Iterative-Acting Thioesterase from Polyketide Biosynthesis Accepts Diverse Nucleophilic Alcohols to Yield Oxazole-Containing Esters.

Journal of agricultural and food chemistry(2023)

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摘要
The biosynthesis of antitumor oxazole-containing conglobatin is directed by a multienzyme assembly line of nonribosomal peptide synthetase (NRPS) and polyketide synthase (PKS), in which an uncanonical iterative-acting C-terminal thioesterase domain, Cong-TE, ligated two fully elongated chains/conglobatin monomers on the terminal acylcarrier protein and subsequently cyclized the resulting dimer to a C-symmetric macrodiolide. Screening of the conglobatin producer for secondary metabolites led to the discovery of two new compounds conglactones A () and B (), possessing inhibitory activities to phytopathogenic microorganisms and cancer cells, respectively. The compounds and feature the ester bond-linked hybrid structures consisting of an aromatic polyketide benwamycin I () and one (for )/two (for ) molecules of the conglobatin monomer (). Genetic mutational analysis revealed that the production of and was correlated with the biosynthetic pathways of and . Biochemical analysis indicated that and were produced by Cong-TE from and an -acetylcysteamine thioester form of (). Furthermore, the substrate compatibility of Cong-TE was demonstrated by enzymatically generating a bunch of ester products from and 43 exotic alcohols. This property of Cong-TE was further validated by producing 36 hybrid esters in the fermentation of conglobatin producer fed with nonindigenous alcohols. This work shows a prospect of developing Cong-TE for green synthesis of valuable oxazole-containing esters, thus complementing the environmentally unfriendly chemosynthesis strategies.
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关键词
polyketide biosynthesis,diverse nucleophilic alcohols,iterative-acting,oxazole-containing
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