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.ATATAAGTTTATTCTCCCAATTTTACTTTATTACAATAAGGTATAATCATGTCCAATAATTTCAATCAGGTTTAATCCGCTCAGAGAATTTCTCTAAGATTTCATCAATTGTGTTCCTACTCATTTCATGATAGATTGTGTGGTTGGTGAAAACGCCAAACAGTCCCCTTGTGGGCGTTGTGGCCTTGCACTCGTACTACGCGAAAAGAAGATAAATAGAAAATGAAGCTACAAATCAAGAAAAACAATGCGCCACAAAAAAGAAAAAAAAAACAGAAATTTAAAATAGCCTTTATTACCAACCACTTAAAGCTCACCCCCAAATCCACCACACTTCACTCTTTGCGCGACACAGAAAGTGAGGTTGAGAGAAAATGGCGATGGCAATGGCGTTGCGCAAGCTCTCCAATTCCGCCAACAAGCCTATTCGTACCGCGTTCAATGGCGCTCCTCTCTACTTCATGGTCTCTTTCTCTCTCCCACTCTTTATTTTCATGTAATGAGTTTCTTCTATGATTCAATTTTAACTATTTGATTTTCGGTATTTGAATTCAGTCGACCGAAGCGGCGATCGACAAGGAGAAGCAAGTTTCTGTGTCGGTTAGTATGATAATTCAAGATGATTATTCTTTGTTTATTTGATTGGAATTTTTGGAGAATTTATATATGAACAATTGGTTGTTTGAACAGTGGCCGAAGCAATTGAATGCGCCACTTGAGGAAGTTGATCCTGAAATTGCTGACATTATCGAGCACGAAAAGACCAGACAATGGAAGGTTTACCATTCTGTCTCGTCACAGTACTAACTTTTGCTATACGATTCTGTCGAAACTTAGTTGTCATGCTACTAGTCCAAATTAGAGGTTTAACACGACTTATAAATCGGAACTATCTCGTAGATACATTAATGATACTATGATTGTGACTGCATTCAAGTCTTAAAGTTTGTACCCTTCGCCTTCTCTTTCTTCTCGCCTATTGTAGGAACATTTATTTGATGGGGCCTTTTGCGAATTTTCGATATAAAATTGGTTTATGATTTGAGTAAAACTAAAGAATTGGGAATGCATTTTTGTAATTTTAATGACGAATTAACGTTTATGAAATTTCTTATGATTTTTGTACAAGAGATTTTTATTTATTTTTTGATAATGACGAATTAACGTTTATGAAATTTCTTATGATTTTTGTAAAAGAGATTTATTTATTTATTTTTTGATAATGACGAATTAACGTTTATGAAATTTCTTATGATTTTTGTACAAGAGAAATCTACATTTTCCGATCAATATTTACATGCGGTTAAGTTTTGGAAAAATGAATAACTTAAAAGTGTGAGTACCTTCTAATAACGAAATATAATACTTCTTAAATTGTGAGTGCTGATAGATAGTTCTTCACAGTTTTCTTTCTTAACCTTCAGTCAACAACTAACCAAATGTATAGTAAAGTATGTTAAACAGAGACATTTCTCCTTTCATGTACTTGTTAGTTTTGTTTTCATTTATCTAATATTCTCGTTGCTCCGGAGGGTGTATTGATTCATCTGGTCGACATGTTTGGGTAATATAGGGTCTAGAACTTATTCCATCGGAGAATTTCACTTCACTCTCTGTGATGCAAGCTGTTGGATCTGTCATGACCAACAAGTATAGTGAAGGATATCCTGGAGCAAGATATTATGGAGGAAACGAGTATGTCAAATGCTTTTTGTAACTACATTGAATCCTTTCTGAATTCTTTTTTGTAAAGATTATACTTCTGATTCAGGTTCATTGATATGGCTGAAACCTTATGTCAACAGCGTGCATTAGAAGTTTTTCGATTGGACCCTAAACAATGGGGAGGTGAATTTTTGAATTTTAATGCTTTTTTTGTTTGTTTATTCTGTACTTCATCCGTATTTGTTTGTTTCTTTCTTTCTTTCTTTCGATCATCTGTACATAGAGTTCGCAGGCTTGGCACAGTAGTGCCCCTCCTCATTTAAGTACCTATTGCTACACCTGTCAAAAACCGACCCGACCTGAAAACCGACCCGAAACCAACCCGAAAATACTGGGTCTTGAACAAGATTTTGTGACCCGTAACCCGTTTTTATCCGAACCCGAACAACCCAAAAAGTAATGGATTAAATACCGACCGATTGAAAATCATTGTATTTATAGTAATAAATGAGATTATGAGGAATTTTAAGCATAGAAAACACGTTATTGTTACAATTGTTGTGTGTAGTACGATTTTAATTTGAATTATACCCATTTTATGGTTGAATTTGACTAAATATGTACTTGTGTAGGAAAATTTGTTAATTTGTGCCCATATTTTAATATTTGTTACCTAAATTAATGAAAATATAATACGCATTTTAAAATCTCTCAACCCATCGGGTCGATCCGAACCCGTCTTGGTCTTAAACAAGCATTTGTATACCCAAATCCGAAAATGACCGACCGGAATTAATCCAAACCCGAAAATAATTTTTTTGAACCCGACCGACCCGTTTGACAGGTCTACCTATGACTAGGAGAACAAAGTTCAATTTGCAATACCAACACTCGAGGATTGGCTCTTCTCCTTCTCTTCCGTAGAGCAATCCTTATTCTTGCAAAGAAAATCAAGACCTAAAATTCGTTTAGGGAGCATATATCTTCATTGTATAGATATAGTGTCCTCAACTCCTCATCATTATAAAGGATGTGCGTTGTAATTTTCTTATGTTTGTTCTCGCTTGTTGACTTGTTGCGCTTCTAAAGTCACGGAATGTTTTTTATTACTTTTGTGCAGTGAATGTCCAACCTCTTTCTGGATCACCTTCTAACTTCCAAGTCTATACTGCTCTTTTGAAGCCTCATGAAAGAATCATGGCTCTTGATCTCCCACATGGTGGACATCTTTCACATGGATACCAGGTATTTGCTTCATCAGTGCTGATATTTGAATATTGAATTGTCCTTGTTCTTGACTTTTTGGTGCAGAAATTATAGCATAAAGCTGTCTAAGTAAACTATTCTTCGTATCTATGGTTTTCATATGACTCATGCTTTTCATATTTCCGGCTCCTGATTTGTTCTATTGAATTGTGTCATACAGACATAAAGTAGTAGTTAGTAAACCAAGATATTAAATGTAAGGACCAACTATAAGGAAAGATGGCTGATGTGCAAGGTTTAAAACAATTTTGCATGGTTTAGGATAAGTTCTTTTCCCCTTGAATAATAATTTCGATAAAACCAAGTTTAGATAAGTTAATACTCCCTCCCTTCCACAATGTGATGTTCGAATTTTGACACTATTCACAATTGAAGAGAATTTTCTAAATTATTTCTACTACATAAGAGAAAACATATTCATGTAGGATATTGTTTGATTTATTTTAATGAGTACTTTAATAAAATCAATTTTATAATTTTTTTCCTAATATATAAGTAAAGATATAAATGATACAAAATGTGCATTGACAAATGTGAAAAGTAGAAATTAAAACATCATTATAGAACGGAGGGAATATAAGTTTCAAAAGTTCAACTAGTGTTTATGCATGTGTAACATTTTATAAAAATATTGTAATTTATGTTCCTGAAAATAGTATTTGGTACTCCGTATATGTTTATAAATATTATTTATGGTGCGTTCAGTTCACCTTTTTTTTTTTTTTTCTTTTTTTGTTTTTTTTTGTTTTTGTTTTTCTGAACTTATTTGAATTTATCAAAGCTTATTTTAGTTATAAATTGCACTTGGCCAACCCTTATTTTTTCTGGACTTATCTTATCTGAACTTGTTTTTCCTGAAATAAGTGGAAATAAGGTAAACAAAACATAGCCTAAGATTAACGGGGGTAGTATAGGCATTTCACAAGGGAGATCAAAATGTCAACCTCAGGTGTTCCTTTATTTAAAATAGTGGTAAGCTGATGGTTTCCTATATTCTATAAAGATGAATACTTATTCTAACAAGTTCAATGAAGGTCCAATAAGTTCAGGTAACTGAGATTTTGGGGAAAGAACACTCCTGATTTCCGTCTTATTAAAGCATAGTTATGATAAGAGGATCTTTAGCAATTAAAACAATTATAGAAGTAAAATGAGCTATGATTTACAATCAACTTGAAGCTTTGATTTCCCCCTAAAATGTAACTTTGAGTTAGCTAGCTATCTAAGGGTCTTTCTGGATATTTGAAGCCTCGTGTTGATAAAACTAGAACTGCTTAGATAATTTTGTCACCCATTTTGATCAGAGGTAAGTTCTGCCAGTTTTACATATTTTGAACAATAAAAATTGAGAATATTCTTGTGTACGAATGACGTATTGTGTGAACAATCTGTGGCATACGTCCTATCAGTAAGTTATCTCCTGATCCAATTTTTTTTGTGTGAGTAGCTAATAACTTCAATTATTATGTTGCAGACAGACACCAAGAAGATATCTGCTGTGTCTATATTTTTTGAGACAATGCCATACAGATTGGACGAAAGCACTGGTTATATTGATTATGATCAGGTAGTTCAATCTTTTCTCTGTTAGACTCCTCCGATGTTCCCAACACCTTAACCTTCTGAAGAATTGAAACTTTTTCTTCAGAGCTATTTTCAGTTAATACTTATTTTCTGGAAAATTGCTTGAAATTGAGCATCTTTGCCCTTTTTTTTTTCCCGAATACCACTTACTAAGCAGAAGAAAATAGTGTCCGTTGCTTGTCTAGTAAGTAGTGACACTTGTTTTAGAGCTGTAAACCTTAAAAGTTGTAATCGTTGCATATTTTACTTGTTGAACCTGATTCAAGCAGTTATTTTCTGTGGTGACAATGTTAATATTACCAAGCAATATCTTAAATCCTAAAGCTTGTAAATTCATCGACAATCTGGCTGTTGTTGTTTAGCCCATTTTGATTGGGAATTCCACTACAGATGGAGAAAAGTGCCACATTATTCAGACCCAAATTGATTGTTGCTGGAGCAAGTGCCTACGCACGACTTTATGATTATGAACGTATCCGCAAGGTAAAACCCTTTGTGGCAATTTAAATTTCTTTGTCAGACAAAGTAACCATCTTGAGGAGCAGGGGGTGTTGGGTTAACTCTAGTTCCATGTTTTTGTTTTCTCAGGTATGTGACAAGCAGAAAGCAATCATGTTGGCTGATATGGCACATATTAGTGGGTTGGTAGCAGCTGGTGTGGTACCATCACCGTTTGAGTATGCTGATGTAGTGACCACAACAACCCACAAATCCCTTCGTGGACCTCGTGGAGCAATGATTTTCTTCAGAAAGGGTTTGAAGGAGATTAACAAACAAGGGAAGGAGGTAATTAGCTAGATCCAAATGTTGCATTGAAAACTGAGTACTACATTTTGGCTCATGCCAAGTAGTTGATGCTTGCTTATTGCTTATGGTGTACTCTACTCTATCCAGATTTAGTTGTCACATTTTCCTAACCTCTTATGATTACGGATTTTGACATGACTTGACAAAATAACAGTTAGATCATATTCATCCTCTTTCCATCACTCAATATAAATAACTAAGTTGTGGCATAATCGGCAATCTAATTGAACAATTACTATTTTAGGAATTGTGACAAATTTTTTCCAGATATTATATGTGACCATTAATTCCAGAGAGAGGGAGGATATTTCTCGACCTTTTATCTTCTATGAAATACATTGCATTCTTGTTATTTTCTGCAGGTGCTGTATGACTACGAGGACAAAATCAATCAGGCTGTCTTTCCTGGTCTTCAGGGTGGTCCTCACAATCACACGATAACTGCTTTAGCAGTCGCTTTGAAACAGGTTTGAGCTCGTGAAAATTGTTTGGTACTAGTTATTTATTATGCCGTTACAGATTATATTGACAGAGAAAGAGTTTTCCATATACTTTGTATGTCCGTATTATGTTTAAACTTTATTCACTTTTTCTGTTCTTTTAAAATTTTGATTTGAACTCAATGCATATTAAACCCATTTGACAAATAAGTTTTATGTAAAGTAATTGTTAAACTAAATTTAATGTTGTACATATTTATTAATTTATGTCATGTATACCAAAAGCTTTAGTTGGCATATGTTTACAAGAGGAATACTTTTAGGAATCAAATTCTAACACACACAAACAGGGCAAGCAAGTGCGAGTAGCGCGAGCGTGTGTATATGATTTATTTAATTTTTGTATTTTTTTAAGGAGTATGTTTTTTAGGTAAGTAAATCTTACAATGTCAGTTTATGAAGATTAAGTAACCAAACCTTGGGTATATGTTTATACTAGTAGGGTATTAATTTCTTTTCTTGAAGTAGTGTTTAAGCTATACGTACCTCTCATTGATTCATACATGTCATGTTTGAGGAATTTGGAATGCATGGAATCTATATTTTTTATCAGAGATTTTCCCATCACTTTGTGTTTCTATTTTATATTTAAATTTATAAATTAGTTTTGTTGTCCACTTTTCAGCTTGGATCAGCTTATTCTTGCATTTCTGATTAGTTGTTTGTTTTCATTTCCCTCTTTTTAGCAGAGGCTTGATATAACACAGACAAAAAGGGGCAAGGTCTTTGGTAACCTTTCAAAACTTGGAATCCAAGCAGTCATAATATGTCTGAAGATGAACTAGGTTTAGTTGGGGTAGCTTTCAGTGTAGCTGCTAATGAGCAGAGGATAGCTCATTTTTAGTGCAGGACCGGATAAATGATTTTTGTGTCTGTGTCTACTAGTATCTATATGAATATATGCGAGTTTCAAACTACATGTCTGCTTTGAATCTTTGATTACATCATGCCTTCTGGATACCTTCCTTCTCACTTTGCAAATTGTTTTTTTCCTTTTCATTTTCTTCTCCACCCTTGGTTATCTAGTTGCGTATATGACATGGATGTGGTAATGTTTCCTGAAGTAAGACTCATGAGATCTTTGTGGCTATGCAGGCTATGACTCCCGAATACAGAGCATACCAAGAACAAGTTCTTAGCAATTCCTCAAAATTTGCAGAGGTAAATATATGTGGCCATGCTAGGAATTTTAGGTGATGACTAATGAATTCATTTTTTTTAATTTTTCATGCAAAGTGGAGCATCTAAGCTCCCGATGTCTTGGTTGAATAGTAAATTCTACCTTATACTGCAGGCTTTGACTGGGATGGGGTACGAACTTGTTTCCGGTGGAACAGATAATCATTTAGTTTTAGTGAACCTGAAGAACAAGGTGAAGATCATTTCTTTTTATTATAGCCTTCTCGTGATAATATCTTCCAATTTTTGGTTCTTGCAAATTACTAATGAATTTTCTCTGTTCTAGTTGACATATCATATCTAATTTAGAGAAGAATAAAGATGCTGGAAGTATCAACATTTTTCTTTGGTTTAGAAATGTAGTTGAAAATTGATACTGTATAGCATAAAGATATGACACTTCATAAAATAGCATAAACAACTGTTATCCATATATGAACGTAAGAAAAGGTGAACCTTCTTCCACACTGACATTGGATCTTGCTTTGTCAGGGTATTGATGGCTCCAGAGTAGAGAAGGTTATGGAAGCTGTACATATTGCAGCCAACAAAAACACTGTGCCTGGGGATGTGTCTGCTATGGTTCCTGGTGGCATCAGAATGGGTAAGAGGCCTTACCCATAGAATGCATTCTGTTGCATTCCTGACTTCCTGTATTTTGAATCAACTTGTTGTACTTCATGTTCCAGGAACACCGGCCTTAACATCTCGAGGTTTTGTTGAAGAAGATTTTGTTAAGGTGGCTGAGTATTTTGATGGTGCTGTTAAGCTGGCTCTAAAGATTAAGGCTGACACTAAAGGTTCCTCTTGTTCATCATCATTTCTCCATGCCAAATAGTTATTTTTAAGTGCATGCATACAATTTATGTCTTTGTTAGGAGGGGAAAAAAGAGAGAAGCCCTTTCAAGACTTAAACATCGAAATGTATTTTCCTTGTTTGACGATAGTGATTGACTATCAGGAACAAAGTTGAAGGACTTCATTGCCACCTTACAGTCAGGTGCTTTTGATTCAGAGATTGCAAATCTAAAGCACGAGGTTGAGGAGTATGCAAAACAATTTCCCACAATCGGATTCGAAAAGGAAACCATGAAGTACAAGAACTAAACTAGCCTTAATACAAGTTACAAGGTTGGTTGCTTTGATGATACTCCGTATGTAGAACAGTATATGTGATACTTCTATTTTTCCCTAGAGTGAATTACTCAGTGCTAGGGTTTTCAATTCTTCATTATAATTGAGGCCTACTTGTATGTTTGATGTCTTTGTCACGTTTCTTAGGCTTTAACCCCGGGAGGGTTTGATACATGCAGTTTTACCCTTTACTAGTCAAGACTAGTAAAAGGATATTCTTAGAAGACACTAAGTGGAAAATGTTTTCAACAAAGGAAGTTTTAAACAAATACTAGGTTTTACTTGAATGACTGGTTCTCTTCCAAAAGAGTCTTGAATATCTGGTTTTCCAACTTAGTTTAGATAGAAATTTATGTTTGTCAATTCTCAAAGAGTCTCCTGTTTCCTTGAAACATATTTTCAAATAGCTATTGGAAAGTTTGAGAGCCAATATCATTGTAAAGAATTTGACGGGGCTGATTCCTTTTTTTTGAATAAATTAAGCGAGTTACTTCAGCATTTGGGGCTTTGTGTTGAGAACTTTTCTTTGGTATATCTGTAAACGTGACCACTGTATTTGGGGCTATTATGATGTATCACTTGGTACAGGAGTAGGGTGGTCCTGGTTCAACAGTTGCATTCTTGATGTGATTGACAATGTCTGAACTCCGAACTCTATTGAGTCCTAATGCAGGGACTCAGACTAGGCATATAGAGTAGGGTAGTATTGAGAACGCTAAACTTACCTAGGAGGCTAAGAACATTTATCTGTATAGACTTGTGAGATATTCCATTTACACTAATCAGTTTCGACCTTTAGGGATGTAAACCTCGCCTTTCTGATATGAGCTCACTTCACTCACAGACAATGTTGAACTATCAGAATTATGCTGTTCTGAACATCGTCTGCTATATCTGCTGTTTGAGAAGCTTGATTAAATAGGAATTTCTTATTGACTTTTCATACATAGCGCATTGGAACAAGTTTGGAATGTATGTAGCAGCACAGTGATGGAGGATATATGCTTGTTTTCTGTCCTGAAAACTAATCGGTTTATCTTCGTGGGACAGGTAATTTGAACTCCAAAGAAGCTGATGGAACCAGAGTGGCATAACCAAAACTGAGGATAAGGATATACCTGTATAATCTTATAGCCGAGTGCAAAGTCAATGTAACACATGTTTACTGAACTCCATTAGCTGTACATGTAATTCTTCTCTACTTTGCTGTAAAAATACATATGTAAGGATCATTGGTTGCATCAATAAATTGAGTCTTGAGAGTTGATACCAAGCTATTCTGCTTCTACCAGAAACAGTGTAATATACCCTCAATGCCTTCTTCTGAACTTACCAACAATTATGAAAGCTGGTTGGTGTCTAGAATCAAGCGCTAGAGGGTAGAGACTACAAAGTCATAGGGGAGGAACACGTTTACTTTCAAGAACCTGCACCCTGCCAGGCCTGCCATA