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缺乏 PECAM-1 和 Ceacam1 的小鼠具有增强的血小板分泌和血栓形成:与 PAR4 的新联系。

Mice Lacking PECAM-1 and Ceacam1 Have Enhanced Platelet Secretion and Thrombus Growth: Novel Link with PAR4.

机构信息

Thrombosis and Vascular Diseases Laboratory, School of Health and Biomedical Sciences, STEM College, RMIT University, Bundoora, Victoria, Australia.

Department of Clinical Laboratory Sciences, College of Applied Medical Sciences, Shaqra University, Shaqra, Riyadh Province, Saudi Arabia.

出版信息

Thromb Haemost. 2022 Jun;122(6):961-973. doi: 10.1055/a-1663-8108. Epub 2021 Dec 28.

Abstract

The Ig-ITIM bearing receptors, PECAM-1 and CEACAM1, have been shown net negative regulators of platelet-collagen interactions and hemiITAM signaling pathways. In this study, a double knockout (DKO) mouse was developed with deleted PECAM-1 and CEACAM1 to study their combined contribution in platelet activation by glycoprotein VI, C-type lectin-like receptor 2, protease activated receptor (PAR4), ADP purinergic receptors, and thromboxane receptor (TP) A2 pathways. In addition, their collective contribution was examined in thrombus formation under high shear and microvascular thrombosis using in vivo models. DKO platelets responded normally to ADP purinergic receptors and the TP A2 pathway. However, DKO platelets released significantly higher amounts of P-selectin compared with hyper-responsive or versus wild-type (WT) upon stimulation with collagen-related peptide or rhodocytin. In contrast, DKO platelets showed increased amounts of P-selectin exposure upon stimulation with PAR4 agonist peptide or thrombin but not , , or platelets. Blockade of phospholipase C (PLC) or Rho A kinase revealed that DKO platelets enhanced α-granule release via PAR4/Gαq/PLC signaling without crosstalk with Src/Syk or G signaling pathways. Severely delayed clot retraction in vitro was observed in DKO phenotype. The DKO model revealed a significant increase in thrombus formation compared with the hyper-responsive or versus phenotype. DKO platelets have similar glycoprotein surface expression compared with , , and platelets. This study demonstrates that PECAM-1 and CEACAM1 work in concert to negatively regulate hemiITAM signaling, platelet-collagen interactions, and PAR4 Gαq protein- coupled signaling pathways. Both PECAM-1 and CEACAM1 are required for negative regulation of platelet activation and microvascular thrombosis in vivo.

摘要

携带 Ig-ITIM 的受体,PECAM-1 和 CEACAM1,已被证明是血小板-胶原相互作用和半 ITAM 信号通路的负调控因子。在这项研究中,开发了一种 PECAM-1 和 CEACAM1 双缺失(DKO)的小鼠,以研究它们在糖蛋白 VI、C 型凝集素样受体 2、蛋白酶激活受体(PAR4)、ADP 嘌呤能受体和血栓烷受体(TP)A2 途径中对血小板激活的共同作用。此外,还在高剪切力下的体内模型中以及微血管血栓形成中研究了它们的集体作用。与高反应性或相比,DKO 血小板对 ADP 嘌呤能受体和 TP A2 途径的反应正常。然而,与或相比,当用胶原相关肽或 rhodocytin 刺激时,DKO 血小板释放的 P-选择素明显更多。相比之下,当用 PAR4 激动肽或凝血酶刺激时,DKO 血小板显示出增加的 P-选择素暴露量,但不会引起或或血小板。阻断磷脂酶 C(PLC)或 Rho A 激酶表明,DKO 血小板通过 PAR4/Gαq/PLC 信号增强α-颗粒释放,而没有与Src/Syk 或 G 信号通路的串扰。体外观察到严重延迟的凝块回缩。与高反应性或相比,DKO 模型显示血栓形成明显增加。与或相比,DKO 血小板具有相似的糖蛋白表面表达。这项研究表明,PECAM-1 和 CEACAM1 协同作用,负调节半 ITAM 信号、血小板-胶原相互作用和 PAR4 Gαq 蛋白偶联信号通路。PECAM-1 和 CEACAM1 都需要负调节体内血小板激活和微血管血栓形成。

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