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血红素通过 CLEC-2 和 GPVI/FcRγ 激活血小板并加剧横纹肌溶解症诱导的急性肾损伤。

Heme activates platelets and exacerbates rhabdomyolysis-induced acute kidney injury via CLEC-2 and GPVI/FcRγ.

机构信息

Department of Clinical and Laboratory Medicine and.

Department of Pathology, Faculty of Medicine, University of Yamanashi, Chuo, Japan.

出版信息

Blood Adv. 2021 Apr 13;5(7):2017-2026. doi: 10.1182/bloodadvances.2020001698.

Abstract

There is increasing evidence that platelets participate in multiple pathophysiological processes other than thrombosis and hemostasis, such as immunity, inflammation, embryonic development, and cancer progression. A recent study revealed that heme (hemin)-activated platelets induce macrophage extracellular traps (METs) and exacerbate rhabdomyolysis-induced acute kidney injury (RAKI); however, how hemin activates platelets remains unclear. Here, we report that both C-type lectin-like receptor-2 (CLEC-2) and glycoprotein VI (GPVI) are platelet hemin receptors and are involved in the exacerbation of RAKI. We investigated hemin-induced platelet aggregation in humans and mice, binding of hemin to CLEC-2 and GPVI, the RAKI-associated phenotype in a mouse model, and in vitro MET formation. Using western blotting and surface plasmon resonance, we showed that hemin activates human platelets by stimulating the phosphorylation of SYK and PLCγ2 and directly binding to both CLEC-2 and GPVI. Furthermore, hemin-induced murine platelet aggregation was partially reduced in CLEC-2-depleted and FcRγ-deficient (equivalent to GPVI-deficient) platelets and almost completely inhibited in CLEC-2-depleted FcRγ-deficient (double-knockout) platelets. In addition, hemin-induced murine platelet aggregation was inhibited by the CLEC-2 inhibitor cobalt hematoporphyrin or GPVI antibody (JAQ-1). Renal dysfunction, tubular injury, and MET formation were attenuated in double-knockout RAKI mice. Furthermore, in vitro MET formation assay showed that the downstream signaling pathway of CLEC-2 and GPVI is involved in MET formation. We propose that both CLEC-2 and GPVI in platelets play an important role in RAKI development.

摘要

越来越多的证据表明,血小板参与了多种病理生理过程,不仅限于血栓形成和止血,还包括免疫、炎症、胚胎发育和癌症进展。最近的一项研究表明,血红素(hemin)激活的血小板诱导巨噬细胞细胞外陷阱(METs),并加重横纹肌溶解诱导的急性肾损伤(RAKI);然而,血红素如何激活血小板尚不清楚。在这里,我们报告 C 型凝集素样受体-2(CLEC-2)和糖蛋白 VI(GPVI)均为血小板血红素受体,并参与 RAKI 的恶化。我们研究了血红素诱导的人类和小鼠血小板聚集、血红素与 CLEC-2 和 GPVI 的结合、小鼠模型中与 RAKI 相关的表型以及体外 MET 形成。通过 Western blot 和表面等离子体共振,我们表明血红素通过刺激 SYK 和 PLCγ2 的磷酸化直接与 CLEC-2 和 GPVI 结合来激活人类血小板。此外,CLEC-2 耗竭和 FcRγ 缺陷(相当于 GPVI 缺陷)的小鼠血小板中血红素诱导的血小板聚集部分减少,而 CLEC-2 耗竭的 FcRγ 缺陷(双敲除)血小板中几乎完全抑制血红素诱导的血小板聚集。此外,CLEC-2 抑制剂钴血红素或 GPVI 抗体(JAQ-1)抑制血红素诱导的小鼠血小板聚集。双敲除 RAKI 小鼠的肾功能障碍、肾小管损伤和 MET 形成减轻。此外,体外 MET 形成实验表明,CLEC-2 和 GPVI 的下游信号通路参与 MET 的形成。我们提出,血小板中的 CLEC-2 和 GPVI 均在 RAKI 的发展中发挥重要作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/212e/8045506/2a7142ea82ec/advancesADV2020001698absf1.jpg

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