Microexon ID Gm_15:8717837-8717841:-
Species Glycine max
Coordinates 15:8717837..8717841
Microexon Cluster ID MEP09
Size 5
Phase 2
Pfam Domain Motif SKG6
Structure of Microexon-tag (flanking exon, microexon, flanking exon sizes) 19,34,5,50
Microexon location in the Microexon-tag 3
Microexon-tag DNA Seq GTDTWYATTCCDGSMMRAGATSAAAATGGAARYTATCSRCCCYTRMMAWCMAGCWCAGGAWTATCARGTGGAGYYATWGSTGGMATAKYTRTAGSAGYAGTAGYWGKR
Logo of Microexon-tag DNA Seq NT60 Logo
Alignment of exons MSA
Microexon DNA seq ATCAG
Microexon Amino Acid seq RSG
Microexon-tag DNA Seq GTGTTTGTGCCGGCTAAAGATGAAAATGGAAACTTTCCACCAATGCAGTTGAGATCAGGAATATCTAGTGGAGCCATTGCTGGCATAGCTGTTGGAGGAGCTGTTGGG
Microexon-tag Amino Acid Seq VFVPAKDENGNFPPMQLRSGISSGAIAGIAVGGAVG
Microexon-tag spanning region8717696-8721118
Microexon-tag prediction score0.9386
Overlapped with the annotated transcript (%) 100
New Transcript ID KRH11483x
Reference Transcript ID KRH11483
Gene ID GLYMA_15G111300
Gene Name NA
Transcript ID KRH11483
Protein ID KRH11483
Gene ID GLYMA_15G111300
Gene Name NA
Pfam domain motif Unknown
Motif E-value NA
Motif start NA
Motif end NA
Protein seq >KRH11483
MTTHPTTKSKPPHVFFLLLIQLLISITRVKGSCVTGCNLALASYYLGNGTNLTYISNLFGRPTSEILKYNPSVKNPNVIL
SQTRINVPFSCDCLNGAFLGHTFSYAIQHGNTYKIVAEVDFSNLTTEDWVGRVNSYPPNQIPDNVNINVTVNCSCGNRHV
SKDYGLFMTYPLRVGDSLQRVAAEAGVPAELLLRYNPTADFGAGNGLVFVPAKDENGNFPPMQLRSGISSGAIAGIAVGG
AVGVLILALLLYVGLRRRRKVAEVSLLPVPGASEDQCSPLQLHHGIGCGSSLDKASESSVVASPRLTGITVDKSVEFPYE
ELDKATDGFSAANIIGRGGFGSVYYAELRNEKAAIKKMDMQASNEFLAELNVLTHVHHLNLVRLIGYCVEGSLFLVYEYI
ENGNLSQHLRGSGRDPLTWAARVQIALDAARGLEYIHEHTVPVYIHRDIKSANILIDKNFRAKVADFGLTKLTEYGSSSL
HTRLVGTFGYMPPEYAQYGDVSSKIDVYAFGVVLYELISGKEAIVRTNEPENESKGLVALFEEVLGLSDPKVDLRQLIDP
TLGDNYPLDSVFKVSQLAKACTHENPQLRPSMRSIVVALMTLSSATEDWDVGSFYENQALVHLMSGR*
CDS seq >KRH11483
ATGACCACACACCCAACTACAAAATCAAAACCACCCCATGTTTTCTTCCTTCTCTTAATTCAGTTATTGATTTCGATTAC
AAGAGTCAAAGGTAGTTGCGTTACTGGCTGCAACCTTGCTTTAGCTTCCTATTACTTAGGGAACGGCACAAACCTCACTT
ACATTAGCAACCTCTTCGGAAGGCCAACATCGGAGATTCTAAAATACAACCCAAGTGTTAAGAACCCAAACGTGATTCTT
AGCCAAACACGGATCAACGTGCCCTTTTCGTGTGACTGCTTGAACGGTGCGTTTTTGGGGCACACTTTCTCGTACGCGAT
CCAACACGGAAACACGTACAAGATAGTTGCCGAGGTTGATTTCTCGAACCTCACGACGGAGGATTGGGTTGGCAGGGTCA
