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首页> 外文期刊>The Biochemical Journal >Glycoprotein VI/Fc receptor gamma chain-independent tyrosine phosphorylation and activation of murine platelets by collagen
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Glycoprotein VI/Fc receptor gamma chain-independent tyrosine phosphorylation and activation of murine platelets by collagen

机译:糖蛋白VI / Fc受体不依赖γ链的酪氨酸磷酸化和胶原蛋白对鼠血小板的激活

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We have investigated the ability of collagen to induce signalling and functional responses in suspensions of murine platelets deficient in the FcRgamma (Fc receptor gamma) chain, which lack the collagen receptor GPVI (glycoprotein VI). In the absence of the FcRgamma chain, collagen induced a unique pattern of tyrosine phosphorylation which was potentiated by the thromboxane analogue U46619. Immunoprecipitation studies indicated that neither collagen alone nor the combination of collagen plus U46619 induced phosphorylation of the GPVI-regulated proteins Syk and SLP76 (Src homology 2-containing leucocyte protein of 76 kDa). A low level of tyrosine phosphorylation of phospholipase Cgamma2 was observed, which was increased in the presence of U46619, although the degree of phosphorylation remained well below that observed in wild-type platelets (similar to 10%). By contrast, collagen-induced phosphorylation of the adapter ADAP (adhesion- and degranulation-promoting adapter protein) was substantially potentiated by U46619 to levels equivalent to those observed in wild-type platelets. Collagen plus U46619 also induced significant phosphorylation of FAK (focal adhesion kinase). The functional significance of collagen-induced non-GPVI signals was highlighted by the ability of U46619 and collagen to induce the secretion of ATP in FcRgamma chain-deficient platelets, even though neither agonist was effective alone. Protein tyrosine phosphorylation and the release of ATP were abolished by the anti(alpha2 integrin) antibodies Ha1/29 and HMalpha2, but not by blockade of alphaIIbbeta3. These results illustrate a novel mechanism of platelet activation by collagen which is independent of the GPVI-FcRgamma chain complex, and is facilitated by binding of collagen to integrin alpha2beta1.
机译:我们已经研究了胶原蛋白在缺乏胶原蛋白受体GPVI(糖蛋白VI)的FcRgamma(Fc受体γ)链缺陷的鼠血小板悬浮液中诱导信号传导和功能反应的能力。在不存在FcRγ链的情况下,胶原蛋白诱导了酪氨酸磷酸化的独特模式,该模式被血栓烷类似物U46619增强。免疫沉淀研究表明,单独的胶原蛋白或胶原蛋白与U46619的组合都不会诱导GPVI调节的蛋白Syk和SLP76(Src同源2的白细胞蛋白76 kDa)的磷酸化。观察到磷脂酶Cgamma2的酪氨酸磷酸化水平很低,尽管存在磷酸化程度仍远低于在野生型血小板中观察到的水平(约10%),但在U46619的存在下磷酸化水平却有所提高。相比之下,U46619可以将胶原蛋白诱导的衔接子ADAP磷酸化(促进粘附和脱粒的衔接子蛋白)增强至与野生型血小板中观察到的水平相同的水平。胶原蛋白加上U46619还可诱导FAK(局灶性粘附激酶)显着磷酸化。 U46619和胶原蛋白可诱导FcRgamma链缺陷型血小板中ATP分泌的能力突出了胶原蛋白诱导的非GPVI信号的功能重要性,即使这两种激动剂都不是有效的。蛋白酪氨酸磷酸化和ATP的释放被抗(α2整联蛋白)抗体Ha1 / 29和HMalpha2消除,但没有被alphaIIbbeta3的阻断所消除。这些结果说明了胶原蛋白激活血小板的新机制,该机制独立于GPVI-FcRgamma链复合物,并且通过胶原蛋白与整联蛋白alpha2beta1的结合而得以促进。

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