Microexon ID Vv_18:7052261-7052269:-
Species Vistis vinifera
Coordinates 18:7052261..7052269
Microexon Cluster ID MEP21
Size 9
Phase 1
Pfam Domain Motif AP2
Structure of Microexon-tag (flanking exon, microexon, flanking exon sizes) 49,9,50
Microexon location in the Microexon-tag 2
Microexon-tag DNA Seq TGGGAYAAYAGYWSYWGRARWGARRGYCARAVYARGAARGGAARRCAAGTTTAYYTRGGKGSWTATGAYRAKGARGARRMWGCWGCWMGRGCWTATGAYYTDGCWGCW
Logo of Microexon-tag DNA Seq NT60 Logo
Alignment of exons MSA
Microexon DNA seq TTTATCTGG
Microexon Amino Acid seq VYLG
Microexon-tag DNA Seq TGGGATAATAGTTGCAAGAAGGAGGGGCAGACTAGGAAAGGAAGACAAGTTTATCTGGGGGGGTATGATATGGAAGAGAAAGCTGCAAGAGCTTACGATCTGGCGGCC
Microexon-tag Amino Acid Seq WDNSCKKEGQTRKGRQVYLGGYDMEEKAARAYDLAA
Microexon-tag spanning region7052115-7052482
Microexon-tag prediction score0.9825
Overlapped with the annotated transcript (%) 100
New Transcript ID VIT_18s0001g08610.t01x
Reference Transcript ID VIT_18s0001g08610.t01
Gene ID VIT_18s0001g08610
Gene Name NA
Transcript ID VIT_18s0001g08610.t01
Protein ID VIT_18s0001g08610.t01
Gene ID VIT_18s0001g08610
Gene Name NA
Pfam domain motif AP2
Motif E-value 1.6e-13
Motif start 321
Motif end 379
Protein seq >VIT_18s0001g08610.t01
MKSMNDNNNGSNNNWLGFSLSPHMKMEVASDPQYHHQTQPAAAAVSSAVPTSFFLSPHLNSSAIYYGVGENGAFHSHLSV
MPLKSDGSLCIMEALSRSQQEGMVPTSSPKLEDFLGSATMATHQYGGHEREAMALSLDSMYYHQNAEPETSRQHSLNLLQ
ESFRQQGQQQIPVQHHPYFTGLACNGIYQNPLEEETKETQLADCHTQIPPMGEDGMPCLKNWVARHYSTHHALEQQMNNS
IVDDGGAPGSIGAMGCGDLQSLSLSMSPGSQSSCVTAPRQISPTGAECVAMETKKRGSGKVAQKQPVHRKSIDTFGQRTS
QYRGVTRHRWTGRYEAHLWDNSCKKEGQTRKGRQVYLGGYDMEEKAARAYDLAALKYWGPSTHINFPLENYQEELEEMKN
MSRQEYVAHLRRKSSGFSRGASMYRGVTRHHQHGRWQARIGRVAGNKDLYLGTFSTQEEAAEAYDVAAIKFRGVNAVTNF
DITRYDVERITASNTLIAGELAKRSKGKEPSREAIDYNPPQNSGEAIQSESNNGNGTDWKMALYQSPQQQPSSCVESLEQ
KPMSIGGYRTTSFSMALQDLIGIDSVNTSQPIGDESTKLGTHFSNPSSLVTSLSSSREASPDKTGPAMLFAKPPLASKLM
GPASALSSWIPTSQLRTAAVSMAHLPLFAAWNDT*
CDS seq >VIT_18s0001g08610.t01
ATGAAGTCTATGAATGATAATAACAATGGCAGCAATAATAACTGGTTGGGTTTCTCGCTCTCGCCACATATGAAAATGGA
GGTTGCTTCAGACCCTCAGTACCATCATCAAACCCAGCCTGCTGCTGCCGCTGTTTCCAGTGCTGTCCCAACAAGTTTCT
TTCTCTCTCCTCATCTCAACAGCTCCGCAATCTACTATGGTGTTGGAGAAAATGGCGCTTTTCACTCACACTTGTCCGTA
ATGCCACTCAAGTCTGATGGGTCTCTTTGTATCATGGAGGCTCTCAGTAGATCACAGCAAGAAGGGATGGTGCCAACCTC
ATCACCAAAACTGGAGGACTTCTTAGGTAGTGCAACCATGGCAACCCATCAGTACGGGGGCCATGAAAGAGAAGCAATGG
CTCTCAGCTTAGACAGCATGTATTATCACCAAAATGCGGAACCTGAAACCAGTAGGCAACATTCTCTAAACCTTCTTCAG
