

|
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.TGTAGGCTATGCAAGTGTGAAATACAGAATAACTGTCTGCTATCTTCTTCTTCGTGAATGCTTATTAGATCCCGGCGCAAACCCTAATTTCAGTTTTCTGGCGGAAAAAACTTTGATACAATTAGCAAGTTTGCCTGGGAAATGTGAATATTAGACTGAAATCTGTTTTCCCGTTCGTTTCCGGGATGATTTCAGTTTCAAATACGTCTGTATTTTTCCGAAACGAGTTTCCAGGTTTCCCCGTTCCAGGACGTTTGGGGTCGTGATTTTTTGGCGTTGTAGCTTATAAATTTAGCAGTAAGTGTTTTTTCTAATATCTGTAAGAGACATTTCAGGGTGAACAATATGGTTGGGCAAGGTTTGACAGCTTCAGGTGGTTTAACATGTTCATTAATCCATATCCGGCGTTGTTCTAGCAGTTCTGTGCCGTGTCTTCCTTCTAGATGCAAGAAGCGAACGGCCTGTGTTAAGGCTATGTCATCATCTAACACAGAACATAATCAATTACCCTCAAAATCTGCATTGTCATTGTCAGGTATTCTGGATATTCCTCGTAGTATCTGGAAGCAAACGCTACGTCCTTTAAGTGACTTTGGTTTTGGCAGGAGGAGCATTTGGGAAGGCGGTGTTGGGTTATTTCTTGTTTCGGGTACAGTTCTATTTGTTCTGAGTTTGGCTTGGCTTAAGGCTTTCCAGATTCGCAGTAGGTTTAGGAAGTATATGGCAGTATTTGAGTTCCCTCAGGCTTGTGGCATTTGTGCTGGAACACCTGTCAGGATTAGAGGGGTCAATGTTGGCAATGTCATCCGCGTTAATCCTTCTTTGAAAAGCATTGAAGCTGTCGTTGAGGTTAGTATTTGTCATCCCATGTTTCTCTCTTGCTACAGACAATACTCAGTTTTGCTGATTTGCAGTTGTCTTTTGGAACCTTAACCCAATTTCCAAGTTGCCCATAAACCATTTTGCTGATTTGCAGTGTTGTCTCTGCTTGTAGGTAGATGATGATAAAATCATTATCCCGCGTAATGCTACTGTTGAAGTTAACCAGTCTGGTCTCCTCATGGAAACTATGATTGACATAACTCCCCGAGACCCAATTCCGACACCGTCTATTGGGCCTCTTGACCCTGAATGTGATAAGGAAGGCCTTATTGTTTGTGACAGGCAAAAGATTAAGGGATTACAGGGAGTGAGCTTAGACGCACTTGTGGGAATATTTACACGTATTGGACGAGAAGTGGAAGAGATTGGTGTTGCTAATACATATTCATTGGCACAGAGAGTTGCAGTCGTCATTGAAGAAGCAAGGCCATTGTTAACAAAGGTCTGATTTCCTGCTTTTAAGATAGCCTATATTAGTTGCTATTCTTTATTCACATATCATTATTAGAGTTGCACTTCTCAGGGCTTTAGCTGAATATTACTATATCACTAATGCAGGATTGGTAAGGATCATATTAGCATATCCGGTTAGCTGAATGTTGTTTAATTAGACCATAAAGAAAAGTCTTCAAAAATTTCTCCTTCTTTATAGTCTATTACTGTGGGCACAGTAGTTTGGAAGGCAAGTATTGTAAGTGTGTGTCAACGGGGGATCGTGGTCAGAGTTACCTAAATATGCCAGCATTTGATTTGGTACGATATGCAATTTACTTACTAATTTGTTGAATTAGCCAAAACTTACCACTTGTATTATAATTAGCCTTTGTTAATACATGGCACGCGGGTAGATTAGAAATATTAGGTAGGACTGATTGGGATGTTTCCCCTTCATTTTCAAACAAGGCAATATTATCGGCCATCCATGCTGTACATCTGCTAATTAAATCCTCAGAAGTCCCTCCCACAGAGTAACAGCTGTGGAAAGCAACATAGGCAGCTAGCTTATGGAGTGTTACTACTGGAGGACACTTTTCAGAATATTCATTTCCTTACATCCGTAGGATTGAGGGAATTGCCAAACATGCGAATTATCAATGACACTTCCTTTATAAATGACTTATAAATTTAGCAAGAGGGATAATTAGAAAAACCTATTTGATCTTCCCTATCTCAAACAACCTATATTATAGGAGGCAGCTATGTCGAGATATAAATACTTCTCATGTATAGAAAGATTACTGGCGAACTTCTAGTGGGAGTCTTTGTGGGACAGAGCGGTTCTTCTCATGCGTGCAACAACGTGGTTCTTCTAGGATTAGTGTTTGTGTGTCATGTTTTTGGAACTCGTTTAATTGCGTTTTTCGTGGTTTTTAGCTTGTGGTTATGTCAAGAATATTCAATTTCTATTCCTAACTTGGTTAAGATTTATGTTTTGTGATTTTCAATCCCTAGTGTGTTGAGGATTTGTTTTCAATTTTCTAGTTCCAAAGTAAGGTAGGATTTTCTTTTCAATTCCTAATTGATTTAGGATTTATTTTCCAATTCTAATTAGGTTTAAATTCGTTTAGGGTCAAGAGTTTGATTCCAAATTGTTGTAGGCTTCTTTTGCTGTGTGTTTTACTAATTGTGGAATTCTTTTTGACATGAGTTTTAGCTTATTTAAAAGTCACAAAATTATGGAGAAAGGTTGAGAGTTGTTTTGTGAGAATTATTATTCTTTGGATGAGCTTTGCTATCTAGGGTTTAGGAATTAAACCAAACATAAGAGATTTGTGTGCCATCAAAACCAAGACTTTTGAGTACTATCCGGTTACATTTATCACTTGTTCACATTCCTCCACATCAAACAGTTAATAATCTGAATTGCTATACTAAGAGTCATATACTCATATCACCTAGGTTTAAGTGATTTCCAGCGCAATTGATACTCAATATTTTTGTGTTAGCGTTCTTTAATAGGACTTCCCGTCGTGTGGATGTTGCATTCTGTCTCTCTTTCAAATCATGTTCCGTGTCTTCATATTTAATGGGTTAGGCAAGAAATAAATACATGCAGGTCGGATGTTTCTTTGTTTTTTTTAAGCAAAATCCTTTTCAAATGTTTCTGTGACGTAAGATATAAACACTTGTCAATGATAGCCCCGCTACTACTCTTCTCTCATTAAGCCTTTTGATGAGTTATCCCGTTTTTCTGTAGCTTCTGTGCTACAGGGAACCTTTTTCTTCTTGTAGTAGTCTGCGTACTAGTCATTTTTCTCTTATCTTACTTTCATTAATTCCACCTTCTCTTCCTCGTGTTTTTCTTTTTACTTCCTGCTCCTTTCTGGTTTGATTGGTGAGACGATTCCCTACGACGATTCATGTTAGCCGACCCCAAATCATTTTGGGACTAAGGCTTTGTTGTTGTTGTTATTGCATGTTCTTCAGTTGCCGCTAATACTCTTGCTTTTTTTAACATACATATTTTAGAAGCTGTCTTGCAAATTAAAGATCCAAGGGAAACAACCTTTTTGGAATTATAGAATTAAGCTTAAAAGAGGTTCTTTTGCGATGATGTTGCTGAAACATGTGTATGTTTGACCATGCTATGATTCCTATCCTACATTACGTGGAAGCTTTGTTCAAGGCATTTAAGTAATGTAATGTACTGTCAGTGACTAGTATACTAAGCTTTGCGTGAGGATGTCAAGTTTGTTTGGGGTATTAAAATCTGATATTCAGACTTCCAGGGTTACTGTCCTTGTGAACAAACATAAAGACATTTACTAAGTTAGATTGAAGTTTTTATACACCTTTGAGTTAGCCCGTGATTAGCTATGTTACTTCAACACCTTGGTTGACCGCTGTCGGGTGTTGACATGACATGACACTCTAAAGGTGTCCAAGGAAGTGTCGACACTCGTGTCGGAAAAGGAATCTAAATCAAGTTTCGTGATATGAGAAGAAGATAAAAAAAAGAATAAAGAAGTTATGTTTTCTTTATCCAAGATGAAGATAAATATCATCAATGAATAAATGAGTCTTATCGGATGTTACTTGTATAAAAAAGCTCTAAAAAACTAACAAGTTAGGTTAACTTAGTGCCCTCCTCTTTTTTTTTCTTCTCATTTTTGTATATTAAAATAATATGGGGTGAGAATTTCTCTGACACTTTATATGATAGCCATGTCTCCAGAACTAGTCAAGATACGTTTTTAACCATGTCCGTTTCTGCAAAATTTTGGATTGGGATTTATATATTAAAACAATCAAATGGGGCAAGTAAAATGAGACGTTGGGAGTATGAATTTGGCATTATCTTCAAGTTGGCACATCCTAAGTATCTAGTCCCGATGCACTGTCATAGGTTTAAATTTAACAACTTCGACTACCTGATTTCATTCATCACTTGTATTTTAATGACTTGATCTTTATTATAATTTTGGTGTTCCTGGATTTTAAATAGCAGACTGATCTTTATATTATGTATAAAACATTTTACCATGTAACATTACCAACTAGCTCTATAATTAAGAATAACAGTCAATGAATACCTTTATGGTAACTCGTGTCCACTGTGTAGTGATTATATAGATTAAAGCCATGTCTGAAGATATACAACCTTTGTTGTCGGAGGTCCGTGACACTGGTTTGCTGAAGGAAATTGAAAGTTTGACTAAAAGCCTTACACAGGCAACTGAAGATTTGAGGTAAGCACTTTCATTTATTTTTTCCTGCATGTCTTTACTGCAATCTAGCTAAGTGATACCATTGCCTCTGCCAAAATGACTATGTATAAGAAATATTGTTTTTCACATTTCTGTTTTCTTATTGTTTATAGTTTGTTATGCTCCTTCCAATCCACTAAGCCCTTTTGATTTAGTATGTTCACATTAATTTTTTTTTTTTTAGAATGCTCATTTTTGCTATTAATATCTTAAATTACAAACTAATAAACATTATGAAAAGTTATTCAGAAGAATACACTGAAAATAACCTTGATATATTTTCTATACATTGGTTAAAATAAATGTTCAAAAATTTGCTCTATCACTGAGACATTCAATTTAGGAAGTAAACAAAGGGACGGAAGGAGTAGATGTAATGCAGTTTATTGATTTGTTATTTTACAATATATCCTTTCTTAATCAATGTACTGTTTTCTCCTAAGAGCTGTCATTCAGTGCTAAATCTTTCGAAGTCCTACAGTTAGACAGCAACACCTTGCAACTACCCAAATGCAAGGTTGAAGGCTATAAAATTCTTGTGATATATGCTGCTTGACCACCCCCTCCTCCCCCCTCCCGGTTCCCGTAGAAAACTAGAGATTCTGGTACTGTATTTAATTCAAGTTAGAAACCTGATCATTTTCCTTTTCTCTTTCTATATTGCATACCCAATAAGTATCGCATCATCAGAAAGCATCATCCGGAAAGTATTTCAGTAAGCTTGTGAAAAAACATTCTCAACATAAATGTAACATTTCATTAACTCAGATTAAAAAGACAATGAGCTAAGCAGCTAAGTCTTTTCGACCTTATCATTCATTCACCACTATACTTGAGTTTTCTCTCCATTTTACTCTCCTTTTTTTGGTTCTATCCCTTCACAACCAATAACAAAAGTTATCCCTTGATGATCGCTGTGAATTTAACATAAATGCCTCCCAACTTTTGGTCCCATTGAATTTCCATTTCCTTTTACCTAAATCTGCTTTTACCAATGTGAGGTGTTAAAATTGCTACTGCAGACTTCATCGGACAAGCAAATAGAATACGGTATCACTGCTCATAGGACTACTTTTCTGTAATGGGAACCAGATCATAAAATCTTTGAACTATTTTTTTTTAACTGTTGGAGAGGCTGTATAAGACCCTTACACGTTCTTGGTGATTTGAAGCATCTTTTGTTAAGACAATACTATCTTACCTTGCTGGATGATAAGAGTATGCCAAAGGCTGGATCGAAGACAAGTCTCTAGTTTTTTATGTCTCTGCTCTGTTTCAGTGCCGTTCCATGGTTTGGACTTGGAGTCTTGGTCAATGCCCTTGGTGTCTTTAGGGTATTTAGGGTATTCATATACTTCTGGTGGTAAGGGTGCCGGAAGCGGTGGCAAATCACTCGAACCGCCTTGAAACAATGGTAGGAGTTTTACAGACTCTTGATCGGCCACATGCATGTTGGTTGGGTCAGTCAATTGATTGTTGAACGGGGACGGAACAACCATTGTGGGCGGGAAGTTCAGGTCGAACCCTAACCCTAGGCTGAAGTTTTGGTTAATTAGTTGTGGGTGGTGGTGGTTGGGCGGGGCAATTACACCCACCGTGGAGGAAATCAAGGCGGAGTTCCGACCAACCATTTTTTGGTTTTTAACTGGAAGAGGAGTGAGAAAATAGTGAGAGAAATGGAAGTGGAGTGAAAAAGGAGTTATTATAAAGTGGAATATGGGGGGGTGGTACACGTGGTCATTATTGACACAAACAATAGTACATTTTCTTAGGCAGATAGACAAGGGGGACGTTTTAGTTAGCGTCCAAGTTAAGCTTTTGCAAAGAGTCTTGTAATTATGTTCATTTAAGTTAGCAAGTCAATAAAACCAACATTATCAAATTGTAAATTAGATTTTTAAAACCCATCTTGTGTAATTCAAGAACTCCCTTTCATGGAATATAATTTAACAAATATTGCATGATAAGTAACAAACCAATTGACGAAGGTAATAGTAAGTGTTTCATTCTTACTACCTTTATCAAAGAAAATTTGTCCAAAATCTATACTAGATTATTTAGGGAGTACTAAATGTGTCCATGTGTCAGGTAACGTATTAAAAGTAGAACTAGTATTAGAATAACCTACAGTTTCACTTTTAAAATTTGTAATGGTAACATTTAAATTACAAAGTATTGTCTACCATAACTGTCATTAAGCATTAAACTCTGAACCTTATACTCATAAGTCTAAACCTTTGATTTTTTTTTGTATTAATAATAAATCTTATATATATTAATAATAATGTTTGGTCCTAAACAACTAAACCCAACAATTATGATCCAATATCATCCTGAAAAACTCGTACCGAAATTCTTAATCTAAAAAGGCTGGTTCCATGTATATGACAATAAAATATTGACCAAACAAGATAGACAAGTGCGATGCAAACGAACGAGCTGAAGCCGAGCTCGCGAAAGCCTAATACTTAGGGAACAAAGCTCTAAATAAACGATTACAAATCTCGGTGGTACTCGAGACAATATTAAATAGTTAAACTCGGAAAGGCTCGGCTCATTTGCATTGTTTGCGTTGCTAGGCTATACTTGTTATCGTTACATGAATACCCTAAATACTTTTGGTGTTATTATAATACTTAAGTATTATACTCCATCTGTTCCTAAATACGTGTTCACTTTGACATTTACGCGGGATTTAATAAAACTGAATTGTGTGTAAGAGGTAATGATTGAGAATGTTTTTTTTTTGGGAAAGGAAAAAGTAGATAATTGTTTATTGATAAAGTATAAATAAAAGTGGAGGTGGTGATTGAAAAGTGGAAAAAATGTATAATGTGTAAGAAAAGGTAATAATGATGTATAGAAAAGTGGGAAAAGTGTATGGAAAAGTGGGAAAAGTGTATAGAAAAGTGGGAAAGGTGTATGTCCAAAAACGGAAAGTGGACACATAAAAGGGAACGCCATAAATGGGTCCAAAAACGGAAAGTGGACACATAAAAGGGAACGCCATAAATGGGAACTGGACACGTATTTAGGAACGGAGGGAGTAATATGTAAAAGTTAATTTTAAGGATCAGTGGGTCAACCGGGATTCCAATTTTATTTTTAAATTTGATTTTTGGTGCTTTAATTTTGCAACCAATACACCCCCTTTACTAAAAAATCAAGATCAACTTTTCTATTTTTAATGTGTTTATACTTGTTTAAATTTTTGTATTTGAAGTGAAACTTAAATATGGGTCTCGAAACTTTTCAATTCAAAATTTATAGGGTGATAAAGAAATGGTGGATGCTATGTTACCCGGACTCGGATACCATATCGCCATATCGGACACATGTACGTGTCTAAGTGTCCGATCACAACTTTTTTGTGAAAATATTGCACGACTTTGGTCCAAAATGAAGTGTCCGTACCCATGTCCGAGTTTCGAGGATCCGACACGGGTATTTGAAGTAAAGTGATGAATCGGGGTAACGGAGGGTATGATGGATTATTGCTTGATTTAAGTTCCAAATGTTGGGCTTAGTCGGATGATTTCTAGTAAATATGGATCTTCACCTCATCAGTAGTGGTATTGGATAGCTAGAGTAACTTATGTATGAATGTTTGGAAAATGGTAATAAAAAAAGCCTTATTACTGTCTTCCGAACAAGAGGGTTTATTCAAATAATAGTATATGTATATCATTATTGATATGCTATCAGTTTTATCTAAATAATAGTATACGTATATCGTTATTGATATGCTATCATTTTTATCTAAATAATAGTACCCTTTCCTTATTGAGTTGTTCTTTTATATTAGTTCTTTTTGGAATATTTCCTTATTTGTCTAACATTCATCCCATTTATACCCCTATAAATATCCAAAAAATCCACTTGTTTACTCTCAAGTAACCTTTTATCTCCATTAAACCCCTAAATTATTTCTCTCTCTTACCCACATGAATTACATTCTATTAAAATTCATGTGACAATTGTACTTTTGTTGGATTGTCTTATATTCCAAAAGAGTCTAACATTCAAGAACCGAGGGAGTATAAGCTATCAGTTTTATCTAAATAATAATATATCTATATCATTGATATGCTATTAGTTTTTTCCTTTTTATTTTCTTTTCCTTGATGAGTAATTGTTTTAGAATTTGCTTATTGTGAAACAAATTACCTTTTGATACTGGTTTGATGCATTGTTATTTGGAGTAACTGCTAACGGAGCTTAATGTACTGCAGAAGGGTGCACTCCTCTATTATGACCCCAGAGAACACTGAATTGATACAGAAATCAATTTACACCCTAATATTTACTTTGAAGAATATCGAGGTATGCTGTACGCAGCAGGAATCGTCCTTTATCATTTTTGTTATTTAAGTAAAAGCACTTTTGGTATAAACTTCCTTGTTTGACTTTATTGCAGAGTATCAGCTCTGACATTTTGGGGTTCACTGGGGATGAAGCCACTAGACGAAATTTGAAGCTGCTTATCAAGTCATTGAGCAGAATGCTCTGACGAATGGGGGTTCAATAATATGGTTGTTGATGTTAACTAGGGTGTGTGTGGACTTGTTTTTGAACTTGTTTTTCCTGGTTATTGGCGATTGAGTATAATTTTTTTTAATGGTGTAGGCATTGCTTTGTATGATAATGTTCAAGACATGCTTCAACATGAATCCTCCGGTGAAGAACAGACAACTTGTGGTGCTTCTCAAATTTTCTCATAGGTGAACGTTACTGGAACTTTTTTTGTTAAATTTCAGGTAAAAATCATTGGACCATTTATGTGGAAGAATATGATAGCCAAATCTAAAACTTCTTTAATAAGGGCTCTTTATCTTTATTGTAAAGCAAATAAAACACTTGTAAAGAATTTCCCCTTTGTTGTTTCTTTTTGATATATTGATGGGGGGAGGAGGGCAGTAAGTAGGAGGCGACATTGTGTGGTGTCGAATTTGATTATTGCCTTCATATTTCATTTTTTGATGTTGAAGTATTGGCTTTATTGATGGGGGGCAGTAAGTAGCAATTGGATTTATTGATGTAGATTATTCTTGTTAGAGCAAGAGGTATGGATTTCTTATTTTGCAGCTACGAACGATTATATTGAGAGACCATGACCTGTGTAGGCTATGCAAGTGTGAAATACAGAATAACTGTCTGCTATCTTCTTCTTCGTGAATGCTTATTAGATCCCGGCGCAAACCCTAATTTCAGTTTTCTGGCGGAAAAAACTTTGATACAATTAGCAAGTTTGCCTGGGAAATGTGAATATTAGACTGAAATCTGTTTTCCCGTTCGTTTCCGGGATGATTTCAGTTTCAAATACGTCTGTATTTTTCCGAAACGAGTTTCCAGGTTTCCCCGTTCCAGGACGTTTGGGGTCGTGATTTTTTGGCGTTGTAGCTTATAAATTTAGCAGTAAGTGTTTTTTCTAATATCTGTAAGAGACATTTCAGGGTGAACAATATGGTTGGGCAAGGTTTGACAGCTTCAGGTGGTTTAACATGTTCATTAATCCATATCCGGCGTTGTTCTAGCAGTTCTGTGCCGTGTCTTCCTTCTAGATGCAAGAAGCGAACGGCCTGTGTTAAGGCTATGTCATCATCTAACACAGAACATAATCAATTACCCTCAAAATCTGCATTGTCATTGTCAGGTATTCTGGATATTCCTCGTAGTATCTGGAAGCAAACGCTACGTCCTTTAAGTGACTTTGGTTTTGGCAGGAGGAGCATTTGGGAAGGCGGTGTTGGGTTATTTCTTGTTTCGGGTACAGTTCTATTTGTTCTGAGTTTGGCTTGGCTTAAGGCTTTCCAGATTCGCAGTAGGTTTAGGAAGTATATGGCAGTATTTGAGTTCCCTCAGGCTTGTGGCATTTGTGCTGGAACACCTGTCAGGATTAGAGGGGTCAATGTTGGCAATGTCATCCGCGTTAATCCTTCTTTGAAAAGCATTGAAGCTGTCGTTGAGGTAGATGATGATAAAATCATTATCCCGCGTAATGCTACTGTTGAAGTTAACCAGTCTGGTCTCCTCATGGAAACTATGATTGACATAACTCCCCGAGACCCAATTCCGACACCGTCTATTGGGCCTCTTGACCCTGAATGTGATAAGGAAGGCCTTATTGTTTGTGACAGGCAAAAGATTAAGGGATTACAGGGAGTGAGCTTAGACGCACTTGTGGGAATATTTACACGTATTGGACGAGAAGTGGAAGAGATTGGTGTTGCTAATACATATTCATTGGCACAGAGAGTTGCAGTCGTCATTGAAGAAGCAAGGCCATTGTTAACAAAGATTAAAGCCATGTCTGAAGATATACAACCTTTGTTGTCGGAGGTCCGTGACACTGGTTTGCTGAAGGAAATTGAAAGTTTGACTAAAAGCCTTACACAGGCAACTGAAGATTTGAGAAGGGTGCACTCCTCTATTATGACCCCAGAGAACACTGAATTGATACAGAAATCAATTTACACCCTAATATTTACTTTGAAGAATATCGAGAGTATCAGCTCTGACATTTTGGGGTTCACTGGGGATGAAGCCACTAGACGAAATTTGAAGCTGCTTATCAAGTCATTGAGCAGAATGCTCTGACGAATGGGGGTTCAATAATATGGTTGTTGATGTTAACTAGGGTGTGTGTGGACTTGTTTTTGAACTTGTTTTTCCTGGTTATTGGCGATTGAGTATAATTTTTTTTAATGGTGTAGGCATTGCTTTGTATGATAATGTTCAAGACATGCTTCAACATGAATCCTCCGGTGAAGAACAGACAACTTGTGGTGCTTCTCAAATTTTCTCATAGGTGAACGTTACTGGAACTTTTTTTGTTAAATTTCAGGTAAAAATCATTGGACCATTTATGTGGAAGAATATGATAGCCAAATCTAAAACTTCTTTAATAAGGGCTCTTTATCTTTATTGTAAAGCAAATAAAACACTTGTAAAGAATTTCCCCTTTGTTGTTTCTTTTTGATATATTGATGGGGGGAGGAGGGCAGTAAGTAGGAGGCGACATTGTGTGGTGTCGAATTTGATTATTGCCTTCATATTTCATTTTTTGATGTTGAAGTATTGGCTTTATTGATGGGGGGCAGTAAGTAGCAATTGGATTTATTGATGTAGATTATTCTTGTTAGAGCAAGAGGTATGGATTTCTTATTTTGCAGCTACGAACGATTATATTGAGAGACCATGACCTG ATGGTTGGGCAAGGTTTGACAGCTTCAGGTGGTTTAACATGTTCATTAATCCATATCCGGCGTTGTTCTAGCAGTTCTGTGCCGTGTCTTCCTTCTAGATGCAAGAAGCGAACGGCCTGTGTTAAGGCTATGTCATCATCTAACACAGAACATAATCAATTACCCTCAAAATCTGCATTGTCATTGTCAGGTATTCTGGATATTCCTCGTAGTATCTGGAAGCAAACGCTACGTCCTTTAAGTGACTTTGGTTTTGGCAGGAGGAGCATTTGGGAAGGCGGTGTTGGGTTATTTCTTGTTTCGGGTACAGTTCTATTTGTTCTGAGTTTGGCTTGGCTTAAGGCTTTCCAGATTCGCAGTAGGTTTAGGAAGTATATGGCAGTATTTGAGTTCCCTCAGGCTTGTGGCATTTGTGCTGGAACACCTGTCAGGATTAGAGGGGTCAATGTTGGCAATGTCATCCGCGTTAATCCTTCTTTGAAAAGCATTGAAGCTGTCGTTGAGGTAGATGATGATAAAATCATTATCCCGCGTAATGCTACTGTTGAAGTTAACCAGTCTGGTCTCCTCATGGAAACTATGATTGACATAACTCCCCGAGACCCAATTCCGACACCGTCTATTGGGCCTCTTGACCCTGAATGTGATAAGGAAGGCCTTATTGTTTGTGACAGGCAAAAGATTAAGGGATTACAGGGAGTGAGCTTAGACGCACTTGTGGGAATATTTACACGTATTGGACGAGAAGTGGAAGAGATTGGTGTTGCTAATACATATTCATTGGCACAGAGAGTTGCAGTCGTCATTGAAGAAGCAAGGCCATTGTTAACAAAGATTAAAGCCATGTCTGAAGATATACAACCTTTGTTGTCGGAGGTCCGTGACACTGGTTTGCTGAAGGAAATTGAAAGTTTGACTAAAAGCCTTACACAGGCAACTGAAGATTTGAGAAGGGTGCACTCCTCTATTATGACCCCAGAGAACACTGAATTGATACAGAAATCAATTTACACCCTAATATTTACTTTGAAGAATATCGAGAGTATCAGCTCTGACATTTTGGGGTTCACTGGGGATGAAGCCACTAGACGAAATTTGAAGCTGCTTATCAAGTCATTGAGCAGAATGCTCTGA MVGQGLTASGGLTCSLIHIRRCSSSSVPCLPSRCKKRTACVKAMSSSNTEHNQLPSKSALSLSGILDIPRSIWKQTLRPLSDFGFGRRSIWEGGVGLFLVSGTVLFVLSLAWLKAFQIRSRFRKYMAVFEFPQACGICAGTPVRIRGVNVGNVIRVNPSLKSIEAVVEVDDDKIIIPRNATVEVNQSGLLMETMIDITPRDPIPTPSIGPLDPECDKEGLIVCDRQKIKGLQGVSLDALVGIFTRIGREVEEIGVANTYSLAQRVAVVIEEARPLLTKIKAMSEDIQPLLSEVRDTGLLKEIESLTKSLTQATEDLRRVHSSIMTPENTELIQKSIYTLIFTLKNIESISSDILGFTGDEATRRNLKLLIKSLSRML 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 Spo10090.1 vs. NCBI nr
