首页> 外文期刊>Proceedings of the National Academy of Sciences of the United States of America >Crosslinking a Iipid raft component triggers liquid ordered-liquid disordered phase separation in model plasma membranes
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Crosslinking a Iipid raft component triggers liquid ordered-liquid disordered phase separation in model plasma membranes

机译:交联脂质筏组分触发模型质膜中的液体有序-无序相分离

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The mechanisms by which a cell uses and adapts its functional membrane organization are poorly understood and are the subject of ongoing investigation and discussion. Here, we study one proposed mechanism: the crosslinking of membrane components. In immune cell signaling (and other membrane-associated processes), a small change in the clustering of specific membrane proteins can lead to large-scale reorganizations that involve numerous other membrane components. We have investigated the large-scale physical effect of crosslinking a minor membrane component, the ganglioside GM_1, in simple lipid models of the plasma membrane containing sphingomyelin, cholesterol, and phosphatidylcholine. We observe that crosslinking GM_1 can cause uniform membranes to phase-separate into large, coexistent liquid ordered and liquid disordered membrane domains. We also find that this lipid separation causes a dramatic redistribution of a transmem-brane peptide, consistent with a raft model of membrane organization. These experiments demonstrate a mechanism that could contribute to the effects of crosslinking observed in cellular processes: Domains induced by clustering a small number of proteins or lipids might rapidly reorganize many other membrane proteins.
机译:细胞利用和适应其功能性膜组织的机制了解甚少,并且是正在进行的研究和讨论的主题。在这里,我们研究一种提出的机制:膜组分的交联。在免疫细胞信号传导(和其他与膜相关的过程)中,特定膜蛋白簇的微小变化会导致涉及许多其他膜成分的大规模重组。我们已经研究了在包含鞘磷脂,胆固醇和磷脂酰胆碱的质膜的简单脂质模型中交联次要膜成分神经节苷脂GM_1的大规模物理效应。我们观察到交联GM_1可以导致均匀的膜相分离成大的,并存的液体有序和液体无序的膜域。我们还发现,这种脂质分离导致跨膜肽的戏剧性重新分布,与膜组织的筏模型一致。这些实验证明了可能有助于细胞过程中观察到的交联作用的机制:通过聚集少量蛋白质或脂质诱导的结构域可能会迅速重组许多其他膜蛋白质。

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