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Functional and Structural Analyses of trans C-Methyltransferase in Fungal Polyketide Biosynthesis.

Shinji KishimotoYuta TsunematsuTakuma MatsushitaKodai HaraHiroshi HashimotoYi TangKenji Watanabe
Published in: Biochemistry (2019)
Biosynthesis of certain fungal polyketide-peptide synthetases involves C-methyltransferase activity that adds one or more S-adenosyl-l-methionine-derived methyl groups to the carbon framework. The previously reported PsoF-MT, the stand-alone C-methyltransferase (MT) from the pseurotin biosynthetic pathway that exists as a domain within a trifunctional didomain enzyme PsoF, was characterized crystallographically and kinetically using mutants with substrate analogs to understand how a trans-acting C-MT works and compare it to known polyketide synthase-associated C-MTs. This study identified key active-site residues involved in catalysis and substrate recognition, which led us to propose the mechanism of C-methylation and substrate specificity determinants in PsoF-MT.
Keyphrases
  • cell wall
  • structural basis
  • amino acid
  • dna methylation
  • gene expression
  • molecular docking