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Cas9 催化的 DNA 切割产生交错末端:分子动力学模拟的证据。

Cas9-catalyzed DNA Cleavage Generates Staggered Ends: Evidence from Molecular Dynamics Simulations.

机构信息

Department of Pharmaceutical Sciences, University of North Texas System College of Pharmacy, University of North Texas Health Science Center, Fort Worth, TX 76107, USA.

出版信息

Sci Rep. 2016 Nov 22;5:37584. doi: 10.1038/srep37584.

Abstract

The CRISPR-associated endonuclease Cas9 from Streptococcus pyogenes (spCas9) along with a single guide RNA (sgRNA) has emerged as a versatile toolbox for genome editing. Despite recent advances in the mechanism studies on spCas9-sgRNA-mediated double-stranded DNA (dsDNA) recognition and cleavage, it is still unclear how the catalytic Mg ions induce the conformation changes toward the catalytic active state. It also remains controversial whether Cas9 generates blunt-ended or staggered-ended breaks with overhangs in the DNA. To investigate these issues, here we performed the first all-atom molecular dynamics simulations of the spCas9-sgRNA-dsDNA system with and without Mg bound. The simulation results showed that binding of two Mg ions at the RuvC domain active site could lead to structurally and energetically favorable coordination ready for the non-target DNA strand cleavage. Importantly, we demonstrated with our simulations that Cas9-catalyzed DNA cleavage produces 1-bp staggered ends rather than generally assumed blunt ends.

摘要

来自酿脓链球菌(spCas9)的 CRISPR 相关内切酶 Cas9 与单链向导 RNA(sgRNA)一起,已成为基因组编辑的多功能工具盒。尽管 spCas9-sgRNA 介导的双链 DNA(dsDNA)识别和切割的机制研究取得了最近的进展,但仍不清楚催化 Mg 离子如何诱导朝向催化活性状态的构象变化。Cas9 是否在 DNA 上产生平齐末端或交错末端的断裂,并且带有突出端,这仍然存在争议。为了研究这些问题,我们在这里对带有和不带有结合的 Mg 离子的 spCas9-sgRNA-dsDNA 系统进行了首次全原子分子动力学模拟。模拟结果表明,在 RuvC 结构域活性位点结合两个 Mg 离子,可以导致结构和能量上有利的协调,从而准备好对非靶 DNA 链进行切割。重要的是,我们通过模拟证明,Cas9 催化的 DNA 切割产生 1 个碱基交错的末端,而不是通常假设的平齐末端。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/659f/5118739/6290fc53e390/srep37584-f1.jpg

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