Adherence of platelets under flow conditions results in specific phosphorylation of proteins at tyrosine residues.

G Arderiu, E Estebanell, N Pujol-Moix, G Escolar, A Ordinas, M Díaz-Ricart
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引用次数: 4

Abstract

Collagen is a powerful platelet activating agent that promotes adhesion and aggregation of platelets. To differentiate the signals generated in these processes we have analyzed the tyrosine phosphorylation occurring in platelets after activation with collagen in suspension or under flow conditions. For the suspension studies, washed platelets were activated with different concentrations of purified type I collagen (ColI). Studies under flow conditions were performed using two different adhesive substrata: ColI and endothelial cells extracellular matrix (ECM). Coverslips coated with ColI or ECM were perfused through a parallel-plate perfusion chamber at 800 s(-1) for 5 min. After activation of platelets either in suspension or by adhesion, samples were solubilized and proteins were resolved by electrophoresis. Tyrosine-phosphorylated proteins were detected in immunoblots by specific antibodies. Activation of platelet suspensions with collagen induced tyrosine phosphorylation before aggregation could be detected. Profiles showing tyrosine-phosphorylated proteins from platelets adhered on ColI or on ECM were almost identical and lacked proteins p95, p80, p66, and p64, which were present in profiles from platelets activated in suspension. The intensity of phosphorylation was quantitatively weaker in those profiles from platelets adhered on ECM. Results from the present work indicate that activation of platelets in suspension or by adhesion induces differential tyrosine phosphorylation patterns. Phosphorylation of proteins p90 and p76 may be related to early activation events occurring during initial contact and spreading of platelets. Considering that adhesion is the first step of platelet activation, studies on signal transduction mechanisms under flow conditions may provide new insights to understand the signaling processes taking place at earliest stages of platelet activation.

血小板在流动条件下的粘附导致酪氨酸残基蛋白的特异性磷酸化。
胶原蛋白是一种强大的血小板活化剂,可以促进血小板的粘附和聚集。为了区分这些过程中产生的信号,我们分析了悬浮或流动条件下胶原活化后血小板中发生的酪氨酸磷酸化。在悬浮液研究中,用不同浓度的纯化I型胶原蛋白(ColI)活化洗涤后的血小板。在流动条件下,使用两种不同的粘附基质:大肠杆菌和内皮细胞细胞外基质(ECM)进行研究。涂有大肠杆菌或ECM的盖板在平行板灌注室中灌注800 s(-1),灌注5分钟。悬浮或粘附活化血小板后,将样品溶解,并通过电泳分离蛋白质。特异性抗体在免疫印迹中检测酪氨酸磷酸化蛋白。血小板悬浮液在聚集前被胶原诱导酪氨酸磷酸化激活。在大肠杆菌或ECM上粘附的血小板中,酪氨酸磷酸化蛋白的谱图几乎相同,并且缺乏蛋白p95、p80、p66和p64,而这些蛋白存在于悬浮活化的血小板谱图中。在ECM粘附的血小板中,磷酸化强度在定量上较弱。本研究的结果表明,悬浮血小板或粘附血小板的激活可诱导不同的酪氨酸磷酸化模式。p90和p76蛋白的磷酸化可能与血小板初始接触和扩散过程中发生的早期激活事件有关。考虑到粘附是血小板激活的第一步,对流动条件下信号转导机制的研究可能为理解血小板激活早期阶段发生的信号过程提供新的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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