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生物分子凝聚物与膜的接触。

Biomolecular Condensates in Contact with Membranes.

机构信息

Max Planck Institute of Colloids and Interfaces, Potsdam, Germany; email:

出版信息

Annu Rev Biophys. 2024 Jul;53(1):319-341. doi: 10.1146/annurev-biophys-030722-121518. Epub 2024 Jun 28.

Abstract

Biomolecular condensates are highly versatile membraneless organelles involved in a plethora of cellular processes. Recent years have witnessed growing evidence of the interaction of these droplets with membrane-bound cellular structures. Condensates' adhesion to membranes can cause their mutual molding and regulation, and their interaction is of fundamental relevance to intracellular organization and communication, organelle remodeling, embryogenesis, and phagocytosis. In this article, we review advances in the understanding of membrane-condensate interactions, with a focus on in vitro models. These minimal systems allow the precise characterization and tuning of the material properties of both membranes and condensates and provide a workbench for visualizing the resulting morphologies and quantifying the interactions. These interactions can give rise to diverse biologically relevant phenomena, such as molecular-level restructuring of the membrane, nano- to microscale ruffling of the condensate-membrane interface, and coupling of the protein and lipid phases.

摘要

生物分子凝聚物是多功能的无膜细胞器,参与了众多细胞过程。近年来,越来越多的证据表明这些液滴与膜结合的细胞结构相互作用。凝聚物与膜的黏附会导致它们相互塑造和调节,它们的相互作用对于细胞内组织和通讯、细胞器重塑、胚胎发生和吞噬作用具有根本的重要性。在本文中,我们综述了对膜-凝聚物相互作用的理解进展,重点介绍了体外模型。这些最小的系统允许对膜和凝聚物的材料特性进行精确的表征和调整,并为可视化产生的形态和量化相互作用提供了一个工作台。这些相互作用可以产生多种与生物学相关的现象,例如膜的分子水平重构、凝聚物-膜界面的纳米到微米尺度的皱缩以及蛋白质和脂质相的偶联。

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