首页> 外文会议>Micro-NanoMechatronics and Human Science, 2009. MHS 2009 >Reduced base-base interactions between the DNA seed and RNA target are the major determinants of a significant reduction in the off-target effect due to DNA-seed-containing siRNA
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Reduced base-base interactions between the DNA seed and RNA target are the major determinants of a significant reduction in the off-target effect due to DNA-seed-containing siRNA

机译:DNA种子与RNA靶之间的碱基间相互作用降低是由于含DNA种子的siRNA导致脱靶效应显着降低的主要决定因素

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Previously, we showed that DNA replacement of the seed-containing region of class I siRNAs significantly reduced the off-target effect without substantial loss of target gene silencing activity (Ui-Tei et al, Nucleic Acids Res., 36, 2136-2151, 2008). Separately, we also showed that the level of the off-target effect due to non-modified class I siRNA is determined primarily by the calculated melting temperature (Tm) of the seed-target duplex, indicating that, at least in class I-siRNA-mediated gene silencing, Tm or thermodynamic stability of the complex between the siRNA seed and target mRNA is the most important factor determining the degree of off-target effects (Ui-Tei et al., Nucleic Acids Res., 36, 7100-7109, 2008). Here, using non-modified siRNAs other than class I siRNAs and DNA-seed-containing siRNAs, we examined the relationship between the thermodynamic stability of the seed-target duplex and the degree of the off-target effect. We found that the degree of the off-target effects is generally determined primarily by the Tm of the corresponding seed-target duplex, indicating that its thermodynamic stability is the most important general determinant of the degree of the off-target effect in gene silencing.
机译:先前,我们发现I类siRNA含种子区域的DNA置换显着降低了脱靶效应,而靶基因沉默活性没有实质性损失(Ui-Tei等,Nucleic Acids Res。,36,2136-2151, 2008)。分别地,我们还显示了由于未修饰的I类siRNA引起的脱靶效应水平主要由种子-靶标双链体的计算解链温度(Tm)决定,这表明至少在I-siRNA类中介导的基因沉默,siRNA种子与靶标mRNA之间复合物的T m 或热力学稳定性是决定脱靶效应程度的最重要因素(Ui-Tei等人,Nucleic Acids Res。,36,7100-7109,2008)。在这里,我们使用除I类siRNA和含DNA种子的siRNA以外的未修饰siRNA,我们研究了种子-靶标双链体的热力学稳定性与脱靶效应程度之间的关系。我们发现脱靶效应的程度通常主要由相应的种子-靶标双链体的T m 决定,这表明其热力学稳定性是确定脱靶作用程度的最重要的一般决定因素。基因沉默中的脱靶效应。

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