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首页> 外文期刊>Chemical science >Interplay between intrinsically disordered proteins inside membraneless protein liquid droplets
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Interplay between intrinsically disordered proteins inside membraneless protein liquid droplets

机译:内在无序蛋白质膜内膜液滴内的相互作用

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Intrinsically disordered proteins (IDPs) in cells phase separate to form diverse membraneless organelles, which have condensed liquid droplet-like properties and often contain multiple IDPs. However, how potential interactions between different IDPs affect the dynamic behavior of these protein droplets is largely unknown. Here, we develop a rapid IDP clustering system to generate protein droplets with varied residue compositions and examine diverse interacting IDPs inside droplets. Three different IDP droplets actively recruited other diverse IDPs inside droplets with extremely varied enrichment (inside/outside) degrees (over 100-fold variation) under highly crowded conditions. The recruited IDPs were mostly mobile even inside highly immobile droplets. Among the five tested IDPs, the disordered region of Ddx4 helicase with its unique multiple charged residue blocks was noticeably influenced by droplet mobility. We also discovered that droplets of different IDPs could rapidly fuse to each other. Interestingly, some droplets were heterogeneously fused with segregated subcompartments, and this segregation was enhanced by droplet maturation and was more apparent for specific IDP pairs, in which the polar and charged residue compositions are highly different. The present study not only reports multiple peculiar behaviors of interacting IDP pairs inside droplets but also provides valuable information on generating membraneless organelle models with controllable droplet properties.
机译:细胞中固有无序的蛋白质(IDP)分离以形成不同膜的细胞器,其具有浓缩的液滴状性质,并且通常含有多个IDP。然而,不同IDPS之间的潜在相互作用如何影响这些蛋白质液滴的动态行为在很大程度上是未知的。在这里,我们开发一种快速IDP聚类系统,以产生具有不同残留物组合物的蛋白质液滴,并在液滴内检查各种相互作用的IDP。三个不同的IDP液滴在高度拥挤的条件下积极招募了极其不同的富集(内/外)度(内/外)度(内/外)度(内外)度(超过100倍)的不同IDP。招募的国内流离失所者甚至在高度不动的液滴内部大多数移动。在五个测试的IDP中,DDX4螺旋酶的无序区域与其独特的多元带电残留块受到液滴迁移率的显着影响。我们还发现不同IDP的液滴可以迅速融合到彼此。有趣的是,一些液滴与隔离子组分具有异质地融合,并且通过液滴成熟增强了该偏析,并且对于特定IDP对更加明显,其中极性和带电的残余物组合物高度不同。本研究不仅在液滴内报告了交互IDP对的多种特殊行为,而且还提供了有关使用可控液滴性能产生膜的细胞器模型的有价值的信息。

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