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多组分相分离中凝聚物的尺寸缩放

Size Scaling of Condensates in Multicomponent Phase Separation.

作者信息

Chen Feipeng, Li Xiufeng, Guo Wei, Wang Yuchao, Guo Ming, Shum Ho Cheung

机构信息

Department of Mechanical Engineering, the University of Hong Kong, Pokfulam Road, Hong Kong (SAR) 999077, China.

Advanced Biomedical Instrumentation Centre, Hong Kong Science Park, Shatin, New Territories, Hong Kong (SAR) 999077, China.

出版信息

J Am Chem Soc. 2024 Jun 12;146(23):16000-16009. doi: 10.1021/jacs.4c02906. Epub 2024 May 29.

Abstract

Constant proportionalities between cells and their intracellular organelles have been widely observed in various types of cells, known as intracellular size scaling. However, the mechanism underlying the size scaling and its modulation by environmental factors in multicomponent systems remain poorly understood. Here, we study the size scaling of membrane-less condensates using microdroplet-encapsulated minimalistic condensates formed by droplet microfluidics and mean-field theory. We demonstrate that the size scaling of condensates is an inherent characteristic of liquid-liquid phase separation. This concept is supported by experiments showing the occurrence of size scaling phenomena in various condensate systems and a generic lever rule acquired from mean-field theory. Moreover, it is found that the condensate-to-microdroplet scaling ratio can be affected by the solute and salt concentrations, with good agreement between experiments and predictions by theory. Notably, we identify a noise buffering mechanism whereby condensates composed of large macromolecules effectively maintain constant volumes and counteract concentration fluctuations of small molecules. This mechanism is achieved through the dynamic rearrangement of small molecules in and out of membrane-free interfaces. Our work provides crucial insights into understanding mechanistic principles that govern the size of cells and intracellular organelles as well as associated biological functions.

摘要

细胞与其细胞内细胞器之间的恒定比例关系在各种类型的细胞中已被广泛观察到,这被称为细胞内大小缩放。然而,在多组分系统中,大小缩放的机制及其受环境因素的调节仍知之甚少。在这里,我们使用由微滴微流控技术形成的微滴包裹的简约凝聚物和平均场理论来研究无膜凝聚物的大小缩放。我们证明凝聚物的大小缩放是液-液相分离的固有特征。这一概念得到了实验的支持,这些实验表明在各种凝聚物系统中都出现了大小缩放现象,以及从平均场理论获得的通用杠杆规则。此外,发现凝聚物与微滴的缩放比例会受到溶质和盐浓度的影响,实验结果与理论预测吻合良好。值得注意的是,我们确定了一种噪声缓冲机制,即由大分子组成的凝聚物有效地保持恒定体积,并抵消小分子的浓度波动。这种机制是通过小分子在无膜界面内外的动态重排实现的。我们的工作为理解控制细胞和细胞内细胞器大小以及相关生物学功能的机制原理提供了关键见解。

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