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.AATTAGTTCCAGTGCATAAAAGTGGTTTAACTGTTAAACCGTATTTGCTAAAAGTTTGTAATATTAGATAGATTAACAGGTCTGTTTATCTTCATCTCCTTCCCCCTTCCTCCTCCTCAGTCCTCTGGCATTCTCCTCCTCTTAAAACCCTAACAACAAAAGCAGCGTCTTGTATTAGTTGCTGTATCCATAGTCGTCGCCGTCTTTGCCGACCACCTCCCCTTCTCTGGTGCTGCTATTCTCGGTCAGTCGTTTTTTCTGTTCATTTTATTTTGCAATTTTCTAAATTGTTAAATATATTATGGGTTGGGTTTTTTGTTATCTTTGTTTTGGTGTTGTGAGATTCGTATTATAGTTGTATGATCTGTTTCGATTTTTCTGATATGATGGGTTTCAAATTGTTAAATGTACCTGTTGTGTTTGTTTTGGTGTTTTTCATGAGAAATTCTACTTGGAATTCGTATAATCCTATTCAATTTTTCTGACAATAACCGTTGTATCTTTCCTTGGGCCCAGGGAGGACGCCCCTCCTGCCCTGCCTCAGGGACGGGCCTGATCGCATTGAGATGTATATGTGTAATTGTGATTTATGGCGTTAATGCTAACATGAACCCCTCTTCCTTTTAAATACACTACATTCCATATATTTTCTCGTAGTTTTTATTGAGCTTTTGATTAGACAGATATTTGACTTTGGTAAGATGGTTTAACACTTCTAAGGGATTAGTGATGAGATTAGAGTCGTAGTTGATGCTAATTGGACGTGGAATGAGTACCTGGTTCACACACTTGGATGCAACAACGAGTTGTCAGTAGTGTGTCGGTGTTGTCCGCTGTTTTGAGACGGCAAAGGTTCTTGATAAGATCTCTAGGAGGCAACCCTGACCAGAATTGCAGTGTGAAAATGAATGTGTTTGAGGCTGATGTTTTGAATGTCATCAGAAGGATCACTCCTACCCTTGACTTATCAAGACACAAAGGACAGGCTGGTAAACTCATGCCTTCTCTCTTTTCTCCCATTAAGCTTTTGGAACTGAATGTGTCCCTTTGAGAATTAAAAGGACATCTTATTTCATTTTTCTAGTGTATATATTGTAGTAGTATGCTGCTGCTTATTTTGGGTATAATTAGCATATTGTTTCTCTATTTGTCTCGAATGTATGTAAATGGTGTGAGAGAAGCAGTTAATGAGAAGCGCACCTAAGTTACGCCCAAGGCAATAGGAGTCAAGTGTTTTCTTTGCTAGAGAAGACGTTTCTAAAGACACCCAAAAGCGCACCCAACCACACAGAAAGCATACAACTATTTTTTACCAAATTTTTTAAGAGTCTACTACTTCCTTAGTTCCTTAAATATTGCACCATGGTTGACTTTTATTCCTCCAATTTATTATTTTGACTCTTAATATCTCAAATTATGTATTAGTAAAAGTTATAAAAAATGATACTAGAAAAAATATATATTGATACAAATCTAACATGATCCCACACAATTAAAGCTGCGCCTTGCCTATGAAAAGCGTGGGCTTTCTCTTTTGCGCCAAGCACTGAGGCTCCAAGGACCCTTTGCGATTCAGTGTGCTTCGTGTCTTTTAAAATTAAGGTGTGAATATTGTAAAAATCAAATTGGTGTGATGTTTAAGGAACAAAAGAAGTATATCAGTTAAGCCTTTGCGCTTTGACTTTTTTTTTGAGGGAAATGTAAGCTAGTATATTAAGATAAGAACAAAGTGTCCATGAGTACATACAGAGTAATATCCCGAGGACATTGATTTTTCCAGATTTGTTTAACTACGAATGAAACTAGCTTAACAAGATGATATGCTACAAAATTGCCCTCTCTTTTAACATGAGACCAAGACACAAAATTATAACGAGTGCTCAAAAACAAAATATCGCTCTGGAGTAATAAATGACACCCTTGTGAGCTTGTTTACGAATAAATGACACTTTGCGCTTAGGCTTTAGGACCCTTATCACCTCATTTAAGAGGAGATTGGTTAGGTTTTCCCAGAGATAATATTTGACTTCTGCTACAACAAGAATGGATAAGTTTGAGTATGGGTTCTTAACACTCAGAAAATTCACGAGTTGGGGGTAGCTAAATTAAAAGTTTGAGCAGCTAGGTGGGATTTGTACACGCATCAGAGTGCATTTTATATGCTTTTATTTTATAGATAGAGAAAGGCCGGGTGCGGCGGGTGCCTGGGTATGATTCAAGAATGTTTTGATGTATTGTTCAGTTGTGAATCTGTGATAATTTTCCCCTAAATATTTTTCATATGTAGCATTCTCGCTATCTTTGTTGTGAATGTGCTTAAAGGTTCTTACATACTAGCCGCAATATGTCAGGGAAAATAGCTGTTGTTGGAGGTTGTCGAGAATACACCGGCGCTCCTTACTTTGCAGCAATCTCAGCTTTGAAAATTGTCAGTCAGTTTCCAAGTTGAATACTTGTAATACTTTACAAATTGCATCAATTTATTTTTCTTTCACTGTTTTGGATCTGAGTCTTGGTGGCCTTGTTTTCTTCCAACTTAGGGTGCAGATTTATCACATGTTTTTTGCACTAAAGATGCAGCTCCAATTATTAAAAGCTACAGCCCTGAATTAATTGTGCACCCGGTTTTGGAGGAGTCATATAACGTCAAGTAAATTTTTTGATCTAGATGCTTCAGTTTTGTTGTTCGTAATTTTTATTCGTTTGATGTTGCCGGTAATCTATTCTGGAATGTCAATTTTTAGGGACGAGGACAAAGGATTTATTGCTAACAAGGTTCTTTCTGAAGTTAATAAATGGATGGAACGATTTGACTGTCTTGTTATTGGCCCAGGCCTCGGTAGAGATCCATTTCTTTTGGTGTGTCTTCTTAACTAGATTAGTTATTTTCGTGTTAGATGATTAGCACTTTACAAAGAAATTTTGATTTTTTTAGCTGCGCTGCGTATTTAATTCTTTAATAACATCATTCTAGAGTATATGCAATCGACACTTTTTGCAACTAGTGTGGGAATTGGCAACTAATTGGGTGATTCAAGTATTATTCTCTATACCGAGTATTATTGAAATGGTGTTTTTAGATTAAAACGTTGATAGCATATTTCTGCCAAAACTCTCTAATAAATGTGACTATGTGAGTGAAGGAGAGAAGGGTTGTGGTTGAAGTTGTTTGCTATATTGAACCTTACTAGGCTATTTTATTTTGGAGCTTGCACCCTTTTCTAGTTTATTTAATATTTATTCAACTTTTTTTGTGTACTTTGTGCCTTTAAGGAGAGCAGAGTTGTGGTAAGCTCAAGTTTTCTCCATCGAACCTTTCTCAGTGCCATATTTTTTTTTTGTGTACTTGCACCCCTTTTTTTTGGTTTATTTAATATTTATTCAACCTTTTGTGTACTTTATGCCTTCAAATACTCCTATTGTGTTAAATCTTAAAGCTGTTCTACCTTTTGTTGCTTCATTTCAAGTTTCATGTATATTTGTTGTGCAGGATTGTGTGAGTGAAATTTTGAAACATGCTCGGCAGTTGAATATCCCACTTGTTATAGATGGGGTATGTGTTTAAACATGCTCGACGGTTGAATATCGCCATTAATTTTATACTTCCTGCGTACTCTTTTTACTTGCAAGGATACAGGAGATTTTCGTGTCGTTTACGAATACCACCTAATCAAACAATATTTCTAAAAACACCTAACCAACGCACTATATTGATAATTGATTATAGTGGTAAGTGTAGGGATCTTTCCAAGAGAATGGATGTTCTTGGTTTATCAACTAAAGGAGTACGAGCTAGTTTAGTAAAGAGAGGAAAGAGTTTGGATCATAAGGAAACAACTAAGACAATCTAAAAATTGATCAAGAATAAAAGACAAGGGGATTGGGGTTCGATATGGATTCATTGGGCAAAGACAAGGGAGAAACATGCTTGATATTGCAAAGACTTGATACAAAAGGGAGTCAACCAAAGTTATAAGCATTTAAAGTCTTTCGGTGAAAATCCATAGTCTAATTCTATTAGCAAGCTCTCGCTCCACCATGAAACTACAATGACTCTATTAATCATTAAGCTAACCCATATGCTCTTACTAACCCTCAATTCACTCACTAGTTTAGCATTTGTAAATACTAATCTCGAAAGACATGAAATCCTTTTCATCAAATCATTTAACCACATAGCTAACATTGAATCAACCCTCTATATTCCCCAATTACTGCCCCATATTTACACCCCTACCCGTAGAAATGACTACTCACTACTCATATCAATGCCGTCAATCAATTCATGAAGCAACTTCATTATGTAATAACACGAATATCAATTATTAATGTAGAATTGGAATCTATGCCATGATCAGAACAACCACAAACACTGCCTTGAATTCCACTAACTCTCTATTTGCTGGACAAGAAATTATCAAACCACAATAGTATGGAGTTAAGATGGCACAATCAATGCAAACCATTGAACAAAAACAACGTGAATAAAATTCAAACTTGTTTTTGGGGTTTTCTCAATATTATGGAACTTCAACAAAATTGATGGAAAAAAAAGAAGATTAAGCAAAGAAACAAATGAAAGATTAAGATAGAGAAGAAGAATTTTACAATTGAAACTTCAAAGCAACACTTGAATTCATGAATCCAAAGAGTATCAACACTAAACCCTAGCTTTCTTTGATAATTGTGCACGGGCACGGGAATTATATGCGTGTGGCGCGTGCGCACAGGAGGGTATGTGTGCGCACAAGCCGACGGAGAAAAATCCATCTTTCTTCGATCTCTTGGCATGACTACAATTGGAAAAGGCACCTAAGGAGCACAATACCCTACAACAAACACAACCACCACAATTTCCACAAGAAATCACCAAAAATCATCAATATCACAAAAATTCGATCACTAACAAGTAACAAAAATCCACAACAAAGCATAAATAATACTCCTAAAATGTAAAGCCGCACCTCAAGCAACAACAAACATCAACAAAAAAAATCAATACTACAACTATTCAACATGACATGAAAATTTCAAAAAATTAAAGCTAGAAAGGCATGTAAATGGATTGAAATTCGTCACCAAGTAGAAGAAAGGTGACCATGAACGTTTCCAAGTACTCCTCTCTCCAATAGAGAGAAATTTTGAGGAGTTTGCGATGGATAAGAACTCGGTTCAATAGCAATAATCGATTTGAGCTATTGAGAAAGAGTTCTCCCGACCAAGACCTACTTAGCCCTATGCTTGGCTCCGAGATCACCTACGCATATTACAAGTAATAAGAAGCATATAAAAAGGCTATATAATTTACACAAACAACTAAGTAATTCTAACCTTAGTTTTATAAAGCGCGCTTAGAAGCTCGGAAGCTCGCAGAAGAACGCTCATGCGCTTCCTGTAGTCTAGGCAGGCACAACAGACCCTTCTTTTTAATTAAAAATAAAGCCACATGACTCTAATCTTCTTTTTAAAGTATCACGTGATTTCTTTTTTTTAAAAAGCGAATATTTGGGGGGTTTTTGAAAACCCTAGTGCAATTTTCATCGTAGCCGGATTTCTCTAGCCTTCTCGCCGGATTTCTCCAGTCGGATTCTGAACTTTTCCTTCATATTTTCGATTTCTCTTTTTTTTCATCTTTTTCTTTCCATATTTTCTCAATCTCTTCTGAACTTTTGAAATTTTATTATTTCTTTCCCGGTGCTCTTTGCCTACGAAAAGCGTGCGCTTTCGATTTTGCGCTTAAGCTCCGGGCGCTTCGGTGCGCTTGGCACTTTTTAAAACTAAGATTCTAACAAGTGAACGATAAAGTAAAGCAACGGCTAAAAATCTAGAAAAACGAGAAATAAATGGAATAAAACAACGAAAAAAAGAAATGAAATCCTAAGCTAAGAGCGACATAAATGTCGTTGATCACAAGGTTGCAACTTCACTATATTTTGTAACGTTTTAGTGATAAAATACCATTTTATTTCCTTATACTCTCCTCATCCCTTCTTCCCTTTTGCTGGTTAATTCCATAACAACTACACTCACAAAACCCCACCTATATGTCCCTTAGCCACAACCACCACCTTTGCTGGTTGTCTCCCAAAACCACTACCATTTGTACTCCTACAATCACCGTTAGTTGCACCAAAACAGATCCATTTCCCTCCCCCACGTGAAGCTCCCCGGGCCTCTTTGATCTTCGCCGTCATCGTCATAAAAATCGAACAATTTCATATTCAAAGAAACCAAAAAGTGAAGAGGTGGAGAAAGAGAACAGAAACATGTCGAGATTTACTTACCATTAAAAGAGATCAAGAGAGAGGACCAAGCGTAGATCTAGTTTTTGAAAAATAAATTAATAAATAAAGAATAAAGATGGAGGAGAGAGGGGATAATGGAGAGTTTAGAGGTGGTGGTGTGATTAATGTCACGAAGGTGGCGGCATACGAAAATTGTCGCTGGAACCTGGAAGCTAGAATGGGAGTGGGAGGGTAGGGGCTTGTCGCTGGTTGTTTGCCGGTAAAATTGGGATGAGTTGGAGAGAGGAACAGGGAGTAGTAGAGAGTAAGGGAAAGGGTATGTGGAGTTGTGGACTTTGATAGTCATGGGGTAATATTGTCATTTTGACTTTCACCTTTTTACTTGGTTTGTGTTCCATTCCACTTGGTTGCAAGTAAAAAGAACGGAGGAAGTATCATTTTATACTCCATGTGATAAAATTTTATGTTCTACAAAAATCTTCTCTTCAGGATGGGCTATTTCTTGTGACCAATTCTCTTGGTCTGGTTAGTGGTTATCCTTTGGCTGTGCTTACACCAAATGTGAATGAGTACAAGCGCCTTGTGAAGAGAGTTTTGGATTGTGAAGTAAATGATGACGAATCTGCAGCCGAGCTATTGTCTCTTGTTAAAGGGTAAATCACCTAGATGTACACATAATATTGTAGTATTCCTCTATAGTGTACCACTATTTGAAGACTGATGTAAGTGCCAGTGTGTCAACTTAAGGGGGGAGGAAAATAACCGGGACAACTGAATAATATAAGTAATACTCTATTTAAAGCTTAGCTATATAGGGAGATGAGGTTTCAGCTCCCAACATGGGCAACATCAAGGTTGGAAAGGAGACCTCTAATCATAGCCTTTCAAGGCGTGTTTACTCCCTCCATCCCCAAATAAAGTTTCCATTTCTCTTGGGCACAAGTGTTGATGAGAGAAATGGTAGTGCGGTTTTGTTGATTAATAAAAAAAATGGAAATTCACATGTATAACCCAAACAACCGCGTGGGGTTGGGGGAGGACAAGTGTTGATGAGAGAAATGGTACTATTTGAAGACTGATGTATAACCTGGTATAGCTGGTGAACTTGCTACGTGGCTTAGTTACACAAGTGGGTCCCACACCCGCACATGATCTAATGTAGGACTGCTCTCATTTATAATAAAGGCATAGTAAATTTTCTGGGTTCGAATCTCGTGGGCAGCCATAACCATCAAAGAACGAAGAGAGCGATAGGGAGAAAGGAGAAGATAAAAATTCCAGCCAGCCAGAGATGATTGTGAGATAAGTGAGGGAGCAAAGGATGAGTTATTTAGGAAAGTGTTAAAACTAATATCGGATAGATCAAGTTAGTGAGTAACATGAGTTAATGGTGAAAATGGTGGTGGTGCATTTTTTCTCCGCAAGGGGTAGATTTAGCTATTTAGTAGGGTGTTGATTCATTTTTGGAGGTCTGAAAAGGGAAAAACTGTTGGATGGAATTTGTTACACTTATAGTCAATTTCTTTACATGACATACCAGTTGCAAGTCACTTCAGAGTATTCTAGGAAGGGTGACCTAAAAGTTATGGTTGGAATTGTTCATTTAAAATTTTCCTTAAAAACACGAGTTAGTAGAGGGGTTTAGTTTAATATATTTTTATTATGTGGTGAGAGAAAGTGGGGTTTTGTTGATTCAATTTGAATGCTGTATGAATTCATTGGCTTAATTAACTGAGGGAACTCTGGATTCCTTAGGATTGGAGGTGCAACAGTTCTGAGAAAAGGAAAGTCTGATCTCATTTGTGATGGTGACTCAGGTGCTATTTCATTATAGTTATTTTAACTTCTACATGTTTATTTGACGAGAGGAGTAAACTGTGAAATTTGAGCTTCAATGACATATTTTTGGGTTTATCTTTGCTCATGCTTTGTGCAGTCTTTTCAGTGAGCATCTCAGGTTCTCCTAGGCGCTGTGGGGGGCAGGGTGATATACTTTCTGGAACGTAAGTTATTAATTTTAAAGACATTGACAATCTTATTACAATGCTTAGGATATCAGTCTATCAAAGTTAGCTTCTGATTAAAATGATTAAGGTTTACCTGTTATAATAACTTTATGGCCCTCGGCCCTTTGTTATTTATCAATGTTCTGACCTCTCTGGTCATCAATTGTATTTAAACTGATGACTATACAAGCCAAAATATGTCTTATATTATGAGAAATATTTATTATGAATATGACACTCGATCTCCTAATGGCAGTGTTGCTGTATTCTTATCTTGGGCTCGTCAACACGTTTTACTTGCTGAGGAAGATCTGGGAATAAGGTATATACTGTTGTTTAGGATTTAGCTCCCTTATAAATCCTATTTCTTATTCTTGCTCCCGAAATCTGTATGGCTGCTTAACAGGACGATGAACCCCACGGTGATTGGATGTGTAGCTGGTTCTGCTTTATTGAGAAAAGCTGCATCGATAACATTTCAGAATAAGAAGCGAGCAACTCTTACAAGTGATATAATTGAGTATTTGGGGATGAGGTATACATTCTAGTTTAATTTTTTTCTTTTTATATAGCAGGTCATGTGATGATTGACTTTGCAGATTGGTTTAATATCTTAAATCTTTATACATTTTCTGCAGTTTGGATGAAATCTGTCCAATGTAGCTAGTGACTTTGCAACTTGCTTGAAGTAACCAGGCTGAATTCATGTTTTGCATAATGATGTTTTGCCGACTATACTTCCTAGTTCATGTAGATTGTAAATAACACGGTTGTTGTAGCTTGTATGTCACGTCTAAGTGATTGCTGTATGAATATACCTAAAGCCGAGGTTGGATGTTTACTCTGGTGTACAACAAACTCAGTGTCAGACCGTGATTTAAAGATGAAGAGAGTTCTTAATTTGCCGTGGGATTCATGATAGAAAATGTAGACTGGTACTCGTATTAATAAGGTACAACTCGGGATATGTGGCAAATAAGCTTATATATTACTAAATTGATTTTTCATGAAATCCTCTGCAATTGCATAAGCTTATCCATCTAATATTGTACCTGTTTTAAAAAATATATAGATTCGGAGTATTTAGATTATTACTTTGAATCTACACTTATTCCATATTCAATAGTTGAGTTATTACGTAATTCAAGCAATATAAATCATACTCCGTAATACTTATTTCACATTCTATAGTTGTATTTTTAGGTCGAA AATTAGTTCCAGTGCATAAAAGTGGTTTAACTGTTAAACCGTATTTGCTAAAAGTTTGTAATATTAGATAGATTAACAGGTCTGTTTATCTTCATCTCCTTCCCCCTTCCTCCTCCTCAGTCCTCTGGCATTCTCCTCCTCTTAAAACCCTAACAACAAAAGCAGCGTCTTGTATTAGTTGCTGTATCCATAGTCGTCGCCGTCTTTGCCGACCACCTCCCCTTCTCTGGTGCTGCTATTCTCGGGATTAGTGATGAGATTAGAGTCGTAGTTGATGCTAATTGGACGTGGAATGAGTACCTGGTTCACACACTTGGATGCAACAACGAGTTGTCAGTAGTGTGTCGGTGTTGTCCGCTGTTTTGAGACGGCAAAGGTTCTTGATAAGATCTCTAGGAGGCAACCCTGACCAGAATTGCAGTGTGAAAATGAATGTGTTTGAGGCTGATGTTTTGAATGTCATCAGAAGGATCACTCCTACCCTTGACTTATCAAGACACAAAGGACAGGCTGGGAAAATAGCTGTTGTTGGAGGTTGTCGAGAATACACCGGCGCTCCTTACTTTGCAGCAATCTCAGCTTTGAAAATTGGTGCAGATTTATCACATGTTTTTTGCACTAAAGATGCAGCTCCAATTATTAAAAGCTACAGCCCTGAATTAATTGTGCACCCGGTTTTGGAGGAGTCATATAACGTCAAGGACGAGGACAAAGGATTTATTGCTAACAAGGTTCTTTCTGAAGTTAATAAATGGATGGAACGATTTGACTGTCTTGTTATTGGCCCAGGCCTCGGTAGAGATCCATTTCTTTTGGATTGTGTGAGTGAAATTTTGAAACATGCTCGGCAGTTGAATATCCCACTTGTTATAGATGGGGATGGGCTATTTCTTGTGACCAATTCTCTTGGTCTGGTTAGTGGTTATCCTTTGGCTGTGCTTACACCAAATGTGAATGAGTACAAGCGCCTTGTGAAGAGAGTTTTGGATTGTGAAGTAAATGATGACGAATCTGCAGCCGAGCTATTGTCTCTTGTTAAAGGGATTGGAGGTGCAACAGTTCTGAGAAAAGGAAAGTCTGATCTCATTTGTGATGGTGACTCAGTCTTTTCAGTGAGCATCTCAGGTTCTCCTAGGCGCTGTGGGGGGCAGGGTGATATACTTTCTGGAACTGTTGCTGTATTCTTATCTTGGGCTCGTCAACACGTTTTACTTGCTGAGGAAGATCTGGGAATAAGGACGATGAACCCCACGGTGATTGGATGTGTAGCTGGTTCTGCTTTATTGAGAAAAGCTGCATCGATAACATTTCAGAATAAGAAGCGAGCAACTCTTACAAGTGATATAATTGAGTATTTGGGGATGAGTTTGGATGAAATCTGTCCAATGTAGCTAGTGACTTTGCAACTTGCTTGAAGTAACCAGGCTGAATTCATGTTTTGCATAATGATGTTTTGCCGACTATACTTCCTAGTTCATGTAGATTGTAAATAACACGGTTGTTGTAGCTTGTATGTCACGTCTAAGTGATTGCTGTATGAATATACCTAAAGCCGAGGTTGGATGTTTACTCTGGTGTACAACAAACTCAGTGTCAGACCGTGATTTAAAGATGAAGAGAGTTCTTAATTTGCCGTGGGATTCATGATAGAAAATGTAGACTGGTACTCGTATTAATAAGGTACAACTCGGGATATGTGGCAAATAAGCTTATATATTACTAAATTGATTTTTCATGAAATCCTCTGCAATTGCATAAGCTTATCCATCTAATATTGTACCTGTTTTAAAAAATATATAGATTCGGAGTATTTAGATTATTACTTTGAATCTACACTTATTCCATATTCAATAGTTGAGTTATTACGTAATTCAAGCAATATAAATCATACTCCGTAATACTTATTTCACATTCTATAGTTGTATTTTTAGGTCGAA