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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Light-induced lipid mixing implies a causal role of lipid splay in membrane fusion
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Light-induced lipid mixing implies a causal role of lipid splay in membrane fusion

机译:光诱导的脂质混合意味着脂质次曲率在膜融合中的因果作用

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The fusion of lipid membranes is central to many biological processes and requires substantial structural reorganization of lipids brought about by the action of fusogenic proteins. Previous molecular dynamics simulations have suggested that splayed lipids, whose tails transiently contact the headgroup region of the bilayer, initiate lipid mixing. Here, we explore the lipid splay hypothesis experimentally. We show that the light-induced trans/cis conversion of the azobenzene-based tail of a model lipid molecule enhances the probability by which its own acyl chains, or the acyl chains of the host lipid, transiently contact the lipid headgroup in a liposomal bilayer. At the same time, the trans/cis conversion triggers lipid mixing of sonicated or extruded liposomes, without requiring fusogenic proteins. This establishes a causal relationship between lipid splay and membrane fusion.
机译:脂质膜的融合是许多生物过程的中心,需要通过致沉菌蛋白的作用引起的脂质的大量结构重组。 以前的分子动力学模拟表明,持续的脂质,其尾部瞬时接触双层的头组区域,起始脂质混合。 在这里,我们通过实验探索脂质的SPLAY假设。 我们表明,模型脂质分子的偶氮苯的尾部的光诱导的反式/顺式转化增强了其自身酰基链或宿主脂质的酰基链,瞬时接触脂质体双层的脂质组分 。 同时,反式/顺式转化术触发超声化或挤出脂质体的脂质混合,而不需要沉蚀蛋白质。 这建立了脂质剧与戏和膜融合之间的因果关系。

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