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A conformational checkpoint between DNA binding and cleavage by CRISPR-Cas9

机译:DNA结合与CRISPR-Cas9切割之间的构象检查点

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摘要

The Cas9 endonuclease is widely used for genome engineering applications by programming its single-guide RNA, and ongoing work is aimed at improving the accuracy and efficiency of DNA targeting. DNA cleavage of Cas9 is controlled by the conformational state of the HNH nuclease domain, but the mechanism that governs HNH activation at on-target DNA while reducing cleavage activity at off-target sites remains poorly understood. Using single-molecule Förster resonance energy transfer, we identified an intermediate state of Streptococcus pyogenes Cas9, representing a conformational checkpoint between DNA binding and cleavage. Upon DNA binding, the HNH domain transitions between multiple conformations before docking into its active state. HNH docking requires divalent cations, but not strand scission, and this docked conformation persists following DNA cleavage. Sequence mismatches between the DNA target and guide RNA prevent transitions from the checkpoint intermediate to the active conformation, providing selective avoidance of DNA cleavage at stably bound off-target sites.
机译:Cas9核酸内切酶通过编程其单向导RNA被广泛用于基因组工程应用,正在进行的工作旨在提高DNA靶向的准确性和效率。 Cas9的DNA切割受HNH核酸酶结构域的构象状态控制,但在靶标DNA上控制HNH活化同时降低脱靶位点的切割活性的机制仍然知之甚少。使用单分子福斯特共振能量转移,我们确定了化脓链球菌Cas9的中间状态,代表DNA结合和切割之间的构象检查点。 DNA结合后,HNH域在对接进入其活性状态之前会在多个构象之间转换。 HNH对接需要二价阳离子,但不需要链断裂,并且这种对接构象在DNA切割后仍然存在。 DNA靶标和引导RNA之间的序列不匹配可防止从检查点中间体过渡到活性构象,从而有选择地避免了在稳定结合的脱靶位点进行的DNA切割。

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