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Compositional Control of Phase-Separated Cellular Bodies

机译:相分离细胞体的组成控制

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摘要

Cellular bodies such as P bodies and PML nuclear bodies (PML NBs) appear to be phase-separated liquids organized by multivalent interactions among proteins and RNA molecules. Although many components of various cellular bodies are known, general principles that define body composition are lacking. We modeled cellular bodies using several engineered multivalent proteins and RNA. In vitro and in cells, these scaffold molecules form phase-separated liquids that concentrate low valency client proteins. Clients partition differently depending on the ratio of scaffolds, with a sharp switch across the phase diagram diagonal. Composition can switch rapidly through changes in scaffold concentration or valency. Natural PML NBs and P bodies show analogous partitioning behavior, suggesting how their compositions could be controlled by levels of PML SUMOylation or cellular mRNA concentration, respectively. The data suggest a conceptual framework for considering the composition and control thereof of cellular bodies assembled through heterotypic multivalent interactions.
机译:细胞体,例如P体和PML核体(PML NBs),似乎是相分离的液体,由蛋白质和RNA分子之间的多价相互作用组成。尽管已知各种细胞体的许多成分,但缺乏定义身体组成的一般原理。我们使用几种工程化的多价蛋白质和RNA对细胞体进行建模。在体外和细胞中,这些支架分子形成相分离的液体,浓缩了低价客户蛋白质。客户根据脚手架的比例进行不同的划分,在相图对角线上有一个尖锐的切换。组成可以通过支架浓度或化合价的变化而快速切换。天然PML NB和P体显示相似的分配行为,表明如何分别通过PML SUMOylation或细胞mRNA浓度水平控制其组成。数据提出了用于考虑通过异型多价相互作用组装的细胞体的组成和控制的概念框架。

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