首页> 外文期刊>Blood: The Journal of the American Society of Hematology >S6K1 and mTOR regulate Rac1-driven platelet activation and aggregation.
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S6K1 and mTOR regulate Rac1-driven platelet activation and aggregation.

机译:S6K1和mTOR调节Rac1驱动的血小板活化和聚集。

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摘要

Platelet activation and thrombus formation are under the control of signaling systems that integrate cellular homeostasis with cytoskeletal dynamics. Here, we identify a role for the ribosome protein S6 kinase (S6K1) and its upstream regulator mTOR in the control of platelet activation and aggregate formation under shear flow. Platelet engagement of fibrinogen initiated a signaling cascade that triggered the activation of S6K1 and Rac1. Fibrinogen-induced S6K1 activation was abolished by inhibitors of Src kinases, but not Rac1 inhibitors, demonstrating that S6K1 acts upstream of Rac1. S6K1 and Rac1 interacted in a protein complex with the Rac1 GEF TIAM1 and colocalized with actin at the platelet lamellipodial edge, suggesting that S6K1 and Rac1 work together to drive platelet spreading. Pharmacologic inhibitors of mTOR and S6K1 blocked Rac1 activation and prevented platelet spreading on fibrinogen, but had no effect on Src or FAK kinase activation. mTOR inhibitors dramatically reduced collagen-induced platelet aggregation and promoted the destabilization of platelet aggregates formed under shear flow conditions. Together, these results reveal novel roles for S6K1 and mTOR in the regulation of Rac1 activity and provide insights into the relationship between the pharmacology of the mTOR system and the molecular mechanisms of platelet activation.
机译:血小板活化和血栓形成受信号系统的控制,该系统将细胞稳态与细胞骨架动力学整合在一起。在这里,我们确定核糖体蛋白S6激酶(S6K1)及其上游调节剂mTOR在剪切流下控制血小板活化和聚集体形成中的作用。血小板纤维蛋白原的参与引发了信号级联反应,从而触发了S6K1和Rac1的激活。 Src激酶抑制剂(而非Rac1抑制剂)取消了纤维蛋白原诱导的S6K1激活,这表明S6K1在Rac1上游起作用。 S6K1和Rac1在蛋白复合物中与Rac1 GEF TIAM1相互作用,并与肌动蛋白共定位于血小板板层脂质边缘,表明S6K1和Rac1共同作用以驱动血小板扩散。 mTOR和S6K1的药物抑制剂可阻止Rac1激活并阻止血小板在纤维蛋白原上扩散,但对Src或FAK激酶激活没有影响。 mTOR抑制剂可显着减少胶原蛋白诱导的血小板凝集,并促进在剪切流条件下形成的血小板凝集物的不稳定。总之,这些结果揭示了S6K1和mTOR在Rac1活性调节中的新作用,并提供了对mTOR系统药理学与血小板活化分子机制之间关系的见解。

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