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膜结合蛋白之间的空间位阻会阻碍脂质相分离。

Steric pressure between membrane-bound proteins opposes lipid phase separation.

机构信息

Department of Biomedical Engineering, The University of Texas at Austin, Austin, Texas 78712, USA.

出版信息

J Am Chem Soc. 2013 Jan 30;135(4):1185-8. doi: 10.1021/ja3099867. Epub 2013 Jan 17.

Abstract

Cellular membranes are densely crowded with a diverse population of integral and membrane-associated proteins. In this complex environment, lipid rafts, which are phase-separated membrane domains enriched in cholesterol and saturated lipids, are thought to organize the membrane surface. Specifically, rafts may help to concentrate proteins and lipids locally, enabling cellular processes such as assembly of caveolae, budding of enveloped viruses, and sorting of lipids and proteins in the Golgi. However, the ability of rafts to concentrate protein species has not been quantified experimentally. Here we show that when membrane-bound proteins become densely crowded within liquid-ordered membrane regions, steric pressure arising from collisions between proteins can destabilize lipid phase separations, resulting in a homogeneous distribution of proteins and lipids over the membrane surface. Using a reconstituted system of lipid vesicles and recombinant proteins, we demonstrate that protein-protein steric pressure creates an energetic barrier to the stability of phase-separated membrane domains that increases in significance as the molecular weight of the proteins increases. Comparison with a simple analytical model reveals that domains are destabilized when the steric pressure exceeds the approximate enthalpy of membrane mixing. These results suggest that a subtle balance of free energies governs the stability of phase-separated cellular membranes, providing a new perspective on the role of lipid rafts as concentrators of membrane proteins.

摘要

细胞膜上密集地挤满了各种整合膜蛋白和膜相关蛋白。在这个复杂的环境中,富含胆固醇和饱和脂质的相分离膜域——脂筏,被认为可以组织膜表面。具体来说,筏可能有助于局部浓缩蛋白质和脂质,从而使细胞过程如小窝的组装、包膜病毒的出芽和高尔基体中脂质和蛋白质的分拣得以进行。然而,筏浓缩蛋白质的能力尚未通过实验进行定量。在这里,我们表明,当膜结合蛋白在有序液体膜区域内变得密集拥挤时,蛋白质之间的碰撞产生的空间压力会破坏脂质的相分离,从而导致蛋白质和脂质在膜表面上均匀分布。使用重建的脂质囊泡和重组蛋白系统,我们证明了蛋白质-蛋白质的空间压力会对相分离的膜域的稳定性产生能量障碍,随着蛋白质分子量的增加,这种障碍的重要性也会增加。与简单的分析模型进行比较表明,当空间压力超过膜混合的近似焓时,域就会被破坏。这些结果表明,相分离的细胞膜的稳定性受自由能的微妙平衡控制,为脂质筏作为膜蛋白浓缩物的作用提供了新的视角。

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