ATATAAGTTTATTCTCCCAATTTTACTTTATTACAATAAGGTATAATCATGTCCAATAATTTCAATCAGGTTTAATCCGCTCAGAGAATTTCTCTAAGATTTCATCAATTGTGTTCCTACTCATTTCATGATAGATTGTGTGGTTGGTGAAAACGCCAAACAGTCCCCTTGTGGGCGTTGTGGCCTTGCACTCGTACTACGCGAAAAGAAGATAAATAGAAAATGAAGCTACAAATCAAGAAAAACAATGCGCCACAAAAAAGAAAAAAAAAACAGAAATTTAAAATAGCCTTTATTACCAACCACTTAAAGCTCACCCCCAAATCCACCACACTTCACTCTTTGCGCGACACAGAAAGTGAGGTTGAGAGAAAATGGCGATGGCAATGGCGTTGCGCAAGCTCTCCAATTCCGCCAACAAGCCTATTCGTACCGCGTTCAATGGCGCTCCTCTCTACTTCATGTCGACCGAAGCGGCGATCGACAAGGAGAAGCAAGTTTCTGTGTCGTGGCCGAAGCAATTGAATGCGCCACTTGAGGAAGTTGATCCTGAAATTGCTGACATTATCGAGCACGAAAAGACCAGACAATGGAAGGGTCTAGAACTTATTCCATCGGAGAATTTCACTTCACTCTCTGTGATGCAAGCTGTTGGATCTGTCATGACCAACAAGTATAGTGAAGGATATCCTGGAGCAAGATATTATGGAGGAAACGAGTTCATTGATATGGCTGAAACCTTATGTCAACAGCGTGCATTAGAAGTTTTTCGATTGGACCCTAAACAATGGGGAGTGAATGTCCAACCTCTTTCTGGATCACCTTCTAACTTCCAAGTCTATACTGCTCTTTTGAAGCCTCATGAAAGAATCATGGCTCTTGATCTCCCACATGGTGGACATCTTTCACATGGATACCAGACAGACACCAAGAAGATATCTGCTGTGTCTATATTTTTTGAGACAATGCCATACAGATTGGACGAAAGCACTGGTTATATTGATTATGATCAGATGGAGAAAAGTGCCACATTATTCAGACCCAAATTGATTGTTGCTGGAGCAAGTGCCTACGCACGACTTTATGATTATGAACGTATCCGCAAGGTATGTGACAAGCAGAAAGCAATCATGTTGGCTGATATGGCACATATTAGTGGGTTGGTAGCAGCTGGTGTGGTACCATCACCGTTTGAGTATGCTGATGTAGTGACCACAACAACCCACAAATCCCTTCGTGGACCTCGTGGAGCAATGATTTTCTTCAGAAAGGGTTTGAAGGAGATTAACAAACAAGGGAAGGAGGTGCTGTATGACTACGAGGACAAAATCAATCAGGCTGTCTTTCCTGGTCTTCAGGGTGGTCCTCACAATCACACGATAACTGCTTTAGCAGTCGCTTTGAAACAGGCTATGACTCCCGAATACAGAGCATACCAAGAACAAGTTCTTAGCAATTCCTCAAAATTTGCAGAGGCTTTGACTGGGATGGGGTACGAACTTGTTTCCGGTGGAACAGATAATCATTTAGTTTTAGTGAACCTGAAGAACAAGGGTATTGATGGCTCCAGAGTAGAGAAGGTTATGGAAGCTGTACATATTGCAGCCAACAAAAACACTGTGCCTGGGGATGTGTCTGCTATGGTTCCTGGTGGCATCAGAATGGGAACACCGGCCTTAACATCTCGAGGTTTTGTTGAAGAAGATTTTGTTAAGGTGGCTGAGTATTTTGATGGTGCTGTTAAGCTGGCTCTAAAGATTAAGGCTGACACTAAAGGAACAAAGTTGAAGGACTTCATTGCCACCTTACAGTCAGGTGCTTTTGATTCAGAGATTGCAAATCTAAAGCACGAGTTACAAGGTAATTTGAACTCCAAAGAAGCTGATGGAACCAGAGTGGCATAACCAAAACTGAGGATAAGGATATACCTGTATAATCTTATAGCCGAGTGCAAAGTCAATGTAACACATGTTTACTGAACTCCATTAGCTGTACATGTAATTCTTCTCTACTTTGCTGTAAAAATACATATGTAAGGATCATTGGTTGCATCAATAAATTGAGTCTTGAGAGTTGATACCAAGCTATTCTGCTTCTACCAGAAACAGTGTAATATACCCTCAATGCCTTCTTCTGAACTTACCAACAATTATGAAAGCTGGTTGGTGTCTAGAATCAAGCGCTAGAGGGTAGAGACTACAAAGTCATAGGGGAGGAACACGTTTACTTTCAAGAACCTGCACCCTGCCAGGCCTGCCATA ATGGCGATGGCAATGGCGTTGCGCAAGCTCTCCAATTCCGCCAACAAGCCTATTCGTACCGCGTTCAATGGCGCTCCTCTCTACTTCATGTCGACCGAAGCGGCGATCGACAAGGAGAAGCAAGTTTCTGTGTCGTGGCCGAAGCAATTGAATGCGCCACTTGAGGAAGTTGATCCTGAAATTGCTGACATTATCGAGCACGAAAAGACCAGACAATGGAAGGGTCTAGAACTTATTCCATCGGAGAATTTCACTTCACTCTCTGTGATGCAAGCTGTTGGATCTGTCATGACCAACAAGTATAGTGAAGGATATCCTGGAGCAAGATATTATGGAGGAAACGAGTTCATTGATATGGCTGAAACCTTATGTCAACAGCGTGCATTAGAAGTTTTTCGATTGGACCCTAAACAATGGGGAGTGAATGTCCAACCTCTTTCTGGATCACCTTCTAACTTCCAAGTCTATACTGCTCTTTTGAAGCCTCATGAAAGAATCATGGCTCTTGATCTCCCACATGGTGGACATCTTTCACATGGATACCAGACAGACACCAAGAAGATATCTGCTGTGTCTATATTTTTTGAGACAATGCCATACAGATTGGACGAAAGCACTGGTTATATTGATTATGATCAGATGGAGAAAAGTGCCACATTATTCAGACCCAAATTGATTGTTGCTGGAGCAAGTGCCTACGCACGACTTTATGATTATGAACGTATCCGCAAGGTATGTGACAAGCAGAAAGCAATCATGTTGGCTGATATGGCACATATTAGTGGGTTGGTAGCAGCTGGTGTGGTACCATCACCGTTTGAGTATGCTGATGTAGTGACCACAACAACCCACAAATCCCTTCGTGGACCTCGTGGAGCAATGATTTTCTTCAGAAAGGGTTTGAAGGAGATTAACAAACAAGGGAAGGAGGTGCTGTATGACTACGAGGACAAAATCAATCAGGCTGTCTTTCCTGGTCTTCAGGGTGGTCCTCACAATCACACGATAACTGCTTTAGCAGTCGCTTTGAAACAGGCTATGACTCCCGAATACAGAGCATACCAAGAACAAGTTCTTAGCAATTCCTCAAAATTTGCAGAGGCTTTGACTGGGATGGGGTACGAACTTGTTTCCGGTGGAACAGATAATCATTTAGTTTTAGTGAACCTGAAGAACAAGGGTATTGATGGCTCCAGAGTAGAGAAGGTTATGGAAGCTGTACATATTGCAGCCAACAAAAACACTGTGCCTGGGGATGTGTCTGCTATGGTTCCTGGTGGCATCAGAATGGGAACACCGGCCTTAACATCTCGAGGTTTTGTTGAAGAAGATTTTGTTAAGGTGGCTGAGTATTTTGATGGTGCTGTTAAGCTGGCTCTAAAGATTAAGGCTGACACTAAAGGAACAAAGTTGAAGGACTTCATTGCCACCTTACAGTCAGGTGCTTTTGATTCAGAGATTGCAAATCTAAAGCACGAGTTACAAGGTAATTTGAACTCCAAAGAAGCTGATGGAACCAGAGTGGCATAA MAMAMALRKLSNSANKPIRTAFNGAPLYFMSTEAAIDKEKQVSVSWPKQLNAPLEEVDPEIADIIEHEKTRQWKGLELIPSENFTSLSVMQAVGSVMTNKYSEGYPGARYYGGNEFIDMAETLCQQRALEVFRLDPKQWGVNVQPLSGSPSNFQVYTALLKPHERIMALDLPHGGHLSHGYQTDTKKISAVSIFFETMPYRLDESTGYIDYDQMEKSATLFRPKLIVAGASAYARLYDYERIRKVCDKQKAIMLADMAHISGLVAAGVVPSPFEYADVVTTTTHKSLRGPRGAMIFFRKGLKEINKQGKEVLYDYEDKINQAVFPGLQGGPHNHTITALAVALKQAMTPEYRAYQEQVLSNSSKFAEALTGMGYELVSGGTDNHLVLVNLKNKGIDGSRVEKVMEAVHIAANKNTVPGDVSAMVPGGIRMGTPALTSRGFVEEDFVKVAEYFDGAVKLALKIKADTKGTKLKDFIATLQSGAFDSEIANLKHELQGNLNSKEADGTRVA Relationships
The following mRNA feature(s) are a part of this gene:
Homology
BLAST of Spo16852.1 vs. NCBI nr
Match: gi|902235597|gb|KNA24003.1| (hypothetical protein SOVF_019040 [Spinacia oleracea]) HSP 1 Score: 985.7 bits (2547), Expect = 3.000e-284 Identity = 493/495 (99.60%), Postives = 495/495 (100.00%), Query Frame = 1
BLAST of Spo16852.1 vs. NCBI nr
Match: gi|731343754|ref|XP_010683048.1| (PREDICTED: serine hydroxymethyltransferase, mitochondrial [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 934.5 bits (2414), Expect = 7.900e-269 Identity = 458/495 (92.53%), Postives = 484/495 (97.78%), Query Frame = 1
BLAST of Spo16852.1 vs. NCBI nr
Match: gi|568215114|ref|NP_001275486.1| (serine hydroxymethyltransferase, mitochondrial [Solanum tuberosum]) HSP 1 Score: 871.3 bits (2250), Expect = 8.200e-250 Identity = 428/499 (85.77%), Postives = 470/499 (94.19%), Query Frame = 1
