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非核糖体肽合成绝对是在突破常规。

Nonribosomal Peptide Synthesis Definitely Working Out of the Rules.

作者信息

Duban Matthieu, Cociancich Stéphane, Leclère Valérie

机构信息

Université de Lille, Université de Liège, UMRT 1158 BioEcoAgro, Métabolites Secondaires d'origine Microbienne, Institut Charles Viollette, F-59000 Lille, France.

CIRAD, UMR PHIM, F-34398 Montpellier, France.

出版信息

Microorganisms. 2022 Mar 7;10(3):577. doi: 10.3390/microorganisms10030577.

Abstract

Nonribosomal peptides are microbial secondary metabolites exhibiting a tremendous structural diversity and a broad range of biological activities useful in the medical and agro-ecological fields. They are built up by huge multimodular enzymes called nonribosomal peptide synthetases. These synthetases are organized in modules constituted of adenylation, thiolation, and condensation core domains. As such, each module governs, according to the collinearity rule, the incorporation of a monomer within the growing peptide. The release of the peptide from the assembly chain is finally performed by a terminal core thioesterase domain. Secondary domains with modifying catalytic activities such as epimerization or methylation are sometimes included in the assembly lines as supplementary domains. This assembly line structure is analyzed by bioinformatics tools to predict the sequence and structure of the final peptides according to the sequence of the corresponding synthetases. However, a constantly expanding literature unravels new examples of nonribosomal synthetases exhibiting very rare domains and noncanonical organizations of domains and modules, leading to several amazing strategies developed by microorganisms to synthesize nonribosomal peptides. In this review, through several examples, we aim at highlighting these noncanonical pathways in order for the readers to perceive their complexity.

摘要

非核糖体肽是微生物次级代谢产物,具有巨大的结构多样性和广泛的生物活性,在医学和农业生态领域具有重要作用。它们由称为非核糖体肽合成酶的大型多模块酶合成。这些合成酶由腺苷化、硫醇化和缩合核心结构域组成的模块构成。因此,每个模块根据共线性规则控制单体在不断增长的肽中的掺入。肽最终通过末端核心硫酯酶结构域从组装链上释放。具有差向异构化或甲基化等修饰催化活性的二级结构域有时作为补充结构域包含在组装线中。通过生物信息学工具分析这种组装线结构,以根据相应合成酶的序列预测最终肽的序列和结构。然而,不断增加的文献揭示了非核糖体合成酶的新例子,这些合成酶具有非常罕见的结构域以及结构域和模块的非经典组织形式,这导致微生物开发出几种惊人的策略来合成非核糖体肽。在本综述中,我们通过几个例子旨在突出这些非经典途径,以便读者了解它们的复杂性。

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