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CRISPR–Cas9 Structures and Mechanisms
Annual Review of Biophysics ( IF 10.4 ) Pub Date : 2017-05-22 00:00:00 , DOI: 10.1146/annurev-biophys-062215-010822
Fuguo Jiang 1, 2 , Jennifer A Doudna 1, 2, 3, 4, 5
Affiliation  

Many bacterial clustered regularly interspaced short palindromic repeats (CRISPR)–CRISPR-associated (Cas) systems employ the dual RNA–guided DNA endonuclease Cas9 to defend against invading phages and conjugative plasmids by introducing site-specific double-stranded breaks in target DNA. Target recognition strictly requires the presence of a short protospacer adjacent motif (PAM) flanking the target site, and subsequent R-loop formation and strand scission are driven by complementary base pairing between the guide RNA and target DNA, Cas9–DNA interactions, and associated conformational changes. The use of CRISPR–Cas9 as an RNA-programmable DNA targeting and editing platform is simplified by a synthetic single-guide RNA (sgRNA) mimicking the natural dual trans-activating CRISPR RNA (tracrRNA)–CRISPR RNA (crRNA) structure. This review aims to provide an in-depth mechanistic and structural understanding of Cas9-mediated RNA-guided DNA targeting and cleavage. Molecular insights from biochemical and structural studies provide a framework for rational engineering aimed at altering catalytic function, guide RNA specificity, and PAM requirements and reducing off-target activity for the development of Cas9-based therapies against genetic diseases.

中文翻译:



CRISPR–Cas9 结构和机制



许多细菌成簇规则间隔的短回文重复序列 (CRISPR)-CRISPR 相关 (Cas) 系统采用双 RNA 引导的 DNA 核酸内切酶 Cas9,通过在目标 DNA 中引入位点特异性双链断裂来防御噬菌体和接合质粒的入侵。目标识别严格要求目标位点侧翼存在短原型间隔子相邻基序 (PAM),随后的 R 环形成和链断裂由指导 RNA 和目标 DNA 之间的互补碱基配对、Cas9-DNA 相互作用以及相关的驱动。构象变化。通过模拟天然双反式激活CRISPR RNA (tracrRNA)-CRISPR RNA (crRNA) 结构的合成单向导 RNA (sgRNA),简化了 CRISPR–Cas9 作为 RNA 可编程 DNA 靶向和编辑平台的使用。本综述旨在提供对 Cas9 介导的 RNA 引导的 DNA 靶向和切割的深入机制和结构理解。来自生化和结构研究的分子见解为合理工程提供了一个框架,旨在改变催化功能、指导 RNA 特异性和 PAM 要求,并减少脱靶活性,从而开发基于 Cas9 的遗传性疾病疗法。

更新日期:2017-05-22
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