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在复制体中寻求各项活动的协调。

A quest for coordination among activities at the replisome.

机构信息

Department of Biology, McGill University, 3649 Sir William Osler, Montreal, Canada, H3G 0B1.

Department of Biology, McGill University, 3649 Sir William Osler, Montreal, Canada, H3G 0B1

出版信息

Biochem Soc Trans. 2019 Aug 30;47(4):1067-1075. doi: 10.1042/BST20180402. Epub 2019 Aug 8.

Abstract

Faithful DNA replication is required for transmission of the genetic material across generations. The basic mechanisms underlying this process are shared among all organisms: progressive unwinding of the long double-stranded DNA; synthesis of RNA primers; and synthesis of a new DNA chain. These activities are invariably performed by a multi-component machine called the replisome. A detailed description of this molecular machine has been achieved in prokaryotes and phages, with the replication processes in eukaryotes being comparatively less known. However, recent breakthroughs in the reconstitution of eukaryotic replisomes have resulted in valuable insight into their functions and mechanisms. In conjunction with the developments in eukaryotic replication, an emerging overall view of replisomes as dynamic protein ensembles is coming into fruition. The purpose of this review is to provide an overview of the recent insights into the dynamic nature of the bacterial replisome, revealed through single-molecule techniques, and to describe some aspects of the eukaryotic replisome under this framework. We primarily focus on and (budding yeast), since a significant amount of literature is available for these two model organisms. We end with a description of the methods of live-cell fluorescence microscopy for the characterization of replisome dynamics.

摘要

忠实的 DNA 复制是遗传物质在世代间传递的必要条件。这一过程的基本机制在所有生物中都是共有的:长双链 DNA 的逐步解旋;RNA 引物的合成;以及新 DNA 链的合成。这些活动无一例外地由一种称为复制体的多组件机器来执行。该分子机器在原核生物和噬菌体中的详细描述已经实现,而真核生物中的复制过程则相对不太为人所知。然而,最近在真核复制体的重建方面的突破,使得我们对其功能和机制有了宝贵的了解。随着真核复制的发展,作为动态蛋白质集合的复制体的整体观点正在逐渐形成。本文的目的是概述通过单分子技术揭示的细菌复制体的动态性质的最新研究进展,并在这个框架下描述真核复制体的一些方面。我们主要关注 和 (酿酒酵母),因为这两个模型生物有大量的文献可供参考。最后,我们将描述用于表征复制体动力学的活细胞荧光显微镜方法。

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