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蛋白酶激活受体4 Pro310Leu变体的小鼠模型血小板反应性降低。

A mouse model of the protease-activated receptor 4 Pro310Leu variant has reduced platelet reactivity.

作者信息

Han Xu, Knauss Elizabeth A, Fuente Maria de la, Li Wei, Conlon Ronald A, LePage David F, Jiang Weihong, Renna Stephanie A, McKenzie Steven E, Nieman Marvin T

机构信息

Case Western Reserve University School of Medicine, Department of Pharmacology, Cleveland, Ohio, USA.

Department of Biomedical Sciences, Joan C. Edwards School of Medicine at Marshall University, Huntington, West Virginia, USA.

出版信息

J Thromb Haemost. 2024 Jun;22(6):1715-1726. doi: 10.1016/j.jtha.2024.03.004. Epub 2024 Mar 19.

Abstract

BACKGROUND

Protease-activated receptor 4 (PAR4) mediates thrombin signaling on platelets and other cells. Our recent structural studies demonstrated that a single nucleotide polymorphism in extracellular loop 3 and PAR4-P310L (rs2227376) leads to a hyporeactive receptor.

OBJECTIVES

The goal of this study was to determine how the hyporeactive PAR4 variant in extracellular loop 3 impacts platelet function in vivo using a novel knock-in mouse model (PAR4-322L).

METHODS

A point mutation was introduced into the PAR4 gene F2rl3 via CRISPR/Cas9 to create PAR4-P322L, the mouse homolog to human PAR4-P310L. Platelet response to PAR4 activation peptide (AYPGKF), thrombin, ADP, and convulxin was monitored by αIIbβ3 integrin activation and P-selectin translocation using flow cytometry or platelet aggregation. In vivo responses were determined by the tail bleeding assay and the ferric chloride-induced carotid artery injury model.

RESULTS

PAR4-P/L and PAR4-L/L platelets had a reduced response to AYPGKF and thrombin measured by P-selectin translocation or αIIbβ3 activation. The response to ADP and convulxin was unchanged among genotypes. In addition, both PAR4-P/L and PAR4-L/L platelets showed a reduced response to thrombin in aggregation studies. There was an increase in the tail bleeding time for PAR4-L/L mice. The PAR4-P/L and PAR4-L/L mice both showed an extended time to arterial thrombosis.

CONCLUSION

PAR4-322L significantly reduced platelet responsiveness to AYPGKF and thrombin, which is in agreement with our previous structural and cell signaling studies. In addition, PAR4-322L had prolonged arterial thrombosis time. Our mouse model provides a foundation to further evaluate the role of PAR4 in other pathophysiological contexts.

摘要

背景

蛋白酶激活受体4(PAR4)介导血小板及其他细胞上的凝血酶信号传导。我们最近的结构研究表明,细胞外环3中的单核苷酸多态性及PAR4-P310L(rs2227376)会导致受体反应性降低。

目的

本研究的目的是使用新型敲入小鼠模型(PAR4-322L)来确定细胞外环3中反应性降低的PAR4变体如何在体内影响血小板功能。

方法

通过CRISPR/Cas9将点突变引入PAR4基因F2rl3,以创建PAR4-P322L,即人类PAR4-P310L的小鼠同源物。使用流式细胞术或血小板聚集通过αIIbβ3整合素激活和P-选择素易位监测血小板对PAR4激活肽(AYPGKF)、凝血酶、ADP和convulxin的反应。通过尾出血试验和氯化铁诱导的颈动脉损伤模型确定体内反应。

结果

通过P-选择素易位或αIIbβ3激活测量,PAR4-P/L和PAR4-L/L血小板对AYPGKF和凝血酶的反应降低。各基因型对ADP和convulxin的反应未发生变化。此外,在聚集研究中,PAR4-P/L和PAR4-L/L血小板对凝血酶的反应均降低。PAR4-L/L小鼠的尾出血时间延长。PAR4-P/L和PAR4-L/L小鼠的动脉血栓形成时间均延长。

结论

PAR4-322L显著降低了血小板对AYPGKF和凝血酶的反应性,这与我们之前的结构和细胞信号研究一致。此外,PAR4-322L延长了动脉血栓形成时间。我们的小鼠模型为进一步评估PAR4在其他病理生理背景下的作用提供了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1839/12036797/865a81c86081/nihms-2072686-f0001.jpg

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