ATGCAACAACGAGTTGTCAGTAGTGTGTCGGTGTTGTCCGCTGTTTTGAGACGGCAAAGGTTCTTGATAAGATCTCTAGGAGGCAACCCTGACCAGAATTGCAGTGTGAAAATGAATGTGTTTGAGGCTGATGTTTTGAATGTCATCAGAAGGATCACTCCTACCCTTGACTTATCAAGACACAAAGGACAGGCTGGGAAAATAGCTGTTGTTGGAGGTTGTCGAGAATACACCGGCGCTCCTTACTTTGCAGCAATCTCAGCTTTGAAAATTGGTGCAGATTTATCACATGTTTTTTGCACTAAAGATGCAGCTCCAATTATTAAAAGCTACAGCCCTGAATTAATTGTGCACCCGGTTTTGGAGGAGTCATATAACGTCAAGGACGAGGACAAAGGATTTATTGCTAACAAGGTTCTTTCTGAAGTTAATAAATGGATGGAACGATTTGACTGTCTTGTTATTGGCCCAGGCCTCGGTAGAGATCCATTTCTTTTGGATTGTGTGAGTGAAATTTTGAAACATGCTCGGCAGTTGAATATCCCACTTGTTATAGATGGGGATGGGCTATTTCTTGTGACCAATTCTCTTGGTCTGGTTAGTGGTTATCCTTTGGCTGTGCTTACACCAAATGTGAATGAGTACAAGCGCCTTGTGAAGAGAGTTTTGGATTGTGAAGTAAATGATGACGAATCTGCAGCCGAGCTATTGTCTCTTGTTAAAGGGATTGGAGGTGCAACAGTTCTGAGAAAAGGAAAGTCTGATCTCATTTGTGATGGTGACTCAGTCTTTTCAGTGAGCATCTCAGGTTCTCCTAGGCGCTGTGGGGGGCAGGGTGATATACTTTCTGGAACTGTTGCTGTATTCTTATCTTGGGCTCGTCAACACGTTTTACTTGCTGAGGAAGATCTGGGAATAAGGACGATGAACCCCACGGTGATTGGATGTGTAGCTGGTTCTGCTTTATTGAGAAAAGCTGCATCGATAACATTTCAGAATAAGAAGCGAGCAACTCTTACAAGTGATATAATTGAGTATTTGGGGATGAGTTTGGATGAAATCTGTCCAATGTAG MQQRVVSSVSVLSAVLRRQRFLIRSLGGNPDQNCSVKMNVFEADVLNVIRRITPTLDLSRHKGQAGKIAVVGGCREYTGAPYFAAISALKIGADLSHVFCTKDAAPIIKSYSPELIVHPVLEESYNVKDEDKGFIANKVLSEVNKWMERFDCLVIGPGLGRDPFLLDCVSEILKHARQLNIPLVIDGDGLFLVTNSLGLVSGYPLAVLTPNVNEYKRLVKRVLDCEVNDDESAAELLSLVKGIGGATVLRKGKSDLICDGDSVFSVSISGSPRRCGGQGDILSGTVAVFLSWARQHVLLAEEDLGIRTMNPTVIGCVAGSALLRKAASITFQNKKRATLTSDIIEYLGMSLDEICPM Relationships
The following mRNA feature(s) are a part of this gene:
Homology
BLAST of Spo08416.1 vs. NCBI nr
Match: gi|902229590|gb|KNA21544.1| (hypothetical protein SOVF_042040 [Spinacia oleracea]) HSP 1 Score: 707.2 bits (1824), Expect = 1.400e-200 Identity = 357/357 (100.00%), Postives = 357/357 (100.00%), Query Frame = 1
BLAST of Spo08416.1 vs. NCBI nr
Match: gi|731323040|ref|XP_010672219.1| (PREDICTED: ATP-dependent (S)-NAD(P)H-hydrate dehydratase isoform X2 [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 607.4 bits (1565), Expect = 1.600e-170 Identity = 302/351 (86.04%), Postives = 326/351 (92.88%), Query Frame = 1
