RNP Granule Formation: Lessons from P-Bodies and Stress Granules.

Giulia Ada Corbet, Roy Parker
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引用次数: 59

Abstract

It is now clear that cells form a wide collection of large RNA-protein assemblies, referred to as RNP granules. RNP granules exist in bacterial cells and can be found in both the cytosol and nucleus of eukaryotic cells. Recent approaches have begun to define the RNA and protein composition of a number of RNP granules. Herein, we review the composition and assembly of RNP granules, as well as how RNPs are targeted to RNP granules using stress granules and P-bodies as model systems. Taken together, these reveal that RNP granules form through the summative effects of a combination of protein-protein, protein-RNA, and RNA-RNA interactions. Similarly, the partitioning of individual RNPs into stress granules is determined by the combinatorial effects of multiple elements. Thus, RNP granules are assemblies generally dominated by combinatorial effects, thereby providing rich opportunities for biological regulation.

RNP颗粒的形成:来自p体和应力颗粒的教训。
现在很清楚,细胞形成了广泛的大rna -蛋白集合,称为RNP颗粒。RNP颗粒存在于细菌细胞中,在真核细胞的细胞质和细胞核中都可以发现。最近的方法已经开始定义一些RNP颗粒的RNA和蛋白质组成。在此,我们回顾了RNP颗粒的组成和组装,以及RNP如何以应力颗粒和p体为模型系统靶向RNP颗粒。综上所述,这些表明RNP颗粒是通过蛋白质-蛋白质、蛋白质- rna和RNA-RNA相互作用的综合作用形成的。同样,单个RNPs划分为应力颗粒是由多个元素的组合作用决定的。因此,RNP颗粒通常是由组合效应主导的组合,从而为生物调控提供了丰富的机会。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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