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Last updated: 2022/11/18
NameA_ErmoMG_comp35886_c0_seq2
Scaffold_id
NCBI non-redundant
(nr)
PREDICTED:_dolichyl-phosphate-mannose--protein_mannosyltransferase_4_isoform_X1_[Amyelois_transitella]
Ontology
GO:0000030 F mannosyltransferase activity
GO:0000032 P cell wall mannoprotein biosynthetic process
GO:0004169 F dolichyl-phosphate-mannose-protein mannosyltransferase activity
GO:0005515 F protein binding
GO:0005783 C endoplasmic reticulum
GO:0005789 C endoplasmic reticulum membrane
GO:0006486 P protein glycosylation
GO:0006493 P protein O-linked glycosylation
GO:0007275 P multicellular organism development
GO:0007517 P muscle organ development
GO:0007525 P somatic muscle development
GO:0016020 C membrane
GO:0016021 C integral component of membrane
GO:0016203 P muscle attachment
GO:0016740 F transferase activity
GO:0016757 F glycosyltransferase activity
GO:0030259 P lipid glycosylation
GO:0031502 C dolichyl-phosphate-mannose-protein mannosyltransferase complex
GO:0035269 P protein O-linked mannosylation
GO:0044845 P chain elongation of O-linked mannose residue
GO:0045214 P sarcomere organization
GO:1900101 P regulation of endoplasmic reticulum unfolded protein response
Transcript
Level
FPKM:3.97 TPM:2.92
ORF EntryO_ErmoMG11408_5prime_partial:A_ErmoMG_comp35886_c0_seq2
Sequence
(Nucleotide)
GCGGACTACTAAATAATAACGAGTATTACACTTTCACTTCTATTAAAAATAAAGAAATTA
ATAATAATATCTTCAGTGTTTTAATGTTTGTTTCCATCTATTCTCCTTCGTCAGTGAGCA
TACGAACCCTTAGCACTTTATGGTGTATAGCTACCATTGGTAACTCGGCAAACAAGATAT
AACCACTCAAAATTCCCAAGATTCCAGCCATTTCAGACCAGCCATTGTAGAATTAGGTTC
ATTGGCTAAAGGTCCGTTCATACCGTATGCTAGTGGTGAAAACAGATAGAAACTGTAAAT
TGTCGTTGATATTATGACTCCTACAATGCAATGATACGCTGTCTTCCCCAGTTCTGGACT
TAAATAACTGCGTATACTACTCAGTAGGTATTCAGTTAATATACCTGTAAGCATGGAGCT
GAAAACTAGTGCAGGGAAGTAGTGATGGAAGTATAGAACTCTGCCCATCGCCCAGAACGG
GACATAGTGCAGGGCCCATCCTATAAAAGTCCATCCCGCTGCGTTCAAAAGCATATTTTC
TTCGCAAACTTGTGTAGAAATACCAAAAGCTTCAGCTCTCTTCTGCCTTATGGAGTTAAC
AGTGTAGACCAAGAAAAATATGGCGAGAAACACTAGATTCGTCCACCAAACTACTGGATT
GCCTAACAGATAGATCCTGTGGCTACTACCCGAGAAGAATTGACCCCTGTAATTGATAGG
CCACTGCCACGGTTGCGAAGTGACTTCCCCTTCTTTGGGTTTGAGTCCGGCGTTTCCTTG
GAACATGACGGCGTGGGATTCGAGGAATCGCTCAATGAACCCCGATGCGTATGCTTCAAA
ACTCACTTTTGGTAAATCATCAAAAATGTTATCTTCCACGTTCCATAACGCATTCTTATC
TCTCAAATTAGGATTGCAAGCAACTTCCTGCTGTTCGTATCCCCATTTTGGCAATTGTTT
GCCTGTTGTTGTCAAAACACACGCCTGTAGATAATGAACGAGCATAAGTTTGCTTCGAAC
AGTCTGCACCTCTTCGCCATCTTTACCGCCAGATATCACTATCTTCCACACGTCGTTTGC
GTCACCAATACCTTCCTCCCCATATCCCGTGACCTGCATGTACTTGTGTGTGAGTGGCGC
CCTCTCGCGGTGTGAGTGGAGGTTCCGTCCCGTGGGAGCGTGTGTGAGTCGCACGAGGTC
ACCGCTCCGGACGACCACTGTCCCTTCAACTCGGTCACGATTGTAAGGCTTTATCTGCCA
ACGGTTATTCTCATCTTTGTGGGTGTAAGTGGTTATCTGTTGTTGTCTCGCTCCCGCGCC
GGCAGGGTACAAATGATGATGCGAATGTAGGTATCCACCGCCTGTTCTGTGATTCTTCAA
CGAGACTAATGCGCCATAAGCCAATACTCGAGGTGCGCTCGCGTTGTGCAAGCTGTTCCC
TTCGAGACGAGCTTGAAACCCCGATGAGTAGAAACCATCTCCATTACCACTTTTACTGAG
CACCGTGAGGTGAATCCAAAAGAAGAACACATACAAAACGAAAGGCCAAACAATCAATGT
TATTGTTCTCACAATGAGGTGTGTGATGGTATAGCTAACCGGTTTCGATAGATCTCCAAG
AATATTCCACAAGTCTGCAATAGTACGTAATCCAACGAATAC
(1662 bp)

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