BLAST of Spo08416.1 vs. NCBI nr
Match: gi|731323032|ref|XP_010672214.1| (PREDICTED: ATP-dependent (S)-NAD(P)H-hydrate dehydratase isoform X1 [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 602.8 bits (1553), Expect = 3.800e-169 Identity = 302/352 (85.80%), Postives = 326/352 (92.61%), Query Frame = 1
BLAST of Spo08416.1 vs. NCBI nr
Match: gi|731389102|ref|XP_010649867.1| (PREDICTED: ATP-dependent (S)-NAD(P)H-hydrate dehydratase [Vitis vinifera]) HSP 1 Score: 523.1 bits (1346), Expect = 3.900e-145 Identity = 259/349 (74.21%), Postives = 299/349 (85.67%), Query Frame = 1
BLAST of Spo08416.1 vs. NCBI nr
Match: gi|380877011|sp|F6HDM2.1|NNRD_VITVI (RecName: Full=ATP-dependent (S)-NAD(P)H-hydrate dehydratase; AltName: Full=ATP-dependent NAD(P)HX dehydratase) HSP 1 Score: 523.1 bits (1346), Expect = 3.900e-145 Identity = 259/349 (74.21%), Postives = 299/349 (85.67%), Query Frame = 1
BLAST of Spo08416.1 vs. UniProtKB/TrEMBL
Match: A0A0K9RRK5_SPIOL (ATP-dependent (S)-NAD(P)H-hydrate dehydratase OS=Spinacia oleracea GN=SOVF_042040 PE=3 SV=1) HSP 1 Score: 707.2 bits (1824), Expect = 1.000e-200 Identity = 357/357 (100.00%), Postives = 357/357 (100.00%), Query Frame = 1
BLAST of Spo08416.1 vs. UniProtKB/TrEMBL
Match: A0A0J8CUW7_BETVU (ATP-dependent (S)-NAD(P)H-hydrate dehydratase OS=Beta vulgaris subsp. vulgaris GN=BVRB_3g057400 PE=3 SV=1) HSP 1 Score: 602.8 bits (1553), Expect = 2.700e-169 Identity = 302/352 (85.80%), Postives = 326/352 (92.61%), Query Frame = 1
BLAST of Spo08416.1 vs. UniProtKB/TrEMBL
Match: A0A0R0J8D7_SOYBN (ATP-dependent (S)-NAD(P)H-hydrate dehydratase OS=Glycine max GN=GLYMA_07G257800 PE=3 SV=1) HSP 1 Score: 518.1 bits (1333), Expect = 8.600e-144 Identity = 254/350 (72.57%), Postives = 295/350 (84.29%), Query Frame = 1
BLAST of Spo08416.1 vs. UniProtKB/TrEMBL
Match: I1KNA0_SOYBN (ATP-dependent (S)-NAD(P)H-hydrate dehydratase OS=Glycine max GN=GLYMA_07G257800 PE=3 SV=1) HSP 1 Score: 518.1 bits (1333), Expect = 8.600e-144 Identity = 254/350 (72.57%), Postives = 295/350 (84.29%), Query Frame = 1
BLAST of Spo08416.1 vs. UniProtKB/TrEMBL
