作者
Jesse G Zalatan, Michael E Lee, Ricardo Almeida, Luke A Gilbert, Evan H Whitehead, Marie La Russa, Jordan C Tsai, Jonathan S Weissman, John E Dueber, Lei S Qi, Wendell A Lim
发表日期
2015/1/15
期刊
Cell
卷号
160
期号
1
页码范围
339-350
出版商
Elsevier
简介
Eukaryotic cells execute complex transcriptional programs in which specific loci throughout the genome are regulated in distinct ways by targeted regulatory assemblies. We have applied this principle to generate synthetic CRISPR-based transcriptional programs in yeast and human cells. By extending guide RNAs to include effector protein recruitment sites, we construct modular scaffold RNAs that encode both target locus and regulatory action. Sets of scaffold RNAs can be used to generate synthetic multigene transcriptional programs in which some genes are activated and others are repressed. We apply this approach to flexibly redirect flux through a complex branched metabolic pathway in yeast. Moreover, these programs can be executed by inducing expression of the dCas9 protein, which acts as a single master regulatory control point. CRISPR-associated RNA scaffolds provide a powerful way to construct …
引用总数
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