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细菌中质膜小窝的组成型形成。

Constitutive formation of caveolae in a bacterium.

机构信息

The University of Queensland, Institute for Molecular Bioscience, Brisbane, Queensland 4072, Australia.

出版信息

Cell. 2012 Aug 17;150(4):752-63. doi: 10.1016/j.cell.2012.06.042.

Abstract

Caveolin plays an essential role in the formation of characteristic surface pits, caveolae, which cover the surface of many animal cells. The fundamental principles of caveola formation are only slowly emerging. Here we show that caveolin expression in a prokaryotic host lacking any intracellular membrane system drives the formation of cytoplasmic vesicles containing polymeric caveolin. Vesicle formation is induced by expression of wild-type caveolins, but not caveolin mutants defective in caveola formation in mammalian systems. In addition, cryoelectron tomography shows that the induced membrane domains are equivalent in size and caveolin density to native caveolae and reveals a possible polyhedral arrangement of caveolin oligomers. The caveolin-induced vesicles or heterologous caveolae (h-caveolae) form by budding in from the cytoplasmic membrane, generating a membrane domain with distinct lipid composition. Periplasmic solutes are encapsulated in the budding h-caveola, and purified h-caveolae can be tailored to be targeted to specific cells of interest.

摘要

窖蛋白在形成特征性的表面凹陷(即小窝)中发挥着重要作用,这些小窝覆盖着许多动物细胞的表面。小窝形成的基本原理还在缓慢浮现。在这里,我们发现,在缺乏任何细胞内膜系统的原核宿主中表达窖蛋白会导致含有聚合窖蛋白的细胞质小泡的形成。小泡的形成是由野生型窖蛋白的表达诱导的,但不依赖于在哺乳动物系统中形成小窝缺陷的窖蛋白突变体。此外,冷冻电子断层扫描显示,诱导的膜结构域在大小和窖蛋白密度上与天然小窝相当,并揭示了窖蛋白寡聚体的可能多面排列。窖蛋白诱导的小泡或异源小窝(h-caveolae)通过从细胞质膜出芽形成,产生具有独特脂质组成的膜结构域。周质溶质被包裹在出芽的 h-caveola 中,并且可以对纯化的 h-caveola 进行修饰以靶向特定感兴趣的细胞。

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