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Review Frontiers in molecular biosciences. 2025 May 30:12:1605772. doi: 10.3389/fmolb.2025.1605772 Q24.02025

Global and local effects in lipid-mediated interactions between peripheral and integral membrane proteins

与膜周边蛋白和内在蛋白的脂质介导相互作用中的全局效应及局部效应 翻译改进

Tatiana K Rostovtseva  1, David P Hoogerheide  2, William A Milhizer  1, Sergey M Bezrukov  1

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作者单位

  • 1 Division of Basic and Translational Biophysics, Eunice Kennedy Shriver National Institute of Child Health and Human Development, National Institutes of Health, Bethesda, MD, United States.
  • 2 Center for Neutron Research, National Institute of Standards and Technology, Gaithersburg, MD, United States.
  • DOI: 10.3389/fmolb.2025.1605772 PMID: 40520262

    摘要 中英对照阅读

    Amphitropic proteins (APs) are a subfamily of water-soluble peripherally membrane-bound proteins that interact directly with the lipid membrane rather than with intrinsic membrane proteins and are therefore strongly influenced by membrane properties. When an AP interacts with a membrane containing an integral membrane protein, a ternary protein-lipid-protein system is created. Even in the absence of direct interactions between the amphitropic and integral proteins, the two proteins can affect each other by modifying lipid membrane properties, either at the global (i.e., whole-membrane) or local (i.e., confined to a small area around the bound or integrated protein) scale. These lipid-mediated protein-protein interactions are indirect and, therefore, difficult to elucidate; independent experimental data are required to report on each individual interaction to comprehend the whole system. Examples for which comprehensive data are available are remarkably rare. In this article, we describe how these difficulties could be surmounted by using the channel-forming integral membrane protein gramicidin A (grA) reconstituted in a planar lipid membrane and exposed to the amphitropic proteins dimeric tubulin or α-synuclein. Importantly, there are no known direct interactions between these APs and grA, thus revealing the role of the lipid membrane. Here, grA serves a dual role. First, grA reports on the global properties of the lipid membrane; grA results, combined with the well-understood tubulin-lipid interaction, yield a complete picture of the mutual effect of tubulin binding on the lipid membrane. Second, the presence of the grA conducting dimer alters the local membrane curvature and creates binding sites for tubulin in an otherwise inert membrane composition.

    Keywords: alpha-synuclein; amphitropic proteins; gramicidin A; ion channels; lipid packing stress; planar lipid membranes; protein-lipid interactions; tubulin.

    Keywords:lipid-mediated interactions; peripheral proteins; integral proteins; global effects; local effects

    两亲蛋白(APs)是一类可溶性周边膜结合蛋白的亚家族,它们直接与脂质双层相互作用,而不是与其他内在膜蛋白相互作用,因此受膜性质的影响很大。当一个两亲蛋白与含有内源性膜蛋白的膜相互作用时,会形成一种三元蛋白-脂质-蛋白系统。即使在两亲蛋白和内源蛋白之间没有直接相互作用的情况下,这两种蛋白质也可以通过改变脂质双层的性质而影响彼此的作用,这种改变可以是全局(即整个膜)或局部(即仅限于结合或嵌入蛋白周围的小区域)。这些由脂质介导的蛋白质间相互作用是间接的,并且因此难以解析;为了理解整个系统,需要独立的实验数据来报告每一个单独的相互作用。拥有全面数据的例子非常罕见。在本文中,我们描述了如何通过使用重新构建在平面脂质膜中的通道形成内源性膜蛋白gramicidin A(grA),并在其上暴露二聚体微管蛋白或α-突触核蛋白这样的两亲蛋白来克服这些困难。重要的是,这两种两亲蛋白与grA之间没有已知的直接相互作用,这揭示了脂质双层的作用。在这里,grA扮演双重角色。首先,grA报告整个脂质膜的全局性质;结合微管蛋白-脂质相互作用的良好理解后,可以得出微管蛋白结合对脂质膜的整体影响的完整图景。其次,grA传导二聚体的存在改变了局部膜曲率,并在原本惰性的膜成分中创造了与微管蛋白结合的位置。

    关键词:α-突触核蛋白;两亲蛋白;gramicidin A;离子通道;脂质包装应力;平面脂质膜;蛋白质-脂质相互作用;微管蛋白。

    关键词:脂质介导的相互作用; 周边蛋白; 整合蛋白; 全局效应; 局部效应

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    e-ISSN:2296-889X

    IF/分区:4.0/Q2

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    Global and local effects in lipid-mediated interactions between peripheral and integral membrane proteins