Microexon ID Os_1:38992723-38992726:-
Species Oryza sativa
Coordinates 1:38992723..38992726
Microexon Cluster ID MEP04
Size 4
Phase 0
Pfam Domain Motif Ribonuclease_T2
Structure of Microexon-tag (flanking exon, microexon, flanking exon sizes) 51,4,53
Microexon location in the Microexon-tag 2
Microexon-tag DNA Seq RGYWMWYCATCAACHTGCYWYRGTGGAAARGGAYYATTYTGGGCTCATGAGTGGGARAARCATGGRACWTGYTCYTCYCCWGTWRTTCRWGATGAATAYARYTAYTTY
Logo of Microexon-tag DNA Seq NT60 Logo
Alignment of exons MSA
Microexon DNA seq TGGG
Microexon Amino Acid seq WE
Microexon-tag DNA Seq TCATCCTCTTCCACTTGCTTCAGTGGCAAGGGGCCCTTCTGGGCTCATGAGTGGGAGAAACATGGAACATGCTCATCCCCGGTAGTTAAGGATGAATTAGAGTATTTC
Microexon-tag Amino Acid Seq SSSSTCFSGKGPFWAHEWEKHGTCSSPVVKDELEYF
Microexon-tag spanning region38992516-38992916
Microexon-tag prediction score0.9544
Overlapped with the annotated transcript (%) 92.86
New Transcript ID Os01t0897200-01x
Reference Transcript ID Os01t0897200-01
Gene ID Os01g0897200
Gene Name OsRNS2
Os_1:38992723-38992726:- does not have available information here.
Microexon DNA seq TGGG
Microexon Amino Acid seq WE
Microexon-tag DNA Seq TCATCCTCTTCCACTTGCTTCAGTGGCAAGGGGCCCTTCTGGGCTCATGAGTGGGAGAAACATGGAACATGCTCATCCCCGGTAGTTAAGGATGAATTAGAGTATTTC
Microexon-tag Amino Acid seq SSSSTCFSGKGPFWAHEWEKHGTCSSPVVKDELEYF
Transcript ID Os.4706.1
Gene ID Os.4706
Gene Name OsRNS2
Pfam domain motif Ribonuclease_T2
Motif E-value 3.8e-48
Motif start 47
Motif end 233
Protein seq >Os.4706.1
MATARKAPRMVAIWAVVVVVVAADLFGAAVARSASARHAVGKKQREFDYFALALQWPGTICASTRHCCAINGCCRSEPLQ
TFTIHGLWPDYDDGTWPACCRHTSFDMDKILPLKPTLEKYWPSLYCSSSSTCFSGKGPFWAHEWEKHGTCSSPVVKDELE
YFTTALDLYFKYNVTEMLASGGIHVSNGKQYALTDVIDAIKCAFGASPQIVCKKGSVEELRLCFDKDLKPLDCLTTTATN
ENVSKKKYCPRYITLPTYDPIVHANSTREIITVESEVYGYLYTS*
CDS seq >Os.4706.1
ATGGCGACGGCGAGGAAGGCGCCGCGCATGGTGGCGATCTGGGCGGTGGTGGTGGTGGTGGTCGCCGCCGATCTGTTCGG
AGCGGCGGTCGCGCGGTCGGCGTCGGCGCGTCACGCGGTGGGGAAGAAGCAGCGGGAGTTCGACTACTTCGCGCTGGCGC
TGCAGTGGCCTGGCACCATCTGCGCCTCAACCCGCCACTGCTGCGCCATCAACGGATGCTGCCGCTCGGAGCCGCTCCAG
ACGTTCACGATCCATGGGCTGTGGCCGGACTACGACGACGGGACCTGGCCGGCGTGCTGCCGCCACACCAGCTTCGACAT
GGACAAGATATTGCCCCTGAAGCCGACGCTTGAGAAGTACTGGCCGTCCCTCTACTGCTCATCCTCTTCCACTTGCTTCA
GTGGCAAGGGGCCCTTCTGGGCTCATGAGTGGGAGAAACATGGAACATGCTCATCCCCGGTAGTTAAGGATGAATTAGAG
TATTTCACCACTGCTCTTGACCTCTACTTCAAATACAACGTCACGGAAATGTTGGCAAGTGGTGGTATCCATGTTTCAAA
TGGTAAACAATATGCGCTAACTGATGTCATTGATGCCATCAAATGTGCTTTTGGGGCCTCACCGCAAATTGTTTGCAAGA
AGGGCTCAGTTGAAGAACTGAGGTTATGCTTTGACAAAGATTTGAAGCCCCTTGATTGCCTTACTACTACTGCTACCAAT
GAAAACGTATCGAAGAAGAAGTATTGCCCTCGATACATCACCCTGCCAACATATGACCCCATAGTACATGCTAATTCTAC
TCGGGAGATCATAACAGTCGAAAGTGAGGTCTATGGATATCTTTACACATCCTAA