增强子
生物
乙酰转移酶
清脆的
组蛋白乙酰转移酶
表观基因组
基因组编辑
基因
Cas9
基因表达调控
发起人
表观遗传学
遗传学
基因表达
乙酰化
DNA甲基化
作者
Isaac B. Hilton,Anthony D’Ippolito,Christopher M. Vockley,Pratiksha I. Thakore,Gregory E. Crawford,Timothy E. Reddy,Charles A. Gersbach
摘要
RNA-guided epigenome editing with Cas9 fused to an acetyltransferase domain activates gene expression through modification of promoters and enhancers. Technologies that enable targeted manipulation of epigenetic marks could be used to precisely control cell phenotype or interrogate the relationship between the epigenome and transcriptional control. Here we describe a programmable, CRISPR-Cas9-based acetyltransferase consisting of the nuclease-null dCas9 protein fused to the catalytic core of the human acetyltransferase p300. The fusion protein catalyzes acetylation of histone H3 lysine 27 at its target sites, leading to robust transcriptional activation of target genes from promoters and both proximal and distal enhancers. Gene activation by the targeted acetyltransferase was highly specific across the genome. In contrast to previous dCas9-based activators, the acetyltransferase activates genes from enhancer regions and with an individual guide RNA. We also show that the core p300 domain can be fused to other programmable DNA-binding proteins. These results support targeted acetylation as a causal mechanism of transactivation and provide a robust tool for manipulating gene regulation.
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