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不依赖于切割的 RISCs 的激活需要 Argonaute 的 PAZ 结构域。

Slicing-independent RISC activation requires the argonaute PAZ domain.

机构信息

Department of Pediatrics, Stanford University, Stanford, CA 94305, USA.

出版信息

Curr Biol. 2012 Aug 21;22(16):1536-42. doi: 10.1016/j.cub.2012.06.040. Epub 2012 Jul 12.

Abstract

Small RNAs regulate genetic networks through a ribonucleoprotein complex called the RNA-induced silencing complex (RISC), which, in mammals, contains at its center one of four Argonaute proteins (Ago1-Ago4). A key regulatory event in the RNA interference (RNAi) and microRNA (miRNA) pathways is Ago loading, wherein double-stranded small-RNA duplexes are incorporated into RISC (pre-RISC) and then become single-stranded (mature RISC), a process that is not well understood. The Agos contain an evolutionarily conserved PAZ (Piwi/Argonaute/Zwille) domain whose primary function is to bind the 3' end of small RNAs. We created multiple PAZ-domain-disrupted mutant Ago proteins and studied their biochemical properties and biological functionality in cells. We found that the PAZ domain is dispensable for Ago loading of slicing-competent RISC. In contrast, in the absence of slicer activity or slicer-substrate duplex RNAs, PAZ-disrupted Agos bound duplex small interfering RNAs, but were unable to unwind or eject the passenger strand and form functional RISC complexes. We have discovered that the highly conserved PAZ domain plays an important role in RISC activation, providing new mechanistic insights into how miRNAs regulate genes, as well as new insights for future design of miRNA- and RNAi-based therapeutics.

摘要

小 RNA 通过一种称为 RNA 诱导沉默复合物 (RISC) 的核糖核蛋白复合物来调节基因网络,在哺乳动物中,该复合物的中心包含四种 Argonaute 蛋白(Ago1-Ago4)之一。RNA 干扰 (RNAi) 和 microRNA (miRNA) 途径中的一个关键调控事件是 Ago 加载,双链小 RNA 双链体被整合到 RISC(前 RISC)中,然后变成单链(成熟的 RISC),这个过程还不太清楚。Agos 含有一个进化上保守的 PAZ(Piwi/Argonaute/Zwille)结构域,其主要功能是结合小 RNA 的 3' 端。我们创建了多个 PAZ 结构域缺失突变的 Ago 蛋白,并研究了它们在细胞中的生化特性和生物学功能。我们发现 PAZ 结构域对于有切割能力的 RISC 的 Ago 加载是可有可无的。相比之下,在没有切割活性或切割底物双链 RNA 的情况下,PAZ 缺失的 Agos 结合双链小干扰 RNA,但无法解旋或排出过客链并形成功能性 RISC 复合物。我们发现高度保守的 PAZ 结构域在 RISC 激活中发挥重要作用,为 miRNA 如何调节基因提供了新的机制见解,也为未来基于 miRNA 和 RNAi 的治疗方法的设计提供了新的见解。

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