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前根皮菌素 A 的生物合成揭示了表二硫二肽类化合物的隐藏多样性。

Pretrichodermamide A Biosynthesis Reveals the Hidden Diversity of Epidithiodiketopiperazines.

机构信息

State Key Laboratory of Mycology, Institute of Microbiology, Chinese Academy of Sciences, Beijing, 100101, P. R. China.

Savaid Medical School, University of Chinese Academy of Sciences, Beijing, 100049, P. R. China.

出版信息

Angew Chem Int Ed Engl. 2023 Apr 24;62(18):e202217212. doi: 10.1002/anie.202217212. Epub 2023 Mar 24.

Abstract

Fungal epidithiodiketopiperazines (ETPs) possess large structural diversity and complexity due to modifications of the cyclodipeptide skeleton. Elucidation of the biosynthetic pathway of pretrichodermamide A (1) in Trichoderma hypoxylon revealed a flexible catalytic machinery of multiple enzymes for generating ETP diversity. Seven tailoring enzymes encoded by the tda cluster are involved in 1 biosynthesis, that is, four P450s TdaB and TdaQ for 1,2-oxazine formation, TdaI for C7'-hydroxylation, and TdaG for C4, C5-epoxidation, two methyltransferases TdaH for C6'- and TdaO for C7'-O-methylation, and a reductase TdaD for furan opening. Gene deletions led to the identification of 25 novel ETPs, including 20 shunt products, indicating the catalytic promiscuity of Tda enzymes. Particularly, TdaG and TdaD accept various substrates and catalyze regiospecific reactions at different stages of 1 biosynthesis. Our study not only uncovers a hidden library of ETP alkaloids, but also helps to understand the hidden chemical diversity of natural products by pathway manipulation.

摘要

真菌二噻唑并[1,2-a:3,4-d]嘧啶二酮哌嗪(ETP)因其环二肽骨架的修饰而具有丰富的结构多样性和复杂性。在揭示Hypoxylon 属 Trichoderma 中前 Trichodermamide A(1)的生物合成途径时,发现了多种酶具有灵活的催化机制,可产生 ETP 多样性。tda 簇编码的 7 种修饰酶参与 1 的生物合成,即 4 个 P450s(TdaB 和 TdaQ 用于 1,2-恶嗪形成,TdaI 用于 C7'-羟化,TdaG 用于 C4、C5-环氧化),2 个甲基转移酶(TdaH 用于 C6'-和 TdaO 用于 C7'-O-甲基化)和 1 个还原酶(TdaD 用于呋喃开环)。基因缺失导致鉴定出 25 种新型 ETP,包括 20 种分流产物,表明 tda 酶具有催化的混杂性。特别是,TdaG 和 TdaD 接受各种底物,并在 1 生物合成的不同阶段催化区域特异性反应。我们的研究不仅揭示了 ETP 生物碱的隐藏文库,而且通过途径操作有助于理解天然产物的隐藏化学多样性。

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