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Mechanism of Genome Interrogation: How CRISPR RNA-Guided Cas9 Proteins Locate Specific Targets on DNA

机译:基因组审讯的机制:CRISPR RNA引导的Cas9蛋白如何在DNA上定位特定靶标

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摘要

The ability to precisely edit and modify a genome opens endless opportunities to investigate fundamental properties of living systems as well as to advance various medical techniques and bioengineering applications. This possibility is now close to reality due to a recent discovery of the adaptive bacterial immune system, which is based on clustered regularly interspaced short palindromic repeats (CRISPR)-associated proteins (Cas) that utilize RNA to find and cut the double-stranded DNA molecules at specific locations. Here we develop a quantitative theoretical approach to analyze the mechanism of target search on DNA by CRISPR RNA-guided Cas9 proteins, which is followed by a selective cleavage of nucleic acids. It is based on a discrete-state stochastic model that takes into account the most relevant physical-chemical processes in the system. Using a method of first-passage processes, a full dynamic description of the target search is presented. It is found that the location of specific sites on DNA by CRISPR Cas9 proteins is governed by binding first to protospacer adjacent motif sequences on DNA, which is followed by reversible transitions into DNA interrogation states. In addition, the search dynamics is strongly influenced by the off-target cutting. Our theoretical calculations allow us to explain the experimental observations and to give experimentally testable predictions. Thus, the presented theoretical model clarifies some molecular aspects of the genome interrogation by CRISPR RNA-guided Cas9 proteins.
机译:精确编辑和修改基因组的能力为研究生命系统的基本特性以及推进各种医学技术和生物工程应用提供了无限的机会。由于适应性细菌免疫系统的最新发现,这种可能性现在已接近现实,该系统基于簇状规则间隔的短回文重复序列(CRISPR)相关蛋白(Cas),该蛋白利用RNA查找并切割双链DNA分子在特定位置。在这里,我们开发了一种定量的理论方法来分析由CRISPR RNA引导的Cas9蛋白对DNA进行靶标搜索的机制,然后进行核酸的选择性切割。它基于离散状态随机模型,该模型考虑了系统中最相关的物理化学过程。使用首次通过方法的方法,可以对目标搜索进行完整的动态描述。发现CRISPR Cas9蛋白在DNA上特定位点的位置首先受到与DNA上原间隔子相邻基序序列的结合的控制,然后是可逆转变为DNA询问状态。此外,搜索动态受到脱靶切割的强烈影响。我们的理论计算使我们能够解释实验观察并给出实验可检验的预测。因此,提出的理论模型阐明了CRISPR RNA引导的Cas9蛋白对基因组进行询问的一些分子方面。

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