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.CTAAATTGAAGTCACTCTTTCGTAGACCACCAACAAAGCTGTGCGCCGGAGTTCAAAACTTCACCAGTAACTAAAGCTTTCTTCTACTGTTACAAGAATAAATAAACAGCGAAATGATGGGAGCTTCCAACATGCTCGAATTATGTCGGATTCCTTCCAACAGATTCTTATTCGGAACCTCCAAACTCATCAAAGGTACCCTCTTTTTCCTTTCTAGTGTAAATAATTCTGTATTAATTTTGTATTTGGAAGAAAATATCTTTTAATTTGTTGAATCATTATCTAATTTGAATTCTTTGTTAATGTTGCATTTATTGGGATTTCGAGTTTTTGACAAATTTGCCAATGTTTTCTCAATTAACAGGTTCTAGACAAATACCCAATAGATCATTTTATCCAATAATGTGTTTATGCAAAGAGATACAAACAACTACTGCTGAAAAAATCATGGGTGCAAGTTATATTCCTGATACCAAATTCAAAAAGGAAACCAAATTGAAGGTGATTATATTATTTTTGGGGTATATTTTGGAAGAATTGTTGATTGTTTTGTTTCTATTCTACATACTGTTGTGTTTATGTTTGTCTATACAATTATATTCATCAATCTGTGTTTCTTTGCGAAACAATGTTAGGTTAATGAACCAGTAGTTATTGAAGGTGTTGGTGCTTTTCAAAAGCTACCTATGGTAATGCCTTCTGTTGATATAATTCAATCCGCTATCCGGAAAGCTAAGAAGGTTTCAGCTACAAAGGGTAACTGGTTCTTTATTCAGTTGGTTTGATTTATTTGAATGTTTATGTTGAACGTGAGATTGTTGAAATTTTGAGCTGATTGTTTGATAGGCATTGCTAATATTGCAAAGCGTGAGAGGAACCGGGGCGCTAAGCAACTTGATGCGCTGATGAAGGTAAGATATTTGATGTGTCGTATTGTTTGTGTCTTTGGCTTGTTGTCTTATCAAGTTGTGATTATCTTGTCTGTTTGTTTGTTTGTTTAGGAGTTGGCAGTTCCCCTTAGATTGTATACAGAGAGCTTCCCTAACAAAAATCATTTGCATCCTTATGAGCGTTCTCTTATCGAGTTGACTCTTGGAGATGGGAATTATGAAGAGGTAACTGCTAAGTTTTCACCTATCATGTTTATATGATCCGTATATTCTTGTTACTCTGCGCATTACTTTTATTGCTTGATGTATCTGCAAGTATTCTAATTTTTTAATGACTCACCCTTATTCCTGTAAGGAGTATAATATCACTAATGGCGAAGCAAAGACCTTATTGCAAGAGAAAATTGGGCTGCAGAATGTACCTGCCCTGTGCATATTATGCTTTTCCTCACATTTCTAAATTCCAGTTTTACAAAGTTTTTGAGTAGAATAGTTAACATTTTCCAATTGCATTGGGGAATATTGATGTTTCACCGACTAACTTATGTGAATATGTCTACTATTGTTGTTTAAGTCAGACTGAAATTTCTATCAAAGACAACCATAAAAGAGTCGAAAATAAGTGGATAACCTTACAAGACACCAACGGGAGTGATGCCCTTTTAAGGGGAATGTGTCCTTTAAGCAAATTACATCAGACAGGCAATACGATGGTGTCCATTGTAGTTTCTTATGTCTGTTGCTTTAGGCAGTTAAAGCACACACCATATATCAATCTACTTGTCAGTTGGGTAGTCTTCTAATTACCAAATTTATTGCCTAACATTAGCATAGAACTATCTTGTGATCATTACGAATTAGAAATCCGCGTTTGTACTGTAGCAAGCATATTCGTGCCTCATGGGTCCTTGCTTGTTCTGCAGGTTTTGTCGAAGGTAAATAACCTGCGAAAGAAGGTTACAGCTGTTGCAAAGGAACATGCTTCTGTTTGTGCCAAGGTTGATTATTTTTTAATTAGGCCTTTGTCAGTTTGTCTTTTTTATCTGGCTTGCCTGGATAAGTTACATTTATTCTCATTTAATCTAATCATATTTTGAATCATCTTGAAGCCAAGTGGTGAGTTACTGTTATGATACAATGCTTCATTCTGAACTCTAAGTTTGCATGAGGGCTGATGTTGTCTCACTCAAATATCTGATATGTGTTCATTCATTCGTAATTCACACTTTAGTTTACCTAGGTGGCAAAAGAGATAGACTGAGACAAAGAGCATGGGAGAGACCAAAAATGATACTTGCTTTGGGCTATATTGTTTTGTTTATTTATGCTTGATGAGATGGATTCCTTCATGGAGATATTAGCGTACCCCCTTTCCCCCCTAGAAAGAGTTTGACTAAATCCAACTAGTGGACTGTAGCATTGAATAACTATTGAAAGGAGTGAATGGGCAACCAAATGGTGCTTACATCTAAAATAACTGCTAAATTTCTTTGCTTTTTGTAAGAGATTACTAATTACTCTAATTAACACTTAATTATGTACATTGCAGTCTTTGACAAAGAAAGAGGCAGAGGAACGGTTGAATGAGGTAAGTACTTGTTTCTAAGGAAGCTTTTAACTAACCTAAGGTTGCGCTGTTCAAGGATTTCGCTTATTAAGCTCTGGCCGTCACTTTTGAAAAATTCCTGTCACCTATTTAAGTAATTAGAGAACAACGTAAAATTTCAGTCATCAAGTTTTTGTTGCCTTCTTTGAAAGATTTTCTATTCACTTAGTAATCCTTTGCCGTTGCTTGTTATAAAAAAGCATCAAATATTTTATTTTGGTGTCGCTCATTCTACTCTAAAATCAACTTTTTTAGTTTTTTAATGTAATTCTAAATTTTTTGGTACAAGTTAGTAATAGTTGGGTAATTTATTACTTCCTCCGTCTTTTAATACTCGCAACGTTTGGACTTTTGCCACTATTCATATAATCTACTTTGATTATTTGTAGTGTTTTTTATATAAGATAAAACATAGTCATGTGAGATCTTGTTAGATTCGTCTCAATATGTATTTTCAAAATATAAACTTTTTATAATTTTTGCATAAAGAGAATTTAAGATATAAATGATCAAAGTTATGCATTGGCATGCGTGAAACTAACAAACGTTGCGAGTATTAAAAGACGGAGGAAGTATAACATATGTCATTTTTTCCAAGGTTAGTGACAATATTGTGTGAATAGCAATAATTAGCTGAATTCATCATTAACAATGATGGATCTTAGATCATTGCTAATTCCCCACTACATGCAGCTGGAGCACAACGCGACATCCAGTACTTGGAATATGATTAGTTATTCTACTTCTGCACTTATGCATATAAGTATTCACGTTGCTTTTTTTTTTGTTTGTTTCTAAGGGTATGAAAAGAGTAGAAGCTGCTTATTACCGTGAAAGTAAGGCCGTTGATGATTTGTTGAACATTGCCAAGGTATGAACTATGAGTCCTTGTTGATGAGGTAGTTCATCTCGAGATATTGCTGTTAGGTTATGATACATATGACAATTCATAAATCATGCGGAAAAACCATAAAGCCAGGAAAGCATATTATTTACACATAATCATTTAGCATAGAATGGATGCATACATGTTGTAGCGTGCCTTCCCTAGTTGCGCCCGAACCGAACAAGAACAAGCCTTTAGGACTCCAAATGTCGTCCCTCCGTAGATAGTCCACAGTACGTCCGGATCCGCCTCAAGTTAGACCAACTAGAATCGCCCTTAAGGTGCTTAGGAATTTCGGCTAGTGTTTGCAAGTGTATGGCTGATTTTTATTTCAAAAACTTACCCTTTGAATACTTCAATCGTACCCATAAATTGTGACCCTAGGCACCTATTTATAGGAGTATGGAAAAGGAATTGTAATCCTACTAGGATGTGGATTTGCTAGTTAGAACTTTATTAGGACTCTAAATAACAAAGCAAATCTAATAGGATTAGGATTTTAATCTTTGCACAAATCCTAATAGGATTAGGATTTCCCGCACACGCATCGCACAAGCCGTGCACCCGCGCAGGCCTTGCGGTCCACGACAGGCGCACAGCCCATGCTGCTGTGCTGCGCGCGCGCGCCCTTGGCTGGGCCTGGCCTTGCGCTGGGCCTGGTCGAGGCGTGCGTTGGTGCGTGCGGCTCACTGGGCGATGGCCTGCCTTCGTGCTGGGCCTTCGTCTAGCGGGCCTCGTCCGATGCTAATTCGTACGATACGCTTCCGATTAAATTCCCGATTCCGGAATTTATTTCCGATACGAACAATATTTAATATTTCCGATTCCGGAATTAATTTCCGTTTCGAACAAATATTTAATATTTCCGTTTCCGGAATTATTTTCCGATTCCGATAATATTTCCGATTCTGACAATATTTTCGTTTCCGGCAATATTTCCGATTCCGGCAATATTTCCATTTCCGATAATATTTTCCGATACGTACCATGTTTCCGTTTCCGGCAACATCTACGACTTGGATAATATTTATATTTCCGATACGATCCATATTTCCGTTTCCGGCAATATCATCGTTTCCGGAGTATTCATTTCTTGCTTGTGACGATCTCAGCTCCCACTGAAACCAAGATCCGTCGATTCCGAATATCCATAGATAGAGTATTTAATGCCATTAAATACTTGATCCGTTTACGTACTATTTGTGTGACCCTACGGGTTCAGTCAAGAGTAAGCTGTGGATTAATATCATTAATTCCACTTGAACTGAAGCGGCCTCTAGCTAGGCATTCAGCTCACTTGATCTCACTGAATTATTAACTTGTTAATTAATACTGAACCGCATTTATTAGACTTAACATAGAATGCATACTTGGACCAAGGGCATTATTTCCTTCAATTGCATTGTAGGGGAAACTGTTAGTGATCTCTATTTAACCTTTTGTGGATAGCATGCACAGGTTATTCATTTTCTAAACAAATTCTGTTATCAGTTCCTCTGCATGCAAACCTCTTGGCTAAAAATTGTAAATGGTGAACTCAATTTTACTACTGATTTATCATCACACGTGTTGGACGAATGAAGTTGTGAAAAATCTTGGTTGACAATTGATCATTTGATTAGTAAATGTACGCCCTCTGAACTGTGATCGTCTCTATATGGGATTAATGGTGACTGGTAGAGTGTCACGTCAGGTTAGCCAACTTTTAAAAAATGGTTGAGGTTAGCCAACTTTTAAAAACCGGGGATGTGACTCCTCACTATGGGCGCCATGCTTGAGATGTTCTGAAATTGTATAATTGCGACCATTTTTTACCAAATTTTGGTGCTTGTTAGGGTTTAAGCAAGTGTTTCTTTGTTAAATGTTGGACAAAATCACCTATGTTTTTTACTGCCCTATATTCATGCCCCTGCAAATCTGATTCACGTGCTTCTACCTTGTGATGTTTATTAAATAATCTATATCTGGATTCTAGGTCAAATTACTTGTGCATAAGCTACTAAAACGCTGTTAGCCTCTCCCTTATGATTCATTTTTCATTGCAGACTTTACGAGCTATGCCAGTGGTTGATCTGGAAACTCCAACACTGTCTCTTGTTGGAGCCCCTAATGTTGGGAAATCATCTTTAGTTCGTATTCTTTCAACAGGGAAGCCTGAGGTATTCAGAGAGCTGATTTTGATAATTAGTACTTGTTCTGAATTTTCTTTTGAAGCAGATGACTAACCAACTTGTTATAACCAAGCACGTGCCACGAAGGATTAGGAACAAACCCTGCAAGTACAATGCAGAATAAATAGCAAAAACATTAAAAGGACACAAGTGTTTACGAGGAAATTTATATTTCTTCCCCTCAAATAATATCGTATTATTAAGTTCCTGCAAAATAATACAATAACCCCCAAATTGATGATTCCTCTCACCAATGTGTTTTTCCCTCTCACTTTCTAGCTAGGCCTAAACCCTCCTTTTATAAGCTAAACTAGAAACCCTCTTCTACTAGAATTAGAATTATACTTGCACCCCAAGTCTAAATAATTTATAGAGATTGGTACATGCCAAAATATATCTAGTTTCCTATTTACATTATGTATTCAACTAGGAAACTAAACATAATAAACAAGAAACCAATTGGCAATTCAACAATCTTATGGAGTACGTGTATTTCCCCCTTGAAGATTTCCATTACAACACTAACTCCCTCAAGATACTTAGTTGACTCGTGTTTCTTATTTATTTTAGCATGTAACTTCAAGGCTCCGACTCGAGATCCCGCCGGTTGACATAAGTTGTGTTTATTTCCTAACACAAGTTATCCAGCAGTGTGAAATGGCGGGCTTGAGGTGCATTGAGGCAATATGGGTCCTAGAGCTTAGGCACAATGCATTATGTGTGCGCCTCATGGAAGTGAGGCACACTTCCGAGTACTAATAAAAACATCACTCTTATACATAATCCACTTGCATAGATTAGCAACCACTTTATCGTTAAACAAAAGATAGCATCGCACCATATTACACATTTCATTTATCCGAACTAGGAGCTGTGGGAAGAGGCAATATTTACTTCAAGCCATAAAATAAGCTAGAGGAAGGACTGGCTGCTTGTCCTTTCTGTCATTGTCTTCTTTCTGTCTTTTCCTTCCTTGACTCTTGGTACTCCGATCTAGGGATTTCTGTTGTTACAGAGATAATATGGTGGTGCAGTCCATAATAAATTCTAACCTGAAGAATATAAAAACCAAGCATTTCAATTATTATCCCAAAAAGCAGTGTGTCATGGGCCTCAAGCACTTGATGCGCTTCTTAATTTCTCTGTGCGCCCGATCAAAAGCGTGTGACTAATCCATTCTAAGCATATGGGATGTGGCTCCTGGAGCTTTAAAACCTAGATGTGTGGTGCGCCCTTTTCAAAATCTGCTTTCTAGTCTTGGTTGATATAATGATATCTGGGAGCTCTGTTCAATGTGAAGGAAAGCACTGAAATCAAGTTCCAAGAGGAAAATCAGAACTGTTAGTCTAAAGAACAGGCTTTTGAGTTATCCGTGTGCACCAAATGTGTGGATAAGAGCGATTAGTTACCTCTTGATTTGGACCAAAGATGCAACTTTCATGCTGCCATGATTTTGGATAAATTTAAATGATCCGTTGACTGATTTGGCTTAGGGAATCATACATTCATACCCTGCTGAGGAAATTTTACCATGCTATGGAGAAAAGGATATTGTATGGCTACAGATGATATTGTATGGCTATAAATGATATGAGTTTAGATGCGCATTTTATCGTGGATAGAGCTCCGTTAAGATAGTTTGCTCCAGTTGAGAGTTGAGACTAGTAGAAAATCATGTTTTAGGACTAAATTAGTTATTAAGATTAGTATAGTCATGGTTTTGAACTATTTGGCACCACTGCAATTAGTATTTTGGACAAACTAGGGCTATAACAGCTTGGAATTTTGGCCTTTCATCTCATGATGTGTAAATTCAATTGGTGAAAGGGAGTGAAGGAGAAGAGAAAACGTAAACAGAAGAGTGAATTTGGTGTAAATTTGAATCCTGTAACAGTGGCTCCCGTATGGCTTATGTTAGGCATGAAGTCCTTGAATGAAAACATAAAGTGGCATATGAAGCATGAATAGCTACTGTTTAACTCCACATCAGATGAAAGATGGACGAACCAAGATTACATTATCTTTTTAGTCAGTGAAGTGGTGTTTCCTACTGCTCAAATTGATACCTACCATATCCTCTTTACTCACTTTTTTTGTATTTTATGCATAGATTTTTAGATTGTATGGAATTCTATAGCTGTTGAGGATATGAAGCTTTGTGATTACATTTCTATTGAAAATGACTATTCCTTCAACATTTTCTCCAGATTTGCAACTATCCATTTACAACCAGGGGAATTTTGATGGGTCATATTGTTGTGAACTATCAGCGTTTTCAGGTCTGCATGAAAGTGTTTATGTATTTGTAATACGAAGTATATTAAATTATCAATGCTACTTTTATTGCGCAATTTGATATAAATTTTTTTGATAGGTAACAGACACACCCGGGGTACTCACGCGATTAGATGGTAAGTGAAGATGTTTTCTGCTTTCTTCGTTACATTCTAATTTATGTTGCTTCGGGTTGGAGTTGTGGATGAAATGGGCAGGATATTTATGGTACTAATGGAAGCCATGTGGCTTATCAGAACTTTATCTTTGCATATAGAAAGGGTCTAGAGTCATGTGAATGAAAATAGGCTAGGGTCAAGAGCCATATGAATGAAGATAGGCAAGGGTCAAGAACTCTGCAAATAGGAAGGTTTTTGCCAATTGCCATCAAATATGACTCGTATGGCTCATTAACATGTATCAGTTTTGTCAGTCCAAACATACTACTCCATCCGTCCCAAGTTAGTTTTGACACTTATCATAGCACATAGTTTTAGGAAATAAAATGTTGTGTGATTATCATATATTATTTTGTTGGCAAAGTAATGTGAAAAGTGATAGTGGCGTATTATTTATTGAAAAGTAAATGTGATAATATACTGGATGATATTTTAATTGAATGTGAAAAAGTGTGATATCCTAACTTTTTGGTAGTGTATAAAGGGAAGTACTAAATTATAATTTAGGGTCTTCCCCAAAATAGAAGTGTAAAAACTAATTGGTACGGGTGAAAATGGAAAGTGTAAAAACTAATCTGGACGGACGGAGGGAGGGAGTACTCAATAGTATTGGTGGAAATCGAGTCGATTCGACTTAAGTAATTGTTGATCCATTTAGGTTGGATCATAATTGTGTAAGGAGCTTTTCGGTTACGGTATAGGTCAAGACAGTTAGACGGGTCATTCGGGTCAAGAGACTTTTTCTAACATTTGTGCGTTGATTTTTCATATCCGTACACAAATTTCCCAATGTCACATCTCAAAATTTAAGTTTATTATGTTCAAAAAGACTTTATTTTTTCTAAATTATTGTTGAAAAAATAATAAATAACTTTGTTGCATTGCTTAATCTATTTGTTGCATTCTTAGCTTTGATTCTTACTTCACTGCTCATTTATTGTATCTAAAAGTATCATGTGTGTTTTGATTTGCTTAATCTGAAGAGGAGAGGAACAATTTGGAGAAGCTGACTCTTGCAGTCCTCACACATTTGCCAACAGCAGTAATTTATGTTCATGACTTAACAGGAGAATGTGGAACTTCAGTTTCTGACCAGGTATATAATTTTTGTTAAGAATTGATTTTTGTTTGAAGATATGGTGTTAGAATCCGCAAAAATATGTCCACTTCATTTGTTCATCTGATCATAGATGTATAAGCCCTTTTCTCTGTTTGAACTTTTAGAAAGGCAAAATTTTCTTATGCTATATTTTTAAAATTTCTTGATTTCCCAGTTATCAGCTCTCTTTCAAACTTTCGATAAACAACAATCTTGTGTACTTCCATAGGCATGGTTCTAGGAAGGCCCATTTGTTACACGGCCTCACTCCTATCTAGTGAACTAGAAGATAGTAAGACGTGCATGGTGATTGTAGTTGTTGCATTCCCAAATATTTGATTGGTTATGATGATTACGCAGTTCACAACGTACACAGAAATCCGGGGAAGGTTTAGCAAGCACCTTTGGATCGATGTTGTTTCCAAATGTGATATTTTGCACGAGTCCCCTTCCGCCTTCATAACTGAAGACTTGACCACTGATGATGCGGATTTGGCAAGATATCGGATTTTTGGGCCTGAAGGAGCCATGCGTGTATCCGTGATGAATGGACATGGTCTGGATGAGGTATGTACTGAATCTGTCTTGTACTTAATAGGATTTGTATACACAAACAAAATGGTACTTATATATCAATTGTTAGAAGAGATTTTGCTGATTTTATCATTCTTTATGCTCCTGTCATTTCCTGGCCTATATTTTTTCTACAAATCTTGTTACATTTTATTGATGGATTCTCAATGGCGTCTCTTTTACTTATTTATTGCAGCTGAAGGAAAAGGTTCATAATATGCTAATCTCCCAATCAGAGAAGATCAGAAGGCAGATAATAGATCCAAAATGTGATGCAACTCCTACATGAAAATAGTTTTGTGTATGATCCTGGTGAAGATTCGAGGACACAAAGTGCGCATAGCAGATATGCTGCTCGGCTCGTGCTGGAAAGAAACATGATAACTGGATTATATACATTTGGGTACTTTGCTACACCAAACCAGTTCTAATGGAAGAAAGTCCGTAAGAGAAAGCTGTTAAGACACAGAAAGAATTACTATGTGGTTTGGATTTTTGTATCTCTTGTTGAGTTCTTGATGGCCCTTGGGGGTAAAACCTAAAAATCCCAAAGCTTGTAATTGTTGTATATTGAGAAATACAAGTAGGATTATTAAGAGTTAAGGGGGAAAATGCAATTACTTATGTTGTAAGTTGTAACATTATTCAGAATCTTTAATGTAGTTTAGTTTTTCTTCTCAAACTTAGTGCATCG CTAAATTGAAGTCACTCTTTCGTAGACCACCAACAAAGCTGTGCGCCGGAGTTCAAAACTTCACCAGTAACTAAAGCTTTCTTCTACTGTTACAAGAATAAATAAACAGCGAAATGATGGGAGCTTCCAACATGCTCGAATTATGTCGGATTCCTTCCAACAGATTCTTATTCGGAACCTCCAAACTCATCAAAGGTTCTAGACAAATACCCAATAGATCATTTTATCCAATAATGTGTTTATGCAAAGAGATACAAACAACTACTGCTGAAAAAATCATGGGTGCAAGTTATATTCCTGATACCAAATTCAAAAAGGAAACCAAATTGAAGGTTAATGAACCAGTAGTTATTGAAGGTGTTGGTGCTTTTCAAAAGCTACCTATGGTAATGCCTTCTGTTGATATAATTCAATCCGCTATCCGGAAAGCTAAGAAGGTTTCAGCTACAAAGGGCATTGCTAATATTGCAAAGCGTGAGAGGAACCGGGGCGCTAAGCAACTTGATGCGCTGATGAAGGAGTTGGCAGTTCCCCTTAGATTGTATACAGAGAGCTTCCCTAACAAAAATCATTTGCATCCTTATGAGCGTTCTCTTATCGAGTTGACTCTTGGAGATGGGAATTATGAAGAGGTTTTGTCGAAGGTAAATAACCTGCGAAAGAAGGTTACAGCTGTTGCAAAGGAACATGCTTCTGTTTGTGCCAAGTCTTTGACAAAGAAAGAGGCAGAGGAACGGTTGAATGAGGGTATGAAAAGAGTAGAAGCTGCTTATTACCGTGAAAGTAAGGCCGTTGATGATTTGTTGAACATTGCCAAGACTTTACGAGCTATGCCAGTGGTTGATCTGGAAACTCCAACACTGTCTCTTGTTGGAGCCCCTAATGTTGGGAAATCATCTTTAGTTCGTATTCTTTCAACAGGGAAGCCTGAGATTTGCAACTATCCATTTACAACCAGGGGAATTTTGATGGGTCATATTGTTGTGAACTATCAGCGTTTTCAGGTAACAGACACACCCGGGGTACTCACGCGATTAGATGAGGAGAGGAACAATTTGGAGAAGCTGACTCTTGCAGTCCTCACACATTTGCCAACAGCAGTAATTTATGTTCATGACTTAACAGGAGAATGTGGAACTTCAGTTTCTGACCAGTTCACAACGTACACAGAAATCCGGGGAAGGTTTAGCAAGCACCTTTGGATCGATGTTGTTTCCAAATGTGATATTTTGCACGAGTCCCCTTCCGCCTTCATAACTGAAGACTTGACCACTGATGATGCGGATTTGGCAAGATATCGGATTTTTGGGCCTGAAGGAGCCATGCGTGTATCCGTGATGAATGGACATGGTCTGGATGAGCTGAAGGAAAAGGTTCATAATATGCTAATCTCCCAATCAGAGAAGATCAGAAGGCAGATAATAGATCCAAAATGTGATGCAACTCCTACATGAAAATAGTTTTGTGTATGATCCTGGTGAAGATTCGAGGACACAAAGTGCGCATAGCAGATATGCTGCTCGGCTCGTGCTGGAAAGAAACATGATAACTGGATTATATACATTTGGGTACTTTGCTACACCAAACCAGTTCTAATGGAAGAAAGTCCGTAAGAGAAAGCTGTTAAGACACAGAAAGAATTACTATGTGGTTTGGATTTTTGTATCTCTTGTTGAGTTCTTGATGGCCCTTGGGGGTAAAACCTAAAAATCCCAAAGCTTGTAATTGTTGTATATTGAGAAATACAAGTAGGATTATTAAGAGTTAAGGGGGAAAATGCAATTACTTATGTTGTAAGTTGTAACATTATTCAGAATCTTTAATGTAGTTTAGTTTTTCTTCTCAAACTTAGTGCATCG