清脆的
合成生物学
心理压抑
基因
基因表达
重编程
基因表达调控
生物
CRISPR干扰
抄写(语言学)
计算生物学
转录因子
Cas9
细胞生物学
遗传学
语言学
哲学
作者
Chen Dong,Jason Fontana,Anika Patel,James M. Carothers,Jesse G. Zalatan
标识
DOI:10.1038/s41467-018-04901-6
摘要
Methods to regulate gene expression programs in bacterial cells are limited by the absence of effective gene activators. To address this challenge, we have developed synthetic bacterial transcriptional activators in E. coli by linking activation domains to programmable CRISPR-Cas DNA binding domains. Effective gene activation requires target sites situated in a narrow region just upstream of the transcription start site, in sharp contrast to the relatively flexible target site requirements for gene activation in eukaryotic cells. Together with existing tools for CRISPRi gene repression, these bacterial activators enable programmable control over multiple genes with simultaneous activation and repression. Further, the entire gene expression program can be switched on by inducing expression of the CRISPR-Cas system. This work will provide a foundation for engineering synthetic bacterial cellular devices with applications including diagnostics, therapeutics, and industrial biosynthesis.
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