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Analysis of siRNA specificity on targets with double-nucleotide mismatches

机译:对具有双核苷酸错配的靶标的siRNA特异性分析

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Although RNA interference as a tool for gene knockdown is a great promise for future applications, the specificity of small interfering RNA (siRNA)-mediated gene silencing needs to be thoroughly investigated. Most research regarding siRNA specificity has involved analysis of affected off-target genes instead of exploring the specificity of the siRNA itself. In this study we have developed an efficient method for generating a siRNA target library by combining a siRNA target validation vector with a nucleotide oligomix. We have used this library to perform an analysis of the silencing effects of a functional siRNA towards its target site with double-nucleotide mismatches. The results indicated that not only the positions of the mismatched base pair have an impact on silencing efficiency but also the identity of the mismatched nucleotide. Our data strengthen earlier observations of widespread siRNA off-target effects and shows that similar to 35% of the double-mutated target sites still causes knockdown efficiency of > 50%. We also provide evidence that there may be substantial differences in knockdown efficiency depending on whether the mutations are positioned within the siRNA itself or in the corresponding target site.
机译:尽管将RNA干扰作为基因敲除的工具在未来的应用中具有广阔的前景,但仍需要彻底研究小分子干扰RNA(siRNA)介导的基因沉默的特异性。关于siRNA特异性的大多数研究都涉及对受影响的脱靶基因的分析,而不是探索siRNA本身的特异性。在这项研究中,我们已经开发了一种通过将siRNA靶标验证载体与核苷酸寡核苷酸混合物组合来生成siRNA靶标库的有效方法。我们已经使用该文库对功能性siRNA对其具有双核苷酸错配的靶位点的沉默效果进行了分析。结果表明,不仅错配碱基对的位置对沉默效率有影响,而且错配核苷酸的身份也有影响。我们的数据加强了对广泛的siRNA脱靶作用的早期观察,并显示相似的35%的双突变靶位点仍会导致击倒效率> 50%。我们还提供证据,根据突变是位于siRNA本身还是位于相应的靶位点,敲除效率可能存在实质性差异。

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