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Mechanism of duplex DNA destabilization by RNA-guided Cas9 nuclease during target interrogation

机译:RNA引导的Cas9核酸酶在靶讯问过程中双链DNA失稳的机制

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摘要

The prokaryotic clustered regularly interspaced short palindromic repeats (CRISPR)-associated 9 (Cas9) endonuclease cleaves double-stranded DNA sequences specified by guide RNA molecules and flanked by a protospacer adjacent motif (PAM) and is widely used for genome editing in various organisms. The RNA-programmed Cas9 locates the target site by scanning genomic DNA. We sought to elucidate the mechanism of initial DNA interrogation steps that precede the pairing of target DNA with guide RNA. Using fluorometric and biochemical assays, we studied Cas9/guide RNA complexes with model DNA substrates that mimicked early intermediates on the pathway to the final Cas9/guide RNA–DNA complex. The results show that Cas9/guide RNA binding to PAM favors separation of a few PAM-proximal protospacer base pairs allowing initial target interrogation by guide RNA. The duplex destabilization is mediated, in part, by Cas9/guide RNA affinity for unpaired segments of nontarget strand DNA close to PAM. Furthermore, our data indicate that the entry of double-stranded DNA beyond a short threshold distance from PAM into the Cas9/single-guide RNA (sgRNA) interior is hindered. We suggest that the interactions unfavorable for duplex DNA binding promote DNA bending in the PAM-proximal region during early steps of Cas9/guide RNA–DNA complex formation, thus additionally destabilizing the protospacer duplex. The mechanism that emerges from our analysis explains how the Cas9/sgRNA complex is able to locate the correct target sequence efficiently while interrogating numerous nontarget sequences associated with correct PAMs.
机译:原核生物聚簇的规则间隔的短回文重复序列(CRISPR)关联的9(Cas9)内切核酸酶可切割由指导RNA分子指定的双链DNA序列,并与原间隔子相邻基序(PAM)相邻,广泛用于各种生物的基因组编辑。 RNA编码的Cas9通过扫描基因组DNA定位目标位点。我们试图阐明在靶DNA与引导RNA配对之前的初始DNA询问步骤的机制。使用荧光和生化分析,我们研究了带有模型DNA底物的Cas9 / guide RNA复合物,该底物模仿了通往最终Cas9 / guide RNA-DNA复合物的途径中的早期中间体。结果表明,Cas9 /向导RNA与PAM结合有利于分离一些PAM-近端原间隔碱基对,从而允许通过向导RNA进行初始靶标查询。双链体不稳定部分地由Cas9 /向导RNA对接近PAM的非靶链DNA的未配对区段的亲和力介导。此外,我们的数据表明,双链DNA进入从PAM到阈值距离较短的阈值距离后,进入了Cas9 /单向导RNA(sgRNA)内部受到了阻碍。我们认为,Cas9 /引导RNA-DNA复合物形成的早期步骤期间,不利于双链DNA结合的相互作用会促进PAM近端区域的DNA弯曲,从而使原间隔双链体不稳定。从我们的分析中得出的机制解释了Cas9 / sgRNA复合物如何能够有效地定位正确的靶序列,同时询问与正确的PAM相关的许多非靶序列。

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