Molecular mechanisms of Streptococcus pyogenes Cas9: a single-molecule perspective.

Qian Zhang, Ziting Chen, Bo Sun
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引用次数: 2

Abstract

Cas9 is an RNA-guided endonuclease from the type II CRISPR-Cas system that employs RNA-DNA base pairing to target and cleave foreign DNA in bacteria. Due to its robust and programmable activity, Cas9 has been repurposed as a revolutionary technology for wide-ranging biological and medical applications. A comprehensive understanding of Cas9 mechanisms at the molecular level would aid in its better usage as a genome tool. Over the past few years, single-molecule techniques, such as fluorescence resonance energy transfer, DNA curtains, magnetic tweezers, and optical tweezers, have been extensively applied to characterize the detailed molecular mechanisms of Cas9 proteins. These techniques allow researchers to monitor molecular dynamics and conformational changes, probe essential DNA-protein interactions, detect intermediate states, and distinguish heterogeneity along the reaction pathway, thus providing enriched functional and mechanistic perspectives. This review outlines the single-molecule techniques that have been utilized for the investigation of Cas9 proteins and discusses insights into the mechanisms of the widely used Streptococcus pyogenes (Sp) Cas9 revealed through these techniques.

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化脓性链球菌Cas9的分子机制:单分子视角
Cas9是一种来自II型CRISPR-Cas系统的rna引导内切酶,它利用RNA-DNA碱基配对来靶向和切割细菌中的外源DNA。由于其强大的可编程活性,Cas9已被重新定位为广泛的生物和医学应用的革命性技术。在分子水平上对Cas9机制的全面了解将有助于其更好地用作基因组工具。近年来,荧光共振能量转移、DNA窗帘、磁镊子、光学镊子等单分子技术被广泛应用于表征Cas9蛋白的详细分子机制。这些技术使研究人员能够监测分子动力学和构象变化,探测基本的dna -蛋白质相互作用,检测中间状态,并区分反应途径的异质性,从而提供丰富的功能和机制视角。本文概述了用于Cas9蛋白研究的单分子技术,并讨论了通过这些技术揭示的广泛使用的化脓性链球菌(Sp) Cas9的机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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CiteScore
1.30
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0.00%
发文量
117
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