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血小板 Shp2 在高切应力下负调控血栓稳定性。

Platelet Shp2 negatively regulates thrombus stability under high shear stress.

机构信息

Department of Pathology and Pathophysiology and Bone Marrow Transplantation Center of the First Affiliated Hospital, Zhejiang University School of Medicine, Hangzhou, China.

Institute of Hematology, Zhejiang University & Zhejiang Engineering Laboratory for Stem Cell and Immunotherapy.

出版信息

J Thromb Haemost. 2019 Jan;17(1):220-231. doi: 10.1111/jth.14335. Epub 2018 Dec 18.

Abstract

Essentials Shp2 negatively regulates thrombus stability under pathological shear rate. Shp2 suppresses TXA2 receptor-mediated platelet dense granule secretion. Through αIIbβ3 outside-in signaling, Shp2 targets calmodulin-dependent activation of Akt. Shp2 may serve to prevent the formation of unwanted occlusive thrombi. SUMMARY: Background Perpetuation is the final phase of thrombus formation; however, its mechanisms and regulation are poorly understood. Objective To investigate the mechanism of Shp2 in platelet function and thrombosis. Methods and results We demonstrate that the platelet-expressed Src homology region 2 domain-containing protein tyrosine phosphatase Shp2 is a negative regulator of thrombus stability under high shear stress. In a ferric chloride-induced mesenteric arteriole thrombosis model, megakaryocyte/platelet-specific Shp2-deficient mice showed less thrombi shedding than wild-type mice, although their occlusion times were comparable. In accordance with this in vivo phenotype, a microfluidic whole-blood perfusion assay revealed that the thrombi formed on collagen surfaces by Shp2-deficient platelets were more stable under high shear rates than those produced by wild-type platelets. Whereas Shp2 deficiency did not alter platelet responsiveness towards thrombin, ADP and collagen stimulation, Shp2-deficient platelets showed increased dense granule secretion when stimulated by the thromboxane A analog U46619. Shp2 appears to act downstream of integrin α β outside-in signaling, inhibiting the phosphorylation of Akt (Ser473 and Thr308) and dense granule secretion. Calmodulin was also shown to bind both Shp2 and Akt, linking Shp2 to Akt activation. Conclusions Platelet Shp2 negatively regulates thrombus perpetuation under high shear stress. This signaling pathway may constitute an important mechanism for the prevention of unwanted occlusive thrombus formation, without dramatically interfering with hemostasis.

摘要

Shp2 在病理切变率下负调控血栓稳定性。Shp2 抑制 TXA2 受体介导的血小板致密颗粒分泌。通过 αIIbβ3 外向信号,Shp2 靶向钙调蛋白依赖性 Akt 激活。Shp2 可能有助于防止形成不需要的闭塞性血栓。

摘要

延续是血栓形成的最后阶段;然而,其机制和调节仍知之甚少。

目的

研究 Shp2 在血小板功能和血栓形成中的作用机制。

方法和结果

我们证明血小板表达的Src 同源区域 2 结构域含酪氨酸磷酸酶 Shp2 是高切变应力下血栓稳定性的负调节剂。在三氯化铁诱导的肠系膜小动脉血栓形成模型中,巨核细胞/血小板特异性 Shp2 缺陷小鼠的血栓脱落比野生型小鼠少,尽管它们的闭塞时间相当。与这种体内表型一致,微流控全血灌注实验表明,Shp2 缺陷血小板在高切变率下形成的血栓比野生型血小板形成的血栓更稳定。尽管 Shp2 缺陷不改变血小板对凝血酶、ADP 和胶原刺激的反应性,但 Shp2 缺陷血小板在 U46619 刺激下显示出增加的致密颗粒分泌。Shp2 似乎作用于整合素αβ外向信号的下游,抑制 Akt(Ser473 和 Thr308)和致密颗粒分泌的磷酸化。钙调蛋白也被证明与 Shp2 和 Akt 结合,将 Shp2 与 Akt 激活联系起来。

结论

血小板 Shp2 在高切变应力下负调控血栓延续。该信号通路可能构成防止不需要的闭塞性血栓形成的重要机制,而不会显著干扰止血。

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