Microexon ID Gm_1:14096466-14096473:-
Species Glycine max
Coordinates 1:14096466..14096473
Microexon Cluster ID MEP16
Size 8
Phase 1
Pfam Domain Motif SNF2_N
Structure of Microexon-tag (flanking exon, microexon, flanking exon sizes) 49,8,51
Microexon location in the Microexon-tag 2
Microexon-tag DNA Seq BTWWMHTGGCTYATACGAHKRTATSAGMWYGGYRTMAAYGKMATTCTYGSWGATGARATGGGWCTKGGRAARACWYTKCAARCYATHTCHTTSYTGRGYTAYYTRMAT
Logo of Microexon-tag DNA Seq NT60 Logo
Alignment of exons MSA
Microexon DNA seq GTGATGAG
Microexon Amino Acid seq GDE
Microexon-tag DNA Seq GTTTCGTGGCTCATACGGAGGTACAAACTCGGTGTCAACGTCGTCCTCGGTGATGAGATGGGACTGGGCAAGACTTTGCAAGCTATCTCCTTTTTAAGCTATTTAAAA
Microexon-tag Amino Acid Seq VSWLIRRYKLGVNVVLGDEMGLGKTLQAISFLSYLK
Microexon-tag spanning region14089162-14097627
Microexon-tag prediction score0.9458
Overlapped with the annotated transcript (%) 100
New Transcript ID KRH75249x
Reference Transcript ID KRH75249
Gene ID GLYMA_01G073400
Gene Name NA
Transcript ID KRH75249
Protein ID KRH75249
Gene ID GLYMA_01G073400
Gene Name NA
Pfam domain motif SNF2_N
Motif E-value 4.5e-49
Motif start 57
Motif end 346
Protein seq >KRH75249
MNLSYEQRLQVVARLILDEDSRPGDAPLYQEELGLRVTLKPHQVEGVSWLIRRYKLGVNVVLGDEMGLGKTLQAISFLSY
LKVCRLSLGPFLVICPLSVTDGWVSEIVKFTPKLKVFKYVGDKECRRNLRMKIHEYVTGQSSTLNVLLPFDVLLTSYDIA
LMDQDFLSQISWQYAIIDEAQRLKNPSSVLFNVLKDCYIMPRRLLMTGTPIQNNLSELWALMYFCMPSVFGTPDQFLSMF
KDISDLSPVHDTPKVKERLKILRSVLGAFMLRRTKSKLIECGNLVLPPLTVTTVLVPLVILQKKVYMSILRKELHKLLAL
SFGTSNHESLQNIVIQLRKACSHPYLFPGIESEPYEEGEHLVQASGKLLILDQLLQKLHYSGHRVLLFAQMTHTLDILQD
FLELRKYSYERLDGSIRAEERFAAIRSFSSSSANMGLNSEADQNEAFVFIISTRAGGVGLNLVAADTVIFYEQDWNPQVD
KQALQRAHRIGQMNHVLCINLVTERTVEEVIMRRAERKLLLSLNVIGDNILKDDNKEPSEVGSGDLKSIIFGLHMFDPTE
INDGNHRNMNIPEICAMADRVLAMRDEQILDNDERKFEVNPTNILKGDAVKERDSASLSCDLGLDEASYLSWVKKFEEVS
KSSCDSITDLRSRRNVDEEKSLKIESARKKAEEKKLARWEALGYQSLNVKDAISPTGNDIASASGSVHFVYGDCTAPSNV
CSSEPAIIFSCVDTSGHWGHGGMFDALSKLSTSIGDAYQWASEHGDLHLGDLHLIRLDDCCGEQMDGNAPKMVALAVVQS
YNPRHKIRRSEISLPHLESSLTKAAYSAAQNSG*
CDS seq >KRH75249
ATGAATCTTAGCTATGAGCAGAGGCTCCAGGTTGTCGCCAGACTCATTCTCGACGAAGACTCACGCCCCGGAGACGCGCC
