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A simple strategy for generation of gene knockdown constructs with convergent H1 and U6 promoters

机译:产生具有融合的H1和U6启动子的基因敲低构建体的简单策略

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摘要

RNA interference (RNAi) is a powerful tool for functional genetic studies in model organisms and mammalian cells. To facilitate rapid construction of gene knockdown constructs and RNAi libraries for known genes of mammalian cells, a new and simple strategy to produce small interfering RNA (siRNA) expression vectors with two opposing polymerase III promoters was developed. The design involved a one-step PCR amplification and single cloning procedure to construct a dual promoter siRNA expression vector. The forward primer is identical for all PCR reactions, only a single reverse primer that contains the siRNA targeting sequence has to be synthesized in the construction of each individual vector. This single primer design is cost-effective and it reduces the risk of sequence errors during synthesis of long oligos. Sense and antisense strands of siRNA duplexes were transcribed from the same template and this eliminated the need to synthesize long hairpin-forming oligonucleotides. Our study demonstrated that this vector design could mediate potent inhibition of expression of both exogenous and endogenous genes in mammalian cells.
机译:RNA干扰(RNAi)是在模型生物和哺乳动物细胞中进行功能遗传研究的强大工具。为促进快速构建哺乳动物细胞已知基因的基因敲低构建体和RNAi文库,开发了一种新的简单策略,以生产具有两个相对的聚合酶III启动子的小干扰RNA(siRNA)表达载体。该设计涉及一步PCR扩增和单克隆程序,以构建双启动子siRNA表达载体。对于所有PCR反应,正向引物都是相同的,仅在构建单个载体时必须合成一个包含siRNA靶向序列的反向引物。这种单引物设计具有成本效益,并且降低了合成长寡核苷酸期间发生序列错误的风险。 siRNA双链体的有义和反义链从同一模板转录而成,这消除了合成长发夹形成寡核苷酸的需要。我们的研究表明,这种载体设计可以介导有效抑制哺乳动物细胞中外源和内源基因的表达。

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