Overview
Sequences
The following sequences are available for this feature:
Legend: exonfive_prime_UTRpolypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below.TCCACCAAAAACAAAGAAAACTGAAAAATATTCCATTAAAAAACCCGTTGATGTAAAAACACAATTTTCTCGTCAAAATTTTTAAAAAACCTCAATCTTCATGCAAAACTTAGAAAGAACCTCACTCAAAATTCCGGTGCAAAGTGATAAACGAATTCATAATTTCTGGGTTTCGTGAACAAAATTAAATTGATGGGGGTCGGAGGTAAGTTCTGGGACGCGCTAAAACCCTACGCTCGATACGAGGGTTTCGATTTTCTAAGGAACAAGAAAGTTGCTGTTGATCTTTCCTTCTGGATTGTTCAACATGAAACTGCCCTTAAATCTTCTGGAGTTAGAAATCCCCATCTTCGCCTCATGTTTTTTCGCACAATTAACCTTTTTTCTAAGGTAAATCATTTTTTTTCCGATATAAACTTTTTGGGTTTTTAATTTTTTTTGTTATTTCCCCCCAAAATTTGAGTTGAATGATCACGGTAAAGTTGAATAGTTTGAATACCCAAATGGTGATCACGGTAAAGTTGAATAGTTTGAATACCCAAATAGAATTTTTTTGTACAGAATTATGCTAGAAGACTATATTTTAATTGGTTTTTCCTTAATCGTTTAAAATTCTTTCAATTCACCAGTGTTGTGTGATTGTTTCATTTGTTTGGTTAATTTTTTTAAGGGTGACTTCGTAAAGCAGGATAATTTAGTTACAATTGGTGATTGGAAAGTTGTGGTGGGTGGTGATTGATAATTGTGTTGCTGACATATTTGCAGTTTGGGGCATATCCTGTATTTGTTGTGGATGGGAAGCCATCGCACTTGAAGTCTAAAGCAAGGATTGCGCGGTTTTTTCGATCATCCGGGATTGACCTGAAAGACGTGCCCGTTGCGGAAGAGGGTGTTTCGGTTGATAGGAACAAGCTTTTTGTTAAATGTGTGGAAGAGTGTGTGGTGAGTAAGATCCTTCACGCTTATGGTTCATAAACTTTAAGGCATTTAGTTTATGTTTCCTTTTCAACTTGTTGATTTGAGTTTTGTATGCACGTAAACATGAACTTCTCCACAAATCTAGGACCCTGTTCCATGTTGGTATTAGTGGGTGGAGCAAGCTGTTGATAGTAGTGACCGGATATGCAAGAATGAGAAATGACAGTTATGTTATTACCTAACTTTTCTGTGTGTGGATTGTACACCTAATTAAATTTAATAATATCTTCTTTAGGAGCAATTAGGCCGTGCTTTTCCAAGTTCTTGCAAAGTTTAAAGAGTCACTGTTAACACAAATATGTACTTTTTATTATGTAATTACAATGGACTAAATCAAATGTCTCATTAAAGTAGTACTTGGTTCTTATTTGTTGTTTAGTAGCAGGCTGCAATGCCTTCCTGATCAAGGGTATGAACTATGGAGAATTGAACCTGCAAGGTTGTAACTACAGGGTAAGGCTACTTACAATGTGACAATATCATTTGGCCATAACTTACCTAGAAGAAGCCGTATGAGAGGCACTGGGGTAACAAAATGTTGGTAGCAAACAAGGCTTCAAATGGTCTCTGTTACTTCTTGGTAGAACAATTTTACAGGATCATTTTGTCTCAGTGCTTAGCAGCTTTTGTTGTTATTGACTCATGAAATCTATTAGACTATTACTATATTAAATATCTTTGTTGCATCTTTTAATCTTTTATCTAGTACAGTCTCGACTACTTTGGTCGTAGATATCAATGAGTTTCTCTTGGTTTTCTCCTGCCGATTTTTTTTATTTATTCTTAATGACAATTTTGAACCATGACTCCTGTTTTCATAAGTTGATACATGCTTTTGCAGGATCTTCTGGAGCTACTTGGGATGCCTGTTCTTAGAGCTAGAGGTGAAGCTGAAGCACTTTGTGCTCAATTGAACAGTGAAGGTTTTGTTGATGCTTGCATTACATCTGACAGTGATGCATTCCTTTTTGGGGCTAAGTGTGTGATAAAACACGTGGATCCTAAATCCATGGTAAAACCTTATCTTGATCTGTTTCTATTACAGCATTTCTTTCTAGTTTCTGTTTGATGCTTTTATTCTTAACCTCATTGCTTATTGTCATTCTTTTGTTTTCTGCATTCTTAGCACACTGACAAATTACAAGTTACATCTGTTTTGATTTCCATTCTGCTTAGGGACCATTTGAATGCTATTATGTGGAAGACATTGAAGTTGGTCTTGGCCTGGGAAGGAAACACTTGATAGCTGTTTCTCTTCTAGTTGGTAGTGATCATAATTTAAATGGTGTCCAAGGAATCGGGATGGAAACAGCACTTCGCTTTGTCAAAAAATTTAATGAAGACGAGGTTTTACAAAGGTTTTCCATTATTTTATTTATTTAAAAATTGTTCGCTTCTCTAGTTATTCAGCTCATTCCAAGTCAAGATAATTTTATTTGGGCATGTCTTTTTAATTACTCTTACAGGTTAAATGAGATAGGTTCTGGTCCCATGCTTCCATCTGATGCCAGTTTTAGTTCTCCTGGCAAATGTTCAAGAAGCCCGGATGTGTTCTTGCAGAAATCTAAAGCTCCTCATTGCTCTTTTTGTGGTCATCCAGGCAACAAAACTCTACATAGCAGAGTGCCTTGTGAGTATTGTCATAGCACCACAGGAACGAACTGTAGTAAAAAGTCTTTGAAGTTCAAATGTGAATGCTCTGGTTGTGAGAGGGTAACAATCTTCTCTCATCTTGCTTCTTTTTTAATGGGTTTCGAATGACTGAATAATTTTTCACGTGCCAAACAAAGCTTGTGAAAGCTCGTGTATCTCTATCCATCTATCTAACTCACCATATGCAAATTATAATATATACTTTCTCCGGCTAAAAGTTGCAGTACTTTGGCTTTTGCACAATTTATATACCAACTTTTGACAACGTTTTACAAGCATTTGACCACTTGTTTCTAGGAAAGTTTGAAAAAGATGAGTCTAAGAAAAATGTGGATAAAGTAAGAAAGTGAAGTAAAAAGGTAGAGGCCTGTAAGAAAAAGGTGTGTAGAGTAAGATAGATTTAGTGAGTTGTACAAAAATAGAATGAAGTATAAGTGAGTAGAATCAAGTTCTATATTGAATACGCCAATACTTCTCCCAGACAACTTCGTATTAATTTCCTTTGTTTAAGATGTTTATTTCATTATTTGTTCTGGTACTAATATCTGCTAAGCATCTATATGCGGGGTAAAGGTACTCTAGGGCGTTATAATAATAACTTCGTTGAGAGAATATAGTTGTTAGGGTAGAAGCTCTATAAATAGAGCAAATAAGAGAGAAAAGTTATGTTGAATTTTGTTGAGAGTTTTGGTTGGCTTTTAGAGAGTTAATTGAGAGAGAATCAAGTTTCTCGATAGTTTGAATATCCATTACTTTTCTGCAATTCCAGATTGTAATCAATCACACTTCATTTTCTTCCTCCGTTTTCACATTTTATCTCTAAATTCAGTCCAAAGTTAAGTTAATTCTTAGCAATAAGCCTCATAATTTCACATTCCATTTCCCCTCCTCAACTAGCTGTTGCCTGAAGGTGAGAATAACTCTCCCAATTATATTTGGAATTTGGATTAAGTAATGAGGCATGTTTACTTCTTATCTCTTGGATGTTGGAGGTCCCACTAAGAGCATCCCCTGTGGACTCGTGGTACAGTTAAGTCACACACTAGATAAAAAAGCTTGGGCATTTGGTACTCCACATTTCTTGAATTTCGTCCACCTTTCATGGGTGGGGTTTCCTGAGATAGCCGTAATATGTTACTCGGACTCTTCGTTTTATCTCAAGTACCCGTGTCGGATCCTCGACACTTGGACATGCGTATGGACATTCCTGACACTTCATTTTAGTCTAAAATTAAGGAAAATTTCCACAATTTAGCGTGTCGGACACTTGGACACGTACCCGTATCCGACACTCGTACCCGAGTCTGAGTAACATCGTAAGGGTTAACTAACATTTGCATTCAGAAAGTCAGATGAATGACTACTTTTCTTTGCTTTCCCTTTACAGGTGCGAGAGGAAAAGGAACTTAAGAAGAATGAAAAATTTCACCTTAGAGTGTGCAAGAAGATAGCCATGGAGTGCAATTTTCCCTGCAATGAGATCATTGAGATATATCTGACAAATGAAGGTAGCAATTTTTTTTTCATTTATTTATTTCTTTTTATCTCTATTTAGAAGTGTGTATATGATTGCTGATAGAGATGGCCAATATGTTGGGTCCGACACAACCCATAGTTGGTCACGTGGGTCGGACCCACTTATGACCCATGACACTACTCGCCCAACCCGGATATATTTTTGATGTGTCTTGGGTTGAGTTTTTCCAATACAACCCATTTCAACCCAACCCATCAAACCCAACACAACCCACCGCGGCACACCTGACCCACCCAACCCAATCCACGGAACACAACCCACCCAACACACGAACCCAACCCACTCGACACACGAACCTAACCCTGTGACCTACCACCAGACCCTCCATCTTATTTTAAACTATTTTTTATGTTTAAAATGTTAACAAATTTTGATTTTATTGTTTAAATATACATTAACTACATTTATGTGAGTATGTCAATAACATAAAAATTAATTAAGTTCGTATAAATTTGTAATTATTTAACGCTTAAATAATCGCTTTGTAGTTAACTCCTAAAACTCATCTAAACCCACCTGACCCTCATCAACTCCTAAAACTCATTTAAACCCACCAAACCCACATGACCCATTAGAGTCACATTAGAACTCAAAACATGGTTTAACCTACCAAACCCATCAGACCCACTTGACCCTCACAACCCATCACAATCCACGACCCACGTAACCCACGACCCATCACGTACTATGTTCATTTTTTCCGATACAACCCACGAACCGGCCCACACTAACTTTAATTGAGGTGGGTCGTGTGTCAACTATCCCCGACCAACGACCCACCAAACCCACCCATGACTAGGAACGACAATGGATCGGACTCAGGTCGGACCCAATAGAATCCAAATCTGACCCGATTCATAATTGGACCCTAAAATAAAGTCCATATCCGACTCCGAATTCGGATCTACAACCTCCGACTCCGACCCGAGTCCGATCTCCTTCCCTATATTTTCCCTTTCTCTGGTGCGTTTAATCTCATTAAACAGACTTTCTATTAGATTTCAACATTAATATCAAAACGCAAATGAAATTATAAAGTAAACAAACACAACATTCTTAAAGAGTATCAAATTGAAGTCTAAAATTCATATTCACATATTTACAATCGAAATATATACCAATTTAGTAAGTATATAAACTAACAAAATCTAAGAATATTACATTATAAAAGTTTACTCAGTCTAATTTTCGATACTTGAAATTATACATGGAGAATAAAATTGGAGAACAGAAAAATAAAAGAAAATAAGTTATCCTGCTACTGCTTCAGATCTAAACATTCCGCAATTTGCATGTATGGAATAATGTAATTAACCTTTGCTAAAGGTGATGAAAGAGGAAGCCAGGAAAGGAAGGAGGAAGCCAGGACGAGAGATTTTGAGGTCTAGAGTGAATGAGAGAGAAAGAGAATGGTCTTTTGAGGGAGGCGGATATACGAATTACTAGGTTTTAGACTTTTAGTTAGGTTTTTATATGCAATCGGAAATATATATATATATATATATATATATATATATATATATATATATATATATATATATATATAAGCAGATTCATTTATGTCAGATGCGGGTATTCGGGTCGGACTTTTCGCAGCCTCCATATCCGACCCGAACCCGACTCGGACTCGGACTTTAGTTTTCGGACTCGGTTTCGGACTTTTTAATTTCGGATTTGGATCGGATTTTTTGCCTCGGATCGGATCGGATGCGGACTCAATTGCCATCCTACCCAGTGTTTAAAAAAGCGCGCTTAAAGCTCGCTTAAGCGCTGAAGCTCGAAGCTCTAGGGCAAAGGGCTTAATTAGGTATGAGCGAAGCGTTTGTGAAAAAGCGCACCTAAGCGCACTTAAGCGCATGAAGCGCAAAAAGCGTATGAAGCGCGCTTTTTTGAGCTTCATTGAATTTCTTTTTTTTTTTTTCAATTTTTCACGTTAAAAGCTTTTTTTATGTTGTTATTGTCTATTGGACTACATCCTATTAATTGTTAACAATAGAAAGTGGGCCAAGAATCCAAAAGAAAAGAAAAAAAAAGAAAAAAAAGAAGATGACATATCCTTTTGAAAATAGCAGAGTATATTTGTTTCCTAGTGGATATTACATGATACACACTATGTTATATGCTTTATTTTGTTAAAACAAGGAGCAATAGGGAAGAAAATCTGATGTTTATGTGTTTTGTGGTTATTTTAGAAAGATATATATATATATTCATAATGGTAAAGGAACCTTGAATTCTCAAAAAGTGCGCTTCACTTCGATGAAGCTCGCGCTTTGCGCTTGCGCTTTACGCTTAAGCTCCAGGACATATGTCGCTTTAGTGCGCTTTGCGCTTTTTAAAACACTGATCCTACCCATGATCCACCCAACCCGCTACGTTGACCATCTCTAATTGCTGAGAACCTTCATATCTGTTGGCTACTTGGCTTTGATGGTATATCACTAGATCACCGTAATCTTTTTCCATGTTATCAAATCTAGCTGTCGTTTTGAGGAGAATGTCTTTTGCATTTAAGAAACGCATTGAAAAGGAAAGGTTAGAGATGCCAACTTTGGTTTCACTATGACTTTTGGATCTTTGTATTTCAATAGTTAGGAATACTTTTGGCAAAAACTTAATACAACATGTATTATAATGGCAAATTTGTTTTTTTTTAGGGGAAGAAAAACCCTTATATGACAAAATCTTTGTGAAAAAACACCTCATCTAATTTGTTATTTTGTGAAAAAGCACCTTATATGACTGGACCGCAGATTTTTTTAGTCCACCACATTCATGCTTTTACAATTCATGTGACGGTACTAATACTTCTAAAAGGCGTTCTATTTGCTCGTAGCACTCGTTTGATACCGGATAAAGCAAATCTTGGGTGCGGAAAATTCCCCACTGCTGCCTCCCGTAGGAGTCTGGGCCGTGTCTCAGTCCCAGTGTGGCTGATCATCCTCAACATTTTTAAGAAACACACCTTGTTCTCAGACTCCGGCAAAAAATTAAATCTCAGGCTATTGACCTTCCCTTTTCCCTCCATTTAGTGTGTGTTATTTCAGATCATCTTTTCACTCACTCGCTGCTTATATTTTCTTAACTGGTTTTCTTTTACACCCACCTTAACGTTCTTAACTTGTTATCTCCCAAACTACACCAACTGAAAAACATTATAGGGTGTCAAAAATCTGGGCAGATATTTGAACTATCTCCAATTTATTTCATTCCCTTTTCTTTTTTATTATCCGAATTAGAGTTTGTGCTTATGGGGTTTTCCAATTAGGAAATTCAAATAGGGAATTCAAGTGGAAAATTTAATTTGGAATTGATAGGGATATGAAATTGGAAAATTCGTCGTGGGTTTCAGTTACCAAATTGAATTGATAATATCAATAAATGTTTGATGTGTGTTTTTGTATTTTGTTTACAGAAGGACTTCTCCGTTAGTGTTCTATTGATATTAGGTAAATTTGGTGTGGTTTCTTCATTTATTTGTAGCAAAGGAGTCATTAGAGGAAGTTCATCTAATACTAAAAGAAGCTAATTACCCGAGTGAACATGTTGTGGAGAAGCTTCAATGTGATGATAATGGCACTATGGCAGTAACGGTGATAGAAAGGAAAGAACACGAAGACAAAGAGGAGAAATATAGTTGAGGAGGACTTTGTAGTTATTACAGGGTGAAAAGAGAGTGGGAATAGAGATTGGGTGTTGCGAGATACACTTAAAAAGGAGGATAGAATGGAGGTCCAAAGGCTGGAGATTTGATTTTTTAGCGGAATTTGAGCATAAGGTGGCTTTTTTAATAAAAAAATGTTATTTAAGGGGTTTTCTCACAAAACAATTTTTATATAAGATGTTTTTTCACAAAATTTGGGTCATAGAAGGTCTTTATGACAAATTTGCCTGTTAATATCCCAAATCAAATAAATGTCAACTTCACAAAGGTGTGATTTTATGTGATTTCAATTAAGAATGTTGTTGTAAATGGTGTTTGCAAGATCTACTTTATTTTTCCAAGCATTTTATCCTGCTTTCCTTATGGACAGTTAGTCAACAGTATTTGCTAAATAGTGAAACATTGTTTTTGTTTCCAAGATTTGTTGTTTTGGATATTTAAGAATATGTGTACAGAGTCATTCATATTGCTTGCGCTTACTGTTGGTAACTATCAAGTATCCACCATCTTTGCTTGTAGATAATGATGACTTCAGTGCACGTTTATTGTGGAAAGGACCGGATATTGAAATGTTAATTGATTTTTTGGCTTGTCATCTACATTGGGAGCCATCTTACATTCGGCAGCACATATTCCCGATGCTCTCCACCATTTTCCTGAGAGATATGGCTTTGAATCCTAGTGACATTTTATTGCATGGACAATACAAGTTTGACTCTATTCAACGTGTAAAGATTAGGTATGGTCATCAATATTATGTGGTCAGGTGGGGGAATTTTGCATCAGTAATGAGCGATGTCAACTGTTCAGTATCTTCTGAAGGATATTATGTAGTATCTGATTCTGAATCTGAAGATACTCAAATGGATGGACCTTGCAATGGTTTGGATGAGTTGAATGTCCCCCAAGTTCAAGTTGACAGCGGATGCAGCTTTATATTGACAGATGAAAATTTGGAGCTAGTCCAAGCTGCTTTTCCAGCAGAAGTTGACAGCTTTTGGCAGCAGAAGGTATAACTCATTTGATCTGTATTCCTTCTGCTATTACCTGCCAGGTGGTAGTAATATAGTGCTAAGACTGCTAACACCTATCTTTTTGCATTTATCATACTTCTGTAGTGTTCAAAGATTTAGGGATTATCTTTCTATCTGTCTCGTCTACTTGTCTACTGACAGGAAATTAAAGAATCTAAAAGAAGAATGTCCAGACCTGGGGGAACATGCATAGAGTCTCCATCTCCAAATTCAGGCGGTGTTCAACTAGCAATTACTGACTATTATCGTTCAAGCAAACTACTAAATCAGGCTAAAGACAACCATAATTCAGCTCAAAATGAAGAAACTGGATGTTTGAAGGAAAAGAGAAATGCTTCAAGTTCAAGCCTTCCTAAATCTGTGAGACGCCGGCTTTTGTTTAGCTAA