ATGATGGGAGCTTCCAACATGCTCGAATTATGTCGGATTCCTTCCAACAGATTCTTATTCGGAACCTCCAAACTCATCAAAGGTTCTAGACAAATACCCAATAGATCATTTTATCCAATAATGTGTTTATGCAAAGAGATACAAACAACTACTGCTGAAAAAATCATGGGTGCAAGTTATATTCCTGATACCAAATTCAAAAAGGAAACCAAATTGAAGGTTAATGAACCAGTAGTTATTGAAGGTGTTGGTGCTTTTCAAAAGCTACCTATGGTAATGCCTTCTGTTGATATAATTCAATCCGCTATCCGGAAAGCTAAGAAGGTTTCAGCTACAAAGGGCATTGCTAATATTGCAAAGCGTGAGAGGAACCGGGGCGCTAAGCAACTTGATGCGCTGATGAAGGAGTTGGCAGTTCCCCTTAGATTGTATACAGAGAGCTTCCCTAACAAAAATCATTTGCATCCTTATGAGCGTTCTCTTATCGAGTTGACTCTTGGAGATGGGAATTATGAAGAGGTTTTGTCGAAGGTAAATAACCTGCGAAAGAAGGTTACAGCTGTTGCAAAGGAACATGCTTCTGTTTGTGCCAAGTCTTTGACAAAGAAAGAGGCAGAGGAACGGTTGAATGAGGGTATGAAAAGAGTAGAAGCTGCTTATTACCGTGAAAGTAAGGCCGTTGATGATTTGTTGAACATTGCCAAGACTTTACGAGCTATGCCAGTGGTTGATCTGGAAACTCCAACACTGTCTCTTGTTGGAGCCCCTAATGTTGGGAAATCATCTTTAGTTCGTATTCTTTCAACAGGGAAGCCTGAGATTTGCAACTATCCATTTACAACCAGGGGAATTTTGATGGGTCATATTGTTGTGAACTATCAGCGTTTTCAGGTAACAGACACACCCGGGGTACTCACGCGATTAGATGAGGAGAGGAACAATTTGGAGAAGCTGACTCTTGCAGTCCTCACACATTTGCCAACAGCAGTAATTTATGTTCATGACTTAACAGGAGAATGTGGAACTTCAGTTTCTGACCAGTTCACAACGTACACAGAAATCCGGGGAAGGTTTAGCAAGCACCTTTGGATCGATGTTGTTTCCAAATGTGATATTTTGCACGAGTCCCCTTCCGCCTTCATAACTGAAGACTTGACCACTGATGATGCGGATTTGGCAAGATATCGGATTTTTGGGCCTGAAGGAGCCATGCGTGTATCCGTGATGAATGGACATGGTCTGGATGAGCTGAAGGAAAAGGTTCATAATATGCTAATCTCCCAATCAGAGAAGATCAGAAGGCAGATAATAGATCCAAAATGTGATGCAACTCCTACATGA MMGASNMLELCRIPSNRFLFGTSKLIKGSRQIPNRSFYPIMCLCKEIQTTTAEKIMGASYIPDTKFKKETKLKVNEPVVIEGVGAFQKLPMVMPSVDIIQSAIRKAKKVSATKGIANIAKRERNRGAKQLDALMKELAVPLRLYTESFPNKNHLHPYERSLIELTLGDGNYEEVLSKVNNLRKKVTAVAKEHASVCAKSLTKKEAEERLNEGMKRVEAAYYRESKAVDDLLNIAKTLRAMPVVDLETPTLSLVGAPNVGKSSLVRILSTGKPEICNYPFTTRGILMGHIVVNYQRFQVTDTPGVLTRLDEERNNLEKLTLAVLTHLPTAVIYVHDLTGECGTSVSDQFTTYTEIRGRFSKHLWIDVVSKCDILHESPSAFITEDLTTDDADLARYRIFGPEGAMRVSVMNGHGLDELKEKVHNMLISQSEKIRRQIIDPKCDATPT Relationships
The following mRNA feature(s) are a part of this gene:
Homology
BLAST of Spo11430.1 vs. NCBI nr
Match: gi|902235768|gb|KNA24071.1| (hypothetical protein SOVF_018270 [Spinacia oleracea]) HSP 1 Score: 876.7 bits (2264), Expect = 1.700e-251 Identity = 446/446 (100.00%), Postives = 446/446 (100.00%), Query Frame = 1
BLAST of Spo11430.1 vs. NCBI nr
Match: gi|731360729|ref|XP_010691976.1| (PREDICTED: nucleolar GTP-binding protein 1 [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 748.0 bits (1930), Expect = 9.200e-213 Identity = 374/446 (83.86%), Postives = 411/446 (92.15%), Query Frame = 1
