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Cholesterol Flip-Flop Impacts Domain Registrationin Plasma Membrane Models

机译:胆固醇触发器影响域名注册在等离子膜模型中

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摘要

The plasma membrane is a highly complex multicomponent system that is central to the functioning of cells. Cholesterol, a key lipid component of the plasma membrane, promotes the formation of nanodomains. These nanodomains are often correlated across the two membrane leaflets, but the underlying physical mechanism remains unclear. Using coarse-grained molecular dynamics simulations, we investigate the influence of cholesterol flip-flop on membrane properties, in particular, the interleaflet coupling of cholesterol-enriched domains. We show that the cholesterol density correlation between the leaflets of an average mammalian plasma membrane is significantly reduced by suppressing interleaflet cholesterol population. Our results suggest an amplifying role of cholesterol in signal transduction across the leaflets.
机译:质膜是高度复杂的多组分系统,对细胞功能至关重要。胆固醇是质膜的关键脂质成分,可促进纳米域的形成。这些纳米域通常跨两个膜小叶相关,但潜在的物理机制仍不清楚。使用粗粒度的分子动力学模拟,我们研究了胆固醇触发器对膜性能的影响,特别是富胆固醇域的叶间偶联。我们显示,通过抑制叶间胆固醇水平,平均哺乳动物质膜的小叶之间的胆固醇密度相关性显着降低。我们的结果表明胆固醇在整个小叶信号转导中的放大作用。

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