GCTTTACCAGGAGGAGCTTGGGCTGAGGGTGACCCTCAAGCCGCACCAGGTGGAAGGGGTTTCGTGGCTCATACGGAGGT
ACAAACTCGGTGTCAACGTCGTCCTCGGTGATGAGATGGGACTGGGCAAGACTTTGCAAGCTATCTCCTTTTTAAGCTAT
TTAAAAGTATGCCGGTTGTCACTTGGGCCATTTTTGGTTATATGTCCTCTAAGTGTGACAGATGGTTGGGTGTCAGAGAT
AGTCAAATTTACCCCTAAACTCAAAGTCTTCAAATATGTTGGTGATAAAGAATGCAGGCGCAATCTACGCATGAAAATAC
ATGAATATGTAACAGGGCAGTCATCAACACTGAATGTCTTGTTGCCTTTTGATGTGCTGTTAACCTCATATGACATTGCA
CTGATGGATCAGGATTTTCTTTCTCAAATATCATGGCAGTATGCAATTATTGATGAAGCTCAGAGACTTAAAAACCCATC
AAGTGTTTTATTTAATGTTCTCAAAGATTGCTATATAATGCCAAGACGGTTGTTGATGACTGGCACACCTATTCAAAACA
ACCTTTCTGAATTGTGGGCGTTGATGTATTTTTGCATGCCTTCTGTTTTTGGTACACCGGATCAGTTCCTCTCTATGTTT
AAGGACATCAGTGATCTTTCACCAGTTCATGATACTCCAAAGGTAAAGGAGAGACTTAAAATTTTGAGAAGTGTATTGGG
AGCCTTTATGCTTCGACGTACCAAGTCAAAGCTTATCGAGTGTGGAAATTTAGTACTACCACCTCTCACTGTGACAACTG
TGTTAGTACCGCTTGTCATCCTGCAGAAAAAGGTCTACATGTCAATATTGAGGAAGGAACTTCATAAGCTACTTGCACTA
TCTTTTGGAACTTCAAATCATGAGTCACTACAGAATATTGTGATACAACTAAGAAAAGCATGCAGCCATCCTTATCTCTT
TCCAGGTATTGAGTCCGAACCGTATGAAGAAGGTGAACATCTGGTTCAGGCCAGTGGTAAACTGCTTATTCTGGACCAAC
TTCTTCAGAAGTTGCATTACTCTGGACACCGGGTTCTCCTTTTTGCTCAAATGACCCATACACTTGACATTTTGCAAGAT
TTTCTGGAGTTGCGAAAGTATTCTTATGAACGTCTTGATGGATCGATTAGGGCTGAGGAGCGCTTTGCTGCTATAAGAAG
TTTCAGTAGCTCATCAGCTAATATGGGCTTGAATTCTGAAGCTGACCAAAATGAAGCATTTGTTTTTATAATCTCAACAA
GAGCAGGGGGAGTTGGTTTGAATCTTGTGGCTGCTGATACTGTTATATTCTACGAGCAAGATTGGAACCCTCAGGTGGAC
AAGCAAGCTTTGCAGAGAGCACACAGAATTGGCCAGATGAACCATGTATTGTGTATAAACCTTGTTACAGAGCGGACAGT
GGAGGAAGTAATTATGCGCAGGGCAGAGAGAAAATTGCTGCTGAGCCTCAATGTTATAGGTGATAACATTCTCAAAGATG
ACAATAAAGAACCATCTGAAGTTGGAAGTGGTGATTTGAAATCCATCATATTTGGGTTACATATGTTTGATCCCACTGAG
ATCAATGATGGAAATCATAGGAATATGAACATACCAGAAATTTGTGCTATGGCTGACAGGGTGCTTGCTATGCGTGATGA
ACAAATACTTGATAATGATGAAAGGAAATTTGAGGTCAATCCAACAAACATTTTAAAAGGGGATGCTGTTAAGGAAAGAG
ATTCTGCTTCTCTCTCTTGTGATCTTGGTCTTGATGAGGCTTCATATCTTTCTTGGGTTAAAAAATTTGAGGAAGTGTCT
AAATCAAGTTGTGACTCAATCACAGACTTGAGGAGCAGAAGAAATGTAGATGAGGAAAAGAGTCTAAAAATTGAGTCTGC
AAGGAAGAAGGCAGAGGAAAAGAAGCTAGCTAGGTGGGAAGCTCTTGGATATCAATCATTGAATGTAAAAGACGCTATCA
GCCCAACGGGCAATGACATCGCTTCAGCTTCTGGGTCTGTTCATTTTGTGTATGGAGATTGTACAGCTCCTTCAAATGTT
