Navarro Angels, Anand-Apte Bela, Parat Marie-Odile
Department of Anesthesiology Research, Cleveland Clinic Foundation, Cleveland, Ohio 44122, USA.
FASEB J. 2004 Dec;18(15):1801-11. doi: 10.1096/fj.04-2516rev.
Caveolae are specialized plasma membrane subdomains capable of transport and sophisticated compartmentalization of cell signaling. Numerous cell functions, including cell type-specific functions, involve caveolae and require caveolin-1, the major protein component of these organelles. Caveolae are particularly abundant in endothelial cells and participate in endothelial transcytosis, vascular permeability, vasomotor tone control, and vascular reactivity. Caveolin-1 drives the formation of plasma membrane caveolae and anchors them to the actin cytoskeleton, modulates cell interaction with the extracellular matrix, pulls together and regulates signaling molecules, and transports cholesterol. Via these functions, caveolin-1 might play an important role in cell movement through control of cell membrane composition and membrane surface expansion, polarization of signaling molecules and matrix proteolysis, and/or cytoskeleton remodeling. Caveolae and caveolin-1 are polarized in migrating endothelial cells, indicating they may play a role in cell motility. Several studies have shown that manipulation of caveolin-1 expression affects cell migration in a complex way. We are reviewing the current data and hypotheses in favor of an essential role for caveolae in cell migration.
小窝是特化的质膜亚结构域,能够进行细胞信号转导的运输和复杂的区室化。许多细胞功能,包括细胞类型特异性功能,都涉及小窝且需要小窝蛋白-1,它是这些细胞器的主要蛋白质成分。小窝在内皮细胞中特别丰富,并参与内皮转胞吞作用、血管通透性、血管舒缩张力控制和血管反应性。小窝蛋白-1驱动质膜小窝的形成并将它们锚定到肌动蛋白细胞骨架上,调节细胞与细胞外基质的相互作用,聚集并调节信号分子,以及运输胆固醇。通过这些功能,小窝蛋白-1可能通过控制细胞膜组成和膜表面扩张、信号分子极化和基质蛋白水解以及/或细胞骨架重塑,在细胞运动中发挥重要作用。小窝和小窝蛋白-1在迁移的内皮细胞中呈极化状态,表明它们可能在细胞运动中起作用。几项研究表明,对小窝蛋白-1表达的操纵会以复杂的方式影响细胞迁移。我们正在综述支持小窝在细胞迁移中起重要作用的当前数据和假说。