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Single-Molecule View of Small RNA–Guided Target Search and Recognition
Annual Review of Biophysics ( IF 12.4 ) Pub Date : 2018-05-24 00:00:00 , DOI: 10.1146/annurev-biophys-070317-032923
Viktorija Globyte 1 , Sung Hyun Kim 1, 2 , Chirlmin Joo 1
Affiliation  

Most everyday processes in life involve a necessity for an entity to locate its target. On a cellular level, many proteins have to find their target to perform their function. From gene-expression regulation to DNA repair to host defense, numerous nucleic acid–interacting proteins use distinct target search mechanisms. Several proteins achieve that with the help of short RNA strands known as guides. This review focuses on single-molecule advances studying the target search and recognition mechanism of Argonaute and CRISPR (clustered regularly interspaced short palindromic repeats) systems. We discuss different steps involved in search and recognition, from the initial complex prearrangement into the target-search competent state to the final proofreading steps. We focus on target search mechanisms that range from weak interactions, to one- and three-dimensional diffusion, to conformational proofreading. We compare the mechanisms of Argonaute and CRISPR with a well-studied target search system, RecA.

中文翻译:


小分子指导的目标搜索和识别的单分子视图

生活中的大多数日常过程都涉及实体定位其目标的必要性。在细胞水平上,许多蛋白质必须找到其靶标才能执行其功能。从基因表达调控到DNA修复再到宿主防御,许多与核酸相互作用的蛋白质都使用不同的靶标搜索机制。几种蛋白质借助称为向导的短RNA链实现了这一目标。这篇综述专注于研究Argonaute和CRISPR(聚簇的规则间隔的短回文重复序列)系统的目标搜索和识别机制的单分子研究进展。我们讨论了搜索和识别所涉及的不同步骤,从最初的复杂预安排到目标搜索胜任状态到最终的校对步骤。我们专注于目标搜索机制,范围从弱互动,一维和三维扩散,以构象校对。我们将Argonaute和CRISPR的机制与经过充分研究的目标搜索系统RecA进行了比较。

更新日期:2018-05-24
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