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Nanoscale dynamics of cholesterol in the cell membrane

机译:细胞膜中胆固醇的纳米级动力学

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摘要

Cholesterol constitutes ∼30–40% of the mammalian plasma membrane, a larger fraction than of any other single component. It is a major player in numerous signaling processes as well as in shaping molecular membrane architecture. However, our knowledge of the dynamics of cholesterol in the plasma membrane is limited, restricting our understanding of the mechanisms regulating its involvement in cell signaling. Here, we applied advanced fluorescence imaging and spectroscopy approaches on in vitro (model membranes) and in vivo (live cells and embryos) membranes as well as in silico analysis to systematically study the nanoscale dynamics of cholesterol in biological membranes. Our results indicate that cholesterol diffuses faster than phospholipids in live membranes, but not in model membranes. Interestingly, a detailed statistical diffusion analysis suggested two-component diffusion for cholesterol in the plasma membrane of live cells. One of these components was similar to a freely diffusing phospholipid analogue, whereas the other one was significantly faster. When a cholesterol analogue was localized to the outer leaflet only, the fast diffusion of cholesterol disappeared, and it diffused similarly to phospholipids. Overall, our results suggest that cholesterol diffusion in the cell membrane is heterogeneous and that this diffusional heterogeneity is due to cholesterol's nanoscale interactions and localization in the membrane.
机译:胆固醇约占哺乳动物质膜的30%至40%,比任何其他单一组分的胆固醇含量大。它是众多信号传导过程以及塑造分子膜结构的主要参与者。但是,我们对质膜中胆固醇动力学的了解是有限的,这限制了我们对调节其参与细胞信号传导机制的理解。在这里,我们在体外(模型膜)和体内(活细胞和胚胎)膜以及计算机模拟中应用了先进的荧光成像和光谱方法,以系统地研究生物膜中胆固醇的纳米级动力学。我们的结果表明,胆固醇在活膜中的扩散速度要比磷脂快,但在模型膜中则不然。有趣的是,详细的统计扩散分析表明活细胞质膜中胆固醇的两组分扩散。这些成分之一类似于自由扩散的磷脂类似物,而另一成分则明显更快。当胆固醇类似物仅定位于外部小叶时,胆固醇的快速扩散消失了,并且其扩散与磷脂类似。总的来说,我们的结果表明胆固醇在细胞膜中的扩散是异质的,这种扩散的异质性是由于胆固醇的纳米级相互作用和在膜中的定位所致。

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