Microexon ID Sm_GL377583:1534550-1534558:+
Species Selaginella moellendorffii
Coordinates GL377583:1534550..1534558
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 TTTACCTGG
Microexon Amino Acid seq VYLG
Microexon-tag DNA Seq TGGGACAATAGTTGTCGAAAGGAGGGCCAGACCAGGAAAGGGAGGCAAGTTTACCTGGGGGGTTATGACAAAGAAGAGAAAGCAGCGCGAGCGTATGATCTGGCGGCG
Microexon-tag Amino Acid Seq WDNSCRKEGQTRKGRQVYLGGYDKEEKAARAYDLAA
Microexon-tag spanning region1534380-1534690
Microexon-tag prediction score0.9736
Overlapped with the annotated transcript (%) 91.67
New Transcript ID EFJ26861x
Reference Transcript ID EFJ26861
Gene ID SELMODRAFT_1154
Gene Name NA
Sm_GL377583:1534550-1534558:+ does not have available information here.
Microexon DNA seq TTTACCTGG
Microexon Amino Acid seq VYLG
Microexon-tag DNA Seq TGGGACAATAGTTGTCGAAAGGAGGGCCAGACCAGGAAAGGGAGGCAAGTTTACCTGGGGGGTTATGACAAAGAAGAGAAAGCAGCGCGAGCGTATGATCTGGCGGCG
Microexon-tag Amino Acid seq WDNSCRKEGQTRKGRQVYLGGYDKEEKAARAYDLAA
Transcript ID Sm.11258.1
Gene ID Sm.11258
Gene Name NA
Pfam domain motif AP2
Motif E-value 9.4e-13
Motif start 505
Motif end 563
Protein seq >Sm.11258.1
MRSSASNSNWLGFSLSPHLPSFEQQQAPSSIGDAKLGGGGDHLQGSSAAAADYQQQQQQQLGSSDQSPHHHHHHELQMQQ
PQLATDGSLCIMEAFEQRRSSSDQDQWHKYAGMSASMHPQVYDYSRLGLEPAQAQQQQHHQQQQQIHHHYENLLRPKPEH
EAPKLADFLGGGSSLGGGGGQYSSRDSSNTSPGVANLFYGGGGGGGGHQQQQHHHQIGHHHSGAPFSATPRHQHDHAAEI
NVNLPYYNLYGGGLAEATGEGGFDHHSHQSRHSEFEQHSQQQADDNLCSTISSLHSHSSQLVAGQEMDHHGHAQHHHSHQ
EASSSLFSDCSLQLPHSSSNASNGGNMLGISALKTWLRQHQQGSSPPGGDHQLATKAAIAPAIAANPGTAKSTATGGATG
EFSALANLQSLTLSMSPGSQSSTAAAAPSQIAAADHHSPCNAAGANLCCSTTSALVTSAAAATAAAVTPSDPVSSDQPPK
KRPKAGGKEPSPRKSIDTFGQRTSIYRGVTRHRWTGRYEAHLWDNSCRKEGQTRKGRQVYLGGYDKEEKAARAYDLAALK
YWGPTTTINFPLSDYEKELEEMKHMTRQEFVASLRRKSSGFSRGASIYRGVTRHHQQGRWQARIGRVAGNKDLYLGTFST
QEEAAEAYDIAAIKFRGINAVTNFDISRYDLKKICSSPSLLLGETAKRYKDSDSGVDQSQQQQIIRTSDEDVVLVRGSSA
SASQLRSSSSHGGQQLIPKPEQDWQLLYNPSGAQEVVHPLSGSYHHHQPIIQQSPSMQHAVLRNLIGLDALPSGDQGGSH
IFSGGAALGGQSTSTSTLMSNSVYSSDSPKPSVGENEEPNPGKNHSSSSYDQGGAIVGGGGGGDLSSRGGGYWMSSKPSS
YDMGSIVTPVQQALNGRALAAAGHHHMPIFSVWTEN*
CDS seq >Sm.11258.1
ATGAGGTCTTCTGCTAGTAACAGTAATTGGCTCGGCTTCTCTCTCTCGCCACATCTCCCTTCTTTCGAGCAGCAGCAAGC
TCCCTCGTCCATCGGCGACGCCAAGCTCGGCGGTGGCGGTGATCACCTCCAGGGCAGCAGCGCCGCCGCCGCGGACTACC
AGCAGCAGCAGCAGCAGCAGCTGGGCAGCAGTGATCAGTCGCCTCATCACCACCACCATCACGAGCTCCAGATGCAGCAG
CCGCAGCTCGCCACGGACGGCTCGCTTTGCATCATGGAAGCGTTCGAGCAGCGGAGATCCAGTAGCGATCAAGATCAATG
