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Subcellular membrane curvature mediated by the BAR domain superfamily proteins

机译:BAR域超家族蛋白介导的亚细胞膜曲率

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摘要

The Bin-Amphiphysin-Rvs167 (BAR) domain superfamily consists of proteins containing the BAR domain, the extended FCH (EFC)/FCH-BAR (F-BAR) domain, or the IRSp53-MIM homology domain (IMD)/inverse BAR (I-BAR) domain. These domains bind membranes through electrostatic interactions between the negative charges of the membranes and the positive charges on the structural surface of homo-dimeric BAR domain superfamily members. Some BAR superfamily members have membrane-penetrating insertion loops, which also contribute to the membrane binding by the proteins. The membrane-binding surface of each BAR domain superfamily member has its own unique curvature that governs or senses the curvature of the membrane for BAR-domain binding. The wide range of BAR-domain surface curvatures correlates with the various invaginations and protrusions of cells. Therefore, each BAR domain superfamily member may generate and recognize the curvature of the membrane of each subcellular structure, such as clathrin-coated pits or filopodia. The BAR domain superfamily proteins may regulate their own catalytic activity or that of their binding proteins, depending on the membrane curvature of their corresponding subcellular structures.
机译:Bin-Amphiphysin-Rvs167(BAR)域超家族由包含BAR域,扩展的FCH(EFC)/ FCH-BAR(F-BAR)域或IRSp53-MIM同源域(IMD)/反BAR( I-BAR)域。这些结构域通过膜的负电荷与同型二聚体BAR域超家族成员结构表面上的正电荷之间的静电相互作用结合膜。一些BAR超家族成员具有穿透膜的插入环,这也有助于蛋白质与膜的结合。每个BAR域超家族成员的膜结合表面具有其自己的独特曲率,该曲率控制或感测用于BAR域结合的膜的曲率。 BAR域表面曲率的广泛范围与细胞的各种内陷和突起相关。因此,每个BAR域超家族成员可以生成并识别每个亚细胞结构(如网格蛋白涂层的凹坑或丝状伪足)的膜的曲率。 BAR结构域超家族蛋白可以调节其自身的催化活性或其结合蛋白的催化活性,具体取决于其相应的亚细胞结构的膜曲率。

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