Department of Physiology, Anatomy and Genetics, University of Oxford, Le Gros Clark Building, South Parks Road, Oxford OX1 3QX, U.K.
Biochem J. 2012 Jan 1;441(1):435-42. doi: 10.1042/BJ20111175.
Platelets play a vital role in maintaining haemostasis. Human platelet activation depends on Ca2+ release, leading to cell activation, granule secretion and aggregation. NAADP (nicotinic acid-adenine dinucleotide phosphate) is a Ca2+-releasing second messenger that acts on acidic Ca2+ stores and is used by a number of mammalian systems. In human platelets, NAADP has been shown to release Ca2+ in permeabilized human platelets and contribute to thrombin-mediated platelet activation. In the present study, we have further characterized NAADP-mediated Ca2+ release in human platelets in response to both thrombin and the GPVI (glycoprotein VI)-specific agonist CRP (collagen-related peptide). Using a radioligand-binding assay, we reveal an NAADP-binding site in human platelets, indicative of a platelet NAADP receptor. We also found that NAADP releases loaded 45Ca2+ from intracellular stores and that total platelet Ca2+ release is inhibited by the proton ionophore nigericin. Ned-19, a novel cell-permeant NAADP receptor antagonist, competes for the NAADP-binding site in platelets and can inhibit both thrombin- and CRP-induced Ca2+ release in human platelets. Ned-19 has an inhibitory effect on platelet aggregation, secretion and spreading. In addition, Ned-19 extends the clotting time in whole-blood samples. We conclude that NAADP plays an important role in human platelet function. Furthermore, the development of Ned-19 as an NAADP receptor antagonist provides a potential avenue for platelet-targeted therapy and the regulation of thrombosis.
血小板在维持止血中起着至关重要的作用。人类血小板的激活依赖于 Ca2+的释放,从而导致细胞激活、颗粒分泌和聚集。NAADP(烟酰胺腺嘌呤二核苷酸磷酸)是一种 Ca2+释放的第二信使,作用于酸性 Ca2+库,被许多哺乳动物系统使用。在人类血小板中,已经证明 NAADP 可以在透化的人类血小板中释放 Ca2+,并有助于凝血酶介导的血小板激活。在本研究中,我们进一步研究了 NAADP 介导的 Ca2+在人类血小板中的释放,以响应凝血酶和 GPVI(糖蛋白 VI)特异性激动剂 CRP(胶原相关肽)。使用放射性配体结合测定法,我们揭示了人类血小板中存在 NAADP 结合位点,表明存在血小板 NAADP 受体。我们还发现 NAADP 从细胞内库中释放已加载的 45Ca2+,并且质子载体 Nigericin 抑制总血小板 Ca2+释放。Ned-19 是一种新型的细胞渗透性 NAADP 受体拮抗剂,与血小板中的 NAADP 结合位点竞争,并可抑制凝血酶和 CRP 诱导的人类血小板中的 Ca2+释放。Ned-19 对血小板聚集、分泌和扩散具有抑制作用。此外,Ned-19 延长全血样本的凝血时间。我们得出结论,NAADP 在人类血小板功能中起着重要作用。此外,Ned-19 作为 NAADP 受体拮抗剂的开发为血小板靶向治疗和血栓形成的调节提供了潜在途径。