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Quantitative analysis of Argonaute protein reveals microRNA-dependent localization to stress granules

机译:Argonaute蛋白的定量分析揭示了依赖microRNA的定位于应激颗粒

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摘要

Argonaute proteins associate with microRNAs (miRNAs) that bind mRNAs through partial base-pairings to primarily repress translation in animals. A fraction of Argonaute proteins and miRNAs biochemically cosediment with polyribosomes, yet another fraction paradoxically accumulates in ribosome-free processing bodies (PBs) in the cytoplasm. In this report, we give a quantitative account of the Argonaute protein localization and dynamics in living cells in different cellular states. We find that the majority of Argonaute is distributed diffusely in the cytoplasm, and, when cells are subjected to stress, Argonaute proteins accumulate to newly assembled structures known as stress granules (SGs) in addition to PBs. Argonaute proteins displayed distinct kinetics at different structures: exchange faster at SGs and much slower at PBs. Further, miRNAs are required for the Argonaute protein localization to SGs but not PBs. These quantitative kinetic data provide insights into miRNA-mediated repression.
机译:Argonaute蛋白与通过部分碱基配对结合mRNA的microRNA(miRNA)结合,从而主要抑制动物的翻译。一部分Argonaute蛋白和miRNA在化学上与多核糖体共沉淀,而另一部分反常地累积在细胞质中无核糖体的加工体(PBs)中。在此报告中,我们定量描述了不同细胞状态下活细胞中精氨酸蛋白的定位和动力学。我们发现大多数Argonaute蛋白质散布在细胞质中,并且当细胞受到压力时,除PBs之外,Argonaute蛋白质还会积聚到称为压力颗粒(SGs​​)的新组装结构中。 Argonaute蛋白在不同的结构上显示出不同的动力学:在SG处交换更快,在PB处交换慢得多。而且,miRNA是Argonaute蛋白定位到SG而不是PB所需的。这些定量的动力学数据提供了对miRNA介导的抑制的见解。

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