论文标题
由收缩应力和跨贝耦合驱动的活细胞膜的活性乳液
Active emulsions in living cell membranes driven by contractile stresses and transbilayer coupling
论文作者
论文摘要
细胞表面上蛋白质和脂质的时空组织对信号,分选和内吞作用具有直接的功能后果。较早的研究表明,多种类型的膜蛋白,包括具有细胞质肌动蛋白结合能力的跨膜蛋白和由肌动蛋白cortex产生的活性收缩流驱动的纳米级簇的脂质 - 粘膜蛋白(GPIAP)。为了深入了解脂质在活细胞中组织膜结构域中的作用,我们研究了促进GPIAP和跨膜蛋白的主动生成的纳米簇的分子相互作用。这激发了理论上的描述,其中活跃的收缩应力和跨贝型耦合的组合驱动了活跃乳液的创建,GPIAPS和脂质的中尺度液体排序(LO)域,在温度大于脂质脂质相位的温度下。为了测试这些想法,我们使用homo-fret的空间成像与局部膜序列相结合,并证明了富含GPIAP的纳米簇的介质结构域通过皮质肌动蛋白活性和跨质体的相互作用来维持富含GPIAP的纳米簇,并且表现出明显的脂质顺序,并且与活性综合模型的预测保持一致。
The spatiotemporal organisation of proteins and lipids on the cell surface has direct functional consequences for signaling, sorting and endocytosis. Earlier studies have shown that multiple types of membrane proteins including transmembrane proteins that have cytoplasmic actin binding capacity and lipid-tethered GPI-anchored proteins (GPI-APs) form nanoscale clusters driven by active contractile flows generated by the actin cortex. To gain insight into the role of lipids in organizing membrane domains in living cells, we study the molecular interactions that promote the actively generated nanoclusters of GPI-APs and transmembrane proteins. This motivates a theoretical description, wherein a combination of active contractile stresses and transbilayer coupling drive the creation of active emulsions, mesoscale liquid ordered (lo) domains of the GPI-APs and lipids, at temperatures greater than equilibrium lipid-phase segregation. To test these ideas we use spatial imaging of homo-FRET combined with local membrane order and demonstrate that mesoscopic domains enriched in nanoclusters of GPI-APs are maintained by cortical actin activity and transbilayer interactions, and exhibit significant lipid order, consistent with predictions of the active composite model.