TGTTCATCTGAACCTGCTATAATTTTCAGCTGCGTTGACACCTCTGGACATTGGGGTCACGGTGGAATGTTTGATGCACT
GTCCAAACTTTCTACAAGCATTGGTGATGCATATCAATGGGCTTCTGAACATGGGGATTTGCATCTTGGTGATCTGCATC
TTATAAGGCTTGATGATTGTTGTGGTGAACAAATGGATGGAAATGCTCCCAAAATGGTTGCTTTAGCTGTGGTTCAGTCT
TATAATCCAAGGCACAAAATCCGTCGCAGTGAAATCTCACTTCCCCACTTGGAAAGCAGCTTAACAAAGGCAGCGTACTC
AGCTGCTCAGAATTCTGGTTAA
Microexon DNA seq GTGATGAG
Microexon Amino Acid seq GDE
Microexon-tag DNA Seq GTTTCGTGGCTCATACGGAGGTACAAACTCGGTGTCAACGTCGTCCTCGGTGATGAGATGGGACTGGGCAAGACTTTGCAAGCTATCTCCTTTTTAAGCTATTTAAAA
Microexon-tag Amino Acid seq VSWLIRRYKLGVNVVLGDEMGLGKTLQAISFLSYLK
Transcript ID KRH75249
Gene ID Gm.691
Gene Name NA
Pfam domain motif SNF2_N
Motif E-value 4.5e-49
Motif start 57
Motif end 346
Protein seq >KRH75249
MNLSYEQRLQVVARLILDEDSRPGDAPLYQEELGLRVTLKPHQVEGVSWLIRRYKLGVNVVLGDEMGLGKTLQAISFLSY
LKVCRLSLGPFLVICPLSVTDGWVSEIVKFTPKLKVFKYVGDKECRRNLRMKIHEYVTGQSSTLNVLLPFDVLLTSYDIA
LMDQDFLSQISWQYAIIDEAQRLKNPSSVLFNVLKDCYIMPRRLLMTGTPIQNNLSELWALMYFCMPSVFGTPDQFLSMF
KDISDLSPVHDTPKVKERLKILRSVLGAFMLRRTKSKLIECGNLVLPPLTVTTVLVPLVILQKKVYMSILRKELHKLLAL
SFGTSNHESLQNIVIQLRKACSHPYLFPGIESEPYEEGEHLVQASGKLLILDQLLQKLHYSGHRVLLFAQMTHTLDILQD
FLELRKYSYERLDGSIRAEERFAAIRSFSSSSANMGLNSEADQNEAFVFIISTRAGGVGLNLVAADTVIFYEQDWNPQVD
KQALQRAHRIGQMNHVLCINLVTERTVEEVIMRRAERKLLLSLNVIGDNILKDDNKEPSEVGSGDLKSIIFGLHMFDPTE
INDGNHRNMNIPEICAMADRVLAMRDEQILDNDERKFEVNPTNILKGDAVKERDSASLSCDLGLDEASYLSWVKKFEEVS
KSSCDSITDLRSRRNVDEEKSLKIESARKKAEEKKLARWEALGYQSLNVKDAISPTGNDIASASGSVHFVYGDCTAPSNV
CSSEPAIIFSCVDTSGHWGHGGMFDALSKLSTSIGDAYQWASEHGDLHLGDLHLIRLDDCCGEQMDGNAPKMVALAVVQS
YNPRHKIRRSEISLPHLESSLTKAAYSAAQNSG*
CDS seq >KRH75249
ATGAATCTTAGCTATGAGCAGAGGCTCCAGGTTGTCGCCAGACTCATTCTCGACGAAGACTCACGCCCCGGAGACGCGCC
GCTTTACCAGGAGGAGCTTGGGCTGAGGGTGACCCTCAAGCCGCACCAGGTGGAAGGGGTTTCGTGGCTCATACGGAGGT
ACAAACTCGGTGTCAACGTCGTCCTCGGTGATGAGATGGGACTGGGCAAGACTTTGCAAGCTATCTCCTTTTTAAGCTAT
TTAAAAGTATGCCGGTTGTCACTTGGGCCATTTTTGGTTATATGTCCTCTAAGTGTGACAGATGGTTGGGTGTCAGAGAT
AGTCAAATTTACCCCTAAACTCAAAGTCTTCAAATATGTTGGTGATAAAGAATGCAGGCGCAATCTACGCATGAAAATAC
ATGAATATGTAACAGGGCAGTCATCAACACTGAATGTCTTGTTGCCTTTTGATGTGCTGTTAACCTCATATGACATTGCA
