首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Conserved vertebrate mir-451 provides a platform for Dicer-independent Ago2-mediated microRNA biogenesis
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Conserved vertebrate mir-451 provides a platform for Dicer-independent Ago2-mediated microRNA biogenesis

机译:保守的脊椎动物mir-451提供了一个独立于Dicer的Ago2介导的microRNA生物发生的平台

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摘要

Canonical animal microRNAs (miRNAs) are generated by sequential cleavage of precursor substrates by the Drosha and Dicer RNase III enzymes. Several variant pathways exploit other RNA metabolic activities to generate functional miRNAs. However, all of these pathways culminate in Dicer cleavage, suggesting that this is a unifying feature of miRNA biogenesis. Here, we show that maturation of miR-451, a functional miRNA that is perfectly conserved among vertebrates, is independent of Dicer. Instead, structure-function and knockdown studies indicate that Drosha generates a short pre-mir-451 hairpin that is directly cleaved by Ago2 and followed by resection of its 3′ terminus. We provide stringent evidence for this model by showing that Dicer knockout cells can generate mature miR-451 but not other miRNAs, whereas Ago2 knockout cells reconstituted with wild-type Ago2, but not Slicer-deficient Ago2, can process miR-451. Finally, we show that the mir-451 backbone is amenable to reprogramming, permitting vector-driven expression of diverse functional miRNAs in the absence of Dicer. Beyond the demonstration of an alternative strategy to direct gene silencing, these observations open the way for transgenic rescue of Dicer conditional knockouts.
机译:通过Drosha和Dicer RNase III酶顺序切割前体底物,可以产生典型的动物microRNA(miRNA)。几种变异途径利用其他RNA代谢活性来产生功能性miRNA。但是,所有这些途径最终都在Dicer切割过程中达到高潮,这表明这是miRNA生物发生的统一特征。在这里,我们显示miR-451(一种在脊椎动物中完全保守的功能性miRNA)的成熟独立于Dicer。取而代之的是,结构功能和基因敲低研究表明Drosha产生了一个短的Mir-451短发夹,该发夹被Ago2直接切割,然后切除了其3'末端。我们通过显示Dicer基因敲除细胞可以生成成熟的miR-451,但不能生成其他miRNA,从而为该模型提供严格的证据,而用野生型Ago2重组但不是Slicer缺陷型Ago2的Ago2基因敲除细胞可以处理miR-451。最后,我们表明mir-451主链适合重编程,允许在Dicer不存在的情况下以载体驱动的方式表达多种功能性miRNA。除了直接基因沉默的替代策略的证明之外,这些发现还为Dicer条件基因敲除的转基因抢救开辟了道路。

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