Cytochrome P450 Mediated Cyclization in Eunicellane Derived Diterpenoid Biosynthesis**

Author:

Wang Zengyuan1,Yang Qian1,He Jingyi1,Li Haixin1,Pan Xingming1,Li Zining2,Xu Hui‐Min3,Rudolf Jeffrey D.2,Tantillo Dean J.4,Dong Liao‐Bin1ORCID

Affiliation:

1. State Key Laboratory of Natural Medicines School of Traditional Chinese Pharmacy China Pharmaceutical University Nanjing 211198 China

2. Department of Chemistry University of Florida Gainesville FL-32611 USA

3. The Public Laboratory Platform China Pharmaceutical University Nanjing 211198 China

4. Department of Chemistry University of California-Davis Davis CA-95616 USA

Abstract

AbstractTerpene cyclization, one of the most complex chemical reactions in nature, is generally catalyzed by two classes of terpene cyclases (TCs). Cytochrome P450s that act as unexpected TC‐like enzymes are known but are very rare. In this study, we genome‐mined a cryptic bacterial terpenoid gene cluster, named ari, from the thermophilic actinomycete strain Amycolatopsis arida. By employing a heterologous production system, we isolated and characterized three highly oxidized eunicellane derived diterpenoids, aridacins A−C (13), that possess a 6/7/5‐fused tricyclic scaffold. In vivo and in vitro experiments systematically established a noncanonical two‐step biosynthetic pathway for diterpene skeleton formation. First, a class I TC (AriE) cyclizes geranylgeranyl diphosphate (GGPP) into a 6/10‐fused bicyclic cis‐eunicellane skeleton. Next, a cytochrome P450 (AriF) catalyzes cyclization of the eunicellane skeleton into the 6/7/5‐fused tricyclic scaffold through C2−C6 bond formation. Based on the results of quantum chemical computations, hydrogen abstraction followed by electron transfer coupled to barrierless carbocation ring closure is shown to be a viable mechanism for AriF‐mediated cyclization. The biosynthetic logic of skeleton construction in the aridacins is unprecedented, expanding the catalytic capacity and diversity of P450s and setting the stage to investigate the inherent principles of carbocation generation by P450s in the biosynthesis of terpenoids.

Funder

National Natural Science Foundation of China

Foundation for the National Institutes of Health

Thousand Young Talents Program of China

Publisher

Wiley

Subject

General Chemistry,Catalysis

Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Cryptic Isomerization in Diterpene Biosynthesis and the Restoration of an Evolutionarily Defunct P450;Journal of the American Chemical Society;2023-10-09

2. Hot off the Press;Natural Product Reports;2023

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