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人Fcγ受体及其多态性变体对人IgG亚类的特异性和亲和力。

Specificity and affinity of human Fcgamma receptors and their polymorphic variants for human IgG subclasses.

作者信息

Bruhns Pierre, Iannascoli Bruno, England Patrick, Mancardi David A, Fernandez Nadine, Jorieux Sylvie, Daëron Marc

机构信息

Institut Pasteur, Département d'Immunologie, Unité d'Allergologie Moléculaire et Cellulaire, Paris, France.

出版信息

Blood. 2009 Apr 16;113(16):3716-25. doi: 10.1182/blood-2008-09-179754. Epub 2008 Nov 18.

Abstract

Distinct genes encode 6 human receptors for IgG (hFcgammaRs), 3 of which have 2 or 3 polymorphic variants. The specificity and affinity of individual hFcgammaRs for the 4 human IgG subclasses is unknown. This information is critical for antibody-based immunotherapy which has been increasingly used in the clinics. We investigated the binding of polyclonal and monoclonal IgG1, IgG2, IgG3, and IgG4 to FcgammaRI; FcgammaRIIA, IIB, and IIC; FcgammaRIIIA and IIIB; and all known polymorphic variants. Wild-type and low-fucosylated IgG1 anti-CD20 and anti-RhD mAbs were also examined. We found that (1) IgG1 and IgG3 bind to all hFcgammaRs; (2) IgG2 bind not only to FcgammaRIIA(H131), but also, with a lower affinity, to FcgammaRIIA(R131) and FcgammaRIIIA(V158); (3) IgG4 bind to FcgammaRI, FcgammaRIIA, IIB and IIC and FcgammaRIIIA(V158); and (4) the inhibitory receptor FcgammaRIIB has a lower affinity for IgG1, IgG2, and IgG3 than all other hFcgammaRs. We also identified parameters that determine the specificity and affinity of hFcgammaRs for IgG subclasses. These results document how hFcgammaR specificity and affinity may account for the biological activities of antibodies. They therefore highlight the role of specific hFcgammaRs in the therapeutic and pathogenic effects of antibodies in disease.

摘要

6种人类IgG受体(hFcγRs)由不同基因编码,其中3种有2种或3种多态性变体。目前尚不清楚各个hFcγRs对4种人类IgG亚类的特异性和亲和力。这些信息对于临床中越来越常用的基于抗体的免疫疗法至关重要。我们研究了多克隆和单克隆IgG1、IgG2、IgG3和IgG4与FcγRI;FcγRIIA、IIB和IIC;FcγRIIIA和IIIB;以及所有已知多态性变体的结合情况。还检测了野生型和低岩藻糖基化的IgG1抗CD20和抗RhD单克隆抗体。我们发现:(1)IgG1和IgG3与所有hFcγRs结合;(2)IgG2不仅与FcγRIIA(H131)结合,还以较低亲和力与FcγRIIA(R131)和FcγRIIIA(V158)结合;(3)IgG4与FcγRI、FcγRIIA、IIB和IIC以及FcγRIIIA(V158)结合;(4)抑制性受体FcγRIIB对IgG1、IgG2和IgG3的亲和力低于所有其他hFcγRs。我们还确定了决定hFcγRs对IgG亚类特异性和亲和力的参数。这些结果证明了hFcγR特异性和亲和力如何解释抗体的生物学活性。因此,它们突出了特定hFcγRs在疾病中抗体的治疗和致病作用中的作用。

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