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1.
Angew Chem Int Ed Engl ; 62(44): e202308881, 2023 10 26.
Article in English | MEDLINE | ID: mdl-37534412

ABSTRACT

Mushroom terpenoids are biologically and chemically diverse fungal metabolites. Among them, melleolides are representative sesquiterpenoids with a characteristic protoilludane skeleton. In this study, we applied a recently established hot spot knock-in method to elucidate the biosynthetic pathway leading to 1α-hydroxymelleolide. The biosynthesis of the sesquiterpene core involves the cytochrome P450 catalyzing stepwise hydroxylation of the Δ6 -protoilludene framework and a stereochemical inversion process at the C5 position catalyzed by short-chain dehydrogenase/reductase family proteins. The highlight of the biosynthesis is that the flavoprotein Mld7 catalyzes an oxidation-triggered double-bond shift accompanying dehydration and acyl-group-assisted substitution with two different nucleophiles at the C6 position to afford the Δ7 -protoilludene derivatives, such as melleolide and armillarivin. The complex reaction mechanism was proposed by DFT calculations. Of particular importance is that product distribution is regulated by interaction with the cell membrane.


Subject(s)
Basidiomycota , Terpenes , Cytochrome P-450 Enzyme System
2.
Org Lett ; 22(5): 1997-2001, 2020 03 06.
Article in English | MEDLINE | ID: mdl-32065755

ABSTRACT

To elucidate the biosynthesis of a fungicidal dimeric anhydride zopfiellin, the putative biosynthetic gene cluster was identified. We conducted heterologous expression of candidate genes for the synthesis of maleic anhydride and its dimerization and identified the two isomeric dimers with 9-membered rings as products. Notably, α-ketoglutarate-dependent dioxygenase ZopK oxidized one of the dimers, giving the 8-membered ring of zopfiellin. The mechanism of oxidative rearrangement is proposed by analyzing the incorporation of 13C-labeled precursors.


Subject(s)
Cyclooctanes/chemistry , Dioxygenases/metabolism , Fungi/chemistry , Maleic Anhydrides/chemistry , Anhydrides , Dimerization , Dioxygenases/chemistry , Fungi/metabolism , Fungicides, Industrial , Molecular Structure , Multigene Family , Oxidative Stress
3.
Appl Environ Microbiol ; 85(15)2019 08 01.
Article in English | MEDLINE | ID: mdl-31101615

ABSTRACT

Basidiomycete fungi are an attractive resource for biologically active natural products for use in pharmaceutically relevant compounds. Recently, genome projects on mushroom fungi have provided a great deal of biosynthetic gene cluster information. However, functional analyses of the gene clusters for natural products were largely unexplored because of the difficulty of cDNA preparation and lack of gene manipulation tools for basidiomycete fungi. To develop a versatile host for basidiomycete genes, we examined gene expression using genomic DNA sequences in the robust ascomycete host Aspergillus oryzae, which is frequently used for the production of metabolites from filamentous fungi. Exhaustive expression of 30 terpene synthase genes from the basidiomycetes Clitopilus pseudo-pinsitus and Stereum hirsutum showed two splicing patterns, i.e., completely spliced cDNAs giving terpenes (15 cases) and mostly spliced cDNAs, indicating that A. oryzae correctly spliced most introns at the predicted positions and lengths. The mostly spliced cDNAs were expressed after PCR-based removal of introns, resulting in the successful production of terpenes (14 cases). During this study, we observed relatively frequent mispredictions in the automated program. Hence, the complementary use of A. oryzae expression and automated prediction will be a powerful tool for genome mining.IMPORTANCE The recent large influx of genome sequences from basidiomycetes, which are prolific producers of bioactive natural products, may provide opportunities to develop novel drug candidates. The development of a reliable expression system is essential for the genome mining of natural products because of the lack of a tractable host for heterologous expression of basidiomycete genes. For this purpose, we applied the ascomycete Aspergillus oryzae system for the direct expression of fungal natural product biosynthetic genes from genomic DNA. Using this system, 29 sesquiterpene synthase genes and diterpene biosynthetic genes for bioactive pleuromutilin were successfully expressed. Together with the use of computational tools for intron prediction, this Aspergillus oryzae system represents a practical method for the production of basidiomycete natural products.


Subject(s)
Alkyl and Aryl Transferases/metabolism , Aspergillus oryzae/metabolism , Basidiomycota , Eurotiales/metabolism , Genes, Fungal , Terpenes/metabolism , Basidiomycota/genetics , Microorganisms, Genetically-Modified/metabolism , Multigene Family
5.
Org Lett ; 17(22): 5658-61, 2015 Nov 20.
Article in English | MEDLINE | ID: mdl-26558485

ABSTRACT

To elucidate the general biosynthetic pathway of fungal dimeric anhydrides, a gene cluster for the biosynthesis of the antihy-percholesterolemic agent phomoidride was identified by heterologous expression of candidate genes encoding the highly reducing polyketide synthase, alkylcitrate synthase (ACS), and alkylcitrate dehydratase (ACDH). An in vitro analysis of ACS and ACDH revealed that they give rise to anhydride monomers. Based on the established monomer biosynthesis, we propose a general biogenesis of dimeric anhydrides involving a single donor unit and four acceptor units.


Subject(s)
Anticholesteremic Agents/chemical synthesis , Aspergillus/metabolism , Maleic Anhydrides/chemical synthesis , Polyketide Synthases/metabolism , Anhydrides/chemistry , Anticholesteremic Agents/chemistry , Anticholesteremic Agents/pharmacology , Biosynthetic Pathways , Hydro-Lyases/metabolism , Maleic Anhydrides/chemistry , Molecular Structure , Multigene Family , Mycotoxins/metabolism
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