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首页> 外文期刊>Stem Cells >Stable suppression of gene expression in murine embryonic stem cells by RNAi directed from DNA vector-based short hairpin RNA.
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Stable suppression of gene expression in murine embryonic stem cells by RNAi directed from DNA vector-based short hairpin RNA.

机译:基于基于DNA载体的短发夹RNA的RNAi稳定抑制鼠胚胎干细胞中的基因表达。

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摘要

Murine embryonic stem (ES) cells are an ideal system for the research of directed differentiation in vitro. Long double-stranded RNA, which can induce RNA interference (RNAi) effectively in many organisms, has been shown to suppress target gene expression efficiently and specifically in undifferentiated ES cells. However, it cannot be used in differentiated ES cells due to unspecific inhibition of gene expression resulting from the activation of interferon pathway following differentiation. Using green fluorescent protein (GFP) as a reporter system, we show here that a short hairpin RNA (shRNA) expression vector driven by the murine U6 small nuclear RNA promoter can specifically induce potent gene knockdown effect (i.e., inhibit GFP expression specifically) when transfected transiently into ES cells. Furthermore, when the expression vector is stably integrated into the genome of the cell, it can still show specific RNAi effect, which can be maintained at least for 10 days. These transfected ES cells showed no obvious differences in the morphology or growth rate in culture compared with untransfected cells, suggesting that the activation of shRNA-directed RNAi did not affect the properties of ES cells and that the RNAi effect in ES cells is specific and persistent. Our results prove the feasibility of the U6 promoter-driven shRNA expression technique to be used to study the function of genes expressed in ES cells. These ES cells, after integration of the U6-based RNAi vector into their genome, could be used to generate gene knockdown mice.
机译:鼠胚胎干(ES)细胞是用于体外定向分化研究的理想系统。已证明可以在许多生物中有效诱导RNA干扰(RNAi)的长双链RNA可有效抑制靶基因的表达,特别是在未分化的ES细胞中。但是,由于分化后干扰素途径的激活导致基因表达的非特异性抑制,因此不能用于分化的ES细胞。使用绿色荧光蛋白(GFP)作为报告基因系统,我们在这里显示由鼠U6小核RNA启动子驱动的短发夹RNA(shRNA)表达载体可在以下情况下特异性诱导有效的基因敲低效应(即,特异性抑制GFP表达)转染到ES细胞中。此外,当表达载体稳定地整合到细胞基因组中时,它仍然可以显示出特定的RNAi效应,这种效应至少可以维持10天。与未转染的细胞相比,这些转染的ES细胞在培养物中没有表现出明显的形态学或生长速率差异,这表明shRNA导向的RNAi的激活不会影响ES细胞的特性,并且RNAi在ES细胞中的作用是特异性且持久的。我们的结果证明了U6启动子驱动的shRNA表达技术用于研究ES细胞中表达的基因功能的可行性。将基于U6的RNAi载体整合到其基因组中后,这些ES细胞可用于产生基因敲除小鼠。

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