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Src家族、Syk和Btk酪氨酸激酶参与血小板形状改变的遗传与药理学分析。Src激酶在形状改变过程中介导整合素αIIbβ3的外向内信号传导。

Genetic and pharmacological analyses of involvement of Src-family, Syk and Btk tyrosine kinases in platelet shape change. Src-kinases mediate integrin alphaIIb beta3 inside-out signalling during shape change.

作者信息

Bauer M, Maschberger P, Quek L, Briddon S J, Dash D, Weiss M, Watson S P, Siess W

机构信息

Institut für Prophylaxe und Epidemiologie der Kreislaufkrankheiten, Klinikum der Universität München, Germany.

出版信息

Thromb Haemost. 2001 Feb;85(2):331-40.

Abstract

Platelet shape change was found to be associated with an increase in protein tyrosine phosphorylation upon stimulation of thrombin-, ADP- and thromboxane A2-G-protein coupled receptors in human platelets and thromboxane A2 receptors in mouse platelets. By using PP1 and PD173956, two structurally unrelated specific inhibitors of Src-family tyrosine kinases, and mouse platelets deficient in the Src-kinase Fyn or Lyn, we show that Src-family kinases cause the increase in protein tyrosine phosphorylation. We further detected that the non-Src tyrosine kinase Syk was activated during shape change in a manner dependent on Src-family kinaseactivation. The pharmacological experiments and the studies on Fyn-, Lyn- and Syk-deficient mouse platelets showed that neither Src-family kinases nor Syk are functionally involved in shape change. Also human platelets deficient of the tyrosine kinase Btk showed a normal shape change. Binding of PAC-1 that recognizes activated integrin alphaIIb beta3 complexes on the platelet surface was enhanced during shape change and blocked by inhibition of Src-kinases. We conclude that the activation of Src-kinases and the subsequent Syk stimulation upon activation of G-protein coupled receptors are not involved in the cytoskeletal changes underlying shape change of human and mouse platelets, but that the stimulation of this evolutionary conserved pathway leads to integrin alphaIIb beta3 exposure during shape change.

摘要

研究发现,在人血小板中,凝血酶、ADP和血栓素A2 - G蛋白偶联受体以及小鼠血小板中血栓素A2受体受到刺激后,血小板形状改变与蛋白质酪氨酸磷酸化增加有关。通过使用PP1和PD173956这两种结构不相关的Src家族酪氨酸激酶特异性抑制剂,以及Src激酶Fyn或Lyn缺陷的小鼠血小板,我们发现Src家族激酶导致蛋白质酪氨酸磷酸化增加。我们进一步检测到,非Src酪氨酸激酶Syk在形状改变过程中以依赖于Src家族激酶激活的方式被激活。药理学实验以及对Fyn、Lyn和Syk缺陷小鼠血小板的研究表明,Src家族激酶和Syk在功能上均不参与形状改变。同样,酪氨酸激酶Btk缺陷的人血小板也表现出正常的形状改变。识别血小板表面活化整合素αIIbβ3复合物的PAC - 1的结合在形状改变过程中增强,并被Src激酶的抑制所阻断。我们得出结论,Src激酶的激活以及G蛋白偶联受体激活后随后的Syk刺激并不参与人和小鼠血小板形状改变所涉及的细胞骨架变化,但这种进化保守途径的刺激会导致形状改变过程中整合素αIIbβ3的暴露。

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