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人血小板嘌呤能受体的激动剂浓度依赖性差异反应性:嘌呤能P2Y1受体介导的体外聚集、解聚和形状变化反应的药理学和动力学研究

Agonist concentration-dependent differential responsivity of a human platelet purinergic receptor: pharmacological and kinetic studies of aggregation, deaggregation and shape change responses mediated by the purinergic P2Y1 receptor in vitro.

作者信息

Maayani Saul, Schwarz Todd E, Patel Nayana D, Craddock-Royal Barbara D, Tagliente Thomas M

机构信息

Department of Anesthesiology, Mount Sinai School of Medicine, New York, NY 10029, USA.

出版信息

Platelets. 2003 Nov-Dec;14(7-8):445-62. doi: 10.1080/09537100310001612399.

Abstract

Platelet shape change (SC), aggregation and deaggregation responses are integral components of hemostasis that are elicited and modulated in vivo by the simultaneous activation of several membrane receptors. Selective activation of the purinergic P2Y1 receptor in vivo elicits a sustained SC and a small, transient aggregation response that is reversed rapidly by a robust deaggregation response (Platelets 2003; 14: 89). Using a kinetics-based turbidimetric approach to study the modulation of these concurrent components of human platelet responses, we demonstrate that these P2Y1 receptor-related responses and a number of their kinetic and steady-state characteristics are differentially elicited and modulated. P2Y1 receptor agonist concentrations that elicited aggregation (pEC50 for ADP, 2-MeSADP; 5.88, 6.69) were 10-fold greater than those that elicited SC (7.33, 7.67). The magnitude of the aggregation response was agonist concentration-dependent, saturable and was associated with an agonist concentration-dependent deceleration of the deaggregation response. Gi-coupled receptor (alpha 2A-adrenoceptor, EP3 and P2Y12 receptors) agonists also enhanced aggregation through deceleration of the deaggregation response, and an inhibitor of PI3K activity (wortmannin) inhibited aggregation through acceleration of the deaggregation response. Neither treatment affected the extent or the kinetics of the SC response. The aggregation but not the SC response was rapidly desensitized by P2Y1 receptor activation by ADP. The affinity of the presence of a single P2Y1 receptor subtype. The differential characteristics and modulation of the SC and aggregation responses by a single receptor support the idea that different signaling pathways activated at different occupancy states of the same receptor underlie the two responses. P2Y1 receptor-mediated platelet aggregation and SC responses provide a convenient model for studying the phenomenon of agonist-directed signaling by differential occupancy of the same membrane receptor.

摘要

血小板形状改变(SC)、聚集和解聚反应是止血过程中不可或缺的组成部分,在体内由多种膜受体同时激活引发并调节。体内嘌呤能P2Y1受体的选择性激活会引发持续的SC以及轻微的短暂聚集反应,而强大的解聚反应会迅速逆转这种聚集反应(《血小板》,2003年;14: 89)。我们采用基于动力学的比浊法研究人类血小板反应中这些同时发生的组成部分的调节,结果表明这些与P2Y1受体相关的反应及其一些动力学和稳态特征是通过不同方式引发和调节的。引发聚集的P2Y1受体激动剂浓度(ADP、2 - 甲基硫代ADP的pEC50分别为5.88、6.69)比引发SC的浓度(7.33、7.67)高10倍。聚集反应的幅度取决于激动剂浓度,具有饱和性,并且与激动剂浓度依赖性的解聚反应减速相关。与Gi偶联的受体(α2A - 肾上腺素能受体、EP3和P2Y12受体)激动剂也通过减缓解聚反应增强聚集,而PI3K活性抑制剂(渥曼青霉素)则通过加速解聚反应抑制聚集。两种处理均未影响SC反应的程度或动力学。ADP激活P2Y1受体可使聚集反应迅速脱敏,但对SC反应无影响。单一P2Y1受体亚型的存在具有亲和力。单一受体对SC和聚集反应的不同特征及调节支持了这样一种观点,即同一受体在不同占据状态下激活的不同信号通路是这两种反应的基础。P2Y1受体介导的血小板聚集和SC反应为研究同一膜受体不同占据状态下激动剂导向信号传导现象提供了一个便利的模型。

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