Microexon ID Vv_16:14381338-14381340:-
Species Vistis vinifera
Coordinates 16:14381338..14381340
Microexon Cluster ID MEP03
Size 3
Phase 0
Pfam Domain Motif CHORD
Structure of Microexon-tag (flanking exon, microexon, flanking exon sizes) 54,3,51
Microexon location in the Microexon-tag 2
Microexon-tag DNA Seq GCYAYSTTCACCGARGAYGAYAAYCCYGAMGRYTCCTGYMVWTAYCAYGMYTCKGGACCTWTATTTCATGATGGWATGAAAGARTGGAGYTGYTGCAARMAAAGAAGY
Logo of Microexon-tag DNA Seq NT60 Logo
Alignment of exons MSA
Microexon DNA seq GGA
Microexon Amino Acid seq G
Microexon-tag DNA Seq GTCATGTTCTCTCCAGATGACAATCCTGATGATTCCTGTCAATATCACGATTCTGGACCTTTTTTTCATGATGGGATGAAAGAGTGGAGTTGTTGCAAGAAAAGGAGT
Microexon-tag Amino Acid Seq VMFSPDDNPDDSCQYHDSGPFFHDGMKEWSCCKKRS
Microexon-tag spanning region14381175-14384590
Microexon-tag prediction score0.9526
Overlapped with the annotated transcript (%) 97.22
New Transcript ID VIT_16s0022g02040.t01x
Reference Transcript ID VIT_16s0022g02040.t01
Gene ID VIT_16s0022g02040
Gene Name NA
Vv_16:14381338-14381340:- does not have available information here.
Microexon DNA seq GGA
Microexon Amino Acid seq G
Microexon-tag DNA Seq GTCATGTTCTCTCCAGATGACAATCCTGATGATTCCTGTCAATATCACGATTCTGGACCTTTTTTTCATGATGGGATGAAAGAGTGGAGTTGTTGCAAGAAAAGGAGT
Microexon-tag Amino Acid seq VMFSPDDNPDDSCQYHDSGPFFHDGMKEWSCCKKRS
Transcript ID Vv.12867.1
Gene ID Vv.12867
Gene Name NA
Pfam domain motif CHORD
Motif E-value 4.3e-24
Motif start 9
Motif end 69
Protein seq >Vv.12867.1
MEEQAAKVRCQRMGCDVMFSPDDNPDDSCQYHDSGPFFHDGMKEWSCCKKRSHDFSLFLAIPGCKTGKHTTEKPVLAKPA
PPKNQVPAPAPAPDASSKQTCSRCQQGFFCSEHGSQAREKRLQTDLPAENNTGVQEGLAAPAKKIVDINQPQTCGNKGCG
MTFKEKDNHDTACSYHPGPAVFHDRLRGWKCCDIHVKEFDEFMSIPPCTKGWHNANPAS*
CDS seq >Vv.12867.1
ATGGAGGAGCAGGCGGCTAAGGTTAGATGCCAGCGAATGGGTTGCGATGTCATGTTCTCTCCAGATGACAATCCTGATGA
TTCCTGTCAATATCACGATTCTGGACCTTTTTTTCATGATGGGATGAAAGAGTGGAGTTGTTGCAAGAAAAGGAGTCATG
ATTTCAGCTTATTTCTAGCAATTCCAGGATGTAAGACAGGTAAGCACACAACTGAGAAACCAGTACTAGCAAAGCCAGCT
CCTCCAAAGAATCAAGTTCCTGCTCCAGCTCCTGCACCTGATGCATCGTCAAAACAAACTTGCTCTAGGTGTCAGCAGGG
ATTTTTTTGCTCAGAACATGGTTCACAAGCCAGAGAAAAGAGGTTGCAAACAGATTTGCCAGCCGAAAACAACACAGGTG
TTCAGGAGGGCTTGGCTGCTCCTGCAAAGAAGATTGTTGATATAAACCAGCCACAAACCTGTGGAAACAAGGGATGTGGT
ATGACTTTCAAAGAAAAGGATAATCATGATACTGCTTGCAGTTATCATCCTGGGCCTGCAGTTTTCCATGACCGGCTAAG
AGGGTGGAAATGCTGCGACATTCATGTGAAGGAGTTCGATGAATTCATGAGTATACCACCTTGCACCAAGGGATGGCACA
ATGCTAACCCAGCGTCATAA