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多相凝聚模型中无膜细胞器的阶段性 RNA 积累和双链热动力学。

Phase-specific RNA accumulation and duplex thermodynamics in multiphase coacervate models for membraneless organelles.

机构信息

Department of Chemistry, The Pennsylvania State University, University Park, PA, USA.

Center for RNA Molecular Biology, The Pennsylvania State University, University Park, PA, USA.

出版信息

Nat Chem. 2022 Oct;14(10):1110-1117. doi: 10.1038/s41557-022-00980-7. Epub 2022 Jun 30.

Abstract

Liquid-liquid phase separation has emerged as an important means of intracellular RNA compartmentalization. Some membraneless organelles host two or more compartments serving different putative biochemical roles. The mechanisms for, and functional consequences of, this subcompartmentalization are not yet well understood. Here we show that adjacent phases of decapeptide-based multiphase model membraneless organelles differ markedly in their interactions with RNA. Single- and double-stranded RNAs preferentially accumulate in different phases within the same droplet, and one phase is more destabilizing for RNA duplexes than the other. Single-phase peptide droplets did not capture this behaviour. Phase coexistence introduces new thermodynamic equilibria that alter RNA duplex stability and RNA sorting by hybridization state. These effects require neither biospecific RNA-binding sites nor full-length proteins. As such, they are more general and point to primitive versions of mechanisms operating in extant biology that could aid understanding and enable the design of functional artificial membraneless organelles.

摘要

液-液相分离已成为细胞内 RNA 区隔化的一种重要手段。一些无膜细胞器容纳两个或更多隔间,用于不同的假定生化作用。对于这种亚区隔化的机制及其功能后果,目前还了解得不够清楚。在这里,我们表明,基于十肽的多相模型无膜细胞器的相邻相在与 RNA 的相互作用方面有显著差异。单链和双链 RNA 优先在同一液滴中的不同相中积累,并且一个相比另一个相更能使 RNA 双链体不稳定。单相肽液滴没有表现出这种行为。相共存引入了新的热力学平衡,改变了 RNA 双链体的稳定性和通过杂交状态对 RNA 的分拣。这些效应既不需要生物特异性 RNA 结合位点,也不需要全长蛋白质。因此,它们更具普遍性,并指向现存生物学中起作用的原始机制版本,这可能有助于理解并能够设计功能性的人工无膜细胞器。

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