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热休克蛋白47在血小板糖蛋白VI二聚化及信号传导中的作用

Role of heat shock protein 47 in platelet glycoprotein VI dimerization and signaling.

作者信息

AlOuda Sarah K, Sasikumar Parvathy, AlThunayan Taysseer, Alaajam Fahd, Khan Sabeeya, Sahli Khaled A, Abohassan Mohammed S, Pollitt Alice, Jung Stephanie M, Gibbins Jonathan M

机构信息

Institute for Cardiovascular and Metabolic Research, School of Biological Sciences, University of Reading, Reading, United Kingdom.

Department of Clinical Laboratory Sciences, College of Applied Medical Sciences, King Saud University, Riyadh, Kingdom of Saudi Arabia.

出版信息

Res Pract Thromb Haemost. 2023 Aug 23;7(6):102177. doi: 10.1016/j.rpth.2023.102177. eCollection 2023 Aug.

Abstract

BACKGROUND

Heat shock protein 47 (HSP47) is an intracellular chaperone protein with an indispensable role in collagen biosynthesis in collagen-secreting cells. This chaperone has also been shown to be released and present on the surface of platelets. The inhibition of HSP47 in human platelets or its ablation in mouse platelets reduces platelet function in response to collagen and the glycoprotein (GP) VI collagen receptor agonist CRP-XL.

OBJECTIVES

In this study, we sought, through experiments, to explore cellular distribution, trafficking, and influence on GPVI interactions to understand how HSP47 modulates collagen receptor signaling.

METHODS

HSP47-deficient mouse platelets and SMIH- treated human platelets were used to study the role of HSP47 in collagen mediated responses and signaling.

RESULTS

Using subcellular fractionation analysis and immunofluorescence microscopy, HSP47 was found to be localized to the platelet-dense tubular system. Following platelet stimulation, HSP47 mobilization to the cell surface was shown to be dependent on actin polymerization, a feature common to other dense tubular system resident platelet proteins that are released to the cell surface during activation. In this location, HSP47 was found to contribute to platelet adhesion to collagen or CRP-XL but not to GFOGER peptide (an integrin α2β1-binding sequence within collagens), indicating selective effects of HSP47 on GPVI function. Dimerization of GPVI on the platelet surface increases its affinity for collagen. GPVI dimerization was reduced following HSP47 inhibition, as was collagen and CRP-XL-mediated signaling.

CONCLUSION

The present study identifies a role for cell surface-localized HSP47 in modulating platelet responses to collagen through dimerization of GPVI, thereby enhancing platelet signaling and activation.

摘要

背景

热休克蛋白47(HSP47)是一种细胞内伴侣蛋白,在胶原分泌细胞的胶原生物合成中起不可或缺的作用。这种伴侣蛋白也已被证明可释放并存在于血小板表面。抑制人血小板中的HSP47或敲除小鼠血小板中的HSP47会降低血小板对胶原和糖蛋白(GP)VI胶原受体激动剂CRP-XL的反应功能。

目的

在本研究中,我们试图通过实验探索细胞分布、转运以及对GPVI相互作用的影响,以了解HSP47如何调节胶原受体信号传导。

方法

使用HSP47缺陷型小鼠血小板和SMIH处理的人血小板来研究HSP47在胶原介导的反应和信号传导中的作用。

结果

通过亚细胞分级分离分析和免疫荧光显微镜检查,发现HSP47定位于血小板致密管状系统。血小板刺激后,HSP47向细胞表面的动员显示依赖于肌动蛋白聚合,这是其他致密管状系统驻留血小板蛋白在激活过程中释放到细胞表面的共同特征。在这个位置,发现HSP47有助于血小板与胶原或CRP-XL的粘附,但对GFOGER肽(胶原内的整合素α2β1结合序列)没有作用,表明HSP47对GPVI功能有选择性影响。血小板表面的GPVI二聚化增加了其对胶原的亲和力。HSP47抑制后,GPVI二聚化减少,胶原和CRP-XL介导的信号传导也减少。

结论

本研究确定了细胞表面定位的HSP47通过GPVI二聚化调节血小板对胶原反应的作用,从而增强血小板信号传导和激活。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b7b2/10520510/516538accf18/gr1.jpg

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