Microexon ID Sm_GL377571:2093939-2093943:-
Species Selaginella moellendorffii
Coordinates GL377571:2093939..2093943
Microexon Cluster ID MEP07
Size 5
Phase 1
Pfam Domain Motif Peptidase_M1
Structure of Microexon-tag (flanking exon, microexon, flanking exon sizes) 33,19,5,12,39
Microexon location in the Microexon-tag 3
Microexon-tag DNA Seq GCWCAYCCTGTTCGRCCWCAYTCTTAYATYAAGATGGACAACTTCTAYACAGTRACGGTKTATGARAAGGGWGCTGAAGTTGTCMGRATGTACAARACMTTRYTKGGR
Logo of Microexon-tag DNA Seq NT60 Logo
Alignment of exons MSA
Microexon DNA seq TGACG
Microexon Amino Acid seq VT
Microexon-tag DNA Seq GCGCACCCTGTCCGTCCGCATTCTTACATAAAGATGGACAACTTCTATACGGTGACGGTGTATAAAAAGGGTGCGGAAGTGGTTCGCATGTACCAAACATTGCTTGGG
Microexon-tag Amino Acid Seq AHPVRPHSYIKMDNFYTVTVYKKGAEVVRMYQTLLG
Microexon-tag spanning region2093831-2094111
Microexon-tag prediction score0.958
Overlapped with the annotated transcript (%) 100
New Transcript ID EFJ33345x
Reference Transcript ID EFJ33345
Gene ID SELMODRAFT_439355
Gene Name NA
Transcript ID EFJ33345
Protein ID EFJ33345
Gene ID SELMODRAFT_439355
Gene Name NA
Pfam domain motif Peptidase_M1
Motif E-value 1.3e-48
Motif start 546
Motif end 758
Protein seq >EFJ33345
MANSECSRMDRKVDYAILQRLLESKQIKVRIIYFYPEFLNYGQKEVLPPRLTQQRLQCTDVLHGPHNKMLIYEFLPNVLF
EDKEDNRLDCSLGLSGCRMFAESLLVIVHPGCFFLVMKTRSSPGILSGGIDRVKTTYPYITVRKANREHGGYPMDRNATL
DNISIAINCHLFFTTFRTNLMTGQRWSSLSQSIPCCVYIKCETFLVQITPSNSYYEFKSSSTGARTSIEMGGVRLSSNFH
KVRSFTRYCKSSSAFALSSKFKVDVSSIVYGSHHEGTWLRARKPIEIAGSSQFSTVSVGASPVAEEMAVKEAPKEIFLKD
YKPTGYHFDTVELKFVLSEKKTTVVSKIRVLPRNSSESPPLVLDGRDVKLLFVKINGEERKLEEVELTSRHLTLKSLPVQ
PFDLEIGSEIHPETNLSLEGLYKSSSGMFCTQCEAEGFRKITFYQDRPDVMAKFTTRIEADKAQCPVLLSNGNLIDSGDL
ESLTCCGQNGFHYAVWEDPFKKPCYLFALVAGQLTSRDDTFKTRSGRDVQLRIWTPAQDVPKTEHAMHALKLSMKWDEDV
YGLEYDLDLFNIVAVPDFDMGAMENKSLNIFNSKLVLASAETATDVDYATILGVIGHEYFHNWTGNRVTCRDWFQLSLKE
GLTVFRDQEFSSDMGSRPVKRIGDVALLRTAQFSEDAGPMAHPVRPHSYIKMDNFYTVTVYKKGAEVVRMYQTLLGKDGF
RKGMDLYFERHDGQAVTCEDFFAAMRDANSANLSVFLRWYSQAGTPILTVSTAYDAAARSYTVKCKQEIPSTPGQPVKEP
TLIPLAVGLLNSKGEDMVLTELFDGGSLKSLKDTAGGPAKTAVLLVDKEEQEFTFLNLPEKPVPSFLRNFSAPVRLVTPT
