Author:
Zografou Sofia,Basagiannis Dimitris,Papafotika Alexandra,Shirakawa Ryutaro,Horiuchi Hisanori,Auerbach Daniel,Fukuda Mitsunori,Christoforidis Savvas
Abstract
Weibel-Palade bodies (WPBs) are endothelial-specific organelles, which, upon fusion with the plasma membrane, release cargo molecules that are essential in critical blood vessel functions such as thrombosis, inflammation and angiogenesis. Despite the importance of WPBs, the basic mechanisms that mediate their secretion are only poorly understood. Rab GTPases play fundamental role in the trafficking of intracellular organelles. Yet, the only known WPB-associated Rabs are Rab27a and Rab3d. Here, to determine the full spectrum of WPB-Rabs we performed a complete Rab-genome screening by analyzing the localization of all Rabs in WPBs and their involvement in the secretory process in endothelial cells. Apart from Rab3 and Rab27, we identified three additional Rabs, Rab15 (a previously reported endocytic Rab), Rab33 and Rab37, on the WPB limiting membrane. A knocking down approach using siRNAs showed that among these five WPB-Rabs only Rab3, Rab27 and Rab15 are required for exocytosis. Intriguingly, we found that Rab15 cooperates with Rab27a in WPB secretion. Furthermore, a specific effector of Rab27, Munc13-4, appears to be also an effector of Rab15 and is required for WPB exocytosis. These data indicate that WPB secretion requires the coordinated function of a specific group of Rabs and that, among them, Rab27a and Rab15, as well as their effector Munc13-4, cooperate to drive exocytosis.
Publisher
The Company of Biologists
Cited by
79 articles.
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