Molecular and Cellular Hemostasis, Sanquin Research and Landsteiner Laboratory, Amsterdam UMC, University of Amsterdam, Amsterdam, the Netherlands.
Hematology, Erasmus University Medical Center, Rotterdam, the Netherlands.
J Thromb Haemost. 2019 Jan;17(1):6-18. doi: 10.1111/jth.14322. Epub 2018 Dec 13.
The blood vessel wall has a number of self-healing properties, enabling it to minimize blood loss and prevent or overcome infections in the event of vascular trauma. Endothelial cells prepackage a cocktail of hemostatic, inflammatory and angiogenic mediators in their unique secretory organelles, the Weibel-Palade bodies (WPBs), which can be immediately released on demand. Secretion of their contents into the vascular lumen through a process called exocytosis enables the endothelium to actively participate in the arrest of bleeding and to slow down and direct leukocytes to areas of inflammation. Owing to their remarkable elongated morphology and their secretory contents, which span the entire size spectrum of small chemokines all the way up to ultralarge von Willebrand factor multimers, WPBs constitute an ideal model system for studying the molecular mechanisms of secretory organelle biogenesis, exocytosis, and content expulsion. Recent studies have now shown that, during exocytosis, WPBs can undergo several distinct modes of fusion, and can utilize fundamentally different mechanisms to expel their contents. In this article, we discuss recent advances in our understanding of the composition of the WPB exocytotic machinery and how, because of its configuration, it is able to support WPB release in its various forms.
血管壁具有多种自我修复特性,使其能够在发生血管创伤时最大限度地减少出血并预防或克服感染。内皮细胞在其独特的分泌细胞器——Weibel-Palade 小体(WPB)中预先包装了一组止血、炎症和血管生成介质,这些介质可以根据需要立即释放。它们的内容物通过胞吐作用分泌到血管腔中,使内皮细胞能够积极参与止血,并减缓和引导白细胞到炎症部位。由于其显著的长形形态及其分泌的内容物,从小到整个趋化因子大小范围,一直到超大的 von Willebrand 因子多聚体,WPB 构成了研究分泌细胞器发生、胞吐作用和内容物排出的分子机制的理想模型系统。最近的研究表明,在胞吐作用过程中,WPB 可以经历几种不同的融合模式,并可以利用根本不同的机制来排出其内容物。本文讨论了我们对 WPB 胞吐机制组成的理解的最新进展,以及由于其结构,它如何能够支持 WPB 以各种形式释放。