGCAGAGAGAGCATGCTGAGGGTATTGCTGATGCTATTTGTGCTAGGGTTTTAGAGGTACCGCTCTCCAAATTCAAATCGGAAGTTTTTTAGGGTTAGGGTTTTGAGTTCGGCAAATTGTAATTGTACTGTGTAATCAAATTTAGTTGAGTTTTGAGTTCAATTTTTGTTGTTGATTATTGCTTTTGTACAGTGTAACAAAATTTACTAGTGCATAGCAAGATTTTGGACTTTAACTATCTCCCATCTTCTTCCCTCTTTCTTTAATTCAGTTATTTTTTTTTGAAGTTTTTATGTTTAAATTGTTAGGTTTTATGAGCAATGTAAGATATAATCATGGTGAGTTATAAGTTTAGAGTTGAAGAGCTTTAATTTTGGGGTGTTACATTGCTGGTTATGCGTATTTATGCAGGTTCCTGTAGATCAAAAGATGCCTTCTTTGTATTTATTGGACAGCATTGTCAAGAATATCGGCCGTGATTATGCTAGGCACTTCGCTTCTCGATTGCCAGAGGTGAGTGATGTTTTTGGTTCTTGAGTTGATTTTGAGTGAGTAGATGAACTCTTTGTTTCATCCAGATAGAACCCATCTTTGATACTGATAATTTCTGGTTTGCTTGTAATTACTTGGATTTGTCTGAAAAGATGCATACTTTATGGTTTTCAGCCTTTCGGCATGTTACGAGACCAATGCTCTCACATCTCACACTGTTAGTAACTATACAACTCCAAAACACTGGTAACCAACTATATTGTGAGATGTGGGATCATTGGACCATGCCCTTCAATCTTCGGTATTTGGTGTGCTCGCAAACTACTAGGTTTCGCCAAAAAGATGCAAACTTTATGGAATAGTTTACAGTTATGACATGTTTTAATGGTTGAGTACTTTTAGCTGTATTCATGTAGTCATTTCACATAAAGCTTTTTTCTAATTACCTCTTTTTTATTTTTTCCGGTATAAGGTGTTTTGTGAAGTTTATAGACAAGTCCCTCCAAATTTGTATTCTTCAATGCGCCACTTGTTCAGAACCTGGTCGACTGTCTTCCCATCACCGGTTCTTGGTATGATTGAGGATGAATTGCAGTTCTCTCCAAGGGCGAACCAACCATCTTCCAACTTAGCCAGTATGAGAGCTTCTGAATCCCCTCGACCCTCTCATGGCATACATGTCAATCCCAAGTATCTGGAAATAAGACGGCAGTTTGATAATTCATCCATTAATAATGTAAGTTTTCAAGTAAACATCCTTCTTTTCTCTTTGTTTTGCTGGATATGCTATTTTTCTCCATCAGAGATGTAAGGATTGATAAAATAGCATTCTTTGAGTATGCACTATTTGTTGATTGTTACACTGACTGAGCTTTCTTTTGAAGAGTTTCCTGTTTCCACTTTCAATTGGTGGATGCCATGTTAATAGAAACAACATGATGCACAATGTGATTGTTGTTCTTTCCCTGTCCTTTTTTATTCCACGTGTTCAAGCAATAGAAACTGATCATCACAGCTGACGGGCTTAATCCACTAATGTTGAGAAATGGGTTCTTTATATTTTTGGAAAATGAAGAAGTTAACATAAACCGGTTTTTTCACCTAAGATATCTGGAAGGTATAGCTGTGTTATGGACTTAAAATTTAAACCATTTATTGCTGAATTATGTACCGTTTTTTTTTACAGTGAAAACTGTGCTTGATCGCCTTGATGTGGTAATGTGCTGCATGTTCAATTGTCAATGAATCTACCTATGCCCCTGTCAAAAAATAATAAAACTTTAACCTATGCCGTAAAAAGTTTTTCTTTATAGTATGGATGTGGAACTGCCCGTCATATCCACCTAATCTAGTGGATAAGCAGTTATATAAGTGTTCGGAGTGAAGGTTCAATCTTCTGTTGTAGATCATTTTGATTGCTGAGTCATCTAATTAAGTGGATGAAAAGCTCGTTTGTTTTATTTTCAATTTAGCGATCAAATATCCAATTCTTTTACTCCCCATTCATTTTCCATATTTCTGAAAGGAGATGCTTAAAAGGCTTCCATTGGACTAAGTTTCTGTACCAGGTCTTCTCTGTGCAAGTTCATATCTTTTTCCCTTCATGTTTTTGACAGCATCTCTACTTGAATACTAGTCTTGATCGCCTCAAGGGCATGTTCCACAACAATGTTGGAATATGTATTGCTTCTTCCACATCTTGTTCTTTTCTCCCTCTTCCTTTGAGAAGCATTGTACATTCCCTATGGTATGCCACACTGACAGTTTATTGCTGCATTATTTTGTTATTCTTGTGTAGAATATCCAGCCTGGGAGGGGGGCATCTAAGTCACATGGTCAGAAACATTCTATTGAATATGAAGAATATGATTATTATCAAGGAGAAGGCACAAACTCCCACCTTGATGCTCAAAGATTTAACTCCACTGGGTATGGTGGCCGTACATCGTTTCCATCATCAACTGACCAGTTGCTTCCTTCAGCAAGTGGTTCAGTGAGGCCCCTATCACCATCAGCCGATGAGTTTTTTATGTCCAATTCACCAGGACGGTTATTTGAAGGTGTATCTCCATCTCATCCAGGACTTAATTATGGGCGTAGGAGAGGAAGAGATGAAGAGAATGGTGACTGGCAGAAAAGACAACGCTCTGATGATTCCTATCACTATAGTTTAAACAATGGTGCTGAACATGACAGACCAAGGGCTTTAATTGATGCTTATGGCCAGGATGACGGTCAAAGATCTTTGAAAAAGAACCCACTTTGTATGGATCGTCTAATTGTAAATGGTGGAGGCTCATGGCAAAATACCGAAGAAGAAGAATTTGATTGGGAAGATATGAGTCCGACATTATTAGCTGATGGAAAGACCGGCAATGTCACTACTTCTACTGTGCCATCCAGAGGCTTCAAAGCTATACCTGGTGTTGGTTCTCTTGGCTCCAGACCTTTCAATCCCAATGGCAGGAAGGCTGTTGAAGATGTAAGTTCCTGCAAGTCGAATATAGCTGTCATAGTATGCAGTTAGTCTTTCTTACTTCTATCGAGTGCCATGATTTTGCGTGATATGGGAAATTCCATTTGTCCTTCCGGTGTTGAATATTTTCTCGATTTGCAATTCTTATTAATGAAAAACTCAGTCAAGTATTTTACTTTAACCTTCCCCCCATGTAGCCTGTTTGTTCTAGGCCGTTTGTATTCTTACAGCCTTACTCATCAGTATTGCTATTTTGCTCTGTAAGTTCTGCTTTACTTCATATTTTTGGCCCGTGTTGTGTTGATCCTAAATTGAAAAGGGGGTCGACCCAAGATCTCTCTTTTTAATTTCCTTTTCTATTTGCTATTTTTTCTCATTCTTCTCAGTATACAATTTATAAACAGCAAATTCTGATTTACATTTTTATCAACTTGCAGGGTGGCCATTTATCATCCAACAGACCTGTTTCAAGAAGCGAGATGAATCTTTCTCAGGGAGCTTGGAAGTTGCCTGTACCTGTAGCTGGAAGAGAAAATACTTCTCAGTTGACATTACCTGTGAATGGAGTGCCTTCATCATCGTCTGACGGAAAGCCTTTATCAGCAGATCATTATGCTCCAGCACCGATGCAGCTTGGCAGGATCTCTAATTCAGGTTTTAATTCCTATGAAGCAAGAGCTCCTTCATCTGCTGTGGCGCCAGTGTCAACTAGCTCATGGCCCTCTACAAGTTCGCATAATTTTGCGCCTTTACCACCTTTGTATCTGCAGCAAAAACAGCCTAGAGCTTCCTTTGATTTTAGAAATCAAAGTTACAGTATCCTTAATCAAGGCAATCAACAATTTGACAGTGATGACAAAAGGAATCTGATTCCTCCAAAACCGGGACAAAGGCCTCAGCTTAGCTTCACCCCTCTGCAATATCTAACACAGCAACCAGGATCTTTGCAGCAGCAATTGCACTTGCCTCCCGAGCCTCGGCATAATGCTGTATCACTCCCACCGCAGACGATACTGCCATCTGGTCTTGGATATACTCCACTTGGTCATGGGGTTGCAGCTAGCAATATTGTGCGCAATCCAGTACCTGGTTCTCATCCTTATGCACCTTTCCAAAATGTGTCCAATGGTTATATGCAGTTTCAATCACCTATGGCACCACTCCCTTTAGTCCCTCGTCCCCATTCTCAGTTTCTACCTCTTCCGCAGAGTTCTGGCCCCCTTGCTAACCAAGCACCAACTGCTGCTATATCTGGTTTACTCAATTCTCTTGTTGCTCAAGGTTTATTTCCATCGAATCAGACTCCTGCACAGGTAACTCAGCTGTAATCCTACGTAGTTAAGTTAGGTTGTGTTTAGTCAATTGATATATGAATATCATAGACTTTGTTGTTAATGATTGATCTATCATCAATAGGCTTCTTTATACGAAGTATTGCCTTTCGCTTGTGGCTTATATTGATTTTCCTTTTGTAATGTTAATCTAAATCAGGATTCTCTTGGAGTAGAGTTTAACCCTGATCTTCTTAAAGTGCGGCACGAATCAGCCATAAGGGCTTTGTATGAGGAACTACCCAGACAGTGCACCACCTGTGGCCTTCGGTTCAAGACCCAAGACGAACACAGTAAGCACATGGATTGGCATGTGACTAAGAATCGAATTTCAAAGAACCGTAAGCACAACCCTTCTCGAAAGTGGTTTGTCAGTGTGAATATGTGGCTCAGTGGTGCCGAAGCATTGGGGACTGATTCAGCTCCTGGATTTTTGCCAACCGAGAGTGTTGTCGAAAAGAAGGACGACGAAGAGATGGCAGTTCCTGCAGATGAGGATCAGAATAGCTGTGCTTTATGCGGGGAACCTTTTGAAGATTTTTACAGTGATGAAACTGAAGAATGGATGTATAGAGGGGCTGTGTACTTGAATGCACCTCTTGGGTCTACTGTTGGTATGGACAGATCACAGTTGGGCCCTATTGTGCATGCAAAATGTAGATCTGATTCTAATGATGCTCCAACCTGAAGAACCAATAATCATCTTGCTATACGGTAAGGTTCCTGTTTCATTGTTTCATTACTTGCGGATCTTCAAGACCCAATTGCATGAGATTGTAAGGTCTTTTTGATTAGGTTAGTCCTGTCATATTTGTCCCTAGTGAGGGTAGTTCTTTGTTGGCAACAAGTCATTGTTTTCTCATATGTAGCATGTTAGGTTTACCTTCTTGTGCTCATTTCAGTGTGAGTGAGGCTAAGTGCCTAAGGCTTCGTTTGGTAGGGTGTAAAATATTTTCATGGAAAACGATTTTTCCCTTTTCAATCATTTTACGTTGTTTGGTTTGGCAAGGTATGGAAAACAATTTTCCATGACTCCCTTAAAGGTGGAAAAACCTTCTCCATTAGAAAGGGAAGGAAACCACTTTTCCACCTTTCATCCTTCCTCTTTACCTCCCTTTCCCTTCTTCCCCCCAATCTTTACCATCTTCTCCCATTTTTTTTAAGGAACAAAACAAAGGAAAAGTAGTTTGGAATTGTGTTTTCTCTTAGAAATTCCATGGATAATCATTTTGCACTGAAAACGTTTTACACCAACCAAACGGTGCCTAACAGTAAATCGCATGGAAAAATGTAGACTGTGCCCAAACTTGCTCAACCCAAGTTTTACTACAGTTTGCTCGTTAGGTTTTCAGGACACTGTGTGGCCCCCTGCTGTTATACTAGTTGAAGTTTCTTTGAGTTCACTCAGTATTTAGTATAGTTACCTCTTACTCCCTCCGTTCCTAAAAGATCGCCCCGTGCCTTTGTTCACTTTATTAACAATTGGGTATACTCAAAAGCAAATTGGTAGGTAGATTTGTCTTTAGTTAGATTAAATAATTGTATGCGAGGAGAAACATGCGGAGACCATAAACCAAATAGGGACATCCATTTATGGTATATGGGAGCAATCTTTTAGGACGGAGGGAGTATCTCATATGACATATTTGGCAATATTCTCAGGGATCTAATAATTGATCACTGCTTTGCATTAACTTCTTCATATTCATATGTATCTTTTAGGTGCATTGTATTCTTATACGAAGTACATCCATTTGCATTGTGTGCAGGGACTTTGAAGAGGCTAGAAAAACGAAACAAACGGCAGCATTATCAATCATCAACCTAGTTTGTTTTACTGTAACATTAATATGAGTTTCTTCTTGTTAGTGGTAGGATCTTACTTTTTTTTACTGCCCCCCCTCATTCCAAGATTTTCTACCTTGGTGTTCAAGTGGTGACATGATGCCAGAATATGTACATACAGTGGGAGATATACATCCATAGTCCCTGCAGTTGCAGTAAATTTCTTTGGCATACTTTTTTACCCCCCCCC TTGAAATCGCGTGAGCTTAAAACTAGTACGAGTGTGTTGTAAAAAAAGAAAGAAAAAAGAGAATATCGAGAAAATTAGAATCTCTGCTTTCCTTTCCTTTCCCCCCTATTCATGATTTCATTCATTCATACAAACTCTCCATCTTACACTTCCTTTATCTTGCTATGGTGGTCCGATGGCGGGCGACAAAGCTCATCGTCAATGAAAGATGAGTGATTCTTCAAAAACCCTAACCCTAACCCTAACCCTAATTGAACTTCCCAATTAGGGAATTTTCCAACCGACAACCCGTTCTTCCGCCACTGCTAAAACCCCATGCCGAGCGACACCGTCATGAAGCCGTCTGTTCCGTCGCCGATTCTCGATCGTTTTCGGTTTCTTCTTAAAGAGAGAGAAGCTGAGTTTAGGGGTTCCGACGACGACGAAGATGACCTAGTTTGTATTCCTCCGCCGTCTATGGAGGAGATTGTGAGATTTTACGACGATGTTTTGTCGGAATTGACGTTTAACTCGAAGCCAATAATCACAGATCTTACGATTATTGCCGGTGAGCAGAGAGAGCATGCTGAGGGTATTGCTGATGCTATTTGTGCTAGGGTTTTAGAGGTTCCTGTAGATCAAAAGATGCCTTCTTTGTATTTATTGGACAGCATTGTCAAGAATATCGGCCGTGATTATGCTAGGCACTTCGCTTCTCGATTGCCAGAGGTGTTTTGTGAAGTTTATAGACAAGTCCCTCCAAATTTGTATTCTTCAATGCGCCACTTGTTCAGAACCTGGTCGACTGTCTTCCCATCACCGGTTCTTGGTATGATTGAGGATGAATTGCAGTTCTCTCCAAGGGCGAACCAACCATCTTCCAACTTAGCCAGTATGAGAGCTTCTGAATCCCCTCGACCCTCTCATGGCATACATGTCAATCCCAAGTATCTGGAAATAAGACGGCAGTTTGATAATTCATCCATTAATAATAATATCCAGCCTGGGAGGGGGGCATCTAAGTCACATGGTCAGAAACATTCTATTGAATATGAAGAATATGATTATTATCAAGGAGAAGGCACAAACTCCCACCTTGATGCTCAAAGATTTAACTCCACTGGGTATGGTGGCCGTACATCGTTTCCATCATCAACTGACCAGTTGCTTCCTTCAGCAAGTGGTTCAGTGAGGCCCCTATCACCATCAGCCGATGAGTTTTTTATGTCCAATTCACCAGGACGGTTATTTGAAGGTGTATCTCCATCTCATCCAGGACTTAATTATGGGCGTAGGAGAGGAAGAGATGAAGAGAATGGTGACTGGCAGAAAAGACAACGCTCTGATGATTCCTATCACTATAGTTTAAACAATGGTGCTGAACATGACAGACCAAGGGCTTTAATTGATGCTTATGGCCAGGATGACGGTCAAAGATCTTTGAAAAAGAACCCACTTTGTATGGATCGTCTAATTGTAAATGGTGGAGGCTCATGGCAAAATACCGAAGAAGAAGAATTTGATTGGGAAGATATGAGTCCGACATTATTAGCTGATGGAAAGACCGGCAATGTCACTACTTCTACTGTGCCATCCAGAGGCTTCAAAGCTATACCTGGTGTTGGTTCTCTTGGCTCCAGACCTTTCAATCCCAATGGCAGGAAGGCTGTTGAAGATGGTGGCCATTTATCATCCAACAGACCTGTTTCAAGAAGCGAGATGAATCTTTCTCAGGGAGCTTGGAAGTTGCCTGTACCTGTAGCTGGAAGAGAAAATACTTCTCAGTTGACATTACCTGTGAATGGAGTGCCTTCATCATCGTCTGACGGAAAGCCTTTATCAGCAGATCATTATGCTCCAGCACCGATGCAGCTTGGCAGGATCTCTAATTCAGGTTTTAATTCCTATGAAGCAAGAGCTCCTTCATCTGCTGTGGCGCCAGTGTCAACTAGCTCATGGCCCTCTACAAGTTCGCATAATTTTGCGCCTTTACCACCTTTGTATCTGCAGCAAAAACAGCCTAGAGCTTCCTTTGATTTTAGAAATCAAAGTTACAGTATCCTTAATCAAGGCAATCAACAATTTGACAGTGATGACAAAAGGAATCTGATTCCTCCAAAACCGGGACAAAGGCCTCAGCTTAGCTTCACCCCTCTGCAATATCTAACACAGCAACCAGGATCTTTGCAGCAGCAATTGCACTTGCCTCCCGAGCCTCGGCATAATGCTGTATCACTCCCACCGCAGACGATACTGCCATCTGGTCTTGGATATACTCCACTTGGTCATGGGGTTGCAGCTAGCAATATTGTGCGCAATCCAGTACCTGGTTCTCATCCTTATGCACCTTTCCAAAATGTGTCCAATGGTTATATGCAGTTTCAATCACCTATGGCACCACTCCCTTTAGTCCCTCGTCCCCATTCTCAGTTTCTACCTCTTCCGCAGAGTTCTGGCCCCCTTGCTAACCAAGCACCAACTGCTGCTATATCTGGTTTACTCAATTCTCTTGTTGCTCAAGGTTTATTTCCATCGAATCAGACTCCTGCACAGGATTCTCTTGGAGTAGAGTTTAACCCTGATCTTCTTAAAGTGCGGCACGAATCAGCCATAAGGGCTTTGTATGAGGAACTACCCAGACAGTGCACCACCTGTGGCCTTCGGTTCAAGACCCAAGACGAACACAGTAAGCACATGGATTGGCATGTGACTAAGAATCGAATTTCAAAGAACCGTAAGCACAACCCTTCTCGAAAGTGGTTTGTCAGTGTGAATATGTGGCTCAGTGGTGCCGAAGCATTGGGGACTGATTCAGCTCCTGGATTTTTGCCAACCGAGAGTGTTGTCGAAAAGAAGGACGACGAAGAGATGGCAGTTCCTGCAGATGAGGATCAGAATAGCTGTGCTTTATGCGGGGAACCTTTTGAAGATTTTTACAGTGATGAAACTGAAGAATGGATGTATAGAGGGGCTGTGTACTTGAATGCACCTCTTGGGTCTACTGTTGGTATGGACAGATCACAGTTGGGCCCTATTGTGCATGCAAAATGTAGATCTGATTCTAATGATGCTCCAACCTGAAGAACCAATAATCATCTTGCTATACGGGACTTTGAAGAGGCTAGAAAAACGAAACAAACGGCAGCATTATCAATCATCAACCTAGTTTGTTTTACTGTAACATTAATATGAGTTTCTTCTTGTTAGTGGTAGGATCTTACTTTTTTTTACTGCCCCCCCTCATTCCAAGATTTTCTACCTTGGTGTTCAAGTGGTGACATGATGCCAGAATATGTACATACAGTGGGAGATATACATCCATAGTCCCTGCAGTTGCAGTAAATTTCTTTGGCATACTTTTTTACCCCCCCCC