ACAGTTACCCGCCGAATCAGATACCCGACAACGTGAACATCAACGTCACCGTTAACTGTTCCTGCGGAAACCGACACGTG
TCCAAGGATTATGGGCTGTTCATGACGTACCCGCTTCGGGTCGGTGACAGCTTACAGCGGGTTGCGGCCGAAGCCGGCGT
GCCGGCGGAGCTGCTGCTGAGGTACAACCCCACGGCGGATTTCGGTGCTGGGAATGGACTCGTGTTTGTGCCGGCTAAAG
ATGAAAATGGAAACTTTCCACCAATGCAGTTGAGATCAGGAATATCTAGTGGAGCCATTGCTGGCATAGCTGTTGGAGGA
GCTGTTGGGGTCTTAATTTTGGCACTTCTTCTATATGTTGGACTACGCAGAAGAAGGAAAGTGGCTGAGGTATCCCTTCT
CCCAGTCCCAGGAGCATCTGAAGATCAGTGTAGTCCACTCCAACTCCATCATGGTATTGGTTGTGGAAGCAGCTTGGACA
AGGCATCTGAATCTTCTGTTGTAGCCTCTCCAAGGTTGACAGGGATTACAGTGGACAAGTCAGTGGAGTTCCCATATGAG
GAGCTAGACAAGGCTACTGATGGCTTTAGTGCGGCTAATATAATTGGTCGAGGTGGCTTTGGATCTGTTTACTATGCTGA
GCTCCGGAATGAGAAAGCTGCAATTAAAAAGATGGATATGCAAGCATCAAATGAATTCCTTGCAGAATTAAATGTTCTTA
CACACGTCCATCACTTGAACTTGGTGAGGTTAATAGGATATTGTGTTGAGGGCTCCTTATTTTTGGTTTATGAGTACATT
GAGAACGGCAATTTAAGTCAACATTTGCGAGGCTCAGGGAGGGATCCGTTAACATGGGCAGCTCGAGTTCAAATTGCCCT
TGATGCAGCAAGAGGATTGGAATACATCCATGAGCACACTGTTCCTGTCTACATCCATAGAGATATTAAATCAGCAAACA
TTTTGATAGACAAAAACTTTCGTGCAAAGGTTGCAGATTTTGGTCTCACAAAATTGACCGAATATGGTAGTTCTTCATTA
CATACGCGTCTTGTGGGTACATTTGGTTATATGCCTCCAGAATATGCACAATATGGTGATGTGTCCTCCAAAATAGATGT
ATATGCTTTTGGAGTTGTTCTTTATGAACTCATATCAGGCAAGGAAGCTATTGTCAGGACAAACGAACCTGAGAATGAAT
CAAAAGGACTAGTTGCCTTGTTTGAAGAAGTTCTTGGTCTGTCAGATCCAAAAGTAGATCTTCGTCAACTTATTGACCCT
ACACTTGGTGACAACTACCCTCTTGACTCGGTATTTAAGGTGTCTCAGCTTGCCAAAGCATGTACACATGAGAACCCTCA
ACTTAGGCCAAGCATGAGATCAATTGTAGTTGCCTTAATGACACTTTCATCTGCAACTGAGGATTGGGATGTTGGCTCCT
TCTATGAAAACCAAGCTTTGGTGCACCTAATGTCTGGAAGGTAG
Microexon DNA seq ATCAG
Microexon Amino Acid seq RSG
Microexon-tag DNA Seq GTGTTTGTGCCGGCTAAAGATGAAAATGGAAACTTTCCACCAATGCAGTTGAGATCAGGAATATCTAGTGGAGCCATTGCTGGCATAGCTGTTGGAGGAGCTGTTGGG
Microexon-tag Amino Acid seq VFVPAKDENGNFPPMQLRSGISSGAIAGIAVGGAVG
Transcript ID KRH11483
Gene ID Gm.17660
Gene Name NA
Pfam domain motif Unknown
Motif E-value NA
Motif start NA
Motif end NA
Protein seq >KRH11483
MTTHPTTKSKPPHVFFLLLIQLLISITRVKGSCVTGCNLALASYYLGNGTNLTYISNLFGRPTSEILKYNPSVKNPNVIL
SQTRINVPFSCDCLNGAFLGHTFSYAIQHGNTYKIVAEVDFSNLTTEDWVGRVNSYPPNQIPDNVNINVTVNCSCGNRHV
SKDYGLFMTYPLRVGDSLQRVAAEAGVPAELLLRYNPTADFGAGNGLVFVPAKDENGNFPPMQLRSGISSGAIAGIAVGG
AVGVLILALLLYVGLRRRRKVAEVSLLPVPGASEDQCSPLQLHHGIGCGSSLDKASESSVVASPRLTGITVDKSVEFPYE
