Dai Kesheng, Bodnar Richard, Berndt Michael C, Du Xiaoping
Department of Pharmacology, College of Medicine, University of Illinois at Chicago, 835 South Wolcott Ave, Chicago, IL 60612, USA.
Blood. 2005 Sep 15;106(6):1975-81. doi: 10.1182/blood-2005-01-0440. Epub 2005 Jun 7.
The platelet receptor for von Willebrand factor (VWF), glycoprotein (GP) Ib-IX, mediates platelet adhesion and activation. The cytoplasmic domains of the GPIb alpha and beta subunits contain binding sites for the phosphorylation-dependent signaling molecule, 14-3-3zeta. Here we show that a novel membrane-permeable inhibitor of 14-3-3zeta-GPIbalpha interaction, MPalphaC, potently inhibited VWF binding to platelets and VWF-mediated platelet adhesion under flow conditions. MPalphaC also inhibited VWF-dependent platelet agglutination induced by ristocetin. Furthermore, activation of the VWF binding function of GPIb-IX induced by GPIbbeta dephosphorylation is diminished by mutagenic disruption of the 14-3-3zeta binding site in the C-terminal domain of GPIbalpha, mimicking MPalphaC-induced inhibition, indicating that the inhibitory effect of MPalphaC is likely to be caused by disruption of 14-3-3zeta binding to GPIbalpha. These data suggest a novel 14-3-3zeta-dependent regulatory mechanism that controls the VWF binding function of GPIb-IX, and also suggest a new type of antiplatelet agent that may be potentially useful in preventing or treating thrombosis.
血管性血友病因子(VWF)的血小板受体糖蛋白(GP)Ib-IX介导血小板的黏附和激活。GPIbα和β亚基的胞质结构域含有磷酸化依赖性信号分子14-3-3ζ的结合位点。在此我们表明,一种新型的14-3-3ζ与GPIbα相互作用的膜通透性抑制剂MPαC,在流动条件下能有效抑制VWF与血小板的结合以及VWF介导的血小板黏附。MPαC还能抑制瑞斯托菌素诱导的VWF依赖性血小板凝集。此外,GPIbβ去磷酸化诱导的GPIb-IX的VWF结合功能激活,会因GPIbα C末端结构域中14-3-3ζ结合位点的诱变破坏而减弱,这与MPαC诱导的抑制作用相似,表明MPαC的抑制作用可能是由14-3-3ζ与GPIbα的结合破坏所致。这些数据提示了一种新型的14-3-3ζ依赖性调节机制,该机制控制着GPIb-IX的VWF结合功能,同时也提示了一种新型抗血小板药物,可能对预防或治疗血栓形成具有潜在用途。