Reconstitution of Enzymatic Carbon-Sulfur Bond Formation Reveals Detoxification-Like Strategy in Fungal Toxin Biosynthesis.

Daniel H Scharf, Jan D Dworschak, Pranatchareeya Chankhamjon, Kirstin Scherlach, Thorsten Heinekamp, Axel A Brakhage, Christian Hertweck

Journal: ACS chemical biology 2019;13(9):2508-2512

PMID: 30075079

Abstract

Gliotoxin is a virulence factor of the human pathogen Aspergillus fumigatus, the leading cause of invasive aspergillosis. The activity of this metabolite is mediated by a transannular disulfide bond, a hallmark of the epipolythiodiketopiperazine (ETP) family. Through the creation of fungal gene deletion mutants and heterologous protein expression, we unveiled the critical role of the cytochrome P450 monooxygenase (CYP450) GliC for the stepwise bishydroxylation of the diketopiperazine (DKP) core. We show for the first time the formation of the C-S bond from the DKP in a combined assay of GliC and the glutathione- S-transferase (GST) GliG in vitro. Furthermore, we present experimental evidence for an intermediary imine species. The flexible substrate scope of GliC and GliG in combination parallels P450/GST pairs used in eukaryotic phase I/II detoxification pathways.

Address: Department of Molecular and Applied Microbiology , Leibniz Institute for Natural Product Research and Infection Biology (HKI) , 07745 Jena , Germany.; Department of Biomolecular Chemistry , Leibniz Institute for Natural Product Research and Infection Biology (HKI) , 07745 Jena , Germany.; Friedrich Schiller University Jena , 07743 Jena , Germany.

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