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拥抱异质性:挑战复制体作为确定性机器的范式。

Embracing Heterogeneity: Challenging the Paradigm of Replisomes as Deterministic Machines.

机构信息

Macromolecular Machines Laboratory, The Francis Crick Institute, London NW1 1AT, United Kingdom.

Molecular Horizons and School of Chemistry and Molecular Bioscience, University of Wollongong, Wollongong, New South Wales 2522, Australia.

出版信息

Chem Rev. 2023 Dec 13;123(23):13419-13440. doi: 10.1021/acs.chemrev.3c00436. Epub 2023 Nov 16.

Abstract

The paradigm of cellular systems as deterministic machines has long guided our understanding of biology. Advancements in technology and methodology, however, have revealed a world of stochasticity, challenging the notion of determinism. Here, we explore the stochastic behavior of multi-protein complexes, using the DNA replication system (replisome) as a prime example. The faithful and timely copying of DNA depends on the simultaneous action of a large set of enzymes and scaffolding factors. This fundamental cellular process is underpinned by dynamic protein-nucleic acid assemblies that must transition between distinct conformations and compositional states. Traditionally viewed as a well-orchestrated molecular machine, recent experimental evidence has unveiled significant variability and heterogeneity in the replication process. In this review, we discuss recent advances in single-molecule approaches and single-particle cryo-EM, which have provided insights into the dynamic processes of DNA replication. We comment on the new challenges faced by structural biologists and biophysicists as they attempt to describe the dynamic cascade of events leading to replisome assembly, activation, and progression. The fundamental principles uncovered and yet to be discovered through the study of DNA replication will inform on similar operating principles for other multi-protein complexes.

摘要

长期以来,细胞系统作为确定性机器的范例一直指导着我们对生物学的理解。然而,技术和方法的进步揭示了一个充满随机性的世界,挑战了确定性的概念。在这里,我们以 DNA 复制系统(复制体)为例,探讨多蛋白复合物的随机行为。DNA 的忠实和及时复制依赖于一大组酶和支架因子的同时作用。这个基本的细胞过程是由动态的蛋白质-核酸组装支撑的,这些组装必须在不同的构象和组成状态之间转换。传统上被视为一个精心编排的分子机器,最近的实验证据揭示了复制过程中存在显著的可变性和异质性。在这篇综述中,我们讨论了单分子方法和单颗粒冷冻电镜的最新进展,这些进展为 DNA 复制的动态过程提供了深入了解。我们评论了结构生物学家和生物物理学家在尝试描述导致复制体组装、激活和进展的动态事件级联时所面临的新挑战。通过研究 DNA 复制揭示的基本原理和尚未发现的原理将为其他多蛋白复合物的类似操作原理提供信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5c1a/10790245/f2b4375d4ec4/cr3c00436_0001.jpg

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