| Literature DB >> 32931152 |
Takaaki Mitsuhashi1,2, Lena Barra1, Zachary Powers3, Volga Kojasoy4, Andrea Cheng3, Feng Yang3, Yoshimasa Taniguchi5, Takashi Kikuchi6, Makoto Fujita2,7, Dean J Tantillo4, John A Porco3, Ikuro Abe1,8.
Abstract
Fungal meroterpenoids are a diverse group of hybrid natural products with impressive structural complexity and high potential as drug candidates. In this work, we evaluate the promiscuity of the early structure diversity-generating step in fungal meroterpenoid biosynthetic pathways: the multibond-forming polyene cyclizations catalyzed by the yet poorly understood family of fungal meroterpenoid cyclases. In total, 12 unnatural meroterpenoids were accessed chemoenzymatically using synthetic substrates. Their complex structures were determined by 2D NMR studies as well as crystalline-sponge-based X-ray diffraction analyses. The results obtained revealed a high degree of enzyme promiscuity and experimental results which together with quantum chemical calculations provided a deeper insight into the catalytic activity of this new family of non-canonical, terpene cyclases. The knowledge obtained paves the way to design and engineer artificial pathways towards second generation meroterpenoids with valuable bioactivities based on combinatorial biosynthetic strategies.Entities:
Keywords: chemoenzymatic synthesis; combinatorial biosynthesis; crystalline-sponge x-ray diffraction; meroterpenoid cyclase; meroterpenoids
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Year: 2020 PMID: 32931152 PMCID: PMC8957209 DOI: 10.1002/anie.202011171
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336