BLAST of Spo16852.1 vs. NCBI nr
Match: gi|697191285|ref|XP_009604710.1| (PREDICTED: serine hydroxymethyltransferase, mitochondrial-like [Nicotiana tomentosiformis]) HSP 1 Score: 871.3 bits (2250), Expect = 8.200e-250 Identity = 432/499 (86.57%), Postives = 465/499 (93.19%), Query Frame = 1
BLAST of Spo16852.1 vs. NCBI nr
Match: gi|698511618|ref|XP_009800891.1| (PREDICTED: serine hydroxymethyltransferase, mitochondrial [Nicotiana sylvestris]) HSP 1 Score: 870.2 bits (2247), Expect = 1.800e-249 Identity = 431/499 (86.37%), Postives = 465/499 (93.19%), Query Frame = 1
BLAST of Spo16852.1 vs. UniProtKB/TrEMBL
Match: A0A0K9RX22_SPIOL (Serine hydroxymethyltransferase OS=Spinacia oleracea GN=SOVF_019040 PE=3 SV=1) HSP 1 Score: 985.7 bits (2547), Expect = 2.100e-284 Identity = 493/495 (99.60%), Postives = 495/495 (100.00%), Query Frame = 1
BLAST of Spo16852.1 vs. UniProtKB/TrEMBL
Match: A0A0J8C0D9_BETVU (Serine hydroxymethyltransferase OS=Beta vulgaris subsp. vulgaris GN=BVRB_6g152820 PE=3 SV=1) HSP 1 Score: 934.5 bits (2414), Expect = 5.500e-269 Identity = 458/495 (92.53%), Postives = 484/495 (97.78%), Query Frame = 1
BLAST of Spo16852.1 vs. UniProtKB/TrEMBL
Match: A0A0D2QY08_GOSRA (Serine hydroxymethyltransferase OS=Gossypium raimondii GN=B456_007G230800 PE=3 SV=1) HSP 1 Score: 869.0 bits (2244), Expect = 2.800e-249 Identity = 431/498 (86.55%), Postives = 463/498 (92.97%), Query Frame = 1
BLAST of Spo16852.1 vs. UniProtKB/TrEMBL
Match: V7CHQ5_PHAVU (Serine hydroxymethyltransferase OS=Phaseolus vulgaris GN=PHAVU_003G286600g PE=3 SV=1) HSP 1 Score: 867.1 bits (2239), Expect = 1.100e-248 Identity = 431/499 (86.37%), Postives = 465/499 (93.19%), Query Frame = 1
BLAST of Spo16852.1 vs. UniProtKB/TrEMBL
Match: V4RX53_9ROSI (Serine hydroxymethyltransferase OS=Citrus clementina GN=CICLE_v10025372mg PE=3 SV=1) HSP 1 Score: 866.7 bits (2238), Expect = 1.400e-248 Identity = 429/498 (86.14%), Postives = 465/498 (93.37%), Query Frame = 1
BLAST of Spo16852.1 vs. ExPASy Swiss-Prot
Match: GLYM_SOLTU (Serine hydroxymethyltransferase, mitochondrial OS=Solanum tuberosum PE=2 SV=1) HSP 1 Score: 871.3 bits (2250), Expect = 5.200e-252 Identity = 428/499 (85.77%), Postives = 470/499 (94.19%), Query Frame = 1
BLAST of Spo16852.1 vs. ExPASy Swiss-Prot