ATGCCGAGCGACACCGTCATGAAGCCGTCTGTTCCGTCGCCGATTCTCGATCGTTTTCGGTTTCTTCTTAAAGAGAGAGAAGCTGAGTTTAGGGGTTCCGACGACGACGAAGATGACCTAGTTTGTATTCCTCCGCCGTCTATGGAGGAGATTGTGAGATTTTACGACGATGTTTTGTCGGAATTGACGTTTAACTCGAAGCCAATAATCACAGATCTTACGATTATTGCCGGTGAGCAGAGAGAGCATGCTGAGGGTATTGCTGATGCTATTTGTGCTAGGGTTTTAGAGGTTCCTGTAGATCAAAAGATGCCTTCTTTGTATTTATTGGACAGCATTGTCAAGAATATCGGCCGTGATTATGCTAGGCACTTCGCTTCTCGATTGCCAGAGGTGTTTTGTGAAGTTTATAGACAAGTCCCTCCAAATTTGTATTCTTCAATGCGCCACTTGTTCAGAACCTGGTCGACTGTCTTCCCATCACCGGTTCTTGGTATGATTGAGGATGAATTGCAGTTCTCTCCAAGGGCGAACCAACCATCTTCCAACTTAGCCAGTATGAGAGCTTCTGAATCCCCTCGACCCTCTCATGGCATACATGTCAATCCCAAGTATCTGGAAATAAGACGGCAGTTTGATAATTCATCCATTAATAATAATATCCAGCCTGGGAGGGGGGCATCTAAGTCACATGGTCAGAAACATTCTATTGAATATGAAGAATATGATTATTATCAAGGAGAAGGCACAAACTCCCACCTTGATGCTCAAAGATTTAACTCCACTGGGTATGGTGGCCGTACATCGTTTCCATCATCAACTGACCAGTTGCTTCCTTCAGCAAGTGGTTCAGTGAGGCCCCTATCACCATCAGCCGATGAGTTTTTTATGTCCAATTCACCAGGACGGTTATTTGAAGGTGTATCTCCATCTCATCCAGGACTTAATTATGGGCGTAGGAGAGGAAGAGATGAAGAGAATGGTGACTGGCAGAAAAGACAACGCTCTGATGATTCCTATCACTATAGTTTAAACAATGGTGCTGAACATGACAGACCAAGGGCTTTAATTGATGCTTATGGCCAGGATGACGGTCAAAGATCTTTGAAAAAGAACCCACTTTGTATGGATCGTCTAATTGTAAATGGTGGAGGCTCATGGCAAAATACCGAAGAAGAAGAATTTGATTGGGAAGATATGAGTCCGACATTATTAGCTGATGGAAAGACCGGCAATGTCACTACTTCTACTGTGCCATCCAGAGGCTTCAAAGCTATACCTGGTGTTGGTTCTCTTGGCTCCAGACCTTTCAATCCCAATGGCAGGAAGGCTGTTGAAGATGGTGGCCATTTATCATCCAACAGACCTGTTTCAAGAAGCGAGATGAATCTTTCTCAGGGAGCTTGGAAGTTGCCTGTACCTGTAGCTGGAAGAGAAAATACTTCTCAGTTGACATTACCTGTGAATGGAGTGCCTTCATCATCGTCTGACGGAAAGCCTTTATCAGCAGATCATTATGCTCCAGCACCGATGCAGCTTGGCAGGATCTCTAATTCAGGTTTTAATTCCTATGAAGCAAGAGCTCCTTCATCTGCTGTGGCGCCAGTGTCAACTAGCTCATGGCCCTCTACAAGTTCGCATAATTTTGCGCCTTTACCACCTTTGTATCTGCAGCAAAAACAGCCTAGAGCTTCCTTTGATTTTAGAAATCAAAGTTACAGTATCCTTAATCAAGGCAATCAACAATTTGACAGTGATGACAAAAGGAATCTGATTCCTCCAAAACCGGGACAAAGGCCTCAGCTTAGCTTCACCCCTCTGCAATATCTAACACAGCAACCAGGATCTTTGCAGCAGCAATTGCACTTGCCTCCCGAGCCTCGGCATAATGCTGTATCACTCCCACCGCAGACGATACTGCCATCTGGTCTTGGATATACTCCACTTGGTCATGGGGTTGCAGCTAGCAATATTGTGCGCAATCCAGTACCTGGTTCTCATCCTTATGCACCTTTCCAAAATGTGTCCAATGGTTATATGCAGTTTCAATCACCTATGGCACCACTCCCTTTAGTCCCTCGTCCCCATTCTCAGTTTCTACCTCTTCCGCAGAGTTCTGGCCCCCTTGCTAACCAAGCACCAACTGCTGCTATATCTGGTTTACTCAATTCTCTTGTTGCTCAAGGTTTATTTCCATCGAATCAGACTCCTGCACAGGATTCTCTTGGAGTAGAGTTTAACCCTGATCTTCTTAAAGTGCGGCACGAATCAGCCATAAGGGCTTTGTATGAGGAACTACCCAGACAGTGCACCACCTGTGGCCTTCGGTTCAAGACCCAAGACGAACACAGTAAGCACATGGATTGGCATGTGACTAAGAATCGAATTTCAAAGAACCGTAAGCACAACCCTTCTCGAAAGTGGTTTGTCAGTGTGAATATGTGGCTCAGTGGTGCCGAAGCATTGGGGACTGATTCAGCTCCTGGATTTTTGCCAACCGAGAGTGTTGTCGAAAAGAAGGACGACGAAGAGATGGCAGTTCCTGCAGATGAGGATCAGAATAGCTGTGCTTTATGCGGGGAACCTTTTGAAGATTTTTACAGTGATGAAACTGAAGAATGGATGTATAGAGGGGCTGTGTACTTGAATGCACCTCTTGGGTCTACTGTTGGTATGGACAGATCACAGTTGGGCCCTATTGTGCATGCAAAATGTAGATCTGATTCTAATGATGCTCCAACCTGA MPSDTVMKPSVPSPILDRFRFLLKEREAEFRGSDDDEDDLVCIPPPSMEEIVRFYDDVLSELTFNSKPIITDLTIIAGEQREHAEGIADAICARVLEVPVDQKMPSLYLLDSIVKNIGRDYARHFASRLPEVFCEVYRQVPPNLYSSMRHLFRTWSTVFPSPVLGMIEDELQFSPRANQPSSNLASMRASESPRPSHGIHVNPKYLEIRRQFDNSSINNNIQPGRGASKSHGQKHSIEYEEYDYYQGEGTNSHLDAQRFNSTGYGGRTSFPSSTDQLLPSASGSVRPLSPSADEFFMSNSPGRLFEGVSPSHPGLNYGRRRGRDEENGDWQKRQRSDDSYHYSLNNGAEHDRPRALIDAYGQDDGQRSLKKNPLCMDRLIVNGGGSWQNTEEEEFDWEDMSPTLLADGKTGNVTTSTVPSRGFKAIPGVGSLGSRPFNPNGRKAVEDGGHLSSNRPVSRSEMNLSQGAWKLPVPVAGRENTSQLTLPVNGVPSSSSDGKPLSADHYAPAPMQLGRISNSGFNSYEARAPSSAVAPVSTSSWPSTSSHNFAPLPPLYLQQKQPRASFDFRNQSYSILNQGNQQFDSDDKRNLIPPKPGQRPQLSFTPLQYLTQQPGSLQQQLHLPPEPRHNAVSLPPQTILPSGLGYTPLGHGVAASNIVRNPVPGSHPYAPFQNVSNGYMQFQSPMAPLPLVPRPHSQFLPLPQSSGPLANQAPTAAISGLLNSLVAQGLFPSNQTPAQDSLGVEFNPDLLKVRHESAIRALYEELPRQCTTCGLRFKTQDEHSKHMDWHVTKNRISKNRKHNPSRKWFVSVNMWLSGAEALGTDSAPGFLPTESVVEKKDDEEMAVPADEDQNSCALCGEPFEDFYSDETEEWMYRGAVYLNAPLGSTVGMDRSQLGPIVHAKCRSDSNDAPT Relationships
This mRNA is a part of the following gene feature(s):
The following polypeptide feature(s) derives from this mRNA:
The following exon feature(s) are a part of 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 three_prime_UTR feature(s) are a part of this mRNA:
Homology
BLAST of Spo22892.1 vs. NCBI nr
Match: gi|902222814|gb|KNA19276.1| (hypothetical protein SOVF_062990 [Spinacia oleracea]) HSP 1 Score: 1843.9 bits (4775), Expect = 0.000e+0 Identity = 913/914 (99.89%), Postives = 913/914 (99.89%), Query Frame = 1
BLAST of Spo22892.1 vs. NCBI nr
Match: gi|731369803|ref|XP_010665531.1| (PREDICTED: polyadenylation and cleavage factor homolog 4 [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 1389.4 bits (3595), Expect = 0.000e+0 Identity = 729/960 (75.94%), Postives = 787/960 (81.98%), Query Frame = 1
BLAST of Spo22892.1 vs. NCBI nr
Match: gi|731311487|ref|XP_010669758.1| (PREDICTED: polyadenylation and cleavage factor homolog 4-like [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 865.1 bits (2234), Expect = 1.100e-247 Identity = 486/774 (62.79%), Postives = 541/774 (69.90%), Query Frame = 1
