Molecular and Cellular Hemostasis, Amsterdam UMC, University of Amsterdam, The Netherlands.
Research Facilities, Sanquin Research and Landsteiner Laboratory, Amsterdam UMC, University of Amsterdam, The Netherlands.
J Proteomics. 2019 Aug 15;205:103417. doi: 10.1016/j.jprot.2019.103417. Epub 2019 Jun 13.
The endothelium stores the hemostatic protein Von Willebrand factor (VWF) in endothelial storage organelles called Weibel-Palade bodies (WPBs). During maturation, WPBs recruit a complex of Rab GTPases and effectors that associate with components of the SNARE machinery that control WPB exocytosis. Recent genome wide association studies have found links between genetic variations in the SNAREs syntaxin-2 (STX2) and syntaxin binding protein 5 (STXBP5) and VWF plasma levels, suggesting a role for SNARE proteins in regulating VWF release. Moreover, we have previously identified the SNARE proteins syntaxin-3 and STXBP1 as regulators of WPB release. In this study we used an unbiased iterative interactomic approach to identify new components of the WPB exocytotic machinery. An interactome screen of syntaxin-3 identifies a number of SNAREs and SNARE associated proteins (STXBP2, STXBP5, SNAP23, NAPA and NSF). We show that the VAMP-like domain (VLD) of STXBP5 is indispensable for the interaction with SNARE proteins and this capacity of the VLD could be exploited to identify an extended set of novel endothelial SNARE interactors of STXBP5. In addition, an STXBP5 variant with an N436S substitution, which is linked to lower VWF plasma levels, does not show a difference in interactome when compared with WT STXBP5. SIGNIFICANCE: The hemostatic protein Von Willebrand factor plays a pivotal role in vascular health: quantitative or qualitative deficiencies of VWF can lead to bleeding, while elevated levels of VWF are associated with increased risk of thrombosis. Tight regulation of VWF secretion from WPBs is therefore essential to maintain vascular homeostasis. We used an unbiased proteomic screen to identify new components of the regulatory machinery that controls WPB exocytosis. Our data expand the endothelial SNARE protein network and provide a set of novel candidate WPB regulators that may contribute to regulation of VWF plasma levels and vascular health.
内皮细胞将止血蛋白 von Willebrand 因子 (VWF) 储存在称为 Weibel-Palade 体 (WPB) 的内皮细胞储存细胞器中。在成熟过程中,WPB 招募了一组 Rab GTPases 和效应物,它们与 SNARE 机制的组件结合,控制 WPB 的胞吐作用。最近的全基因组关联研究发现,SNARE 蛋白突触融合蛋白 2 (STX2) 和突触结合蛋白 5 (STXBP5) 中的遗传变异与 VWF 血浆水平之间存在关联,这表明 SNARE 蛋白在调节 VWF 释放中起作用。此外,我们之前已经确定了 SNARE 蛋白突触融合蛋白 3 和 STXBP1 是 WPB 释放的调节剂。在这项研究中,我们使用了一种无偏见的迭代互作组学方法来鉴定 WPB 胞吐机制的新成分。突触融合蛋白 3 的互作组筛选确定了许多 SNARE 蛋白和 SNARE 相关蛋白 (STXBP2、STXBP5、SNAP23、NAPA 和 NSF)。我们表明,STXBP5 的 VAMP 样结构域 (VLD) 对于与 SNARE 蛋白的相互作用是必不可少的,而 VLD 的这种能力可以被利用来鉴定一组新的内皮 SNARE 相互作用蛋白。此外,与较低的 VWF 血浆水平相关的 N436S 取代的 STXBP5 变体在与 WT STXBP5 相比时,其互作组没有差异。意义:止血蛋白 von Willebrand 因子在血管健康中起着至关重要的作用:VWF 的定量或定性缺乏会导致出血,而 VWF 水平升高与血栓形成风险增加相关。因此,严格调节 WPB 从 WPB 中的分泌对于维持血管内稳态至关重要。我们使用无偏的蛋白质组学筛选来鉴定控制 WPB 胞吐作用的调节机制的新成分。我们的数据扩展了内皮 SNARE 蛋白网络,并提供了一组新的候选 WPB 调节剂,它们可能有助于调节 VWF 血浆水平和血管健康。