GCACAAATATGCAGGAATGAGCGCGAGCATGCATCCCCAAGTCTACGACTACTCGCGGCTGGGCTTGGAGCCAGCGCAAG
CGCAGCAGCAGCAGCACCACCAGCAACAGCAGCAAATCCACCACCACTACGAGAATCTCCTCCGCCCAAAGCCCGAGCAC
GAAGCTCCCAAGCTGGCGGACTTCCTGGGCGGTGGCTCGTCCCTGGGTGGCGGCGGCGGCCAGTACTCGAGCCGAGACTC
CTCCAACACCAGCCCGGGAGTAGCGAATCTCTTCTACGGTGGTGGTGGCGGCGGAGGCGGCCACCAGCAGCAGCAGCACC
ACCACCAGATTGGCCACCACCATTCCGGAGCTCCCTTCTCAGCGACGCCGCGGCACCAACACGATCACGCCGCGGAGATC
AATGTCAATCTCCCGTATTACAACCTCTACGGTGGTGGCCTCGCGGAGGCCACCGGCGAGGGGGGATTCGATCACCACTC
GCACCAATCGCGGCACAGCGAATTCGAGCAGCACAGCCAGCAGCAGGCGGACGACAATCTCTGCTCCACGATCTCGTCGC
TTCATTCCCACTCTAGCCAGCTCGTCGCGGGGCAGGAGATGGATCACCACGGCCACGCGCAGCACCACCACAGCCACCAG
GAGGCCAGCAGCAGCCTCTTCTCGGACTGCAGCCTGCAGCTCCCCCATAGCTCGAGCAACGCTAGCAATGGCGGGAATAT
GCTGGGGATATCCGCGCTCAAGACTTGGCTCCGCCAGCACCAGCAAGGATCCTCTCCTCCCGGCGGCGATCATCAGCTCG
CAACCAAGGCCGCCATCGCCCCCGCCATCGCCGCCAATCCGGGCACCGCCAAGAGCACCGCCACCGGAGGCGCCACCGGA
GAGTTTAGCGCGCTTGCGAATTTGCAGTCCTTGACGCTGTCCATGAGCCCCGGCTCGCAGTCCAGCACCGCCGCCGCCGC
TCCATCGCAGATCGCGGCTGCCGATCATCACAGTCCTTGCAACGCTGCTGGAGCGAATCTCTGCTGCTCCACTACCTCCG
CGCTCGTCACTAGTGCGGCCGCCGCCACTGCTGCCGCTGTCACTCCCAGCGATCCGGTTTCCAGCGACCAGCCGCCCAAG
AAGAGGCCCAAGGCCGGTGGCAAGGAGCCGTCTCCCAGGAAATCCATCGACACCTTCGGACAGAGAACGTCAATCTATCG
AGGCGTTACAAGGCATCGCTGGACTGGACGTTACGAGGCACATCTGTGGGACAATAGTTGTCGAAAGGAGGGCCAGACCA
GGAAAGGGAGGCAAGTTTACCTGGGGGGTTATGACAAAGAAGAGAAAGCAGCGCGAGCGTATGATCTGGCGGCGCTCAAG
TATTGGGGACCTACGACCACCATCAACTTTCCTCTAAGTGACTATGAAAAGGAGCTGGAGGAGATGAAACACATGACACG
GCAGGAGTTTGTGGCTTCCCTTAGAAGGAAAAGTAGTGGGTTTTCTAGAGGAGCATCGATTTACAGGGGAGTGACGAGAC
ACCATCAACAAGGACGCTGGCAAGCCCGGATTGGAAGAGTAGCCGGCAACAAAGATCTTTACCTCGGAACTTTCAGCACG
CAAGAGGAAGCCGCGGAAGCATACGACATCGCCGCGATCAAGTTCCGGGGCATCAACGCGGTCACCAACTTCGACATCAG
CCGCTACGACCTTAAGAAGATCTGCTCGAGCCCGAGCTTGCTCCTGGGCGAGACCGCCAAGAGGTACAAGGACAGCGACT
CCGGAGTGGATCAGAGCCAGCAGCAGCAGATCATACGAACCTCGGACGAGGACGTGGTACTTGTGCGCGGCAGCAGCGCC
AGTGCTAGCCAGCTCCGATCGAGCAGCAGCCACGGCGGCCAGCAGCTCATCCCCAAGCCGGAGCAGGACTGGCAGCTCCT
CTACAATCCATCGGGAGCGCAGGAGGTGGTCCATCCCCTCAGCGGCAGCTACCACCACCACCAGCCAATCATCCAGCAGT
CGCCAAGCATGCAGCATGCGGTGCTGAGGAATCTCATCGGCCTGGACGCGCTCCCCAGCGGCGACCAGGGCGGCAGCCAC
ATCTTCTCGGGCGGCGCCGCGCTGGGCGGGCAATCCACCTCCACGAGCACGCTCATGAGCAACTCGGTCTACTCGAGCGA
CAGCCCAAAGCCGTCGGTGGGCGAGAACGAGGAGCCCAATCCCGGCAAGAACCACTCGTCCAGCTCCTACGATCAGGGAG
GCGCGATTGTTGGCGGTGGCGGTGGCGGGGATCTCAGCAGCCGCGGTGGCGGCTACTGGATGAGCAGCAAGCCAAGCAGC
TACGACATGGGATCGATCGTGACGCCCGTGCAGCAGGCCTTGAATGGGAGGGCGCTGGCGGCGGCCGGGCATCACCACAT
GCCTATTTTTTCAGTCTGGACCGAGAACTAG