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Analysis of Nuclear RNA Interference (RNAi) in Human Cells by Subcellular Fractionation and Argonaute Loading

机译:亚细胞分级分离和Argonaute加载分析人细胞中的核RNA干扰(RNAi)。

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摘要

RNA interference (RNAi) is well known for its ability to regulate gene expression in the cytoplasm of mammalian cells. In mammalian cell nuclei, however, the impact of RNAi has remained more controversial. A key technical hurdle has been a lack of optimized protocols for the isolation and analysis of cell nuclei. Here we describe a simplified protocol for nuclei isolation from cultured cells that incorporates a method for obtaining nucleoplasmic and chromatin fractions and removing cytoplasmic contamination. Cell fractions can then be used to detect the presence and activity of RNAi factors in the nucleus. We present a protocol for investigating an early step in RNAi, Argonaute protein loading with small RNAs, which is enabled by our improved extract preparations. These protocols facilitate characterization of nuclear RNAi and can be applied to the analysis of other nuclear proteins and pathways. From cellular fractionation to analysis of Argonaute loading results, this protocol takes 4–6 d to complete.
机译:RNA干扰(RNAi)具有调节哺乳动物细胞质中基因表达的能力,因此众所周知。然而,在哺乳动物细胞核中,RNAi的影响仍然存在争议。关键的技术障碍是缺乏用于细胞核分离和分析的优化方案。在这里,我们描述了一种从培养细胞中分离核的简化方案,该方案结合了一种获得核质和染色质组分并去除细胞质污染的方法。然后可以使用细胞级分检测细胞核中RNAi因子的存在和活性。我们提出了一个协议,用于研究RNAi的早期步骤,即使用小RNA加载Argonaute蛋白质,这是通过改进提取物制剂实现的。这些协议有助于核RNAi的表征,并可用于其他核蛋白和途径的分析。从细胞分级分离到Argonaute加载结果的分析,该方案需要4-6 d才能完成。

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