Department of Dermatology, Medical Faculty Mannheim, Heidelberg University, Mannheim, Germany.
Institute for Biology and Biotechnology of Plants, University of Münster, Münster, Germany.
Blood Adv. 2018 Sep 25;2(18):2347-2357. doi: 10.1182/bloodadvances.2017013995.
The dynamic change from a globular conformation to an elongated fiber determines the ability of von Willebrand factor (VWF) to trap platelets. Fiber formation is favored by the anchorage of VWF to the endothelial cell surface, and VWF-platelet aggregates on the endothelium contribute to inflammation, infection, and tumor progression. Although P-selectin and ανβ3-integrins may bind VWF, their precise role is unclear, and additional binding partners have been proposed. In the present study, we evaluated whether the endothelial glycocalyx anchors VWF fibers to the endothelium. Using microfluidic experiments, we showed that stabilization of the endothelial glycocalyx by chitosan oligosaccharides or overexpression of syndecan-1 (SDC-1) significantly supports the binding of VWF fibers to endothelial cells. Heparinase-mediated degradation or impaired synthesis of heparan sulfate (HS), a major component of the endothelial glycocalyx, reduces VWF fiber-dependent platelet recruitment. Molecular interaction studies using flow cytometry and live-cell fluorescence microscopy provided further evidence that VWF binds to HS linked to SDC-1. In a murine melanoma model, we found that protection of the endothelial glycocalyx through the silencing of heparanase increases the number of VWF fibers attached to the wall of tumor blood vessels. In conclusion, we identified HS chains as a relevant binding factor for VWF fibers at the endothelial cell surface in vitro and in vivo.
从球形构象到纤维状的动态变化决定了 von Willebrand 因子(VWF)捕捉血小板的能力。VWF 与内皮细胞表面的锚定有利于纤维的形成,而内皮细胞上的 VWF-血小板聚集体有助于炎症、感染和肿瘤进展。尽管 P-选择素和 ανβ3-整合素可能与 VWF 结合,但它们的确切作用尚不清楚,并且已经提出了其他结合伴侣。在本研究中,我们评估了内皮糖萼是否将 VWF 纤维锚定在内皮上。使用微流控实验,我们表明壳聚糖寡糖或 syndecan-1 (SDC-1) 的过表达稳定内皮糖萼,可显著支持 VWF 纤维与内皮细胞的结合。肝素酶介导的降解或内皮糖萼主要成分肝素硫酸盐 (HS) 的合成受损,会减少 VWF 纤维依赖性血小板募集。使用流式细胞术和活细胞荧光显微镜进行的分子相互作用研究进一步证明了 VWF 与与 SDC-1 相连的 HS 结合。在小鼠黑色素瘤模型中,我们发现通过沉默肝素酶来保护内皮糖萼可增加附着在肿瘤血管壁上的 VWF 纤维数量。总之,我们在体外和体内鉴定了 HS 链作为内皮细胞表面 VWF 纤维的相关结合因子。