核糖开关
聚腺苷酸
基因表达
生物
基因
报告基因
基因敲除
基因表达调控
计算生物学
小发夹RNA
核糖核酸
分子生物学
细胞生物学
遗传学
非编码RNA
作者
E. Rovira,Beatriz Moreno,Nerea Razquin,Lorea Blázquez,Rubén Hernández-Alcoceba,Puri Fortes,Fernando Pastor
出处
期刊:ACS Nano
[American Chemical Society]
日期:2023-11-16
卷期号:17 (23): 23331-23346
被引量:2
标识
DOI:10.1021/acsnano.3c01994
摘要
Synthetic riboswitches are promising regulatory devices due to their small size, lack of immunogenicity, and ability to fine-tune gene expression in the absence of exogenous trans-acting factors. Based on a gene inhibitory system developed at our lab, termed U1snRNP interference (U1i), we developed tetracycline (TC)-inducible riboswitches that modulate mRNA polyadenylation through selective U1 snRNP recruitment. First, we engineered different TC-U1i riboswitches, which repress gene expression unless TC is added, leading to inductions of gene expression of 3-to-4-fold. Second, we developed a technique called Systematic Evolution of Riboswitches by Exponential Enrichment (SEREX), to isolate riboswitches with enhanced U1 snRNP binding capacity and activity, achieving inducibilities of up to 8-fold. Interestingly, by multiplexing riboswitches we increased inductions up to 37-fold. Finally, we demonstrated that U1i-based riboswitches are dose-dependent and reversible and can regulate the expression of reporter and endogenous genes in culture cells and mouse models, resulting in attractive systems for gene therapy applications. Our work probes SEREX as a much-needed technology for the in vitro identification of riboswitches capable of regulating gene expression in vivo.
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