GAATCCTTTAGGCAACAAGGTCAGCAACAAATTCCAGTTCAACACCACCCATATTTCACTGGACTTGCCTGCAATGGGAT
TTACCAGAACCCATTAGAAGAAGAAACAAAGGAAACCCAACTTGCAGATTGCCATACCCAGATCCCTCCTATGGGGGAGG
ATGGAATGCCTTGCCTGAAAAACTGGGTTGCAAGGCACTACTCGACTCACCATGCACTAGAGCAGCAGATGAACAACAGC
ATCGTTGATGACGGAGGAGCTCCTGGGTCTATTGGAGCTATGGGTTGTGGGGATTTACAGTCTCTCAGCTTGTCCATGAG
CCCCGGTTCTCAGTCAAGCTGTGTGACAGCTCCAAGACAGATCTCGCCTACCGGAGCTGAGTGTGTGGCCATGGAAACAA
AGAAAAGGGGGTCCGGAAAAGTTGCACAAAAGCAACCAGTTCATAGGAAGTCCATTGACACATTTGGGCAGAGGACTTCA
CAATATAGAGGAGTTACAAGGCATAGATGGACTGGTAGATATGAAGCCCATCTTTGGGATAATAGTTGCAAGAAGGAGGG
GCAGACTAGGAAAGGAAGACAAGTTTATCTGGGGGGGTATGATATGGAAGAGAAAGCTGCAAGAGCTTACGATCTGGCGG
CCCTCAAATACTGGGGACCTTCTACTCATATCAACTTCCCGTTAGAAAATTACCAAGAAGAACTCGAAGAAATGAAGAAC
ATGAGCCGCCAGGAATATGTTGCTCATCTGAGAAGGAAAAGCAGTGGATTCTCAAGAGGGGCTTCAATGTATAGAGGAGT
GACAAGGCATCATCAACATGGAAGATGGCAGGCTCGGATTGGGAGGGTTGCTGGAAACAAGGACCTTTATCTCGGGACAT
TCAGTACCCAAGAGGAAGCAGCTGAAGCTTATGATGTTGCTGCTATTAAGTTCCGAGGGGTAAATGCAGTCACCAACTTT
GATATTACACGATATGATGTGGAAAGAATCACAGCCAGCAATACTTTGATTGCTGGAGAGCTTGCAAAGCGAAGCAAAGG
GAAAGAACCAAGCCGGGAGGCCATTGATTACAACCCACCTCAGAACAGTGGGGAGGCTATTCAATCTGAAAGTAACAATG
GGAATGGTACAGACTGGAAGATGGCTCTATACCAGTCCCCCCAGCAGCAGCCAAGTAGTTGTGTGGAATCACTTGAACAG
AAACCAATGAGCATTGGAGGGTACAGGACCACCTCTTTTTCAATGGCATTGCAAGATCTTATTGGGATTGATTCAGTGAA
CACAAGCCAGCCCATTGGGGATGAATCGACCAAACTAGGGACGCACTTTTCCAATCCATCGTCCTTGGTGACCAGCTTGA
GCAGCTCAAGAGAAGCTAGCCCAGATAAAACTGGCCCTGCAATGCTGTTTGCAAAGCCTCCATTAGCATCAAAATTGATG
GGGCCTGCAAGCGCACTCAGTTCATGGATCCCAACATCCCAGCTGAGGACTGCTGCAGTTTCCATGGCTCACTTGCCCCT
TTTTGCTGCTTGGAATGATACCTAA
Microexon DNA seq TTTATCTGG
Microexon Amino Acid seq VYLG
Microexon-tag DNA Seq TGGGATAATAGTTGCAAGAAGGAGGGGCAGACTAGGAAAGGAAGACAAGTTTATCTGGGGGGGTATGATATGGAAGAGAAAGCTGCAAGAGCTTACGATCTGGCGGCC
Microexon-tag Amino Acid seq WDNSCKKEGQTRKGRQVYLGGYDMEEKAARAYDLAA
Transcript ID VIT_18s0001g08610.t01
Gene ID Vv.15733
Gene Name NA
Pfam domain motif AP2
Motif E-value 1.6e-13
Motif start 321
Motif end 379
Protein seq >VIT_18s0001g08610.t01
MKSMNDNNNGSNNNWLGFSLSPHMKMEVASDPQYHHQTQPAAAAVSSAVPTSFFLSPHLNSSAIYYGVGENGAFHSHLSV
MPLKSDGSLCIMEALSRSQQEGMVPTSSPKLEDFLGSATMATHQYGGHEREAMALSLDSMYYHQNAEPETSRQHSLNLLQ
ESFRQQGQQQIPVQHHPYFTGLACNGIYQNPLEEETKETQLADCHTQIPPMGEDGMPCLKNWVARHYSTHHALEQQMNNS
IVDDGGAPGSIGAMGCGDLQSLSLSMSPGSQSSCVTAPRQISPTGAECVAMETKKRGSGKVAQKQPVHRKSIDTFGQRTS
QYRGVTRHRWTGRYEAHLWDNSCKKEGQTRKGRQVYLGGYDMEEKAARAYDLAALKYWGPSTHINFPLENYQEELEEMKN
