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首页> 外文期刊>Molecular Microbiology >Major gene-regulatory mechanisms operating in ribosomally synthesized and post-translationally modified peptide (RiPP) biosynthesis
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Major gene-regulatory mechanisms operating in ribosomally synthesized and post-translationally modified peptide (RiPP) biosynthesis

机译:在核糖体合成和翻译后修饰的肽(RIPP)生物合成的主要基因调节机制

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摘要

Post-translationally modified peptides commonly display antimicrobial activity, but can also aid the development of bacterial colonies, giving a competitive advantage in the ecological niche. The production of post-translationally modified peptides by bacteria is a complex and energetically costly process that is strictly orchestrated in the cell. The onset of peptide production is linked to the different enzymes that take part during maturation, the transporters and the immunity determinants (if required). Thus, the population can make optimal use of available resources and obtain the benefits of production at an advantageous moment during growth, avoiding toxicity to itself. The timing and level of expression of the different operons is controlled by diverse (complex) regulatory pathways in response to environmental changes, stress or master regulators during specific growth transition phases. In this review, we highlight the basic principles and mechanisms of regulation of expression of post-translationally modified peptides and the relationship with the overall culture developmental processes and/or cellular differentiation. We also discuss the biotechnological consequences derived from the understanding of regulatory networks involved in the biosynthesis of these natural products.
机译:翻译后修饰的肽通常显示抗菌活性,但也可以帮助发育细菌菌落,在生态利基中发挥竞争优势。通过细菌的翻译后修饰肽的生产是在细胞中严格策划的复杂和能力昂贵的过程。肽产生的发作与在成熟期间的不同酶组合,转运蛋白和免疫决定簇(如果需要)。因此,人口可以充分利用可用资源,并在生长期间获得有利的时刻在其自身的有利时刻获得生产的益处。不同操作犬的表达的时序和水平由不同(复杂的)调节途径控制,响应于在特定生长过渡阶段的环境变化,应激或母疗调节剂。在本文中,我们突出了翻译后修饰肽的表达的基本原理和机制以及与整体培养发育过程和/或细胞分化的关系。我们还讨论了从这些天然产品生物合成中涉及的监管网络的理解中得出的生物技术后果。

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