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Factor VIII alters tubular organization and functional properties of von Willebrand factor stored in Weibel-Palade bodies

机译:VIII因子改变了存储在Weibel-Palade体内的von Willebrand因子的肾小管组织和功能特性

摘要

In endothelial cells, von Willebrand factor (VWF) multimers are packaged into tubules that direct biogenesis of elongated Weibel-Palade bodies (WPBs). WPB release results in unfurling of VWF tubules and assembly into strings that serve to recruit platelets. By confocal microscopy, we have previously observed a rounded morphology of WPBs in blood outgrowth endothelial cells transduced to express factor VIII (FVIII). Using correlative light-electron microscopy and tomography, we now demonstrate that FVIII-containing WPBs have disorganized, short VWF tubules. Whereas normal FVIII and FVIII Y1680F interfered with formation of ultra-large VWF multimers, release of the WPBs resulted in VWF strings of equal length as those from nontransduced blood outgrowth endothelial cells. After release, both WPB-derived FVIII and FVIII Y1680F remained bound to VWF strings, which however had largely lost their ability to recruit platelets. Strings from nontransduced cells, however, were capable of simultaneously recruiting exogenous FVIII and platelets. These findings suggest that the interaction of FVIII with VWF during WPB formation is independent of Y1680, is maintained after WPB release in FVIII-covered VWF strings, and impairs recruitment of platelets. Apparently, intra-cellular and extracellular assembly of FVIII-VWF complex involves distinct mechanisms, which differ with regard to their implications for platelet binding to released VWF strings
机译:在内皮细胞中,von Willebrand因子(VWF)多聚体被包装到引导细长的Weibel-Palade体(WPB)的生物发生的小管中。 WPB释放导致VWF小管松开,并组装成用于募集血小板的细绳。通过共聚焦显微镜,我们先前已经观察到转导至表达因子VIII(FVIII)的血液增生内皮细胞中WPB的圆形形态。使用相关的光电子显微镜和断层扫描,我们现在证明含FVIII的WPB具有无序的短VWF小管。正常的FVIII和FVIII Y1680F会干扰超大型VWF多聚体的形成,而WPB的释放导致VWF串的长度与非转导的血液生长内皮细胞的长度相同。释放后,源自WPB的FVIII和FVIII Y1680F仍然与VWF琴弦绑定,但是VWF琴弦已大大丧失了募集血小板的能力。然而,来自非转导细胞的细绳能够同时募集外源性FVIII和血小板。这些发现表明,在WPB形成过程中FVIII与VWF的相互作用独立于Y1680,在FPB覆盖的VWF弦中WPB释放后得以维持,并损害了血小板的募集。显然,FVIII-VWF复合物的细胞内和细胞外组装涉及不同的机制,这些机制对于血小板与释放的VWF字符串的结合影响不同

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