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


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.

SUBMITTER: Szwalbe AJ 

PROVIDER: S-EPMC6335632 | biostudies-literature | 2019 Jan

REPOSITORIES: biostudies-literature

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

Szwalbe Agnieszka J AJ   Williams Katherine K   Song Zhongshu Z   de Mattos-Shipley Kate K   Vincent Jason L JL   Bailey Andrew M AM   Willis Christine L CL   Cox Russell J RJ   Simpson Thomas J TJ  

Chemical science 20181126 1


Two new dihydroxy-xanthone metabolites, agnestins A and B, were isolated from <i>Paecilomyces variotii</i> along with a number of related benzophenones and xanthones including monodictyphenone. The structures were elucidated by NMR analyses and X-ray crystallography. The agnestin (<i>agn</i>) 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 par  ...[more]

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