| Literature DB >> 28679030 |
Leibniz Hang1, Man-Cheng Tang1, Colin J B Harvey2, Claire G Page1, Jian Li2, Yiu-Sun Hung1, Nicholas Liu1, Maureen E Hillenmeyer2, Yi Tang1.
Abstract
Fungal polyketides have significant biological activities, yet the biosynthesis by highly reducing polyketide synthases (HRPKSs) remains enigmatic. An uncharacterized group of HRPKSs was found to contain a C-terminal domain with significant homology to carnitine O-acyltransferase (cAT). Characterization of one such HRPKS (Tv6-931) from Trichoderma virens showed that the cAT domain is capable of esterifying the polyketide product with polyalcohol nucleophiles. This process is readily reversible, as confirmed through the holo ACP-dependent transesterification of the released product. The methyltransferase (MT) domain of Tv6-931 can perform two consecutive α-methylation steps on the last β-keto intermediate to yield an α,α-gem-dimethyl product, a new programing feature among HRPKSs. Recapturing of the released product by cAT domain is suggested to facilitate complete gem-dimethylation by the MT.Entities:
Keywords: acyltransferase; biosynthesis; heterologous expression; methyltransferase; polyketides
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Year: 2017 PMID: 28679030 PMCID: PMC5580239 DOI: 10.1002/anie.201705237
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336