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Rapid controlled and intensive lentiviral vector-based RNAi

机译:基于快速受控和密集型慢病毒载体的RNAi

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摘要

RNAi is a powerful technology for studying the functional significance of genes. The technique is more accessible than gene knockout methods, and is directly applicable to diverse human cells. However, inadequate reductions in target mRNAs can reduce the utility of RNAi and insufficiently rigorous controls can lead to spurious conclusions. Optimally combining pol III promoters to drive short hairpin RNA expression with the gene transfer capabilities of lentiviral vectors has led to ways to perform especially effective and convincing RNAi, which we review here. We detail practical methods, including one-step vector construction. Deep, stable knockdowns to trace mRNA levels are readily achieved in T cell lines, which can then be subjected to comprehensive HIV challenge studies. Rescue of pre-knockdown phenotype by RNAi-resistant gene re-expression is a critical validating step. The methods can also be applied to primary cells T cells and macrophages. The time from thinking of a target to initial data read-out can be a few weeks.
机译:RNAi是研究基因功能重要性的强大技术。该技术比基因敲除方法更容易获得,并且可直接应用于多种人类细胞。但是,靶mRNA的减少不足会降低RNAi的效用,而严格的控制则可能导致虚假结论。最佳地结合pol III启动子以驱动短发夹RNA表达和慢病毒载体的基因转移能力,已导致执行特别有效且令人信服的RNAi的方法,我们将在此进行综述。我们详细介绍了实用的方法,包括一步法向量构造。在T细胞系中很容易实现深度,稳定的敲低以追踪mRNA水平,然后可以对其进行全面的HIV攻击研究。通过RNAi耐药基因的重新表达来挽救基因敲除前的表型是至关重要的验证步骤。该方法还可以应用于原代细胞T细胞和巨噬细胞。从考虑目标到初始数据读出的时间可能是几周。

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