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Dynamic transformation of a cell-sized liposome containing ganglioside

机译:动态转化含有神经节苷脂的细胞大小脂质体

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It is important to understand the physicochemical mechanisms that are responsible for the morphological changes in the cell membrane in the presence of various stimuli such as osmotic pressure. Role of micro domains such as lipid rafts in cellular processes is now beginning to unfold. In this study, we examined how constituent molecules affect the dynamical movement of liposomes. We used cell sized lipid vesicles to enable direct observation of these changes. We observed the effect of ganglioside (GM1) to osmotic stress induced membrane transformation in homogeneous and heterogeneous liposomes. Interestingly, it was observed that for the formation of sphero-stomatocyte there exists particular critical cut-off concentration. Also in the case of heterogeneous liposomes it was observed that at 10% molar ratio of GM1 almost all domains pinched out from the vesicles, forming their own homogeneous liposomes. Incorporation of GM1 into membrane leads to an increase of the line tension. Thus, necessary proteins can find themselves in one common raft and start the corresponding cascade of reactions.
机译:重要的是要了解在各种刺激(例如渗透压)存在下引起细胞膜形态变化的物理化学机制。微域(如脂质筏)在细胞过程中的作用现已开始显现。在这项研究中,我们研究了组成分子如何影响脂质体的动态运动。我们使用细胞大小的脂质囊泡来直接观察这些变化。我们观察到神经节苷脂(GM1)对渗透压力诱导的均质和异质脂质体中膜转化的影响。有趣的是,观察到对于球形口气母细胞的形成,存在特定的临界截止浓度。同样在异质脂质体的情况下,观察到在GM1的摩尔比为10%时,几乎所有结构域都从囊泡中夹出,形成它们自己的均质脂质体。将GM1掺入膜中会导致线张力增加。因此,必要的蛋白质可以在一个共同的筏子中找到自己,并开始相应的反应级联。

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