VTDDDLLFLLAHDSDEFNRWEAGQTMGRKLMLDLIPKAQRNEQLAEFVAKALTLPGESELMDLMEVADPDAVHTVRKFVI
RELASKLKQDFLKTVTENRSSDPHYTFDHKNKARRSLKNLALGYLCSLDEADTTELALKEYKSATNMTDQFAALSSLCQN
PGDVRDEALANFYEQWKDETLVVNEWLVLQSMSDIPGNVKNMRRLLDHPSFDMKNPNKVYSLIGPFRRTAVNFHAKDGSG
YEFLAEVTLQLDKMNPQVASRMISSLSRWKRFDEGRQSLAKAQLERIAKTDGLSENVFEIASKSLAA*
CDS seq >EFJ33345
ATGGCCAATAGCGAATGCTCAAGGATGGATAGGAAGGTGGACTATGCCATCTTGCAGAGGTTGCTGGAATCAAAACAGAT
AAAGGTGCGTATCATTTACTTTTATCCAGAATTTCTGAACTATGGACAAAAGGAAGTGCTACCACCTCGGCTTACGCAAC
AAAGACTGCAGTGTACGGATGTGCTCCACGGCCCACACAACAAAATGCTCATTTACGAGTTTCTCCCAAATGTCCTCTTC
GAAGACAAGGAGGACAACCGGCTTGACTGCTCTTTGGGTCTCTCGGGGTGTCGCATGTTTGCAGAATCCTTGCTGGTGAT
TGTCCATCCAGGCTGCTTCTTTCTAGTGATGAAAACCAGATCATCTCCAGGAATTCTCTCAGGGGGTATCGATCGAGTGA
AGACTACATATCCATATATAACAGTTAGAAAGGCAAACAGAGAGCATGGAGGATATCCAATGGACAGGAATGCTACCTTA
GATAACATCTCAATTGCAATCAATTGTCACCTCTTTTTTACTACCTTCCGGACGAATTTGATGACGGGCCAACGATGGAG
TAGTTTATCACAAAGTATTCCTTGTTGTGTTTACATTAAATGTGAAACTTTTCTTGTACAAATCACGCCAAGCAATAGCT
ATTATGAATTTAAGAGCAGTTCGACTGGAGCCAGGACAAGCATAGAGATGGGCGGTGTAAGGCTCAGTAGCAATTTCCAT
AAGGTAAGGAGCTTCACTCGGTACTGTAAATCCAGTTCCGCGTTTGCCTTGTCTTCGAAATTCAAGGTAGATGTTTCAAG
CATTGTTTATGGTTCTCATCATGAAGGAACTTGGTTGCGTGCGCGGAAGCCGATTGAAATTGCCGGGTCTAGCCAATTCT
CCACAGTGAGTGTTGGAGCTTCTCCTGTAGCTGAAGAGATGGCTGTCAAGGAGGCTCCCAAGGAGATTTTTTTGAAGGAT
TACAAGCCCACTGGCTATCACTTTGACACGGTCGAGCTGAAATTTGTTCTGTCTGAGAAAAAGACAACCGTGGTGTCTAA
GATCCGGGTTTTGCCGAGAAACTCAAGTGAAAGCCCGCCATTGGTTTTGGATGGTCGTGACGTGAAACTTCTCTTTGTTA
AAATCAACGGCGAAGAACGGAAGCTGGAAGAAGTTGAGCTGACCAGCCGTCATCTGACGTTGAAGTCACTTCCTGTTCAG
CCTTTTGATTTAGAGATTGGCTCTGAGATACACCCGGAGACTAACTTGTCTCTCGAAGGGCTCTACAAGTCTTCCAGCGG
CATGTTTTGTACACAATGCGAAGCTGAAGGTTTTAGAAAGATAACCTTTTACCAGGATCGGCCAGACGTTATGGCAAAGT
TTACTACCAGGATAGAAGCGGACAAAGCACAGTGTCCCGTTCTTTTGTCGAATGGCAACCTTATAGACTCCGGCGACCTC
GAGAGCCTGACGTGCTGTGGTCAGAATGGATTTCATTATGCTGTGTGGGAGGATCCTTTCAAAAAGCCTTGCTACCTCTT
TGCCTTGGTAGCGGGGCAACTCACGTCCAGAGACGATACTTTTAAAACGCGTTCAGGAAGGGATGTTCAACTGAGGATTT
GGACTCCTGCACAAGACGTCCCAAAGACAGAGCATGCTATGCATGCTCTCAAGCTTTCAATGAAGTGGGATGAGGATGTG