TCCACCAAAAACAAAGAAAACTGAAAAATATTCCATTAAAAAACCCGTTGATGTAAAAACACAATTTTCTCGTCAAAATTTTTAAAAAACCTCAATCTTCATGCAAAACTTAGAAAGAACCTCACTCAAAATTCCGGTGCAAAGTGATAAACGAATTCATAATTTCTGGGTTTCGTGAACAAAATTAAATTGATGGGGGTCGGAGGTAAGTTCTGGGACGCGCTAAAACCCTACGCTCGATACGAGGGTTTCGATTTTCTAAGGAACAAGAAAGTTGCTGTTGATCTTTCCTTCTGGATTGTTCAACATGAAACTGCCCTTAAATCTTCTGGAGTTAGAAATCCCCATCTTCGCCTCATGTTTTTTCGCACAATTAACCTTTTTTCTAAGTTTGGGGCATATCCTGTATTTGTTGTGGATGGGAAGCCATCGCACTTGAAGTCTAAAGCAAGGATTGCGCGGTTTTTTCGATCATCCGGGATTGACCTGAAAGACGTGCCCGTTGCGGAAGAGGGTGTTTCGGTTGATAGGAACAAGCTTTTTGTTAAATGTGTGGAAGAGTGTGTGGATCTTCTGGAGCTACTTGGGATGCCTGTTCTTAGAGCTAGAGGTGAAGCTGAAGCACTTTGTGCTCAATTGAACAGTGAAGGTTTTGTTGATGCTTGCATTACATCTGACAGTGATGCATTCCTTTTTGGGGCTAAGTGTGTGATAAAACACGTGGATCCTAAATCCATGGGACCATTTGAATGCTATTATGTGGAAGACATTGAAGTTGGTCTTGGCCTGGGAAGGAAACACTTGATAGCTGTTTCTCTTCTAGTTGGTAGTGATCATAATTTAAATGGTGTCCAAGGAATCGGGATGGAAACAGCACTTCGCTTTGTCAAAAAATTTAATGAAGACGAGGTTTTACAAAGGTTAAATGAGATAGGTTCTGGTCCCATGCTTCCATCTGATGCCAGTTTTAGTTCTCCTGGCAAATGTTCAAGAAGCCCGGATGTGTTCTTGCAGAAATCTAAAGCTCCTCATTGCTCTTTTTGTGGTCATCCAGGCAACAAAACTCTACATAGCAGAGTGCCTTGTGAGTATTGTCATAGCACCACAGGAACGAACTGTAGTAAAAAGTCTTTGAAGTTCAAATGTGAATGCTCTGGTTGTGAGAGGGTGCGAGAGGAAAAGGAACTTAAGAAGAATGAAAAATTTCACCTTAGAGTGTGCAAGAAGATAGCCATGGAGTGCAATTTTCCCTGCAATGAGATCATTGAGATATATCTGACAAATGAAGATAATGATGACTTCAGTGCACGTTTATTGTGGAAAGGACCGGATATTGAAATGTTAATTGATTTTTTGGCTTGTCATCTACATTGGGAGCCATCTTACATTCGGCAGCACATATTCCCGATGCTCTCCACCATTTTCCTGAGAGATATGGCTTTGAATCCTAGTGACATTTTATTGCATGGACAATACAAGTTTGACTCTATTCAACGTGTAAAGATTAGGTATGGTCATCAATATTATGTGGTCAGGTGGGGGAATTTTGCATCAGTAATGAGCGATGTCAACTGTTCAGTATCTTCTGAAGGATATTATGTAGTATCTGATTCTGAATCTGAAGATACTCAAATGGATGGACCTTGCAATGGTTTGGATGAGTTGAATGTCCCCCAAGTTCAAGTTGACAGCGGATGCAGCTTTATATTGACAGATGAAAATTTGGAGCTAGTCCAAGCTGCTTTTCCAGCAGAAGTTGACAGCTTTTGGCAGCAGAAGGAAATTAAAGAATCTAAAAGAAGAATGTCCAGACCTGGGGGAACATGCATAGAGTCTCCATCTCCAAATTCAGGCGGTGTTCAACTAGCAATTACTGACTATTATCGTTCAAGCAAACTACTAAATCAGGCTAAAGACAACCATAATTCAGCTCAAAATGAAGAAACTGGATGTTTGAAGGAAAAGAGAAATGCTTCAAGTTCAAGCCTTCCTAAATCTGTGAGACGCCGGCTTTTGTTTAGCTAA ATGGGGGTCGGAGGTAAGTTCTGGGACGCGCTAAAACCCTACGCTCGATACGAGGGTTTCGATTTTCTAAGGAACAAGAAAGTTGCTGTTGATCTTTCCTTCTGGATTGTTCAACATGAAACTGCCCTTAAATCTTCTGGAGTTAGAAATCCCCATCTTCGCCTCATGTTTTTTCGCACAATTAACCTTTTTTCTAAGTTTGGGGCATATCCTGTATTTGTTGTGGATGGGAAGCCATCGCACTTGAAGTCTAAAGCAAGGATTGCGCGGTTTTTTCGATCATCCGGGATTGACCTGAAAGACGTGCCCGTTGCGGAAGAGGGTGTTTCGGTTGATAGGAACAAGCTTTTTGTTAAATGTGTGGAAGAGTGTGTGGATCTTCTGGAGCTACTTGGGATGCCTGTTCTTAGAGCTAGAGGTGAAGCTGAAGCACTTTGTGCTCAATTGAACAGTGAAGGTTTTGTTGATGCTTGCATTACATCTGACAGTGATGCATTCCTTTTTGGGGCTAAGTGTGTGATAAAACACGTGGATCCTAAATCCATGGGACCATTTGAATGCTATTATGTGGAAGACATTGAAGTTGGTCTTGGCCTGGGAAGGAAACACTTGATAGCTGTTTCTCTTCTAGTTGGTAGTGATCATAATTTAAATGGTGTCCAAGGAATCGGGATGGAAACAGCACTTCGCTTTGTCAAAAAATTTAATGAAGACGAGGTTTTACAAAGGTTAAATGAGATAGGTTCTGGTCCCATGCTTCCATCTGATGCCAGTTTTAGTTCTCCTGGCAAATGTTCAAGAAGCCCGGATGTGTTCTTGCAGAAATCTAAAGCTCCTCATTGCTCTTTTTGTGGTCATCCAGGCAACAAAACTCTACATAGCAGAGTGCCTTGTGAGTATTGTCATAGCACCACAGGAACGAACTGTAGTAAAAAGTCTTTGAAGTTCAAATGTGAATGCTCTGGTTGTGAGAGGGTGCGAGAGGAAAAGGAACTTAAGAAGAATGAAAAATTTCACCTTAGAGTGTGCAAGAAGATAGCCATGGAGTGCAATTTTCCCTGCAATGAGATCATTGAGATATATCTGACAAATGAAGATAATGATGACTTCAGTGCACGTTTATTGTGGAAAGGACCGGATATTGAAATGTTAATTGATTTTTTGGCTTGTCATCTACATTGGGAGCCATCTTACATTCGGCAGCACATATTCCCGATGCTCTCCACCATTTTCCTGAGAGATATGGCTTTGAATCCTAGTGACATTTTATTGCATGGACAATACAAGTTTGACTCTATTCAACGTGTAAAGATTAGGTATGGTCATCAATATTATGTGGTCAGGTGGGGGAATTTTGCATCAGTAATGAGCGATGTCAACTGTTCAGTATCTTCTGAAGGATATTATGTAGTATCTGATTCTGAATCTGAAGATACTCAAATGGATGGACCTTGCAATGGTTTGGATGAGTTGAATGTCCCCCAAGTTCAAGTTGACAGCGGATGCAGCTTTATATTGACAGATGAAAATTTGGAGCTAGTCCAAGCTGCTTTTCCAGCAGAAGTTGACAGCTTTTGGCAGCAGAAGGAAATTAAAGAATCTAAAAGAAGAATGTCCAGACCTGGGGGAACATGCATAGAGTCTCCATCTCCAAATTCAGGCGGTGTTCAACTAGCAATTACTGACTATTATCGTTCAAGCAAACTACTAAATCAGGCTAAAGACAACCATAATTCAGCTCAAAATGAAGAAACTGGATGTTTGAAGGAAAAGAGAAATGCTTCAAGTTCAAGCCTTCCTAAATCTGTGAGACGCCGGCTTTTGTTTAGCTAA MGVGGKFWDALKPYARYEGFDFLRNKKVAVDLSFWIVQHETALKSSGVRNPHLRLMFFRTINLFSKFGAYPVFVVDGKPSHLKSKARIARFFRSSGIDLKDVPVAEEGVSVDRNKLFVKCVEECVDLLELLGMPVLRARGEAEALCAQLNSEGFVDACITSDSDAFLFGAKCVIKHVDPKSMGPFECYYVEDIEVGLGLGRKHLIAVSLLVGSDHNLNGVQGIGMETALRFVKKFNEDEVLQRLNEIGSGPMLPSDASFSSPGKCSRSPDVFLQKSKAPHCSFCGHPGNKTLHSRVPCEYCHSTTGTNCSKKSLKFKCECSGCERVREEKELKKNEKFHLRVCKKIAMECNFPCNEIIEIYLTNEDNDDFSARLLWKGPDIEMLIDFLACHLHWEPSYIRQHIFPMLSTIFLRDMALNPSDILLHGQYKFDSIQRVKIRYGHQYYVVRWGNFASVMSDVNCSVSSEGYYVVSDSESEDTQMDGPCNGLDELNVPQVQVDSGCSFILTDENLELVQAAFPAEVDSFWQQKEIKESKRRMSRPGGTCIESPSPNSGGVQLAITDYYRSSKLLNQAKDNHNSAQNEETGCLKEKRNASSSSLPKSVRRRLLFS 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:
Homology
BLAST of Spo06663.1 vs. NCBI nr
Match: gi|902181504|gb|KNA09758.1| (hypothetical protein SOVF_150650 [Spinacia oleracea]) HSP 1 Score: 1249.2 bits (3231), Expect = 0.000e+0 Identity = 610/610 (100.00%), Postives = 610/610 (100.00%), Query Frame = 1
BLAST of Spo06663.1 vs. NCBI nr
Match: gi|731361413|ref|XP_010692341.1| (PREDICTED: flap endonuclease GEN-like 1 [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 973.8 bits (2516), Expect = 1.400e-280 Identity = 481/610 (78.85%), Postives = 529/610 (86.72%), Query Frame = 1
