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蛋白质翻译后修饰(PTMs)的逻辑:通过共价键连接调节蛋白质的化学、机制和进化。

The logic of protein post-translational modifications (PTMs): Chemistry, mechanisms and evolution of protein regulation through covalent attachments.

机构信息

Centre de Biophysique Moléculaire, CNRS - Orléans, UPR 4301, affiliated with Université d'Orléans, Orléans, France.

出版信息

Bioessays. 2024 Mar;46(3):e2300178. doi: 10.1002/bies.202300178. Epub 2024 Jan 21.

DOI:10.1002/bies.202300178
PMID:38247183
Abstract

Protein post-translational modifications (PTMs) play a crucial role in all cellular functions by regulating protein activity, interactions and half-life. Despite the enormous diversity of modifications, various PTM systems show parallels in their chemical and catalytic underpinnings. Here, focussing on modifications that involve the addition of new elements to amino-acid sidechains, I describe historical milestones and fundamental concepts that support the current understanding of PTMs. The historical survey covers selected key research programmes, including the study of protein phosphorylation as a regulatory switch, protein ubiquitylation as a degradation signal and histone modifications as a functional code. The contribution of crucial techniques for studying PTMs is also discussed. The central part of the essay explores shared chemical principles and catalytic strategies observed across diverse PTM systems, together with mechanisms of substrate selection, the reversibility of PTMs by erasers and the recognition of PTMs by reader domains. Similarities in the basic chemical mechanism are highlighted and their implications are discussed. The final part is dedicated to the evolutionary trajectories of PTM systems, beginning with their possible emergence in the context of rivalry in the prokaryotic world. Together, the essay provides a unified perspective on the diverse world of major protein modifications.

摘要

蛋白质翻译后修饰(PTMs)通过调节蛋白质活性、相互作用和半衰期,在所有细胞功能中起着至关重要的作用。尽管修饰的种类繁多,但各种 PTM 系统在其化学和催化基础方面存在相似之处。在这里,我专注于涉及向氨基酸侧链添加新元素的修饰,描述了支持当前 PTM 理解的历史里程碑和基本概念。历史调查涵盖了选定的关键研究计划,包括作为调节开关的蛋白质磷酸化、作为降解信号的蛋白质泛素化以及作为功能代码的组蛋白修饰的研究。还讨论了研究 PTM 的关键技术的贡献。本文的核心部分探讨了在不同的 PTM 系统中观察到的共同化学原理和催化策略,以及底物选择机制、修饰的可逆性和修饰的阅读器域识别。突出了基本化学机制的相似性,并讨论了它们的含义。最后一部分致力于 PTM 系统的进化轨迹,从它们在原核世界竞争背景下的可能出现开始。总之,本文提供了对主要蛋白质修饰多样性世界的统一视角。

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