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NPP4 是血管内皮表面的促凝酶。

NPP4 is a procoagulant enzyme on the surface of vascular endothelium.

机构信息

Department of Pathology, Yale University School of Medicine, New Haven, CT 06510, USA.

出版信息

Blood. 2012 Nov 22;120(22):4432-40. doi: 10.1182/blood-2012-04-425215. Epub 2012 Sep 20.

Abstract

Ap3A is a platelet-dense granule component released into the extracellular space during the second wave of platelet aggregation on activation. Here, we identify an uncharacterized enzyme, nucleotide pyrophosphatase/phosphodiesterase-4 (NPP4), as a potent hydrolase of Ap3A capable of stimulating platelet aggregation and secretion. We demonstrate that NPP4 is present on the surface of vascular endothelium, where it hydrolyzes Ap3A into AMP and ADP, and Ap4A into AMP and ATP. Platelet aggregation assays with citrated platelet-rich plasma reveal that the primary and secondary waves of aggregation and dense granule release are strongly induced by nanomolar NPP4 in a concentration-dependent manner in the presence of Ap3A, while Ap3A alone initiates a primary wave of aggregation followed by rapid disaggregation. NPP2 and an active site NPP4 mutant, neither of which appreciably hydrolyzes Ap3A, have no effect on platelet aggregation and secretion. Finally, by using ADP receptor blockade we confirm that NPP4 mediates platelet aggregation via release of ADP from Ap3A and activation of ADP receptors. Collectively, these studies define the biologic and enzymatic basis for NPP4 and Ap3A activity in platelet aggregation in vitro and suggest that NPP4 promotes hemostasis in vivo by augmenting ADP-mediated platelet aggregation at the site of vascular injury.

摘要

Ap3A 是血小板致密颗粒的成分,在激活时血小板聚集的第二波中释放到细胞外空间。在这里,我们确定了一种未被表征的酶,核苷酸焦磷酸酶/磷酸二酯酶-4(NPP4),作为 Ap3A 的一种有效的水解酶,能够刺激血小板聚集和分泌。我们证明 NPP4 存在于血管内皮细胞表面,在那里它将 Ap3A 水解为 AMP 和 ADP,将 Ap4A 水解为 AMP 和 ATP。用富含血小板的柠檬酸血浆进行的血小板聚集测定表明,在 Ap3A 的存在下,初级和次级聚集波和致密颗粒释放强烈地被纳摩尔级的 NPP4 以浓度依赖性方式诱导,而 Ap3A 本身仅引发初级聚集波,随后迅速解聚。NPP2 和一个活性位点 NPP4 突变体都不能显著水解 Ap3A,对血小板聚集和分泌没有影响。最后,通过使用 ADP 受体阻断剂,我们证实 NPP4 通过从 Ap3A 释放 ADP 并激活 ADP 受体来介导血小板聚集。总之,这些研究定义了 NPP4 和 Ap3A 活性在体外血小板聚集中的生物学和酶学基础,并表明 NPP4 通过增强血管损伤部位的 ADP 介导的血小板聚集来促进体内止血。

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