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恒河猴血小板糖蛋白Ibα的分子克隆与特性分析,GPIb-IX-V复合物的主要配体结合亚基

Molecular cloning and characterization of rhesus monkey platelet glycoprotein Ibα, a major ligand-binding subunit of GPIb-IX-V complex.

作者信息

Qiao Jianlin, Shen Yang, Shi Meimei, Lu Yanrong, Cheng Jingqiu, Chen Younan

机构信息

Key Laboratory of Transplant Engineering and Immunology, Ministry of Health, Regenerative Medicine Research Center, West China Hospital, Sichuan University, Chengdu 610041, China; Department of Haematology, the Affiliated Hospital of Xuzhou Medical College, Xuzhou 221002, China.

Australian Centre for Blood Diseases, Monash University, Melbourne, 3004, Victoria, Australia.

出版信息

Thromb Res. 2014 May;133(5):817-25. doi: 10.1016/j.thromres.2014.01.032. Epub 2014 Feb 4.

Abstract

INTRODUCTION

Through binding to von Willebrand factor (VWF), platelet glycoprotein (GP) Ibα, the major ligand-binding subunit of the GPIb-IX-V complex, initiates platelet adhesion and aggregation in response to exposed VWF or elevated fluid-shear stress. There is little data regarding non-human primate platelet GPIbα. This study cloned and characterized rhesus monkey (Macaca Mullatta) platelet GPIbα.

MATERIALS AND METHODS

DNAMAN software was used for sequence analysis and alignment. N/O-glycosylation sites and 3-D structure modelling were predicted by online OGPET v1.0, NetOGlyc 1.0 Server and SWISS-MODEL, respectively. Platelet function was evaluated by ADP- or ristocetin-induced platelet aggregation.

RESULTS

Rhesus monkey GPIbα contains 2,268 nucleotides with an open reading frame encoding 755 amino acids. Rhesus monkey GPIbα nucleotide and protein sequences share 93.27% and 89.20% homology respectively, with human. Sequences encoding the leucine-rich repeats of rhesus monkey GPIbα share strong similarity with human, whereas PEST sequences and N/O-glycosylated residues vary. The GPIbα-binding residues for thrombin, filamin A and 14-3-3ζ are highly conserved between rhesus monkey and human. Platelet function analysis revealed monkey and human platelets respond similarly to ADP, but rhesus monkey platelets failed to respond to low doses of ristocetin where human platelets achieved 76% aggregation. However, monkey platelets aggregated in response to higher ristocetin doses.

CONCLUSIONS

Monkey GPIbα shares strong homology with human GPIbα, however there are some differences in rhesus monkey platelet activation through GPIbα engagement, which need to be considered when using rhesus monkey platelet to investigate platelet GPIbα function.

摘要

引言

血小板糖蛋白(GP)Ibα是GPIb-IX-V复合物的主要配体结合亚基,通过与血管性血友病因子(VWF)结合,在暴露的VWF或流体剪切应力升高时启动血小板黏附和聚集。关于非人类灵长类动物血小板GPIbα的数据很少。本研究克隆并鉴定了恒河猴(猕猴)血小板GPIbα。

材料与方法

使用DNAMAN软件进行序列分析和比对。分别通过在线OGPET v1.0、NetOGlyc 1.0服务器和SWISS-MODEL预测N/O-糖基化位点和三维结构建模。通过ADP或瑞斯托霉素诱导的血小板聚集评估血小板功能。

结果

恒河猴GPIbα含有2268个核苷酸,开放阅读框编码755个氨基酸。恒河猴GPIbα核苷酸和蛋白质序列与人的分别具有93.27%和89.20%的同源性。编码恒河猴GPIbα富含亮氨酸重复序列的序列与人的具有很强的相似性,而PEST序列和N/O-糖基化残基有所不同。恒河猴和人之间凝血酶、细丝蛋白A和14-3-3ζ的GPIbα结合残基高度保守。血小板功能分析显示,猴和人的血小板对ADP的反应相似,但恒河猴血小板对低剂量瑞斯托霉素无反应,而人血小板在此剂量下聚集率达76%。然而,猴血小板对较高剂量的瑞斯托霉素有聚集反应。

结论

猴GPIbα与人GPIbα具有很强的同源性,然而恒河猴血小板通过GPIbα参与的激活存在一些差异,在使用恒河猴血小板研究血小板GPIbα功能时需要考虑这些差异。

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