Match: GLYM_PEA (Serine hydroxymethyltransferase, mitochondrial OS=Pisum sativum PE=1 SV=1) HSP 1 Score: 861.3 bits (2224), Expect = 5.300e-249 Identity = 428/499 (85.77%), Postives = 462/499 (92.59%), Query Frame = 1
BLAST of Spo16852.1 vs. ExPASy Swiss-Prot
Match: GLYM1_FLAPR (Serine hydroxymethyltransferase 1, mitochondrial OS=Flaveria pringlei PE=2 SV=1) HSP 1 Score: 850.5 bits (2196), Expect = 9.400e-246 Identity = 421/498 (84.54%), Postives = 458/498 (91.97%), Query Frame = 1
BLAST of Spo16852.1 vs. ExPASy Swiss-Prot
Match: GLYM1_ARATH (Serine hydroxymethyltransferase 1, mitochondrial OS=Arabidopsis thaliana GN=SHM1 PE=1 SV=1) HSP 1 Score: 848.6 bits (2191), Expect = 3.600e-245 Identity = 418/497 (84.10%), Postives = 458/497 (92.15%), Query Frame = 1
BLAST of Spo16852.1 vs. ExPASy Swiss-Prot
Match: GLYM2_FLAPR (Serine hydroxymethyltransferase 2, mitochondrial OS=Flaveria pringlei PE=2 SV=1) HSP 1 Score: 840.9 bits (2171), Expect = 7.500e-243 Identity = 419/498 (84.14%), Postives = 455/498 (91.37%), Query Frame = 1
BLAST of Spo16852.1 vs. TAIR (Arabidopsis)
Match: AT4G37930.1 (serine transhydroxymethyltransferase 1) HSP 1 Score: 848.6 bits (2191), Expect = 2.000e-246 Identity = 418/497 (84.10%), Postives = 458/497 (92.15%), Query Frame = 1
BLAST of Spo16852.1 vs. TAIR (Arabidopsis)
Match: AT5G26780.3 (serine hydroxymethyltransferase 2) HSP 1 Score: 815.5 bits (2105), Expect = 1.900e-236 Identity = 414/514 (80.54%), Postives = 450/514 (87.55%), Query Frame = 1
BLAST of Spo16852.1 vs. TAIR (Arabidopsis)
Match: AT4G32520.1 (serine hydroxymethyltransferase 3) HSP 1 Score: 556.6 bits (1433), Expect = 1.600e-158 Identity = 272/444 (61.26%), Postives = 338/444 (76.13%), Query Frame = 1
BLAST of Spo16852.1 vs. TAIR (Arabidopsis)
Match: AT4G13930.1 (serine hydroxymethyltransferase 4) HSP 1 Score: 517.3 bits (1331), Expect = 1.100e-146 Identity = 257/426 (60.33%), Postives = 316/426 (74.18%), Query Frame = 1
BLAST of Spo16852.1 vs. TAIR (Arabidopsis)
Match: AT4G13890.1 (Pyridoxal phosphate (PLP)-dependent transferases superfamily protein) HSP 1 Score: 498.8 bits (1283), Expect = 3.900e-141 Identity = 249/447 (55.70%), Postives = 322/447 (72.04%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo16852.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo16852.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo16852.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 5
BLAST of Spo16852.1 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
Co-expression
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