Characterization of an Iterative Halogenase Acting on Ribosomal Peptides Underlies the Combinatorial Biosynthesis Logic of Lasso Peptides.

IF 3.6 2区 生物学 Q2 CHEMISTRY, MEDICINAL Journal of Natural Products Pub Date : 2025-03-28 Epub Date: 2025-02-20 DOI:10.1021/acs.jnatprod.4c01199
Jin-Long Lu, Jiao-Jiao Cui, Zhe-Yang Hu, Jin-Ming Di, Yuan-Yuan Li, Jiang Xiong, Yu-Meng Jiao, Kun Gao, Jian Min, Shangwen Luo, Shi-Hui Dong
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Abstract

Halogenation is commonly utilized in medicinal chemistry for the improvement of drug leads. Flavin-dependent halogenases (FDHs) are ubiquitous across all domains of life, yet iterative FDHs are rare in the biosynthesis of ribosomally synthesized and post-translationally modified peptides (RiPPs). Herein, we characterize a novel iterative FDH, ChlH, which orchestrates nonsequential chlorination of two specific Trp within the core peptide of a lasso precursor containing three Trp. Biochemical and computational studies enable the characterization of ChlH, which employs unique protein-peptide interactions (PPIs) between its distinct N- and C-terminal motifs and a crucial recognition sequence (RS-II) downstream of RS-I in the leader peptide. Previous studies have demonstrated the indispensability of RS-I for lasso peptide biosynthesis, while RS-II was considered to be replaceable. Furthermore, we find that the core peptide substantially contributes to the PPI. Bioinformatic analysis reveals the prevalence of homologous FDHs in the biosynthetic gene clusters (BGCs) of various RiPP classes. Heterologous expression of the chl BGC yields non-, mono-, and dichlorinated lasso peptides, with chlorination, particularly dichlorination, enhancing their antibacterial activity. This study expands the FDH activity spectrum to include iterative catalysis on ribosomal peptides and underscores the significance of RS-II in tailoring enzymes for the combinatorial biosynthesis of lasso peptides.

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作用于核糖体肽的迭代卤素酶的表征是套索肽组合生物合成逻辑的基础。
卤化反应在药物化学中常用来改善药物先导物。黄素依赖性卤素酶(FDHs)在生命的所有领域都是普遍存在的,但在核糖体合成和翻译后修饰肽(RiPPs)的生物合成中,迭代的FDHs是罕见的。在这里,我们描述了一种新的迭代FDH, ChlH,它在包含三个Trp的套索前体的核心肽内协调两个特定Trp的非顺序氯化。生化和计算研究使ChlH的表征成为可能,它利用独特的蛋白-肽相互作用(PPIs)在其不同的N端和c端基序之间以及先导肽中RS-I下游的关键识别序列(RS-II)。先前的研究已经证明RS-I对于套索肽的生物合成是不可或缺的,而RS-II则被认为是可替代的。此外,我们发现核心肽对PPI有很大的贡献。生物信息学分析表明,同源FDHs在各种RiPP类生物合成基因簇(BGCs)中普遍存在。chl BGC的异源表达产生非氯、单氯和二氯的套索肽,氯化,特别是二氯,增强了它们的抗菌活性。本研究扩展了FDH活性谱,包括对核糖体肽的迭代催化,并强调了RS-II在捆绑肽组合生物合成裁剪酶中的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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索莱宝
FAD
索莱宝
NADH
乐研
DMSO-d6
来源期刊
CiteScore
9.10
自引率
5.90%
发文量
294
审稿时长
2.3 months
期刊介绍: The Journal of Natural Products invites and publishes papers that make substantial and scholarly contributions to the area of natural products research. Contributions may relate to the chemistry and/or biochemistry of naturally occurring compounds or the biology of living systems from which they are obtained. Specifically, there may be articles that describe secondary metabolites of microorganisms, including antibiotics and mycotoxins; physiologically active compounds from terrestrial and marine plants and animals; biochemical studies, including biosynthesis and microbiological transformations; fermentation and plant tissue culture; the isolation, structure elucidation, and chemical synthesis of novel compounds from nature; and the pharmacology of compounds of natural origin. When new compounds are reported, manuscripts describing their biological activity are much preferred. Specifically, there may be articles that describe secondary metabolites of microorganisms, including antibiotics and mycotoxins; physiologically active compounds from terrestrial and marine plants and animals; biochemical studies, including biosynthesis and microbiological transformations; fermentation and plant tissue culture; the isolation, structure elucidation, and chemical synthesis of novel compounds from nature; and the pharmacology of compounds of natural origin.
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