Department of Biological Sciences, Indian Institute of Science Education and Research Kolkata, Mohanpur, West Bengal, India.
Department of Biological Sciences, Indian Institute of Science Education and Research Kolkata, Mohanpur, West Bengal, India.
Biophys J. 2019 Apr 23;116(8):1456-1468. doi: 10.1016/j.bpj.2019.03.016. Epub 2019 Mar 28.
Cholesterol depletion by methyl-β-cyclodextrin (MβCD) remodels the plasma membrane's mechanics in cells and its interactions with the underlying cytoskeleton, whereas in red blood cells, it is also known to cause lysis. Currently it's unclear if MβCD alters membrane tension or only enhances membrane-cytoskeleton interactions-and how this relates to cell lysis. We map membrane height fluctuations in single cells and observe that MβCD reduces temporal fluctuations robustly but flattens spatial membrane undulations only slightly. Utilizing models explicitly incorporating membrane confinement besides other viscoelastic factors, we estimate membrane mechanical parameters from the fluctuations' frequency spectrum. This helps us conclude that MβCD enhances membrane tension and does so even on ATP-depleted cell membranes where this occurs despite reduction in confinement. Additionally, on cholesterol depletion, cell membranes display higher intracellular heterogeneity in the amplitude of spatial undulations and membrane tension. MβCD also has a strong impact on the cell membrane's tenacity to mechanical stress, making cells strongly prone to rupture on hypo-osmotic shock with larger rupture diameters-an effect not hindered by actomyosin perturbations. Our study thus demonstrates that cholesterol depletion increases membrane tension and its variability, making cells prone to rupture independent of the cytoskeletal state of the cell.
甲基-β-环糊精(MβCD)通过去除胆固醇来重塑细胞膜的力学特性及其与细胞下的细胞骨架的相互作用,而在红细胞中,它也被认为会导致溶血。目前尚不清楚 MβCD 是否会改变膜张力,还是仅仅增强了膜-细胞骨架的相互作用,以及这与细胞溶血之间的关系。我们在单细胞中绘制了膜高度波动,并观察到 MβCD 可显著降低时间波动,但仅略微平坦化空间膜波动。利用明确包含膜约束的模型以及其他粘弹性因素,我们可以从波动的频谱中估计膜力学参数。这有助于我们得出结论,MβCD 增强了膜张力,即使在膜约束减少的情况下,这种情况也会发生在 ATP 耗尽的细胞膜上。此外,在胆固醇耗尽的情况下,细胞膜在空间波动幅度和膜张力方面显示出更高的细胞内异质性。MβCD 对细胞膜对机械应激的韧性也有很大影响,使细胞在渗透休克时容易破裂,破裂直径更大,而肌动球蛋白的扰动并不能阻止这种情况。因此,我们的研究表明,胆固醇耗竭会增加膜张力及其可变性,使细胞容易破裂,而与细胞的细胞骨架状态无关。