首页> 外文期刊>Biochemistry (Moscow). Supplement, Series A. Membrane and cell biology >Membrane Fusion. Two Possible Mechanisms Underlying a Decrease in the Fusion Energy Barrier in the Presence of Fusion Proteins
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Membrane Fusion. Two Possible Mechanisms Underlying a Decrease in the Fusion Energy Barrier in the Presence of Fusion Proteins

机译:膜融合。存在融合蛋白时降低融合能垒的两种可能机制

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摘要

Here we explored a contribution of fusion proteins to stalk formation, the first stage of membrane fusion, and considered two likely mechanisms, by which these proteins could influence the membrane transformation. One mechanism represents the induction of spontaneous membrane curvature, while another is membrane disturbance by a force generated by attached proteins. The energy barrier arising due to the deformation of approaching membranes and hydration repulsion between them was calculated. In addition, a dependence of an energy barrier height on certain protein features, such as spontaneous curvature, was analyzed. It was found that if fusion proteins do not produce a force directly applied to fusing membranes, they negligibly affect the barrier height irrespective of a value of spontaneous protein curvature. Thus, the overall results provide evidence that if fusion proteins are unable to exert force, they cannot provide monolayer fusion of the membranes.
机译:在这里,我们探讨了融合蛋白对秸秆形成(膜融合的第一阶段)的贡献,并考虑了两种可能的机制,这些蛋白可通过这些机制影响膜的转化。一种机制表示自发膜曲率的诱导,而另一种机制是由附着的蛋白质产生的力引起的膜干扰。计算了由于接近的膜的变形和它们之间的水合排斥而产生的能垒。此外,分析了能量垒高度对某些蛋白质特征(例如自发曲率)的依赖性。已经发现,如果融合蛋白不产生直接施加到融合膜上的力,则与自发蛋白曲率的值无关,它们对屏障高度的影响可忽略不计。因此,总的结果提供了证据,如果融合蛋白不能施加力,它们将不能提供膜的单层融合。

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