Microexon ID At_3:9296094-9296103:+
Species Arabidopsis thaliana
Coordinates 3:9296094..9296103
Microexon Cluster ID MEP25
Size 10
Phase 2
Pfam Domain Motif CDP-OH_P_transf
Structure of Microexon-tag (flanking exon, microexon, flanking exon sizes) 50,10,48
Microexon location in the Microexon-tag 2
Microexon-tag DNA Seq YTSCARCCYTTYTGGASYCGHTKYGTYAMYYTCTTCCCYCTTTGGATGCCRCCAAAYATGATWACACTTAYRGGATTYATGTTYYTRSTBAYATCTGCAYTGCTTGGC
Logo of Microexon-tag DNA Seq NT60 Logo
Alignment of exons MSA
Microexon DNA seq CCCCAACATG
Microexon Amino Acid seq PPNM
Microexon-tag DNA Seq CTCCAACCTTTTTGGAACCGTTTTGTCAAAATCTTCCCTCTATGGATGCCCCCCAACATGATAACACTTATGGGGTTCATGTTTCTTCTCACATCTGCTCTCTTAGGC
Microexon-tag Amino Acid Seq LQPFWNRFVKIFPLWMPPNMITLMGFMFLLTSALLG
Microexon-tag spanning region9295943-9296241
Microexon-tag prediction score0.9546
Overlapped with the annotated transcript (%) 100
New Transcript ID AT3G25585.1x
Reference Transcript ID AT3G25585.1
Gene ID AT3G25585
Gene Name AAPT2
Transcript ID AT3G25585.1
Protein ID AT3G25585.1
Gene ID AT3G25585
Gene Name AAPT2
Pfam domain motif CDP-OH_P_transf
Motif E-value 1e-16
Motif start 47
Motif end 120
Protein seq >AT3G25585.1
MGYIGAHGVAALKKHKYSGVDHSYLAKYVLQPFWNRFVKIFPLWMPPNMITLMGFMFLLTSALLGYIYSPKLDSPPPRWV
HFAHGLLLFLYQTFDAVDGKQARRTNSSSPLGELFDHGCDALGCALETMAYGSTAMCGRDTFWFWVISAVPFFGATWEHY
FTNTLTLPVVNGPTEGLALIYCGHFFTAIVGAEWWAQPFGKSIPLFSWVPFLNEMQMSRIILFSMIFFAVIPTLAINTSN
VYKVVHSRNGSMLLALAMLYPLVTLIAGVLIWDYLSPIDLIRNYPHLVVLGTGLAFGFLVGRMILAHLCDEPKGLKTNMC
MSLLYLPFALANALTARLNDGVPLVDEFWVLLGYCIFTLSLYAHFATSVIHEITTALGIYCFRITRKEA*
CDS seq >AT3G25585.1
ATGGGTTACATAGGAGCTCATGGTGTAGCTGCTCTTAAGAAACACAAATACAGTGGTGTTGATCACTCTTATCTTGCCAA
ATATGTTCTCCAACCTTTTTGGAACCGTTTTGTCAAAATCTTCCCTCTATGGATGCCCCCCAACATGATAACACTTATGG
GGTTCATGTTTCTTCTCACATCTGCTCTCTTAGGCTATATATACTCACCTAAGTTGGATTCTCCACCTCCTCGATGGGTC
CACTTTGCACACGGCTTACTTCTGTTTTTATATCAGACATTTGATGCGGTTGATGGGAAGCAAGCACGAAGAACAAATTC
ATCTAGCCCACTAGGAGAGCTTTTTGACCATGGTTGCGATGCACTTGGCTGTGCGTTAGAAACAATGGCATATGGGAGTA
CTGCTATGTGTGGAAGAGATACTTTCTGGTTTTGGGTTATTTCTGCTGTTCCATTTTTTGGAGCAACATGGGAACACTAT
TTTACCAATACGCTTACTCTTCCGGTAGTCAATGGTCCTACAGAAGGTCTTGCACTTATATACTGTGGCCATTTCTTCAC
AGCCATTGTTGGTGCGGAGTGGTGGGCTCAGCCGTTTGGGAAGTCGATTCCTTTGTTTAGTTGGGTTCCGTTTTTGAACG
AGATGCAAATGTCCAGAATAATACTATTCTCCATGATTTTCTTTGCTGTTATACCAACCCTTGCAATCAACACGTCTAAT
GTTTACAAAGTTGTACATTCAAGAAATGGAAGCATGCTTCTAGCATTAGCTATGCTATATCCCTTAGTCACGTTAATTGC