MSRQEYVAHLRRKSSGFSRGASMYRGVTRHHQHGRWQARIGRVAGNKDLYLGTFSTQEEAAEAYDVAAIKFRGVNAVTNF
DITRYDVERITASNTLIAGELAKRSKGKEPSREAIDYNPPQNSGEAIQSESNNGNGTDWKMALYQSPQQQPSSCVESLEQ
KPMSIGGYRTTSFSMALQDLIGIDSVNTSQPIGDESTKLGTHFSNPSSLVTSLSSSREASPDKTGPAMLFAKPPLASKLM
GPASALSSWIPTSQLRTAAVSMAHLPLFAAWNDT*
CDS seq >VIT_18s0001g08610.t01
ATGAAGTCTATGAATGATAATAACAATGGCAGCAATAATAACTGGTTGGGTTTCTCGCTCTCGCCACATATGAAAATGGA
GGTTGCTTCAGACCCTCAGTACCATCATCAAACCCAGCCTGCTGCTGCCGCTGTTTCCAGTGCTGTCCCAACAAGTTTCT
TTCTCTCTCCTCATCTCAACAGCTCCGCAATCTACTATGGTGTTGGAGAAAATGGCGCTTTTCACTCACACTTGTCCGTA
ATGCCACTCAAGTCTGATGGGTCTCTTTGTATCATGGAGGCTCTCAGTAGATCACAGCAAGAAGGGATGGTGCCAACCTC
ATCACCAAAACTGGAGGACTTCTTAGGTAGTGCAACCATGGCAACCCATCAGTACGGGGGCCATGAAAGAGAAGCAATGG
CTCTCAGCTTAGACAGCATGTATTATCACCAAAATGCGGAACCTGAAACCAGTAGGCAACATTCTCTAAACCTTCTTCAG
GAATCCTTTAGGCAACAAGGTCAGCAACAAATTCCAGTTCAACACCACCCATATTTCACTGGACTTGCCTGCAATGGGAT
TTACCAGAACCCATTAGAAGAAGAAACAAAGGAAACCCAACTTGCAGATTGCCATACCCAGATCCCTCCTATGGGGGAGG
ATGGAATGCCTTGCCTGAAAAACTGGGTTGCAAGGCACTACTCGACTCACCATGCACTAGAGCAGCAGATGAACAACAGC
ATCGTTGATGACGGAGGAGCTCCTGGGTCTATTGGAGCTATGGGTTGTGGGGATTTACAGTCTCTCAGCTTGTCCATGAG
CCCCGGTTCTCAGTCAAGCTGTGTGACAGCTCCAAGACAGATCTCGCCTACCGGAGCTGAGTGTGTGGCCATGGAAACAA
AGAAAAGGGGGTCCGGAAAAGTTGCACAAAAGCAACCAGTTCATAGGAAGTCCATTGACACATTTGGGCAGAGGACTTCA
CAATATAGAGGAGTTACAAGGCATAGATGGACTGGTAGATATGAAGCCCATCTTTGGGATAATAGTTGCAAGAAGGAGGG
GCAGACTAGGAAAGGAAGACAAGTTTATCTGGGGGGGTATGATATGGAAGAGAAAGCTGCAAGAGCTTACGATCTGGCGG
CCCTCAAATACTGGGGACCTTCTACTCATATCAACTTCCCGTTAGAAAATTACCAAGAAGAACTCGAAGAAATGAAGAAC
ATGAGCCGCCAGGAATATGTTGCTCATCTGAGAAGGAAAAGCAGTGGATTCTCAAGAGGGGCTTCAATGTATAGAGGAGT
GACAAGGCATCATCAACATGGAAGATGGCAGGCTCGGATTGGGAGGGTTGCTGGAAACAAGGACCTTTATCTCGGGACAT
TCAGTACCCAAGAGGAAGCAGCTGAAGCTTATGATGTTGCTGCTATTAAGTTCCGAGGGGTAAATGCAGTCACCAACTTT
GATATTACACGATATGATGTGGAAAGAATCACAGCCAGCAATACTTTGATTGCTGGAGAGCTTGCAAAGCGAAGCAAAGG
GAAAGAACCAAGCCGGGAGGCCATTGATTACAACCCACCTCAGAACAGTGGGGAGGCTATTCAATCTGAAAGTAACAATG
GGAATGGTACAGACTGGAAGATGGCTCTATACCAGTCCCCCCAGCAGCAGCCAAGTAGTTGTGTGGAATCACTTGAACAG
AAACCAATGAGCATTGGAGGGTACAGGACCACCTCTTTTTCAATGGCATTGCAAGATCTTATTGGGATTGATTCAGTGAA
CACAAGCCAGCCCATTGGGGATGAATCGACCAAACTAGGGACGCACTTTTCCAATCCATCGTCCTTGGTGACCAGCTTGA
GCAGCTCAAGAGAAGCTAGCCCAGATAAAACTGGCCCTGCAATGCTGTTTGCAAAGCCTCCATTAGCATCAAAATTGATG
GGGCCTGCAAGCGCACTCAGTTCATGGATCCCAACATCCCAGCTGAGGACTGCTGCAGTTTCCATGGCTCACTTGCCCCT
TTTTGCTGCTTGGAATGATACCTAA