Match: gi|902191301|gb|KNA11815.1| (hypothetical protein SOVF_131640 [Spinacia oleracea]) HSP 1 Score: 722.2 bits (1863), Expect = 4.600e-205 Identity = 377/377 (100.00%), Postives = 377/377 (100.00%), Query Frame = 1
BLAST of Spo10090.1 vs. NCBI nr
Match: gi|731318660|ref|XP_010669845.1| (PREDICTED: protein TRIGALACTOSYLDIACYLGLYCEROL 2, chloroplastic isoform X1 [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 612.8 bits (1579), Expect = 3.900e-172 Identity = 324/376 (86.17%), Postives = 346/376 (92.02%), Query Frame = 1
BLAST of Spo10090.1 vs. NCBI nr
Match: gi|359478145|ref|XP_002272428.2| (PREDICTED: protein TRIGALACTOSYLDIACYLGLYCEROL 2, chloroplastic isoform X1 [Vitis vinifera]) HSP 1 Score: 552.0 bits (1421), Expect = 8.200e-154 Identity = 284/373 (76.14%), Postives = 329/373 (88.20%), Query Frame = 1
BLAST of Spo10090.1 vs. NCBI nr
Match: gi|823247139|ref|XP_012456242.1| (PREDICTED: protein TRIGALACTOSYLDIACYLGLYCEROL 2, chloroplastic [Gossypium raimondii]) HSP 1 Score: 551.2 bits (1419), Expect = 1.400e-153 Identity = 285/365 (78.08%), Postives = 327/365 (89.59%), Query Frame = 1
BLAST of Spo10090.1 vs. NCBI nr
Match: gi|255587510|ref|XP_002534297.1| (PREDICTED: protein TRIGALACTOSYLDIACYLGLYCEROL 2, chloroplastic isoform X1 [Ricinus communis]) HSP 1 Score: 545.0 bits (1403), Expect = 1.000e-151 Identity = 286/389 (73.52%), Postives = 332/389 (85.35%), Query Frame = 1
BLAST of Spo10090.1 vs. UniProtKB/TrEMBL
Match: A0A0K9QX33_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_131640 PE=4 SV=1) HSP 1 Score: 722.2 bits (1863), Expect = 3.200e-205 Identity = 377/377 (100.00%), Postives = 377/377 (100.00%), Query Frame = 1
BLAST of Spo10090.1 vs. UniProtKB/TrEMBL
Match: A0A0J8D093_BETVU (Uncharacterized protein OS=Beta vulgaris subsp. vulgaris GN=BVRB_2g037350 PE=4 SV=1) HSP 1 Score: 612.8 bits (1579), Expect = 2.700e-172 Identity = 324/376 (86.17%), Postives = 346/376 (92.02%), Query Frame = 1
BLAST of Spo10090.1 vs. UniProtKB/TrEMBL
Match: F6HYX4_VITVI (Putative uncharacterized protein OS=Vitis vinifera GN=VIT_05s0102g01210 PE=4 SV=1) HSP 1 Score: 552.0 bits (1421), Expect = 5.700e-154 Identity = 284/373 (76.14%), Postives = 329/373 (88.20%), Query Frame = 1