BLAST of Spo22892.1 vs. NCBI nr
Match: gi|870869653|gb|KMT20398.1| (hypothetical protein BVRB_1g003940 isoform C [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 821.2 bits (2120), Expect = 1.800e-234 Identity = 472/785 (60.13%), Postives = 537/785 (68.41%), Query Frame = 1
BLAST of Spo22892.1 vs. NCBI nr
Match: gi|590625880|ref|XP_007026008.1| (PCF11P-similar protein 4, putative isoform 1 [Theobroma cacao]) HSP 1 Score: 787.7 bits (2033), Expect = 2.100e-224 Identity = 492/995 (49.45%), Postives = 602/995 (60.50%), Query Frame = 1
BLAST of Spo22892.1 vs. UniProtKB/TrEMBL
Match: A0A0K9RID7_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_062990 PE=4 SV=1) HSP 1 Score: 1843.9 bits (4775), Expect = 0.000e+0 Identity = 913/914 (99.89%), Postives = 913/914 (99.89%), Query Frame = 1
BLAST of Spo22892.1 vs. UniProtKB/TrEMBL
Match: A0A0J8B9P3_BETVU (Uncharacterized protein OS=Beta vulgaris subsp. vulgaris GN=BVRB_8g200280 PE=4 SV=1) HSP 1 Score: 1389.4 bits (3595), Expect = 0.000e+0 Identity = 729/960 (75.94%), Postives = 787/960 (81.98%), Query Frame = 1
BLAST of Spo22892.1 vs. UniProtKB/TrEMBL
Match: A0A0J8D831_BETVU (Uncharacterized protein OS=Beta vulgaris subsp. vulgaris GN=BVRB_1g003940 PE=4 SV=1) HSP 1 Score: 821.2 bits (2120), Expect = 1.200e-234 Identity = 472/785 (60.13%), Postives = 537/785 (68.41%), Query Frame = 1
BLAST of Spo22892.1 vs. UniProtKB/TrEMBL
Match: A0A061GFH6_THECC (PCF11P-similar protein 4, putative isoform 1 OS=Theobroma cacao GN=TCM_030180 PE=4 SV=1) HSP 1 Score: 787.7 bits (2033), Expect = 1.500e-224 Identity = 492/995 (49.45%), Postives = 602/995 (60.50%), Query Frame = 1
BLAST of Spo22892.1 vs. UniProtKB/TrEMBL
Match: F6H7L4_VITVI (Putative uncharacterized protein OS=Vitis vinifera GN=VIT_10s0116g00720 PE=4 SV=1) HSP 1 Score: 786.2 bits (2029), Expect = 4.400e-224 Identity = 471/956 (49.27%), Postives = 586/956 (61.30%), Query Frame = 1
BLAST of Spo22892.1 vs. ExPASy Swiss-Prot
Match: PCFS4_ARATH (Polyadenylation and cleavage factor homolog 4 OS=Arabidopsis thaliana GN=PCFS4 PE=1 SV=1) HSP 1 Score: 324.3 bits (830), Expect = 4.200e-87 Identity = 168/262 (64.12%), Postives = 193/262 (73.66%), Query Frame = 1
BLAST of Spo22892.1 vs. ExPASy Swiss-Prot
Match: PCFS1_ARATH (Polyadenylation and cleavage factor homolog 1 OS=Arabidopsis thaliana GN=PCFS1 PE=1 SV=1) HSP 1 Score: 155.6 bits (392), Expect = 2.600e-36 Identity = 105/290 (36.21%), Postives = 148/290 (51.03%), Query Frame = 1