TATGGGTTGGAGTATGATCTTGACCTGTTTAACATTGTCGCTGTTCCCGATTTCGACATGGGTGCTATGGAGAACAAGAG
CTTGAATATATTCAACTCGAAACTTGTTCTGGCGTCTGCTGAAACTGCTACAGATGTTGACTACGCGACAATTTTGGGTG
TGATCGGTCATGAGTACTTCCACAATTGGACTGGGAATAGGGTGACATGCCGTGATTGGTTTCAATTGAGTCTGAAGGAG
GGTCTTACAGTTTTCAGGGATCAGGAGTTTTCTTCTGACATGGGCTCTCGACCTGTCAAACGTATCGGTGATGTCGCTCT
TCTCAGAACAGCACAATTCTCAGAGGACGCTGGTCCCATGGCGCACCCTGTCCGTCCGCATTCTTACATAAAGATGGACA
ACTTCTATACGGTGACGGTGTATAAAAAGGGTGCGGAAGTGGTTCGCATGTACCAAACATTGCTTGGGAAAGATGGGTTT
CGGAAGGGCATGGACTTGTACTTTGAACGTCACGACGGACAAGCTGTAACTTGCGAGGATTTCTTTGCTGCTATGCGAGA
CGCTAATTCCGCCAATCTTTCAGTTTTCTTGAGATGGTATTCTCAAGCTGGAACACCCATTCTTACTGTTTCGACAGCGT
ATGATGCTGCAGCTCGTAGCTATACTGTAAAGTGCAAGCAAGAAATTCCTTCTACACCTGGGCAACCTGTGAAGGAGCCG
ACGTTAATACCATTGGCTGTGGGTCTGCTAAATTCAAAAGGCGAAGATATGGTGTTGACCGAGTTGTTTGATGGAGGATC
ACTCAAGTCATTGAAAGACACAGCGGGGGGACCTGCAAAGACAGCAGTACTTCTTGTTGATAAGGAAGAGCAAGAGTTCA
CTTTTCTCAATTTGCCTGAGAAACCTGTGCCATCTTTCCTAAGAAACTTTAGTGCTCCCGTGCGCCTTGTGACGCCGACT
GTGACGGATGACGATTTGCTCTTTTTGCTCGCGCATGACTCCGACGAGTTTAACAGATGGGAGGCTGGACAGACGATGGG
AAGAAAACTTATGCTGGATCTTATTCCGAAAGCACAAAGAAACGAACAGCTCGCGGAATTTGTGGCAAAGGCACTAACAC
TTCCTGGAGAAAGCGAACTGATGGACTTGATGGAGGTTGCAGATCCAGATGCAGTACATACTGTCCGAAAATTTGTGATA
AGAGAGCTTGCGTCGAAACTGAAGCAAGATTTCCTGAAAACTGTGACTGAAAACCGAAGTTCTGATCCGCACTACACATT
CGATCACAAAAACAAAGCCAGGAGATCCTTAAAAAACCTCGCTCTCGGCTACCTCTGCTCTCTGGACGAGGCGGACACTA
CTGAGCTTGCTTTGAAGGAATACAAAAGCGCAACAAACATGACAGATCAATTTGCAGCCCTCTCTTCACTTTGCCAGAAT
CCTGGGGACGTGCGTGATGAAGCTTTGGCAAACTTCTACGAGCAGTGGAAGGACGAAACTTTGGTTGTGAACGAATGGCT
GGTGTTACAATCTATGTCTGATATCCCTGGAAATGTTAAGAACATGAGGCGATTGCTAGATCATCCGTCCTTCGATATGA
AGAACCCAAACAAGGTGTATTCTCTGATCGGTCCTTTTCGTCGGACCGCTGTCAACTTTCACGCTAAAGATGGCTCTGGC
TATGAGTTTCTGGCAGAGGTGACTTTGCAGTTGGACAAAATGAATCCTCAGGTGGCATCGCGAATGATATCGTCATTGTC
GAGGTGGAAACGCTTTGATGAAGGCAGACAATCGCTGGCTAAGGCTCAACTGGAACGCATTGCTAAAACCGATGGCCTGT
CAGAGAATGTGTTTGAGATCGCCTCCAAGAGCCTGGCAGCGTAA
Microexon DNA seq TGACG
Microexon Amino Acid seq VT
Microexon-tag DNA Seq GCGCACCCTGTCCGTCCGCATTCTTACATAAAGATGGACAACTTCTATACGGTGACGGTGTATAAAAAGGGTGCGGAAGTGGTTCGCATGTACCAAACATTGCTTGGG
