Giblin Jonathan P, Hewlett Lindsay J, Hannah Matthew J
Department of Molecular Neuroendocrinology, Medical Research Council National Institute for Medical Research, London, United Kingdom.
Blood. 2008 Aug 15;112(4):957-64. doi: 10.1182/blood-2007-12-130740. Epub 2008 Mar 14.
Endothelial cells store the adhesive glycoprotein von Willebrand factor (VWF) in Weibel-Palade bodies (WPBs), distinctively shaped regulated secretory organelles that undergo exocytosis in response to secretagogue. A significant proportion of newly synthesized VWF is also secreted spontaneously from nonstimulated cells, through what is thought to be the constitutive secretory pathway. To learn more about VWF trafficking, we performed kinetic analyses of the storage and nonstimulated secretion of VWF in cultured human endothelial cells. We found that most VWF was secreted through a route that was significantly delayed compared with constitutive secretion, although this pathway was responsible for secretion of a small amount of uncleaved VWF precursor. Disruption of pH-dependent sorting processes with ammonium chloride converted the secretion kinetics of mature VWF to that of its precursor. Conversely, preventing constitutive secretion of nascent protein with brefeldin A had only a modest effect on the spontaneous release of VWF, showing that most VWF secreted by nonstimulated cells was not constitutive secretion but basal release of a post-Golgi storage organelle, presumably the WPB. These data suggest that VWF is sorted to the regulated secretory pathway in endothelial cells much more efficiently than previously reported.
内皮细胞将黏附性糖蛋白血管性血友病因子(VWF)储存在魏-帕小体(WPB)中,WPB是形状独特的受调控分泌细胞器,可响应促分泌剂发生胞吐作用。相当一部分新合成的VWF也会从未受刺激的细胞中通过所谓的组成型分泌途径自发分泌。为了更多地了解VWF的运输过程,我们对培养的人内皮细胞中VWF的储存和非刺激分泌进行了动力学分析。我们发现,尽管这条途径负责分泌少量未切割的VWF前体,但大多数VWF是通过一条与组成型分泌相比明显延迟的途径分泌的。用氯化铵破坏pH依赖性分选过程会将成熟VWF的分泌动力学转变为其前体的分泌动力学。相反,用布雷菲德菌素A阻止新生蛋白的组成型分泌对VWF的自发释放只有适度影响,这表明未受刺激的细胞分泌的大多数VWF不是组成型分泌,而是高尔基体后储存细胞器(可能是WPB)的基础释放。这些数据表明,VWF在内皮细胞中被分选到受调控分泌途径的效率比之前报道的要高得多。