Match: B9RTW2_RICCO (ATP-dependent (S)-NAD(P)H-hydrate dehydratase OS=Ricinus communis GN=RCOM_0913490 PE=3 SV=1) HSP 1 Score: 513.1 bits (1320), Expect = 2.800e-142 Identity = 247/354 (69.77%), Postives = 299/354 (84.46%), Query Frame = 1
BLAST of Spo08416.1 vs. ExPASy Swiss-Prot
Match: NNRD_VITVI (ATP-dependent (S)-NAD(P)H-hydrate dehydratase OS=Vitis vinifera GN=VIT_05s0020g02800 PE=3 SV=1) HSP 1 Score: 523.1 bits (1346), Expect = 2.400e-147 Identity = 259/349 (74.21%), Postives = 299/349 (85.67%), Query Frame = 1
BLAST of Spo08416.1 vs. ExPASy Swiss-Prot
Match: NNRD_ARATH (ATP-dependent (S)-NAD(P)H-hydrate dehydratase OS=Arabidopsis thaliana GN=At5g19150 PE=2 SV=1) HSP 1 Score: 472.6 bits (1215), Expect = 3.700e-132 Identity = 241/352 (68.47%), Postives = 284/352 (80.68%), Query Frame = 1
BLAST of Spo08416.1 vs. ExPASy Swiss-Prot
Match: NNRD_SORBI (ATP-dependent (S)-NAD(P)H-hydrate dehydratase OS=Sorghum bicolor GN=Sb05g010020 PE=3 SV=1) HSP 1 Score: 431.8 bits (1109), Expect = 7.300e-120 Identity = 223/380 (58.68%), Postives = 280/380 (73.68%), Query Frame = 1
BLAST of Spo08416.1 vs. ExPASy Swiss-Prot
Match: NNRD_PHYPA (ATP-dependent (S)-NAD(P)H-hydrate dehydratase OS=Physcomitrella patens subsp. patens GN=PHYPADRAFT_121160 PE=3 SV=1) HSP 1 Score: 364.4 bits (934), Expect = 1.400e-99 Identity = 184/324 (56.79%), Postives = 241/324 (74.38%), Query Frame = 1
BLAST of Spo08416.1 vs. ExPASy Swiss-Prot
Match: NNRD_BOVIN (ATP-dependent (S)-NAD(P)H-hydrate dehydratase OS=Bos taurus GN=NAXD PE=3 SV=1) HSP 1 Score: 272.7 bits (696), Expect = 5.700e-72 Identity = 142/304 (46.71%), Postives = 190/304 (62.50%), Query Frame = 1
BLAST of Spo08416.1 vs. TAIR (Arabidopsis)
Match: AT5G19150.1 (pfkB-like carbohydrate kinase family protein) HSP 1 Score: 472.6 bits (1215), Expect = 2.100e-133 Identity = 241/352 (68.47%), Postives = 284/352 (80.68%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo08416.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo08416.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo08416.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 5
BLAST of Spo08416.1 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 gene is annotated with the following GO terms.
RNA-Seq Expression
Co-expression
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