BLAST of Spo11430.1 vs. NCBI nr
Match: gi|698556327|ref|XP_009770734.1| (PREDICTED: nucleolar GTP-binding protein 1 [Nicotiana sylvestris]) HSP 1 Score: 596.3 bits (1536), Expect = 4.500e-167 Identity = 295/435 (67.82%), Postives = 357/435 (82.07%), Query Frame = 1
BLAST of Spo11430.1 vs. NCBI nr
Match: gi|697117600|ref|XP_009612741.1| (PREDICTED: nucleolar GTP-binding protein 1 [Nicotiana tomentosiformis]) HSP 1 Score: 595.1 bits (1533), Expect = 1.000e-166 Identity = 294/435 (67.59%), Postives = 355/435 (81.61%), Query Frame = 1
BLAST of Spo11430.1 vs. NCBI nr
Match: gi|747043700|ref|XP_011085248.1| (PREDICTED: nucleolar GTP-binding protein 1 isoform X1 [Sesamum indicum]) HSP 1 Score: 588.6 bits (1516), Expect = 9.300e-165 Identity = 294/433 (67.90%), Postives = 352/433 (81.29%), Query Frame = 1
BLAST of Spo11430.1 vs. UniProtKB/TrEMBL
Match: A0A0K9RX40_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_018270 PE=4 SV=1) HSP 1 Score: 876.7 bits (2264), Expect = 1.200e-251 Identity = 446/446 (100.00%), Postives = 446/446 (100.00%), Query Frame = 1
BLAST of Spo11430.1 vs. UniProtKB/TrEMBL
Match: A0A0J8E9V3_BETVU (Uncharacterized protein OS=Beta vulgaris subsp. vulgaris GN=BVRB_1g017170 PE=4 SV=1) HSP 1 Score: 748.0 bits (1930), Expect = 6.400e-213 Identity = 374/446 (83.86%), Postives = 411/446 (92.15%), Query Frame = 1
BLAST of Spo11430.1 vs. UniProtKB/TrEMBL
Match: K4CW72_SOLLC (Uncharacterized protein OS=Solanum lycopersicum PE=4 SV=1) HSP 1 Score: 585.1 bits (1507), Expect = 7.200e-164 Identity = 297/435 (68.28%), Postives = 353/435 (81.15%), Query Frame = 1
BLAST of Spo11430.1 vs. UniProtKB/TrEMBL
Match: M5XJK3_PRUPE (Uncharacterized protein OS=Prunus persica GN=PRUPE_ppa005854mg PE=4 SV=1) HSP 1 Score: 582.8 bits (1501), Expect = 3.600e-163 Identity = 300/435 (68.97%), Postives = 351/435 (80.69%), Query Frame = 1
BLAST of Spo11430.1 vs. UniProtKB/TrEMBL
Match: B9GP41_POPTR (Uncharacterized protein OS=Populus trichocarpa GN=POPTR_0002s13590g PE=4 SV=2) HSP 1 Score: 572.4 bits (1474), Expect = 4.800e-160 Identity = 298/439 (67.88%), Postives = 347/439 (79.04%), Query Frame = 1
BLAST of Spo11430.1 vs. ExPASy Swiss-Prot
Match: NOG1_HUMAN (Nucleolar GTP-binding protein 1 OS=Homo sapiens GN=GTPBP4 PE=1 SV=3) HSP 1 Score: 129.4 bits (324), Expect = 9.700e-29 Identity = 91/357 (25.49%), Postives = 165/357 (46.22%), Query Frame = 1
