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FcγRIIA基因多态性在单克隆抗体激活人血小板中的作用

Role of Fc gamma RIIA gene polymorphism in human platelet activation by monoclonal antibodies.

作者信息

Bachelot C, Saffroy R, Gandrille S, Aiach M, Rendu F

机构信息

INSERM 428, Faculté des Sciences Pharmaceutiques, Paris France.

出版信息

Thromb Haemost. 1995 Dec;74(6):1557-63.

PMID:8772237
Abstract

The aim of this study was to determine if there is a correlation between the activity of a MoAb as an agonist and its ability to bind to the Fc platelet receptor, Fc gamma RIIa. A polymorphism at amino acid 131 [arginine (Arg) or histidine (His)] of Fc gamma RIIa was first shown to be determinant for MoAb-IgG1 binding on monocytes. To clarify the role of this polymorphism in platelet activation by MoAb-IgG1 we (i) established the Fc gamma RIIa polymorphism at the gene level by adapting the denaturating gradient gel electrophoresis method, (ii) analyzed the binding affinity of the MoAbs to Fc gamma RIIa on platelets from homozygous Arg, homozygous His, and heterozygous Arg/His donors, and (iii) characterized the different reactivities of platelets according to the Fc gamma RIIA polymorphism. Among 167 caucasian donors we found 46% heterozygous Arg/His, 36% homozygous His and 18% homozygous Arg. ALB6, and anti CD9, P256 an anti GPIIb-IIIa, and AP3 an anti-GPIIIa were chosen according to their ability (ALB6, P256) or not (AP3) to activate platelets. These 3 MoAbs-IgG1 bind to Fc gamma RIIa with a stronger affinity for the Arg-form of Fc gamma RIIa, a result which was confirmed with the use of diverse MoAbs directed against various antigens. The different abilities of MoAbs to bind to the two Fc gamma RIIa forms were well correlated to the different platelet responses induced by ALB6 and P256. However, low concentrations of ALB6, which allow full activation of platelets from homozygous Arg donors, as did P256, did not induce any activation of platelets from homozygous His donors, whereas P256 is able to induce a low aggregation. The results further define the respective roles of the antigen and the Fc receptor, depending on the MoAb, and the role of the Fc gamma RIIa polymorphism in platelet activation induced by MoAbs. In addition, the results obtained with MoAbs unable to induce platelet activation provided evidence that the binding of a MoAb on Fc gamma RIIa does not predict its ability to activate platelets.

摘要

本研究的目的是确定单克隆抗体(MoAb)作为激动剂的活性与其结合Fc血小板受体FcγRIIa的能力之间是否存在相关性。首先发现,FcγRIIa第131位氨基酸(精氨酸(Arg)或组氨酸(His))的多态性是MoAb-IgG1在单核细胞上结合的决定因素。为了阐明这种多态性在MoAb-IgG1介导的血小板激活中的作用,我们:(i)通过改进变性梯度凝胶电泳方法,在基因水平确定FcγRIIa多态性;(ii)分析MoAb与纯合Arg、纯合His和杂合Arg/His供体血小板上FcγRIIa的结合亲和力;(iii)根据FcγRIIA多态性对血小板的不同反应性进行表征。在167名白种人供体中,我们发现46%为杂合Arg/His,36%为纯合His,18%为纯合Arg。根据其激活血小板的能力(ALB6、P256)或无此能力(AP3)选择了ALB6(一种抗CD9)、P256(一种抗GPIIb-IIIa)和AP3(一种抗GPIIIa)。这3种MoAb-IgG1与FcγRIIa的Arg形式结合亲和力更强,使用针对各种抗原的不同MoAb证实了这一结果。MoAb与两种FcγRIIa形式结合能力的差异与ALB6和P256诱导的不同血小板反应密切相关。然而,低浓度的ALB6(与P256一样,能使纯合Arg供体的血小板完全激活)并未诱导纯合His供体的血小板发生任何激活,而P256能够诱导低水平聚集。结果进一步明确了抗原和Fc受体各自的作用(取决于MoAb),以及FcγRIIa多态性在MoAb诱导的血小板激活中的作用。此外,用不能诱导血小板激活的MoAb获得的结果表明,MoAb与FcγRIIa的结合并不能预测其激活血小板的能力。

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