Ribes J A, Ni F, Wagner D D, Francis C W
Department of Pathology, University of Rochester School of Medicine and Dentistry, New York 14642.
J Clin Invest. 1989 Aug;84(2):435-42. doi: 10.1172/JCI114184.
The exposure of endothelial cells (EC) to fibrin has been shown to stimulate the rapid release of von Willebrand factor (vWf) from storage sites in Weibel-Palade bodies. We have now investigated the fibrin structural features required for stimulation of release. The role of fibrinopeptide cleavage was examined by preparing fibrin with thrombin to remove both fibrinopeptide A (FPA) and fibrinopeptide B (FPB) and with reptilase or Agkistrodon contortrix procoagulant to selectively remove FPA or FPB, respectively. vWf release was found to require FPB cleavage, whereas removal of FPA and Factor XIIIa cross-linking of fibrin were without effect. The dependence of release on FPB cleavage suggested that a site involving the NH2 terminus of the beta chain could mediate vWf secretion. To test this hypothesis, B beta chain derivatives were prepared and examined for their capacity to induce release. Purified B beta chain had no effect on release at a concentration of 20 nM but stimulated release from 26 +/- 6% of cells at 200 nM, the maximum solubility. However, after thrombin cleavage of FPB, release occurred from 36 +/- 9% of cells at 20 nM and from 60 +/- 7% at 200 nM, both significantly greater than before cleavage. FPB and B beta 1-42 showed no activity, whereas beta 15-42, representing the NH2 terminus of the thrombin cleaved beta chain, stimulated significant release at concentrations of 0.1 and 1 mM. We conclude that FPB cleavage from fibrin is required for stimulation of vWf release from EC and that this is mediated by a site that includes the NH2 terminus of the beta chain.
内皮细胞(EC)暴露于纤维蛋白已被证明可刺激血管性血友病因子(vWf)从魏尔-帕拉德小体的储存部位快速释放。我们现在研究了刺激释放所需的纤维蛋白结构特征。通过用凝血酶制备纤维蛋白以去除纤维蛋白肽A(FPA)和纤维蛋白肽B(FPB),并用蛇毒酶或蝰蛇促凝剂分别选择性去除FPA或FPB,来研究纤维蛋白肽裂解的作用。发现vWf释放需要FPB裂解,而去除FPA和纤维蛋白的因子ⅩⅢa交联则没有影响。释放对FPB裂解的依赖性表明,涉及β链NH2末端的位点可能介导vWf分泌。为了验证这一假设,制备了Bβ链衍生物并检测其诱导释放的能力。纯化的Bβ链在20 nM浓度下对释放没有影响,但在200 nM(最大溶解度)时刺激了26±6%的细胞释放。然而,在凝血酶裂解FPB后,在20 nM时36±9%的细胞发生释放,在200 nM时60±7%的细胞发生释放,两者均显著高于裂解前。FPB和Bβ1-42没有活性,而代表凝血酶裂解的β链NH2末端的β15-42在0.1和1 mM浓度下刺激了显著释放。我们得出结论,从纤维蛋白中裂解FPB是刺激EC释放vWf所必需的,并且这是由包括β链NH2末端的位点介导的。