Suppr超能文献

小分子热休克蛋白凝聚物和聚集体的动力学和组成。

Dynamics and Composition of Small Heat Shock Protein Condensates and Aggregates.

机构信息

Biomolecular Chemistry, Radboud University Institute for Molecular and Materials, Nijmegen, the Netherlands; Physical Organic Chemistry, Radboud University Institute for Molecular and Materials, Nijmegen, the Netherlands; Synthetic Organic Chemistry, Radboud University Institute for Molecular and Materials, the Netherlands.

Physical Organic Chemistry, Radboud University Institute for Molecular and Materials, Nijmegen, the Netherlands.

出版信息

J Mol Biol. 2023 Jul 1;435(13):168139. doi: 10.1016/j.jmb.2023.168139. Epub 2023 May 3.

Abstract

Small heat shock proteins (sHSPs) are essential ATP-independent chaperones that protect the cellular proteome. These proteins assemble into polydisperse oligomeric structures, the composition of which dramatically affects their chaperone activity. The biomolecular consequences of variations in sHSP ratios, especially inside living cells, remain elusive. Here, we study the consequences of altering the relative expression levels of HspB2 and HspB3 in HEK293T cells. These chaperones are partners in a hetero-oligomeric complex, and genetic mutations that abolish their mutual interaction are associated with myopathic disorders. HspB2 displays three distinct phenotypes when co-expressed with HspB3 at varying ratios. Expression of HspB2 alone leads to formation of liquid nuclear condensates, while shifting the stoichiometry towards HspB3 resulted in the formation of large solid-like aggregates. Only cells co-expressing HspB2 with a limited amount of HspB3 formed fully soluble complexes that were distributed homogeneously throughout the nucleus. Strikingly, both condensates and aggregates were reversible, as shifting the HspB2:HspB3 balance in situ resulted in dissolution of these structures. To uncover the molecular composition of HspB2 condensates and aggregates, we used APEX-mediated proximity labelling. Most proteins interact transiently with the condensates and were neither enriched nor depleted in these cells. In contrast, we found that HspB2:HspB3 aggregates sequestered several disordered proteins and autophagy factors, suggesting that the cell is actively attempting to clear these aggregates. This study presents a striking example of how changes in the relative expression levels of interacting proteins affects their phase behavior. Our approach could be applied to study the role of protein stoichiometry and the influence of client binding on phase behavior in other biomolecular condensates and aggregates.

摘要

小分子热休克蛋白(sHSPs)是一种必需的、不依赖于 ATP 的伴侣蛋白,可保护细胞蛋白质组。这些蛋白可组装成多分散的寡聚体结构,其组成成分显著影响其伴侣活性。sHSP 比例变化的生物分子后果,尤其是在活细胞内,仍然难以捉摸。在这里,我们研究了改变 HEK293T 细胞中 HspB2 和 HspB3 的相对表达水平的后果。这些伴侣蛋白是异源寡聚复合物的合作伙伴,而消除它们相互作用的基因突变与肌病有关。当 HspB2 与 HspB3 以不同比例共表达时,HspB2 表现出三种不同的表型。单独表达 HspB2 会导致形成液体核凝聚物,而将化学计量比向 HspB3 倾斜则会导致形成大的固体状聚集物。只有在共表达 HspB2 和有限量 HspB3 的细胞中,才会形成完全可溶的复合物,均匀分布在整个核内。引人注目的是,凝聚物和聚集物都是可逆的,因为在原位改变 HspB2:HspB3 平衡会导致这些结构的溶解。为了揭示 HspB2 凝聚物和聚集物的分子组成,我们使用 APEX 介导的邻近标记。大多数蛋白质与凝聚物短暂相互作用,在这些细胞中既没有富集也没有耗尽。相比之下,我们发现 HspB2:HspB3 聚集物会隔离几种无序蛋白和自噬因子,表明细胞正在积极尝试清除这些聚集物。这项研究提供了一个引人注目的例子,说明相互作用蛋白的相对表达水平的变化如何影响它们的相行为。我们的方法可以应用于研究蛋白质化学计量和客户绑定对其他生物分子凝聚物和聚集物的相行为的影响。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验