BLAST of Spo11430.1 vs. ExPASy Swiss-Prot
Match: NOG1_ENCCU (Nucleolar GTP-binding protein 1 OS=Encephalitozoon cuniculi (strain GB-M1) GN=NOG1 PE=3 SV=1) HSP 1 Score: 127.5 bits (319), Expect = 3.700e-28 Identity = 75/238 (31.51%), Postives = 121/238 (50.84%), Query Frame = 1
BLAST of Spo11430.1 vs. ExPASy Swiss-Prot
Match: NOG1_RAT (Nucleolar GTP-binding protein 1 OS=Rattus norvegicus GN=Gtpbp4 PE=2 SV=3) HSP 1 Score: 126.3 bits (316), Expect = 8.200e-28 Identity = 79/288 (27.43%), Postives = 142/288 (49.31%), Query Frame = 1
BLAST of Spo11430.1 vs. ExPASy Swiss-Prot
Match: NOG1_MOUSE (Nucleolar GTP-binding protein 1 OS=Mus musculus GN=Gtpbp4 PE=1 SV=3) HSP 1 Score: 126.3 bits (316), Expect = 8.200e-28 Identity = 79/288 (27.43%), Postives = 142/288 (49.31%), Query Frame = 1
BLAST of Spo11430.1 vs. ExPASy Swiss-Prot
Match: NOG1_ASHGO (Nucleolar GTP-binding protein 1 OS=Ashbya gossypii (strain ATCC 10895 / CBS 109.51 / FGSC 9923 / NRRL Y-1056) GN=NOG1 PE=3 SV=1) HSP 1 Score: 126.3 bits (316), Expect = 8.200e-28 Identity = 68/228 (29.82%), Postives = 120/228 (52.63%), Query Frame = 1
BLAST of Spo11430.1 vs. TAIR (Arabidopsis)
Match: AT1G80770.1 (P-loop containing nucleoside triphosphate hydrolases superfamily protein) HSP 1 Score: 518.8 bits (1335), Expect = 3.200e-147 Identity = 270/421 (64.13%), Postives = 328/421 (77.91%), Query Frame = 1
BLAST of Spo11430.1 vs. TAIR (Arabidopsis)
Match: AT1G50920.1 (Nucleolar GTP-binding protein) HSP 1 Score: 115.5 bits (288), Expect = 8.200e-26 Identity = 72/278 (25.90%), Postives = 132/278 (47.48%), Query Frame = 1
BLAST of Spo11430.1 vs. TAIR (Arabidopsis)
Match: AT1G10300.1 (Nucleolar GTP-binding protein) HSP 1 Score: 107.8 bits (268), Expect = 1.700e-23 Identity = 58/228 (25.44%), Postives = 113/228 (49.56%), Query Frame = 1
BLAST of Spo11430.1 vs. TAIR (Arabidopsis)
Match: AT5G18570.1 (GTP1/OBG family protein) HSP 1 Score: 51.2 bits (121), Expect = 1.900e-6 Identity = 25/57 (43.86%), Postives = 36/57 (63.16%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo11430.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo11430.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo11430.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 5
BLAST of Spo11430.1 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 gene is annotated with the following GO terms.
RNA-Seq Expression
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