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Repurposing CRISPR as an RNA-γuided platform for sequence-specific control of gene expression

机译:将CRISPR作为RNA平台用于基因表达的序列特异性控制

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摘要

Targeted gene regulation on a genome-wide scale is a powerful strategy for interrogating, perturbing, and engineering cellular systems. Here, we develop a method for controlling gene expression based on Cas9, an RNA-γuided DNA endonuclease from a type II CRISPR system. We show that a catalytically dead Cas9 lacking endonuclease activity, when coexpressed with a guide RNA, generates a DNA recognition complex that can specifically interfere with transcriptional elongation, RNA polymerase binding, or transcription factor binding. This system, which we call CRISPR interference (CRISPRi), can efficiently repress expression of targeted genes in Escherichia coli, with no detectable off-target effects. CRISPRi can be used to repress multiple target genes simultaneously, and its effects are reversible. We also show evidence that the system can be adapted for gene repression in mammalian cells. This RNA-γuided DNA recognition platform provides a simple approach for selectively perturbing gene expression on a genome-wide scale.
机译:全基因组范围内的靶向基因调控是一种讯问,干扰和工程化细胞系统的强大策略。在这里,我们开发了一种基于Cas9的基因表达控制方法,Cas9是一种来自II型CRISPR系统的RNA标记的DNA核酸内切酶。我们显示,与指导RNA共表达时,缺乏内切酶活性的催化死亡的Cas9产生了DNA识别复合物,可以特异性地干扰转录延伸,RNA聚合酶结合或转录因子结合。我们称此系统为CRISPR干扰(CRISPRi),可有效抑制大肠杆菌中靶基因的表达,而没有可检测到的脱靶效应。 CRISPRi可用于同时抑制多个靶基因,其作用是可逆的。我们还显示出该系统可以适应哺乳动物细胞中基因抑制的证据。这种由RNA引导的DNA识别平台为在全基因组范围内选择性干扰基因表达提供了一种简单的方法。

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