Characterisation of the biosynthetic pathway to agnestins A and B reveals the reductive route to chrysophanol in fungi

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Abstract

Two new dihydroxy-xanthone metabolites, agnestins A and B, were isolated from Paecilomyces variotii along with a number of related benzophenones and xanthones including monodictyphenone. The structures were elucidated by NMR analyses and X-ray crystallography. The agnestin (agn) biosynthetic gene cluster was identified and targeted gene disruptions of the PKS, Baeyer-Villiger monooxygenase, and other oxido-reductase genes revealed new details of fungal xanthone biosynthesis. In particular, identification of a reductase responsible for in vivo anthraquinone to anthrol conversion confirms a previously postulated essential step in aromatic deoxygenation of anthraquinones, e.g. emodin to chrysophanol.

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Szwalbe, A. J., Williams, K., Song, Z., De Mattos-Shipley, K., Vincent, J. L., Bailey, A. M., … Simpson, T. J. (2019). Characterisation of the biosynthetic pathway to agnestins A and B reveals the reductive route to chrysophanol in fungi. Chemical Science, 10(1), 233–238. https://doi.org/10.1039/C8SC03778G

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