BLAST of Spo10090.1 vs. UniProtKB/TrEMBL
Match: A0A0D2USV3_GOSRA (Uncharacterized protein OS=Gossypium raimondii GN=B456_011G139800 PE=4 SV=1) HSP 1 Score: 551.2 bits (1419), Expect = 9.700e-154 Identity = 285/365 (78.08%), Postives = 327/365 (89.59%), Query Frame = 1
BLAST of Spo10090.1 vs. UniProtKB/TrEMBL
Match: B9T7S8_RICCO (Putative uncharacterized protein OS=Ricinus communis GN=RCOM_0126140 PE=4 SV=1) HSP 1 Score: 545.0 bits (1403), Expect = 7.000e-152 Identity = 286/389 (73.52%), Postives = 332/389 (85.35%), Query Frame = 1
BLAST of Spo10090.1 vs. ExPASy Swiss-Prot
Match: TGD2_ARATH (Protein TRIGALACTOSYLDIACYLGLYCEROL 2, chloroplastic OS=Arabidopsis thaliana GN=TGD2 PE=1 SV=1) HSP 1 Score: 516.5 bits (1329), Expect = 2.400e-145 Identity = 267/364 (73.35%), Postives = 309/364 (84.89%), Query Frame = 1
BLAST of Spo10090.1 vs. ExPASy Swiss-Prot
Match: YCF22_PYRYE (Uncharacterized protein ycf22 OS=Pyropia yezoensis GN=ycf22 PE=4 SV=1) HSP 1 Score: 88.6 bits (218), Expect = 1.600e-16 Identity = 51/150 (34.00%), Postives = 80/150 (53.33%), Query Frame = 1
BLAST of Spo10090.1 vs. ExPASy Swiss-Prot
Match: YCF22_PORPU (Uncharacterized protein ycf22 OS=Porphyra purpurea GN=ycf22 PE=4 SV=1) HSP 1 Score: 82.8 bits (203), Expect = 8.800e-15 Identity = 49/153 (32.03%), Postives = 79/153 (51.63%), Query Frame = 1
BLAST of Spo10090.1 vs. ExPASy Swiss-Prot
Match: YCF22_ANTSP (Uncharacterized protein ycf22 OS=Antithamnion sp. GN=ycf22 PE=4 SV=1) HSP 1 Score: 73.2 bits (178), Expect = 7.000e-12 Identity = 47/150 (31.33%), Postives = 77/150 (51.33%), Query Frame = 1
BLAST of Spo10090.1 vs. TAIR (Arabidopsis)
Match: AT3G20320.1 (trigalactosyldiacylglycerol2) HSP 1 Score: 516.5 bits (1329), Expect = 1.300e-146 Identity = 267/364 (73.35%), Postives = 309/364 (84.89%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo10090.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo10090.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo10090.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 4
BLAST of Spo10090.1 vs. TAIR (Arabidopsis)
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. TAIR) Total hits: 1
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.
|