化学
生物系统
作文(语言)
解耦(概率)
高分子
核糖核酸
核酸
折射率
化学计量学
二进制数
化学物理
生物化学
物理化学
物理
基因
哲学
控制工程
工程类
算术
生物
量子力学
语言学
数学
作者
Patrick M. McCall,Kyoohyun Kim,Anna Shevchenko,Martine Ruer,Jan Peychl,Jochen Guck,Andrej Shevchenko,Anthony A. Hyman,Jan Brugués
出处
期刊:Nature Chemistry
[Nature Portfolio]
日期:2025-09-03
卷期号:17 (12): 1891-1902
被引量:15
标识
DOI:10.1038/s41557-025-01928-3
摘要
Many subcellular compartments are biomolecular condensates made of multiple components, often including several distinct proteins and nucleic acids. However, current tools to measure condensate composition are limited and cannot capture this complexity quantitatively because they either require fluorescent labels, which can perturb composition, or can distinguish only one or two components. Here we describe a label-free method based on quantitative phase imaging and analysis of tie-lines and refractive index to measure the composition of reconstituted condensates with multiple components. We first validate the method empirically in binary mixtures, revealing sequence-encoded density variation and complex ageing dynamics for condensates composed of full-length proteins. We then use analysis of tie-lines and refractive index to simultaneously resolve the concentrations of five macromolecular solutes in multicomponent condensates containing RNA and constructs of multiple RNA-binding proteins. Our measurements reveal an unexpected decoupling of density and composition, highlighting the need to determine molecular stoichiometry in multicomponent condensates. We foresee this approach enabling the study of compositional regulation of condensate properties and function.
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