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Visualisation of dCas9 target search in vivo using an open-microscopy framework

机译:使用开放显微镜框架在体内可视化DCAS9目标搜索

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CRISPR-Cas9 is widely used in genomic editing, but the kinetics of target search and its relation to the cellular concentration of Cas9 have remained elusive. Effective target search requires constant screening of the protospacer adjacent motif (PAM) and a 30?ms upper limit for screening was recently found. To further quantify the rapid switching between DNA-bound and freely-diffusing states of dCas9, we developed an open-microscopy framework, the miCube, and introduce Monte-Carlo diffusion distribution analysis (MC-DDA). Our analysis reveals that dCas9 is screening PAMs 40% of the time in Gram-positive Lactoccous lactis, averaging 17?±?4?ms per binding event. Using heterogeneous dCas9 expression, we determine the number of cellular target-containing plasmids and derive the copy number dependent Cas9 cleavage. Furthermore, we show that dCas9 is not irreversibly bound to target sites but can still interfere with plasmid replication. Taken together, our quantitative data facilitates further optimization of the CRISPR-Cas toolbox.
机译:CRISPR-Cas9被广泛应用于基因组编辑,而目标搜索和它关系到Cas9的细胞浓度的动力学仍然难以实现。有效的目标搜索需要protospacer相邻基序(PAM)和30?毫秒筛选上限近日被发现的不断筛选。为了进一步量化dCas9的DNA结合和可自由扩散状态之间的快速切换,我们开发了一种开放式显微镜框架内,miCube,并引入蒙特卡罗扩散分布分析(MC-DDA)。我们的分析表明,dCas9被筛选的PAM的革兰氏阳性球菌Lactoccous 40%的时间,平均为17?±?4?每个绑定事件毫秒。使用非均相dCas9表达,我们测定细胞含有靶质粒的数目和导出拷贝数依赖Cas9裂解。此外,我们表明,dCas9不可逆地结合到目标网站,但可以通过质粒复制仍然干扰。总之,我们的定量数据有利于CRISPR-CAS工具箱的进一步优化。

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