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RNA is a critical element for the sizing and the composition of phase-separated RNA–protein condensates

机译:RNA是施胶的临界元件和相分离的RNA蛋白缩合物的组成

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Liquid-liquid phase separation is thought to be a key organizing principle in eukaryotic cells to generate highly concentrated dynamic assemblies, such as the RNP granules. Numerous in vitro approaches have validated this model, yet a missing aspect is to take into consideration the complex molecular mixture and promiscuous interactions found in vivo. Here we report the versatile scaffold ArtiG to generate concentration-dependent RNA-protein condensates within living cells, as a bottom-up approach to study the impact of co-segregated endogenous components on phase separation. We demonstrate that intracellular RNA seeds the nucleation of the condensates, as it provides molecular cues to locally coordinate the formation of endogenous high-order RNP assemblies. Interestingly, the co-segregation of intracellular components ultimately impacts the size of the phase-separated condensates. Thus, RNA arises as an architectural element that can influence the composition and the morphological outcome of the condensate phases in an intracellular context.
机译:液体相分离被认为是真核细胞中的关键组织原理,以产生高浓度的动态组件,例如RNP颗粒。许多体外方法已经验证了该模型,但缺失的方面是考虑复杂的分子混合物和体内发现的混杂相互作用。在这里,我们报道了多功能的支架ARIG,以产生活细胞内的浓度依赖性的RNA蛋白缩合物,作为研究共偏析内源性组分对相分离的影响的自下而上的方法。我们证明细胞内RNA种子凝聚凝聚物的成核,因为它提供了局部坐标内源性高阶RNP组件的形成。有趣的是,细胞内成分的共聚偏析最终影响相分离的缩合物的尺寸。因此,RNA作为建筑元件,其能够影响细胞内背景下的组合物和冷凝物相的形态结果。

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