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人凝血酶的蛋白水解和高亲和力结合活性对血小板快速激活的影响。一项速淬流动研究。

Effects of separate proteolytic and high-affinity binding activities of human thrombin on rapid platelet activation. A quenched-flow study.

作者信息

Jones G D, Carty D J, Freas D L, Spears J T, Gear A R

机构信息

Department of Biochemistry, University of Virginia, Charlottesville 22908.

出版信息

Biochem J. 1989 Sep 1;262(2):611-6. doi: 10.1042/bj2620611.

Abstract

We have used a general quenched-flow approach to study platelet function as early as 0.3 s after stimulation with three types of human thrombin: alpha-thrombin, gamma-thrombin, which is proteolytically active but does not bind to the high-affinity sites, and di-isopropyl fluorophosphate-derivatized (DIP)-alpha-thrombin, an active site-inhibited analogue that does bind to the high-affinity site. Large doses of gamma-thrombin evoked moderate aggregation and serotonin release, but minimal phosphorylation of the 20 and 47 kDa proteins. The initial (1.5-3.0 s) increase in cystolic free calcium concentration ([Ca2+]i) indicated by Indo-1 was also diminished, but by 5 s was nearly as high (1.0 microM) as with alpha-thrombin. A large dose of DIP-alpha-thrombin, on the other hand, induced minimal aggregation, serotonin secretion and [Ca2+]i response within 6 s. There was, however, a transient dephosphorylation of the 20 kDa protein. When combined, gamma- and DIP-alpha-thrombin were approximately additive in their ability to induce aggregation and serotonin secretion, but strongly synergistic in phosphorylating the 20 and 47 kDa proteins. The [Ca2+]i increase was not, however, enhanced over that induced by gamma-thrombin alone. These results demonstrate that phosphorylation of either the 20 or 47 kDa proteins is not correlated with [Ca2+]i dynamics and is neither required nor directly involved in platelet aggregation and secretion induced by thrombin. The high-affinity binding activity of thrombin is not necessary for rapid platelet Ca2+ influx, aggregation and serotonin release within the first critical seconds of activation.

摘要

我们采用了一种通用的淬灭流方法,来研究血小板在受到三种人凝血酶刺激后0.3秒时的功能,这三种凝血酶分别是:α-凝血酶、γ-凝血酶(具有蛋白水解活性但不与高亲和力位点结合)以及二异丙基氟磷酸衍生化(DIP)-α-凝血酶(一种活性位点被抑制的类似物,可与高亲和力位点结合)。大剂量的γ-凝血酶可引起适度的聚集和5-羟色胺释放,但20 kDa和47 kDa蛋白的磷酸化程度最低。Indo-1显示的胞质游离钙浓度([Ca2+]i)在最初(1.5 - 3.0秒)的升高也有所减弱,但到5秒时几乎与α-凝血酶刺激时一样高(1.0微摩尔)。另一方面,大剂量的DIP-α-凝血酶在6秒内诱导的聚集、5-羟色胺分泌和[Ca2+]i反应最小。然而,20 kDa蛋白出现了短暂的去磷酸化。当γ-凝血酶和DIP-α-凝血酶联合使用时,它们诱导聚集和5-羟色胺分泌的能力大致呈加和性,但在使20 kDa和47 kDa蛋白磷酸化方面具有强烈的协同作用。然而,[Ca2+]i的升高并未超过单独使用γ-凝血酶时诱导的升高。这些结果表明,20 kDa或47 kDa蛋白的磷酸化与[Ca2+]i动态变化无关,并且在凝血酶诱导的血小板聚集和分泌过程中既不是必需的,也不直接参与其中。凝血酶的高亲和力结合活性对于激活最初关键几秒内血小板的快速Ca2+内流、聚集和5-羟色胺释放并非必要。

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