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Rapid and tunable method to temporally control gene editing based on conditional Cas9 stabilization

机译:基于条件Cas9稳定化的快速可调时间控制基因编辑的方法

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The CRISPR/Cas9 system is a powerful tool for studying gene function. Here, we describe a method that allows temporal control of CRISPR/Cas9 activity based on conditional Cas9 destabilization. We demonstrate that fusing an FKBP12-derived destabilizing domain to Cas9 (DD-Cas9) enables conditional Cas9 expression and temporal control of gene editing in the presence of an FKBP12 synthetic ligand. This system can be easily adapted to co-express, from the same promoter, DD-Cas9 with any other gene of interest without co-modulation of the latter. In particular, when co-expressed with inducible Cre-ERT2, our system enables parallel, independent manipulation of alleles targeted by Cas9 and traditional recombinase with single-cell specificity. We anticipate this platform will be used for the systematic characterization and identification of essential genes, as well as the investigation of the interactions between functional genes.
机译:CRISPR / Cas9系统是研究基因功能的强大工具。在这里,我们描述了一种方法,该方法允许基于条件Cas9不稳定来暂时控制CRISPR / Cas9活性。我们证明融合FKBP12衍生的去稳定结构域到Cas9(DD-Cas9)可以在有FKBP12合成配体的条件下进行条件Cas9表达和基因编辑的时间控制。该系统可以容易地适应于从同一启动子与任何其他目的基因共表达DD-Cas9,而无需共同调节后者。特别是,当与诱导型Cre-ER T2 共表达时,我们的系统可对Cas9和传统重组酶靶向的等位基因进行平行,独立的操作,并具有单细胞特异性。我们预计该平台将用于必需基因的系统表征和鉴定,以及功能基因之间相互作用的研究。

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