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首页> 外文期刊>Biochimica et biophysica acta. Biomembranes >Important role of raft aggregation in the signaling events of cold-induced platelet activation
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Important role of raft aggregation in the signaling events of cold-induced platelet activation

机译:筏聚集在冷诱导血小板活化的信号转导事件中的重要作用

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摘要

When human platelets are chilled below 20 ℃, they undergo cold-induced activation. We have previously shown that cold activation correlates with the main phospholipid phase transition (10–20 ℃) and induces the formation of large raft aggregates. In addition, we found that the glycoprotein CD36 is selectively enriched within detergent-resistant membranes (DRMs) of cold-activated platelets and is extremely sensitive to treatment with methyl-β-cyclodextrin (MβCD). Here, we further studied the partitioning of downstream signaling molecules within the DRMs. We found that the phospholipase Cγ2 (PLCγ2) and the protein tyrosine kinase Syk do not partition exclusively within the DRMs, but their distribution is perturbed by cholesterol extraction. In addition, PLCγ2 activity increases in cold-activated cells compared to resting platelets and is entirely inhibited after treatment with MβCD. The Src-family protein tyrosine kinases Src and Lyn preferentially partition within the DRMs and are profoundly affected by removal of cholesterol. These kinases are non-redundant in cold-activation. CD36, active Lyn, along with inactive Src and PLCγ2 co-localize in small raft complexes in resting platelets. Cold-activation induces raft aggregation, resulting in changes in the activity of these proteins. These data suggest a crucial role of raft aggregation in the early events of cold-induced platelet activation.
机译:当人体血小板冷却至20℃以下时,它们会受到冷诱导的激活。先前的研究表明,冷活化与主要的磷脂相变(10–20℃)相关,并诱导大筏状聚集体的形成。此外,我们发现糖蛋白CD36在冷活化血小板的耐去污剂膜(DRMs)中选择性富集,并且对甲基-β-环糊精(MβCD)的治疗极为敏感。在这里,我们进一步研究了DRM中下游信号分子的分配。我们发现磷脂酶Cγ2(PLCγ2)和蛋白酪氨酸激酶Syk并非仅在DRM内分配,但它们的分布会受到胆固醇提取的干扰。此外,与静息血小板相比,冷活化细胞中的PLCγ2活性增加,并且在用MβCD处理后被完全抑制。 Src家族蛋白酪氨酸激酶Src和Lyn优先分配在DRM中,并受到胆固醇去除的深远影响。这些激酶在冷激活中是非冗余的。 CD36,有活性的Lyn和无活性的Src和PLCγ2共同位于静止血小板中的小筏复合物中。冷激活诱导木筏聚集,导致这些蛋白质的活性发生变化。这些数据表明筏聚集在冷诱导的血小板活化的早期事件中的关键作用。

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