ELDKATDGFSAANIIGRGGFGSVYYAELRNEKAAIKKMDMQASNEFLAELNVLTHVHHLNLVRLIGYCVEGSLFLVYEYI
ENGNLSQHLRGSGRDPLTWAARVQIALDAARGLEYIHEHTVPVYIHRDIKSANILIDKNFRAKVADFGLTKLTEYGSSSL
HTRLVGTFGYMPPEYAQYGDVSSKIDVYAFGVVLYELISGKEAIVRTNEPENESKGLVALFEEVLGLSDPKVDLRQLIDP
TLGDNYPLDSVFKVSQLAKACTHENPQLRPSMRSIVVALMTLSSATEDWDVGSFYENQALVHLMSGR*
CDS seq >KRH11483
ATGACCACACACCCAACTACAAAATCAAAACCACCCCATGTTTTCTTCCTTCTCTTAATTCAGTTATTGATTTCGATTAC
AAGAGTCAAAGGTAGTTGCGTTACTGGCTGCAACCTTGCTTTAGCTTCCTATTACTTAGGGAACGGCACAAACCTCACTT
ACATTAGCAACCTCTTCGGAAGGCCAACATCGGAGATTCTAAAATACAACCCAAGTGTTAAGAACCCAAACGTGATTCTT
AGCCAAACACGGATCAACGTGCCCTTTTCGTGTGACTGCTTGAACGGTGCGTTTTTGGGGCACACTTTCTCGTACGCGAT
CCAACACGGAAACACGTACAAGATAGTTGCCGAGGTTGATTTCTCGAACCTCACGACGGAGGATTGGGTTGGCAGGGTCA
ACAGTTACCCGCCGAATCAGATACCCGACAACGTGAACATCAACGTCACCGTTAACTGTTCCTGCGGAAACCGACACGTG
TCCAAGGATTATGGGCTGTTCATGACGTACCCGCTTCGGGTCGGTGACAGCTTACAGCGGGTTGCGGCCGAAGCCGGCGT
GCCGGCGGAGCTGCTGCTGAGGTACAACCCCACGGCGGATTTCGGTGCTGGGAATGGACTCGTGTTTGTGCCGGCTAAAG
ATGAAAATGGAAACTTTCCACCAATGCAGTTGAGATCAGGAATATCTAGTGGAGCCATTGCTGGCATAGCTGTTGGAGGA
GCTGTTGGGGTCTTAATTTTGGCACTTCTTCTATATGTTGGACTACGCAGAAGAAGGAAAGTGGCTGAGGTATCCCTTCT
CCCAGTCCCAGGAGCATCTGAAGATCAGTGTAGTCCACTCCAACTCCATCATGGTATTGGTTGTGGAAGCAGCTTGGACA
AGGCATCTGAATCTTCTGTTGTAGCCTCTCCAAGGTTGACAGGGATTACAGTGGACAAGTCAGTGGAGTTCCCATATGAG
GAGCTAGACAAGGCTACTGATGGCTTTAGTGCGGCTAATATAATTGGTCGAGGTGGCTTTGGATCTGTTTACTATGCTGA
GCTCCGGAATGAGAAAGCTGCAATTAAAAAGATGGATATGCAAGCATCAAATGAATTCCTTGCAGAATTAAATGTTCTTA
CACACGTCCATCACTTGAACTTGGTGAGGTTAATAGGATATTGTGTTGAGGGCTCCTTATTTTTGGTTTATGAGTACATT
GAGAACGGCAATTTAAGTCAACATTTGCGAGGCTCAGGGAGGGATCCGTTAACATGGGCAGCTCGAGTTCAAATTGCCCT
TGATGCAGCAAGAGGATTGGAATACATCCATGAGCACACTGTTCCTGTCTACATCCATAGAGATATTAAATCAGCAAACA
TTTTGATAGACAAAAACTTTCGTGCAAAGGTTGCAGATTTTGGTCTCACAAAATTGACCGAATATGGTAGTTCTTCATTA
CATACGCGTCTTGTGGGTACATTTGGTTATATGCCTCCAGAATATGCACAATATGGTGATGTGTCCTCCAAAATAGATGT
ATATGCTTTTGGAGTTGTTCTTTATGAACTCATATCAGGCAAGGAAGCTATTGTCAGGACAAACGAACCTGAGAATGAAT
CAAAAGGACTAGTTGCCTTGTTTGAAGAAGTTCTTGGTCTGTCAGATCCAAAAGTAGATCTTCGTCAACTTATTGACCCT
ACACTTGGTGACAACTACCCTCTTGACTCGGTATTTAAGGTGTCTCAGCTTGCCAAAGCATGTACACATGAGAACCCTCA
ACTTAGGCCAAGCATGAGATCAATTGTAGTTGCCTTAATGACACTTTCATCTGCAACTGAGGATTGGGATGTTGGCTCCT
TCTATGAAAACCAAGCTTTGGTGCACCTAATGTCTGGAAGGTAG