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探索细胞色素P450大环化酶产生的含联芳基肽的多样格局。

Exploring the Diverse Landscape of Biaryl-Containing Peptides Generated by Cytochrome P450 Macrocyclases.

作者信息

Nam Hyunsung, An Joon Soo, Lee Jaepil, Yun Yonghwan, Lee Hyunbin, Park Hyungou, Jung Yousung, Oh Ki-Bong, Oh Dong-Chan, Kim Seokhee

出版信息

J Am Chem Soc. 2023 Oct 11;145(40):22047-22057. doi: 10.1021/jacs.3c07140. Epub 2023 Sep 27.

Abstract

Cytochrome P450 enzymes (P450s) catalyze diverse oxidative cross-coupling reactions between aromatic substrates in the natural product biosynthesis. Specifically, P450s install distinct biaryl macrocyclic linkages in three families of ribosomally synthesized and post-translationally modified peptides (RiPPs). However, the chemical diversity of biaryl-containing macrocyclic RiPPs remains largely unexplored. Here, we demonstrate that P450s have the capability to generate diverse biaryl linkages on RiPPs, collectively named "cyptides". Homology-based genome mining for P450 macrocyclases revealed 19 novel groups of homologous biosynthetic gene clusters (BGCs) with distinct aromatic residue patterns in the precursor peptides. Using the P450-modified precursor peptides heterologously coexpressed with corresponding P450s in , we determined the NMR structures of three novel biaryl-containing peptides─the enzymatic products, roseovertin (), rubrin (), and lapparbin ()─and confirmed the formation of three unprecedented or rare biaryl linkages: Trp C-7'-to-His N-τ in , Trp C-7'-to-Tyr C-6 in , and Tyr C-6-to-Trp N-1' in . Biochemical characterization indicated that certain P450s in these pathways have a relaxed substrate specificity. Overall, our studies suggest that P450 macrocyclases have evolved to create diverse biaryl linkages in RiPPs, promoting the exploration of a broader chemical space for biaryl-containing peptides encoded in bacterial genomes.

摘要

细胞色素P450酶(P450s)在天然产物生物合成中催化芳香族底物之间多样的氧化交叉偶联反应。具体而言,P450s在三类核糖体合成及翻译后修饰肽(RiPPs)中引入独特的联芳基大环连接。然而,含联芳基大环RiPPs的化学多样性在很大程度上仍未被探索。在此,我们证明P450s有能力在RiPPs上生成多样的联芳基连接,这些RiPPs统称为“环肽”。基于同源性的P450大环化酶基因组挖掘揭示了19个新的同源生物合成基因簇(BGCs)组,其前体肽中具有不同的芳香族残基模式。通过在 中与相应P450s异源共表达经P450修饰的前体肽,我们确定了三种新型含联芳基肽(酶促产物,玫瑰菌素()、红菌素()和拉帕宾())的NMR结构,并证实形成了三种前所未有的或罕见的联芳基连接: 中色氨酸C-7'至组氨酸N-τ、 中色氨酸C-7'至酪氨酸C-6以及 中酪氨酸C-6至色氨酸N-1'。生化特性表明这些途径中的某些P450s具有宽松的底物特异性。总体而言,我们的研究表明P450大环化酶已经进化以在RiPPs中创造多样的联芳基连接,促进对细菌基因组中编码的含联芳基肽更广阔化学空间的探索。

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