BLAST of Spo06663.1 vs. NCBI nr
Match: gi|1009162268|ref|XP_015899347.1| (PREDICTED: flap endonuclease GEN-like 1 isoform X1 [Ziziphus jujuba]) HSP 1 Score: 715.7 bits (1846), Expect = 6.900e-203 Identity = 369/619 (59.61%), Postives = 442/619 (71.41%), Query Frame = 1
BLAST of Spo06663.1 vs. NCBI nr
Match: gi|743789163|ref|XP_011035441.1| (PREDICTED: flap endonuclease GEN-like 1 isoform X2 [Populus euphratica]) HSP 1 Score: 710.7 bits (1833), Expect = 2.200e-201 Identity = 357/619 (57.67%), Postives = 456/619 (73.67%), Query Frame = 1
BLAST of Spo06663.1 vs. NCBI nr
Match: gi|566203070|ref|XP_002320770.2| (hypothetical protein POPTR_0014s07330g [Populus trichocarpa]) HSP 1 Score: 706.1 bits (1821), Expect = 5.500e-200 Identity = 361/620 (58.23%), Postives = 453/620 (73.06%), Query Frame = 1
BLAST of Spo06663.1 vs. UniProtKB/TrEMBL
Match: A0A0K9QSU7_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_150650 PE=4 SV=1) HSP 1 Score: 1249.2 bits (3231), Expect = 0.000e+0 Identity = 610/610 (100.00%), Postives = 610/610 (100.00%), Query Frame = 1
BLAST of Spo06663.1 vs. UniProtKB/TrEMBL
Match: A0A0J8BJD7_BETVU (Uncharacterized protein OS=Beta vulgaris subsp. vulgaris GN=BVRB_1g019960 PE=4 SV=1) HSP 1 Score: 973.8 bits (2516), Expect = 9.800e-281 Identity = 481/610 (78.85%), Postives = 529/610 (86.72%), Query Frame = 1
BLAST of Spo06663.1 vs. UniProtKB/TrEMBL
Match: B9IC78_POPTR (Uncharacterized protein OS=Populus trichocarpa GN=POPTR_0014s07330g PE=4 SV=2) HSP 1 Score: 706.1 bits (1821), Expect = 3.800e-200 Identity = 361/620 (58.23%), Postives = 453/620 (73.06%), Query Frame = 1
BLAST of Spo06663.1 vs. UniProtKB/TrEMBL
Match: M5XMP6_PRUPE (Uncharacterized protein OS=Prunus persica GN=PRUPE_ppa015861mg PE=4 SV=1) HSP 1 Score: 697.6 bits (1799), Expect = 1.400e-197 Identity = 363/621 (58.45%), Postives = 442/621 (71.18%), Query Frame = 1
BLAST of Spo06663.1 vs. UniProtKB/TrEMBL
Match: A0A067JXU1_JATCU (Uncharacterized protein OS=Jatropha curcas GN=JCGZ_14468 PE=4 SV=1) HSP 1 Score: 683.3 bits (1762), Expect = 2.700e-193 Identity = 360/619 (58.16%), Postives = 448/619 (72.37%), Query Frame = 1
BLAST of Spo06663.1 vs. ExPASy Swiss-Prot
Match: GENL1_ARATH (Flap endonuclease GEN-like 1 OS=Arabidopsis thaliana GN=GEN1 PE=2 SV=3) HSP 1 Score: 603.6 bits (1555), Expect = 2.400e-171 Identity = 328/615 (53.33%), Postives = 423/615 (68.78%), Query Frame = 1