AGGAGTTCTGATTTGGGATTACTTGTCTCCAATTGATCTCATAAGAAACTACCCTCACTTAGTTGTGTTGGGAACTGGTC
TTGCATTTGGATTCCTTGTGGGAAGAATGATTCTAGCTCACTTATGTGACGAACCAAAAGGATTGAAAACAAACATGTGT
ATGTCACTGCTTTACCTTCCATTTGCACTAGCAAATGCTCTAACCGCTAGACTCAACGACGGGGTTCCTCTTGTGGATGA
GTTTTGGGTTCTTCTTGGATATTGTATATTCACATTGTCACTATATGCGCATTTTGCAACTTCAGTCATTCATGAGATCA
CAACTGCACTTGGAATCTACTGCTTCAGGATTACTCGGAAAGAAGCTTGA
Microexon DNA seq CCCCAACATG
Microexon Amino Acid seq PPNM
Microexon-tag DNA Seq CTCCAACCTTTTTGGAACCGTTTTGTCAAAATCTTCCCTCTATGGATGCCCCCCAACATGATAACACTTATGGGGTTCATGTTTCTTCTCACATCTGCTCTCTTAGGC
Microexon-tag Amino Acid seq LQPFWNRFVKIFPLWMPPNMITLMGFMFLLTSALLG
Transcript ID AT3G25585.1
Gene ID At.14667
Gene Name AAPT2
Pfam domain motif CDP-OH_P_transf
Motif E-value 1e-16
Motif start 47
Motif end 120
Protein seq >AT3G25585.1
MGYIGAHGVAALKKHKYSGVDHSYLAKYVLQPFWNRFVKIFPLWMPPNMITLMGFMFLLTSALLGYIYSPKLDSPPPRWV
HFAHGLLLFLYQTFDAVDGKQARRTNSSSPLGELFDHGCDALGCALETMAYGSTAMCGRDTFWFWVISAVPFFGATWEHY
FTNTLTLPVVNGPTEGLALIYCGHFFTAIVGAEWWAQPFGKSIPLFSWVPFLNEMQMSRIILFSMIFFAVIPTLAINTSN
VYKVVHSRNGSMLLALAMLYPLVTLIAGVLIWDYLSPIDLIRNYPHLVVLGTGLAFGFLVGRMILAHLCDEPKGLKTNMC
MSLLYLPFALANALTARLNDGVPLVDEFWVLLGYCIFTLSLYAHFATSVIHEITTALGIYCFRITRKEA*
CDS seq >AT3G25585.1
ATGGGTTACATAGGAGCTCATGGTGTAGCTGCTCTTAAGAAACACAAATACAGTGGTGTTGATCACTCTTATCTTGCCAA
ATATGTTCTCCAACCTTTTTGGAACCGTTTTGTCAAAATCTTCCCTCTATGGATGCCCCCCAACATGATAACACTTATGG
GGTTCATGTTTCTTCTCACATCTGCTCTCTTAGGCTATATATACTCACCTAAGTTGGATTCTCCACCTCCTCGATGGGTC
CACTTTGCACACGGCTTACTTCTGTTTTTATATCAGACATTTGATGCGGTTGATGGGAAGCAAGCACGAAGAACAAATTC
ATCTAGCCCACTAGGAGAGCTTTTTGACCATGGTTGCGATGCACTTGGCTGTGCGTTAGAAACAATGGCATATGGGAGTA
CTGCTATGTGTGGAAGAGATACTTTCTGGTTTTGGGTTATTTCTGCTGTTCCATTTTTTGGAGCAACATGGGAACACTAT
TTTACCAATACGCTTACTCTTCCGGTAGTCAATGGTCCTACAGAAGGTCTTGCACTTATATACTGTGGCCATTTCTTCAC
AGCCATTGTTGGTGCGGAGTGGTGGGCTCAGCCGTTTGGGAAGTCGATTCCTTTGTTTAGTTGGGTTCCGTTTTTGAACG
AGATGCAAATGTCCAGAATAATACTATTCTCCATGATTTTCTTTGCTGTTATACCAACCCTTGCAATCAACACGTCTAAT
GTTTACAAAGTTGTACATTCAAGAAATGGAAGCATGCTTCTAGCATTAGCTATGCTATATCCCTTAGTCACGTTAATTGC
AGGAGTTCTGATTTGGGATTACTTGTCTCCAATTGATCTCATAAGAAACTACCCTCACTTAGTTGTGTTGGGAACTGGTC
TTGCATTTGGATTCCTTGTGGGAAGAATGATTCTAGCTCACTTATGTGACGAACCAAAAGGATTGAAAACAAACATGTGT
ATGTCACTGCTTTACCTTCCATTTGCACTAGCAAATGCTCTAACCGCTAGACTCAACGACGGGGTTCCTCTTGTGGATGA
GTTTTGGGTTCTTCTTGGATATTGTATATTCACATTGTCACTATATGCGCATTTTGCAACTTCAGTCATTCATGAGATCA
CAACTGCACTTGGAATCTACTGCTTCAGGATTACTCGGAAAGAAGCTTGA