MmfL catalyses formation of a phosphorylated butenolide intermediate in methylenomycin furan biosynthesis

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Abstract

Using a combination of a synthetic substrate analogue and product standard, MmfL, a homologue of the γ-butyrolactone biosynthetic enzyme AfsA, was shown to catalyse the condensation of dihydroxyacetone phosphate with a β-ketoacyl thioester to form a phosphorylated butenolide intermediate in the biosynthesis of the methylenomycin furans, which induce methlenomycin antibiotic production in Streptomyces coelicolor A3(2). AfsA homologues are also involved in the biosynthesis of 2-akyl-4-hydroxy-3-methyl butenolide inducers of antibiotic production in other Streptomyces species, indicating that diverse signalling molecules are assembled from analogous phosphorylated butenolide intermediates.

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Zhou, S., Malet, N. R., Song, L., Corre, C., & Challis, G. L. (2020). MmfL catalyses formation of a phosphorylated butenolide intermediate in methylenomycin furan biosynthesis. Chemical Communications, 56(92), 14443–14446. https://doi.org/10.1039/d0cc05658h

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