Ausserwöger Hannes, de Csilléry Ella, Qian Daoyuan, Krainer Georg, Welsh Timothy J, Sneideris Tomas, Franzmann Titus M, Qamar Seema, Erkamp Nadia A, Nixon-Abell Jonathon, Kar Mrityunjoy, St George-Hyslop Peter, Hyman Anthony A, Alberti Simon, Pappu Rohit V, Knowles Tuomas P J
Centre for Misfolding Diseases, Yusuf Hamied Department of Chemistry, University of Cambridge, Cambridge, UK.
Institute of Molecular Biosciences (IMB), University of Graz, Graz, Austria.
Nat Commun. 2025 Aug 19;16(1):7724. doi: 10.1038/s41467-025-62437-y.
Biomolecular phase separation is an emerging theme for protein assembly and cellular organisation. The collective forces driving such condensation, however, remain challenging to characterise. Here we show that tracking the dilute phase concentration of only one component suffices to quantify composition and energetics of multicomponent condensates. Applying this assay to several disease- and stress-related proteins, we find that monovalent ions can either deplete from or enrich within the dense phase in a context-dependent manner. By analysing the effect of the widely used modulator 1,6-hexanediol, we find that the compound inhibits phase separation by acting as a solvation agent that expands polypeptide chains. Extending the strategy to in cellulo data, we even quantify the relative energetic contributions of individual proteins within complex condensates. Together, our approach provides a generic and broadly applicable tool for dissecting the forces governing biomolecular condensation and guiding the rational modulation of condensate behaviour.
生物分子相分离是蛋白质组装和细胞组织的一个新兴主题。然而,驱动这种凝聚的集体力量仍难以表征。在这里,我们表明,仅追踪一种组分的稀相浓度就足以量化多组分凝聚物的组成和能量学。将该检测方法应用于几种与疾病和应激相关的蛋白质,我们发现单价离子可以根据具体情况以依赖于上下文的方式从致密相中耗尽或富集。通过分析广泛使用的调节剂1,6 -己二醇的作用,我们发现该化合物通过作为使多肽链伸展的溶剂化剂来抑制相分离。将该策略扩展到细胞内数据,我们甚至可以量化复杂凝聚物中单个蛋白质的相对能量贡献。总之,我们的方法为剖析控制生物分子凝聚的力量和指导凝聚物行为的合理调控提供了一种通用且广泛适用的工具。