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Last updated: 2022/11/18
NameA_SariMG_comp15058_c0_seq1
Scaffold_id
NCBI non-redundant
(nr)
UDP-glycosyltransferase_UGT42A1_[Bombyx_mori]
Ontology
GO:0001972 F retinoic acid binding
GO:0004857 F enzyme inhibitor activity
GO:0005080 F protein kinase C binding
GO:0005783 C endoplasmic reticulum
GO:0005789 C endoplasmic reticulum membrane
GO:0006631 P fatty acid metabolic process
GO:0007588 P excretion
GO:0008144 F obsolete drug binding
GO:0008152 P metabolic process
GO:0009804 P coumarin metabolic process
GO:0009813 P flavonoid biosynthetic process
GO:0015020 F glucuronosyltransferase activity
GO:0016020 C membrane
GO:0016021 C integral component of membrane
GO:0016740 F transferase activity
GO:0016757 F glycosyltransferase activity
GO:0016758 F hexosyltransferase activity
GO:0017144 P xenobiotic metabolic process
GO:0019899 F enzyme binding
GO:0042573 P retinoic acid metabolic process
GO:0042803 F protein homodimerization activity
GO:0043086 P negative regulation of catalytic activity
GO:0043231 C intracellular membrane-bounded organelle
GO:0045922 P negative regulation of fatty acid metabolic process
GO:0046982 F protein heterodimerization activity
GO:0051552 P flavone metabolic process
GO:0052695 P cellular glucuronidation
GO:0052696 P flavonoid glucuronidation
GO:0052697 P xenobiotic glucuronidation
GO:1904224 P negative regulation of glucuronosyltransferase activity
GO:2001030 P negative regulation of cellular glucuronidation
Transcript
Level
FPKM:5.09 TPM:5.10
ORF EntryO_SariMG1034_internal:A_SariMG_comp15058_c0_seq1
Sequence
(Nucleotide)
ATTTTGTTTTCAGTTTATTTTTAGATACTTTAGATTTTTTAGAAAGGAGAAAGGAAACTA
GAATCTTTGTTGTGTATACGAATACAGAAATTATTCCAAATAAAACGCAAACAATATCTA
AGTAAAGATATTGGTAGAAAGGTACGTCTGCAGCTCTTGTTCTAAATGTGAAGTTTTGAT
GACGCGCTGCGAATTCAGTCCAGAAGATGGCCTCATCCATAGCTGATATTGGCCGGTCTC
GCCAGGCTTTTGAGAGTTGCTTTACTTTATTTTTAAACTCCGGATTAAGAACTGTCTTGA
ATTTTTCTAACAATGCTTCTTTAGTTAGATCTTTGACTTGTATTTGGACTCCCAAACCAC
TTTCCTCGACCGCTGCGGCATTCGCAGGCTGGTCACCAAATACAGGCATTCCAACAACTG
GTACACCGTGATAAATAGCCTCCGTTGTGCCAAGTAGACCGCAGTGTGAGAAGAATGCTA
AGACTTTCGGATGAGCTAAAATATCATTTTGCGGTAGCCAATTCGATAGGAATATGTTTT
TAGGATTCTGTGGTAGAGTTTTTTCTTCCCATTTCCATATAACTCGCTGCGGCAATTCGG
ATAGAGCTCCTACGATGGCTTCTACTTTATCTTTAGGTGTAGTTGAAGCCTTTAACATTG
ATCCAAAACTGATGTAGATGACACCGTGTTCGGATTCTTCAATATATTTTTCTAAATCTG
TTGGTAAAACTTTTGGAGCTGCAACATGGTAACCACCCACTTCTATGACATTAGGCGGTA
ACAAATTAGATCCAGATAGCAAAAAATTCTGATAATGGAGCATGAATTTTATTTCACGGG
CTAAGTCTTCTAATGGTGGTATATCATCAAAATACTGTGCTAATGTGTTTTGATCAACAT
TTTGAGCAAAATATTTATACAATAAATTAAAATACGCGTGAAATATAATTCTTTCTATTC
TTTGGTAAAACGTGGGCCTTGTTCCTCCTTCTAGGAATTGAAAGGATACGTACGATGGGT
TGTAAGTGACACCAAACCTTGCGTAGTGAAAGGGCATGAAAACATGTGAATTTATACCGA
CTACTGGTGCACCCAATTTGTAAGCAAGACCTAATGCACAATCACTGTTAAACTGTTCTA
ATACCACTACATCAAACTTGGTTTGCGTCTTCCACAAAGCTTGGACTTGTTCATGTTTCA
GAAGCACTCTACAATTTTCCGTACCTAAGTTAACTAAAAAAAAACTAATACCTATAAGGG
TTAAATAAGATCGCTCTATAGGAAGGGCATCTTCTAATATTTTAACTGTCCCAGCTAAAC
TTATGTCATGATAATTTTCTATAGGTTGCTTTTGCGGAAAATGTGATATAACTGTTAGGT
TGTGTCCTCTTCTCGCTAATTCTTTTAGATACGTTTGAAAAACGAAGAAATGACTTTTTC
CTTGGTACG
(1449 bp)

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