首页> 外文期刊>In Vitro Cellular and Developmental Biology. Animal: Journal of the Tissues Culture Association >Stable suppression of gene expression by short interfering RNAs targeted to promoter in a mouse embryonal carcinoma stem cell line
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Stable suppression of gene expression by short interfering RNAs targeted to promoter in a mouse embryonal carcinoma stem cell line

机译:通过靶向小鼠启动子干细胞系中启动子的短干扰RNA稳定抑制基因表达

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摘要

RNA interference (RNAi) can induce gene silencing via two pathways: post-transcriptional gene silencing (PTGS) and transcriptional gene silencing (TGS). The mediators of gene inactivation in both pathways are 21-bp small interfering RNAs (siRNAs) generated from longer double-stranded RNA (dsRNA). PTGS involves siRNA-mediated targeting and degradation of mRNA. However, siRNAs induce TGS via DNA methylation at the targeted promoter. Synthetic siRNAs can induce loss of gene activity comparable to long dsRNA. The limitation of this method is that the transfected synthetic siRNA works for only a few days. In this study, we tested the RNAi response to siRNA (PTGS pathway) by using a plasmid containing an enhanced green fluorescent protein (eGFP) gene as a target as well as a plasmid creates siRNA transcript, in a form of a hairpin, against eGFP gene. To investigate TGS pathway via RNAi, we also used a plasmid creates hairpin siRNA transcript against pgk-1 promoter. The data presented here indicated long-lasting inhibition in expression of eGFP and puromycin genes, both under the control of the murine Pgk-1 promoter. However, Southern blot analysis showed no methylation in pgk-1 promoter.
机译:RNA干扰(RNAi)可以通过两种途径诱导基因沉默:转录后基因沉默(PTGS)和转录基因沉默(TGS)。在这两种途径中,基因失活的介质都是由较长的双链RNA(dsRNA)产生的21 bp小干扰RNA(siRNA)。 PTGS涉及siRNA介导的靶向和mRNA降解。但是,siRNA在目标启动子处通过DNA甲基化诱导TGS。合成的siRNA可以诱导与长dsRNA相当的基因活性丧失。该方法的局限性在于转染的合成siRNA仅能工作几天。在这项研究中,我们通过使用含有增强型绿色荧光蛋白(eGFP)基因作为靶标的质粒以及以发夹形式产生针对eGFP的siRNA转录本的质粒,测试了RNAi对siRNA的反应(PTGS途径)基因。为了研究通过RNAi的TGS途径,我们还使用了质粒针对pgk-1启动子创建发夹siRNA转录本。此处提供的数据表明,在鼠Pgk-1启动子的控制下,eGFP和嘌呤霉素基因的表达受到长期抑制。然而,Southern印迹分析显示在pgk-1启动子中没有甲基化。

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