De Luca M, Facey D A, Favaloro E J, Hertzberg M S, Whisstock J C, McNally T, Andrews R K, Berndt M C
Hazel and Pip Appel Vascular Biology Laboratory, Baker Medical Research Institute, Melbourne, VIC, Australia.
Blood. 2000 Jan 1;95(1):164-72.
Binding of the adhesive glycoprotein, von Willebrand factor (vWf), to the platelet membrane glycoprotein (GP) Ib-IX-V complex initiates platelet adhesion and aggregation at high shear stress in hemostasis and thrombosis. In this study, the GP Ib-IX-V binding site within the vWf A1 domain was analyzed using a panel of murine monoclonal antibodies raised against a 39/34-kd vWf fragment (Leu-480/Val-481-Gly-718) encompassing the A1 domain. One antibody, 6G1, strongly inhibited ristocetin-dependent vWf binding to platelets, but had no effect on botrocetin- or jaracetin-dependent binding, or asialo-vWf-dependent platelet aggregation. The 6G1 epitope was mapped to Glu-700-Asp-709, confirming the importance of this region for modulation of vWf by ristocetin. Like ristocetin, 6G1 activated the vWf A1 domain, because it enhanced binding of the 39/34-kd fragment to platelets. In contrast, 5D2 and CR1 completely inhibited asialo-vWf-induced platelet aggregation and ristocetin-induced vWf binding to GP Ib-IX-V. However, only 5D2 blocked botrocetin- and jaracetin-induced vWf binding to platelets and binding of vWf to botrocetin- and jaracetin-coated beads. Epitopes for 5D2 and CR1 were conformationally dependent, but not congruent. Other antibodies mapped to epitopes within the A1 domain (CR2 and CR15, Leu-494-Leu-512; CR2, Phe-536-Ala-554; CR3, Arg-578-Glu-596; CR11 and CR15, Ala-564-Ser-582) were not functional, identifying regions of the vWf A1 domain not directly involved in vWf-GP Ib-IX-V interaction. The combined results provide evidence that the proline-rich sequence Glu-700-Asp-709 constitutes a regulatory site for ristocetin, and that ristocetin and botrocetin induce, at least in part, separate receptor-recognition sites on vWf. (Blood. 2000;95:164-172)
黏附糖蛋白血管性血友病因子(vWf)与血小板膜糖蛋白(GP)Ib-IX-V复合物的结合在止血和血栓形成过程中的高剪切应力下启动血小板黏附和聚集。在本研究中,使用一组针对包含A1结构域的39/34-kd vWf片段(Leu-480/Val-481-Gly-718)产生的鼠单克隆抗体,分析了vWf A1结构域内的GP Ib-IX-V结合位点。一种抗体6G1强烈抑制瑞斯托霉素依赖性vWf与血小板的结合,但对蛇毒凝血酶或贾拉西丁依赖性结合或去唾液酸vWf依赖性血小板聚集没有影响。6G1表位被定位到Glu-700-Asp-709,证实了该区域对瑞斯托霉素调节vWf的重要性。与瑞斯托霉素一样,6G1激活了vWf A1结构域,因为它增强了39/34-kd片段与血小板的结合。相比之下,5D2和CR1完全抑制去唾液酸vWf诱导的血小板聚集以及瑞斯托霉素诱导的vWf与GP Ib-IX-V的结合。然而,只有5D2阻断蛇毒凝血酶和贾拉西丁诱导的vWf与血小板的结合以及vWf与蛇毒凝血酶和贾拉西丁包被珠的结合。5D2和CR1的表位是构象依赖性的,但不一致。其他映射到A1结构域内表位的抗体(CR2和CR15,Leu-494-Leu-512;CR2,Phe-536-Ala-554;CR3,Arg-578-Glu-596;CR11和CR15,Ala-564-Ser-582)没有功能,确定了vWf A1结构域中不直接参与vWf-GP Ib-IX-V相互作用的区域。综合结果提供了证据,即富含脯氨酸的序列Glu-700-Asp-709构成了瑞斯托霉素的调节位点,并且瑞斯托霉素和蛇毒凝血酶至少部分诱导vWf上不同的受体识别位点。(《血液》。2000年;95:164 - 172)