BLAST of Spo06663.1 vs. ExPASy Swiss-Prot
Match: GENL1_ORYSJ (Flap endonuclease GEN-like 1 OS=Oryza sativa subsp. japonica GN=RAD PE=2 SV=1) HSP 1 Score: 577.0 bits (1486), Expect = 2.400e-163 Identity = 323/642 (50.31%), Postives = 416/642 (64.80%), Query Frame = 1
BLAST of Spo06663.1 vs. ExPASy Swiss-Prot
Match: GEN_MOUSE (Flap endonuclease GEN homolog 1 OS=Mus musculus GN=Gen1 PE=1 SV=2) HSP 1 Score: 201.4 bits (511), Expect = 2.700e-50 Identity = 156/545 (28.62%), Postives = 240/545 (44.04%), Query Frame = 1
BLAST of Spo06663.1 vs. ExPASy Swiss-Prot
Match: GEN_HUMAN (Flap endonuclease GEN homolog 1 OS=Homo sapiens GN=GEN1 PE=1 SV=2) HSP 1 Score: 194.5 bits (493), Expect = 3.400e-48 Identity = 137/455 (30.11%), Postives = 218/455 (47.91%), Query Frame = 1
BLAST of Spo06663.1 vs. ExPASy Swiss-Prot
Match: GEN_DROME (Flap endonuclease GEN OS=Drosophila melanogaster GN=Gen PE=1 SV=1) HSP 1 Score: 152.1 bits (383), Expect = 1.900e-35 Identity = 141/566 (24.91%), Postives = 243/566 (42.93%), Query Frame = 1
BLAST of Spo06663.1 vs. TAIR (Arabidopsis)
Match: AT1G01880.1 (5'-3' exonuclease family protein) HSP 1 Score: 603.6 bits (1555), Expect = 1.400e-172 Identity = 328/615 (53.33%), Postives = 423/615 (68.78%), Query Frame = 1
BLAST of Spo06663.1 vs. TAIR (Arabidopsis)
Match: AT3G48900.2 (single-stranded DNA endonuclease family protein) HSP 1 Score: 129.8 bits (325), Expect = 5.700e-30 Identity = 86/247 (34.82%), Postives = 125/247 (50.61%), Query Frame = 1
BLAST of Spo06663.1 vs. TAIR (Arabidopsis)
Match: AT5G26680.1 (5'-3' exonuclease family protein) HSP 1 Score: 105.9 bits (263), Expect = 8.900e-23 Identity = 84/277 (30.32%), Postives = 127/277 (45.85%), Query Frame = 1
BLAST of Spo06663.1 vs. TAIR (Arabidopsis)
Match: AT3G28030.1 (5'-3' exonuclease family protein) HSP 1 Score: 103.2 bits (256), Expect = 5.700e-22 Identity = 60/159 (37.74%), Postives = 93/159 (58.49%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo06663.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo06663.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo06663.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 5
BLAST of Spo06663.1 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 mRNA is annotated with the following GO terms.
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