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Higher-order assemblies of BAR domain proteins for shaping membranes.

机译:BAR结构域蛋白的高阶装配体,用于塑造膜。

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Most cellular organelles contain lipid bilayer membranes. The earliest characterization of cellular organelles was performed by electron microscopy observation of such membranes. However, the precise mechanisms for shaping the membrane in particular subcellular organelles is poorly understood. Classically, the overall cellular shape, i.e. the shape of the plasma membrane, was thought to be governed by the reorganization of cytoskeletal components such as actin and microtubules. The plasma membrane contains various submicron structures such as clathrin-coated pits, caveolae, filopodia and lamellipodia. These subcellular structures are either invaginations or protrusions and are associated with the cytoskeleton. Therefore, it could be hypothesized that there are membrane-binding proteins that cooperates with cytoskeleton in shaping of plasma membrane organelles. Proteins with the Bin-Amphiphysin-Rvs (BAR) domain connect a variety of membrane shapes to actin filaments. The BAR domains themselves bend the membranes by their rigidity and then mold the membranes into tubules through their assembly as spiral polymers, which are thought to be involved in the various submicron structures. Membrane tubulation by polymeric assembly of the BAR domains is supposed to be regulated by binding proteins, binding lipids and the mechanical properties of the membrane. This review gives an overview of BAR protein assembly, describes the significance of the assembly and discusses how to study the assembly in the context of membrane and cellular morphology. The technical problems encountered in microscopic observation of BAR domain assembly are also discussed.
机译:大多数细胞器包含脂质双层膜。细胞器的最早表征是通过电子显微镜观察这种膜进行的。然而,对于使特定亚细胞细胞器中的膜成形的精确机制知之甚少。经典地,总体细胞形状,即质膜的形状,被认为是由细胞骨架成分例如肌动蛋白和微管的重组所决定的。质膜包含各种亚微米结构,例如网格蛋白包被的凹坑,小窝,丝状伪足和片状脂质体。这些亚细胞结构是内陷或突起,并与细胞骨架有关。因此,可以假设存在与细胞骨架协同作用的质膜细胞器成型中的膜结合蛋白。具有Bin-Amphiphysin-Rvs(BAR)结构域的蛋白质将各种膜形状连接到肌动蛋白丝。 BAR结构域本身通过其刚性使膜弯曲,然后通过将膜组装为螺旋聚合物将膜模制成小管,据认为这涉及各种亚微米结构。 BAR结构域的聚合组装引起的膜微管被认为是由结合蛋白,结合脂质和膜的机械性能所调节。这篇综述给出了BAR蛋白装配的概述,描述了装配的重要性,并讨论了如何在膜和细胞形态学背景下研究装配。还讨论了在BAR域组装的微观观察中遇到的技术问题。

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