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Wetting and capillary condensation as means of protein organization in membranes.

机译:润湿和毛细管冷凝是膜中蛋白质组织的一种方式。

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摘要

Wetting and capillary condensation are thermodynamic phenomena in which the special affinity of interfaces to a thermodynamic phase, relative to the stable bulk phase, leads to the stabilization of a wetting phase at the interfaces. Wetting and capillary condensation are here proposed as mechanisms that in membranes may serve to induce special lipid phases in between integral membrane proteins leading to long-range lipid-mediated joining forces acting between the proteins and hence providing a means of protein organization. The consequences of wetting in terms of protein aggregation and protein clustering are derived both within a simple phenomenological theory as well as within a concrete calculation on a microscopic model of lipid-protein interactions that accounts for the lipid bilayer phase equilibria and direct lipid-protein interactions governed by hydrophobic matching between the lipid bilayer hydrophobic thickness and the length of the hydrophobic membrane domain. The theoretical results are expected to be relevant for optimizing the experimental conditions required for forming protein aggregates and regular protein arrays in membranes.
机译:润湿和毛细管冷凝是热力学现象,其中界面对热力学相的特殊亲和力(相对于稳定的本体相)导致界面处的润湿相稳定。本文提出润湿和毛细管冷凝为膜中机制,该机制可用于在整合膜蛋白之间诱导特殊的脂质相,从而导致在蛋白之间起作用的长距离脂质介导的结合力,从而提供蛋白质组织的手段。就蛋白质聚集和蛋白质聚集而言,润湿的结果既可以通过简单的现象学理论得出,也可以通过对脂蛋白相互作用微观模型的具体计算得出,该模型解释了脂双层相平衡和直接的脂蛋白相互作用。由脂质双层疏水厚度和疏水膜结构域长度之间的疏水匹配决定。理论结果有望与优化在膜中形成蛋白质聚集体和规则蛋白质阵列所需的实验条件有关。

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