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Differences in silencing of mismatched targets by sliced versus diced siRNAs

机译:切片与切丁谱系沉默偏离不匹配目标的差异

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摘要

It has been reported that the two major types of RNA interference triggers, the classical Dicer-generated small RNAs (siRNAs), which function with all members of the Argonaute (Ago) protein family in mammals, and the Ago2-sliced small RNAs (sli-siRNAs), which function solely through Ago2, have similar potency in target cleavage and repression. Here, we show that sli-siRNAs are generally more potent than siRNAs in silencing mismatched targets. This phenomenon is usually more apparent in targets that have mismatched nucleotides in the 3' supplementary region than in targets with mismatches in the seed region. We demonstrate that Ago2 slicer activity is a major factor contributing to the greater silencing efficiency of sli-siRNA against mismatched targets and that participation of non-slicing Agos in silencing mismatched siRNA targets may dilute the slicing ability of Ago2. The difference in length of the mature guide RNA used in sli-RISCs and si-RISCs may also contribute to the observed difference in knockdown efficiency. Our data suggest that a sli-siRNA guide strand is likely to have substantially stronger off-target effects than a guide strand with the same sequence in a classical siRNA and that Dicer and non-slicing Agos may play pivotal roles in controlling siRNA target specificity.
机译:据报道,这两个主要类型的RNA干扰触发器,经典的Dicer酶产生的小分子RNA(siRNA)的,它的功能与Argonaute蛋白(AGO)蛋白家族在哺乳动物中,和的Ago2切片的小分子RNA的所有成员(SLI -siRNAs),通过Ago2的该单独运行,具有在靶切割和压制类似的效力。在这里,我们表明,SLI-的siRNA一般都比沉默不匹配目标的siRNA更有效。这种现象通常是在具有3' 补充区域错配核苷酸比在与所述种子区域不匹配目标的目标更加明显。我们证明的Ago2切片机活动是助长对抗错配目标SLI-siRNA的沉默更高的效率和非切片阿戈的沉默不匹配的siRNA目标可能会淡化的Ago2的切割能力是参与的主要因素。在SLI-的RISC和Si-的RISC中使用的成熟RNA引导的长度之差也可有助于在敲低效率所观察到的差异。我们的数据表明,SLI-siRNA的引导链很可能有大幅走强的脱靶效应比引导链与经典的siRNA和Dicer酶和非切片阿戈同一顺序控制的siRNA靶向特异性可起到关键作用。

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  • 来源
    《Nucleic Acids Research》 |2018年第13期|共17页
  • 作者单位

    City Hope Natl Med Ctr Beckman Res Inst Diabet &

    Metab Res Inst Dept Diabet Complicat &

    Metab 1500 E Duarte Rd Duarte CA 91010 USA;

    City Hope Natl Med Ctr Beckman Res Inst Diabet &

    Metab Res Inst Dept Diabet Complicat &

    Metab 1500 E Duarte Rd Duarte CA 91010 USA;

    City Hope Natl Med Ctr Beckman Res Inst Diabet &

    Metab Res Inst Dept Diabet Complicat &

    Metab 1500 E Duarte Rd Duarte CA 91010 USA;

    City Hope Natl Med Ctr Beckman Res Inst Diabet &

    Metab Res Inst Dept Diabet Complicat &

    Metab 1500 E Duarte Rd Duarte CA 91010 USA;

    City Hope Natl Med Ctr Beckman Res Inst Diabet &

    Metab Res Inst Dept Diabet Complicat &

    Metab 1500 E Duarte Rd Duarte CA 91010 USA;

    City Hope Natl Med Ctr Beckman Res Inst Diabet &

    Metab Res Inst Dept Diabet Complicat &

    Metab 1500 E Duarte Rd Duarte CA 91010 USA;

    City Hope Natl Med Ctr Beckman Res Inst Diabet &

    Metab Res Inst Dept Diabet Complicat &

    Metab 1500 E Duarte Rd Duarte CA 91010 USA;

    City Hope Natl Med Ctr Beckman Res Inst Dept Mol &

    Cellular Biol 1500 E Duarte Rd Duarte CA 91010 USA;

    Taipei Med Univ Coll Med Sci &

    Technol Grad Inst Canc Biol &

    Drug Discovery 250 Wuxing St Taipei 11031 Taiwan;

    City Hope Natl Med Ctr Beckman Res Inst Diabet &

    Metab Res Inst Dept Diabet Complicat &

    Metab 1500 E Duarte Rd Duarte CA 91010 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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