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siPools: highly complex but accurately defined siRNA pools eliminate off-target effects

机译:siPools:高度复杂但精确定义的siRNA池可消除脱靶效应

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Short interfering RNAs (siRNAs) are widely used as tool for gene inactivation in basic research and therapeutic applications. One of the major shortcomings of siRNA experiments are sequence-specific off-target effects. Such effects are largely unpredictable because siRNAs can affect partially complementary sequences and function like microRNAs (miRNAs), which inhibit gene expression on mRNA stability or translational levels. Here we demonstrate that novel, enzymatically generated siRNA pools-referred to as siPools-containing up to 60 accurately defined siRNAs eliminate off-target effects. This is achieved by the low concentration of each individual siRNA diluting sequence-specific off-target effects below detection limits. In fact, whole transcriptome analyses reveal that single siRNA transfections can severely affect global gene expression. However, when complex siRNA pools are transfected, almost no transcriptome alterations are observed. Taken together, we present enzymatically produced complex but accurately defined siRNA pools with potent on-target silencing but without detectable off-target effects
机译:短干扰RNA(siRNA)在基础研究和治疗应用中被广泛用作基因失活的工具。 siRNA实验的主要缺点之一是序列特异性脱靶效应。这种作用在很大程度上是不可预测的,因为siRNA可以影响部分互补的序列并像microRNA(miRNA)一样起作用,从而抑制基因在mRNA稳定性或翻译水平上的表达。在这里,我们证明了新颖的,酶促产生的siRNA池(称为siPools),包含多达60个准确定义的siRNA,消除了脱靶效应。这是通过将每个单独的siRNA稀释浓度低于检测极限而降低序列特异性脱靶效应而实现的。实际上,整个转录组分析显示单个siRNA转染会严重影响整体基因表达。然而,当复杂的siRNA库被转染时,几乎没有观察到转录组改变。综上所述,我们提出了酶促产生的复杂但精确定义的siRNA库,具有有效的靶上沉默功能,但没有可检测到的脱靶作用

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