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质膜囊泡的力学性质与脂质有序性、粘度和细胞密度相关。

Mechanical properties of plasma membrane vesicles correlate with lipid order, viscosity and cell density.

机构信息

1Theory and Bio-Systems, Max Planck Institute of Colloids and Interfaces, Science Park Golm, 14424 Potsdam, Germany.

2MRC Human Immunology Unit, Weatherall Institute of Molecular Medicine, University of Oxford, Headley Way, Oxford, OX3 9DS UK.

出版信息

Commun Biol. 2019 Sep 13;2:337. doi: 10.1038/s42003-019-0583-3. eCollection 2019.

Abstract

Regulation of plasma membrane curvature and composition governs essential cellular processes. The material property of bending rigidity describes the energetic cost of membrane deformations and depends on the plasma membrane molecular composition. Because of compositional fluctuations and active processes, it is challenging to measure it in intact cells. Here, we study the plasma membrane using giant plasma membrane vesicles (GPMVs), which largely preserve the plasma membrane lipidome and proteome. We show that the bending rigidity of plasma membranes under varied conditions is correlated to readout from environment-sensitive dyes, which are indicative of membrane order and microviscosity. This correlation holds across different cell lines, upon cholesterol depletion or enrichment of the plasma membrane, and variations in cell density. Thus, polarity- and viscosity-sensitive probes represent a promising indicator of membrane mechanical properties. Additionally, our results allow for identifying synthetic membranes with a few well defined lipids as optimal plasma membrane mimetics.

摘要

细胞膜曲率和组成的调节控制着重要的细胞过程。弯曲刚性这一物质特性描述了膜变形的能量成本,并且取决于质膜的分子组成。由于组成波动和活跃的过程,在完整的细胞中测量它具有挑战性。在这里,我们使用大量保留质膜脂类组和蛋白质组的巨大质膜囊泡 (GPMVs) 来研究质膜。我们表明,在不同条件下的质膜弯曲刚性与环境敏感染料的读数相关,这些染料指示膜的有序性和微观粘性。这种相关性在不同的细胞系中都成立,无论是胆固醇耗尽还是质膜富集,以及细胞密度的变化。因此,极性和粘性敏感探针是膜力学性质的有前途的指标。此外,我们的结果允许识别具有少数定义明确的脂质的合成膜作为最佳质膜模拟物。

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