BLAST of Spo22892.1 vs. ExPASy Swiss-Prot
Match: PCFS5_ARATH (Polyadenylation and cleavage factor homolog 5 OS=Arabidopsis thaliana GN=PCFS5 PE=1 SV=1) HSP 1 Score: 153.7 bits (387), Expect = 9.800e-36 Identity = 106/294 (36.05%), Postives = 146/294 (49.66%), Query Frame = 1
BLAST of Spo22892.1 vs. ExPASy Swiss-Prot
Match: PCF11_HUMAN (Pre-mRNA cleavage complex 2 protein Pcf11 OS=Homo sapiens GN=PCF11 PE=1 SV=3) HSP 1 Score: 94.4 bits (233), Expect = 7.100e-18 Identity = 56/158 (35.44%), Postives = 83/158 (52.53%), Query Frame = 1
BLAST of Spo22892.1 vs. ExPASy Swiss-Prot
Match: YD14_SCHPO (Uncharacterized protein C4G9.04c OS=Schizosaccharomyces pombe (strain 972 / ATCC 24843) GN=SPAC4G9.04c PE=3 SV=1) HSP 1 Score: 81.3 bits (199), Expect = 6.200e-14 Identity = 44/101 (43.56%), Postives = 54/101 (53.47%), Query Frame = 1
BLAST of Spo22892.1 vs. TAIR (Arabidopsis)
Match: AT4G04885.1 (PCF11P-similar protein 4) HSP 1 Score: 324.3 bits (830), Expect = 2.400e-88 Identity = 168/262 (64.12%), Postives = 193/262 (73.66%), Query Frame = 1
BLAST of Spo22892.1 vs. TAIR (Arabidopsis)
Match: AT1G66500.1 (Pre-mRNA cleavage complex II) HSP 1 Score: 155.6 bits (392), Expect = 1.500e-37 Identity = 105/290 (36.21%), Postives = 148/290 (51.03%), Query Frame = 1
BLAST of Spo22892.1 vs. TAIR (Arabidopsis)
Match: AT5G43620.1 (Pre-mRNA cleavage complex II) HSP 1 Score: 153.7 bits (387), Expect = 5.500e-37 Identity = 106/294 (36.05%), Postives = 146/294 (49.66%), Query Frame = 1
BLAST of Spo22892.1 vs. TAIR (Arabidopsis)
Match: AT2G36480.3 (ENTH/VHS family protein) HSP 1 Score: 135.2 bits (339), Expect = 2.000e-31 Identity = 65/116 (56.03%), Postives = 88/116 (75.86%), Query Frame = 1
BLAST of Spo22892.1 vs. TAIR (Arabidopsis)
Match: AT2G36485.1 (ENTH/VHS family protein) HSP 1 Score: 63.2 bits (152), Expect = 9.900e-10 Identity = 42/101 (41.58%), Postives = 52/101 (51.49%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo22892.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo22892.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo22892.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 5
BLAST of Spo22892.1 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 mRNA is annotated with the following GO terms.
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