Microexon-tag Amino Acid seq AHPVRPHSYIKMDNFYTVTVYKKGAEVVRMYQTLLG
Transcript ID Sm.5397.1
Gene ID Sm.5397
Gene Name NA
Pfam domain motif Peptidase_M1
Motif E-value 2.8e-49
Motif start 233
Motif end 443
Protein seq >Sm.5397.1
MAVKEAPKEIFLKDYKPTGYHFDTVELKFVLSEKKTTVVSKIRVLPRNSSESPPLVLDGRDVKLLFVKINGEERKLEEVE
LTSRHLTLKSLPVQPFDLEIGSEIHPETNLSLEGLYKSSSGMFCTQCEAEGFRKITFYQDRPDVMAKFTTRIEADKAQCP
VLLSNGNLIDSGDLENGFHYAVWEDPFKKPCYLFALVAGQLTSRDDTFKTRSGRDVQLRIWTPAQDVPKTEHAMHALKLS
MKWDEDVYGLEYDLDLFNIVAVPDFDMGAMENKSLNIFNSKLVLASAETATDVDYATILGVIGHEYFHNWTGNRVTCRDW
FQLSLKEGLTVFRDQEFSSDMGSRPVKRIGDVALLRTAQFSEDAGPMAHPVRPHSYIKMDNFYTVTVYKKGAEVVRMYQT
LLGKDGFRKGMDLYFERHDGQAVTCEDFFAAMRDANSANLSVFLRW*
CDS seq >Sm.5397.1
ATGGCTGTCAAGGAGGCTCCCAAGGAGATTTTTTTGAAGGATTACAAGCCCACTGGCTATCACTTTGACACGGTCGAGCT
GAAATTTGTTCTGTCTGAGAAAAAGACAACCGTGGTGTCTAAGATCCGGGTTTTGCCGAGAAACTCAAGTGAAAGCCCGC
CATTGGTTTTGGATGGTCGTGACGTGAAACTTCTCTTTGTTAAAATCAACGGCGAAGAACGGAAGCTGGAAGAAGTTGAG
CTGACCAGCCGTCATCTGACGTTGAAGTCACTTCCTGTTCAGCCTTTTGATTTAGAGATTGGCTCTGAGATACACCCGGA
GACTAACTTGTCTCTCGAAGGGCTCTACAAGTCTTCCAGCGGCATGTTTTGTACACAATGCGAAGCTGAAGGTTTTAGAA
AGATAACCTTTTACCAGGATCGGCCAGACGTTATGGCAAAGTTTACTACCAGGATAGAAGCGGACAAAGCACAGTGTCCC
GTTCTTTTGTCGAATGGCAACCTTATAGACTCCGGCGACCTCGAGAATGGATTTCATTATGCTGTGTGGGAGGATCCTTT
CAAAAAGCCTTGCTACCTCTTTGCCTTGGTAGCGGGGCAACTCACGTCCAGAGACGATACTTTTAAAACGCGTTCAGGAA
GGGATGTTCAACTGAGGATTTGGACTCCTGCACAAGACGTCCCAAAGACAGAGCATGCTATGCATGCTCTCAAGCTTTCA
ATGAAGTGGGATGAGGATGTGTATGGGTTGGAGTATGATCTTGACCTGTTTAACATTGTCGCTGTTCCCGATTTCGACAT
GGGTGCTATGGAGAACAAGAGCTTGAATATATTCAACTCGAAACTTGTTCTGGCGTCTGCTGAAACTGCTACAGATGTTG
ACTACGCGACAATTTTGGGTGTGATCGGTCATGAGTACTTCCACAATTGGACTGGGAATAGGGTGACATGCCGTGATTGG
TTTCAATTGAGTCTGAAGGAGGGTCTTACAGTTTTCAGGGATCAGGAGTTTTCTTCTGACATGGGCTCTCGACCTGTCAA
ACGTATCGGTGATGTCGCTCTTCTCAGAACAGCACAATTCTCAGAGGACGCTGGTCCCATGGCGCACCCTGTCCGTCCGC
ATTCTTACATAAAGATGGACAACTTCTATACGGTGACGGTGTATAAAAAGGGTGCGGAAGTGGTTCGCATGTACCAAACA
TTGCTTGGGAAAGATGGGTTTCGGAAGGGCATGGACTTGTACTTTGAACGTCACGACGGACAAGCTGTAACTTGCGAGGA
TTTCTTTGCTGCTATGCGAGACGCTAATTCCGCCAATCTTTCAGTTTTCTTGAGATGGTAA