CTGATGGATCAGGATTTTCTTTCTCAAATATCATGGCAGTATGCAATTATTGATGAAGCTCAGAGACTTAAAAACCCATC
AAGTGTTTTATTTAATGTTCTCAAAGATTGCTATATAATGCCAAGACGGTTGTTGATGACTGGCACACCTATTCAAAACA
ACCTTTCTGAATTGTGGGCGTTGATGTATTTTTGCATGCCTTCTGTTTTTGGTACACCGGATCAGTTCCTCTCTATGTTT
AAGGACATCAGTGATCTTTCACCAGTTCATGATACTCCAAAGGTAAAGGAGAGACTTAAAATTTTGAGAAGTGTATTGGG
AGCCTTTATGCTTCGACGTACCAAGTCAAAGCTTATCGAGTGTGGAAATTTAGTACTACCACCTCTCACTGTGACAACTG
TGTTAGTACCGCTTGTCATCCTGCAGAAAAAGGTCTACATGTCAATATTGAGGAAGGAACTTCATAAGCTACTTGCACTA
TCTTTTGGAACTTCAAATCATGAGTCACTACAGAATATTGTGATACAACTAAGAAAAGCATGCAGCCATCCTTATCTCTT
TCCAGGTATTGAGTCCGAACCGTATGAAGAAGGTGAACATCTGGTTCAGGCCAGTGGTAAACTGCTTATTCTGGACCAAC
TTCTTCAGAAGTTGCATTACTCTGGACACCGGGTTCTCCTTTTTGCTCAAATGACCCATACACTTGACATTTTGCAAGAT
TTTCTGGAGTTGCGAAAGTATTCTTATGAACGTCTTGATGGATCGATTAGGGCTGAGGAGCGCTTTGCTGCTATAAGAAG
TTTCAGTAGCTCATCAGCTAATATGGGCTTGAATTCTGAAGCTGACCAAAATGAAGCATTTGTTTTTATAATCTCAACAA
GAGCAGGGGGAGTTGGTTTGAATCTTGTGGCTGCTGATACTGTTATATTCTACGAGCAAGATTGGAACCCTCAGGTGGAC
AAGCAAGCTTTGCAGAGAGCACACAGAATTGGCCAGATGAACCATGTATTGTGTATAAACCTTGTTACAGAGCGGACAGT
GGAGGAAGTAATTATGCGCAGGGCAGAGAGAAAATTGCTGCTGAGCCTCAATGTTATAGGTGATAACATTCTCAAAGATG
ACAATAAAGAACCATCTGAAGTTGGAAGTGGTGATTTGAAATCCATCATATTTGGGTTACATATGTTTGATCCCACTGAG
ATCAATGATGGAAATCATAGGAATATGAACATACCAGAAATTTGTGCTATGGCTGACAGGGTGCTTGCTATGCGTGATGA
ACAAATACTTGATAATGATGAAAGGAAATTTGAGGTCAATCCAACAAACATTTTAAAAGGGGATGCTGTTAAGGAAAGAG
ATTCTGCTTCTCTCTCTTGTGATCTTGGTCTTGATGAGGCTTCATATCTTTCTTGGGTTAAAAAATTTGAGGAAGTGTCT
AAATCAAGTTGTGACTCAATCACAGACTTGAGGAGCAGAAGAAATGTAGATGAGGAAAAGAGTCTAAAAATTGAGTCTGC
AAGGAAGAAGGCAGAGGAAAAGAAGCTAGCTAGGTGGGAAGCTCTTGGATATCAATCATTGAATGTAAAAGACGCTATCA
GCCCAACGGGCAATGACATCGCTTCAGCTTCTGGGTCTGTTCATTTTGTGTATGGAGATTGTACAGCTCCTTCAAATGTT
TGTTCATCTGAACCTGCTATAATTTTCAGCTGCGTTGACACCTCTGGACATTGGGGTCACGGTGGAATGTTTGATGCACT
GTCCAAACTTTCTACAAGCATTGGTGATGCATATCAATGGGCTTCTGAACATGGGGATTTGCATCTTGGTGATCTGCATC
TTATAAGGCTTGATGATTGTTGTGGTGAACAAATGGATGGAAATGCTCCCAAAATGGTTGCTTTAGCTGTGGTTCAGTCT
TATAATCCAAGGCACAAAATCCGTCGCAGTGAAATCTCACTTCCCCACTTGGAAAGCAGCTTAACAAAGGCAGCGTACTC
AGCTGCTCAGAATTCTGGTTAA