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湿剪:生物分子凝聚物如何切割细胞膜。

Wet scissors: How biomolecular condensates cut cellular membranes.

作者信息

Fang Xiaofeng, May Alexander I, Sporbeck Katharina, Hauer Lukas, Knorr Roland L

机构信息

School of Life Sciences, Tsinghua University, Beijing, 100084, China.

Institute of Biology, Faculty of Life Sciences, Humboldt-Universität zu Berlin, Berlin, Germany; Institute for Integrated Research, Institute of Science Tokyo, Tokyo, Japan.

出版信息

Curr Opin Plant Biol. 2025 Aug;86:102740. doi: 10.1016/j.pbi.2025.102740. Epub 2025 Jun 3.

Abstract

Membrane shape is a fundamental determinant of cellular organisation. Reshaping of membranes is crucial for dynamic processes including organelle and cell division, endocytosis and membrane trafficking. Membrane fission (or scission) is a discontinuous, topological shape change that is central in many such processes. Specialised remodelling proteins, such as dynamins and ESCRT proteins, are capable of forming oligomeric spirals that drive membrane fission in cells. In this review, we summarise evidence demonstrating that capillary forces generated by liquid-like biomolecular condensates can facilitate cellular membrane reshaping and drive fission events. We draw on our recent findings that condensates are implicated in multivesicular body formation to describe the molecular and physical principles that allow biomolecular condensates to cut membranes. We further discuss possible interactions between novel condensate-mediated fission processes and established reshaping processes. We propose that condensates make an important contribution to membrane remodelling events involved in the biogenesis of diverse cellular structures. The characterisation of condensate-mediated membrane reshaping promises to transform our understanding of intracellular organisation and dynamics.

摘要

膜的形状是细胞组织的一个基本决定因素。膜的重塑对于包括细胞器和细胞分裂、内吞作用和膜运输在内的动态过程至关重要。膜裂变(或切割)是一种不连续的拓扑形状变化,在许多此类过程中起着核心作用。专门的重塑蛋白,如发动蛋白和ESCRT蛋白,能够形成寡聚螺旋,驱动细胞中的膜裂变。在这篇综述中,我们总结了证据,证明类液体生物分子凝聚物产生的毛细作用力能够促进细胞膜重塑并驱动裂变事件。我们借鉴了我们最近的发现,即凝聚物与多囊泡体的形成有关,来描述使生物分子凝聚物能够切割膜的分子和物理原理。我们进一步讨论了新型凝聚物介导的裂变过程与已确立的重塑过程之间可能的相互作用。我们提出,凝聚物对参与多种细胞结构生物发生的膜重塑事件做出了重要贡献。对凝聚物介导的膜重塑的表征有望改变我们对细胞内组织和动态的理解。

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