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Sub-resolution lipid domains exist in the plasma membrane and regulate protein diffusion and distribution

机译:亚分​​辨率脂质域存在于质膜中,并调节蛋白质的扩散和分布

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摘要

Lipid microdomains are postulated to regulate many membrane-associated processes but have remained highly controversial. Here we provide the first direct evidence that the plasma membrane of intact, live cells is comprised of a sub-resolution mixtureof approximately 76% ordered and 24% disordered lipid domains, which correspond to liquid-ordered and -disordered model membranes. These measurements were based on the unmixing of fluorescence lifetime decays (phasor analysis) obtained from environmentally sensitive membrane dyes that report the degree of lipid packing. Using the transmembrane protein Linker for Activation of T cells (LAT) as an example, we demonstrate that association with ordered domains retarded LAT diffusion and decreased clusteringin meso-scaled protein domains as analysed by super-resolution microscopy. Our data therefore propose a membrane model in which the majority of the plasma membrane is covered by cholesterol-dependent, ordered lipid domains that contribute to the non-random distribution and diffusion of membrane constituents.
机译:脂质微区被认为可以调节许多与膜相关的过程,但仍存在很大争议。在这里,我们提供了第一个直接证据,表明完整的活细胞的质膜由约76%有序和24%无序脂质域的亚分辨率混合物组成,分别对应于液体有序和无序的模型膜。这些测量是基于从报告脂质堆积程度的环境敏感膜染料获得的荧光寿命衰减(相量分析)的分解结果。以跨膜蛋白接头激活T细胞(LAT)为例,我们证明了与有序结构域的缔合延迟了LAT扩散并降低了中尺度蛋白质结构域中的聚类,这是通过超分辨率显微镜分析的。因此,我们的数据提出了一种膜模型,其中大部分的质膜被胆固醇依赖的,有序的脂质结构域覆盖,这些结构域有助于膜成分的非随机分布和扩散。

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