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III型Fcγ受体(FcγRIII)与单体人IgG亚类之间相互作用的亲和力。FcγRIII糖基化的作用。

Affinity of the interaction between Fc gamma receptor type III (Fc gammaRIII) and monomeric human IgG subclasses. Role of Fc gammaRIII glycosylation.

作者信息

Galon J, Robertson M W, Galinha A, Mazières N, Spagnoli R, Fridman W H, Sautès C

机构信息

Unité INSERM 255, Institut Curie, Paris, France.

出版信息

Eur J Immunol. 1997 Aug;27(8):1928-32. doi: 10.1002/eji.1830270816.

Abstract

Binding of the Fc region of IgG antibodies to low affinity Fc gamma receptors (Fc gammaR) triggers important effector functions in the immune system. The type IIIb Fc gammaR (Fc gammaRIIIb or CD16) is a heavily glycosylated protein anchored to the membrane of neutrophils by a glycosylphosphatidylinositol link. This receptor contributes to cell activation by IgG immune complexes. To better understand the nature of the ligand-receptor association, we have studied the affinity and kinetics of the interaction between human IgG subclasses and two soluble forms of Fc gammaRIIIb (sFc gammaRIIIb or sCD16) corresponding to the 188 N-terminal amino acids of the extracellular region of the receptor, a glycosylated one made in eucaryotic cells (euc.sCD16) and a non-glycosylated one (proc.sCD16) made in Escherichia coli. Experiments using a BIAcore instrument, to measure protein binding in real time, showed that monomeric human IgG1 and IgG3, but not IgG2, IgG4, IgA and divalent antigen-binding fragments (F(ab')2) of IgG1, bound to immobilized euc.sCD16 with an affinity constant (K(A)) of 1.3 +/- 0.6 x 10(6) M(-1) and 2.6 +/- 0.4 x 10(5) M(-1), respectively. The affinity constant of proc.sCD16 for human IgG1 was in the same range (1.1 +/- 0.2 x 10(6) M(-1)), whereas that for human IgG3 was twofold higher (4.2 +/- 0.4 x 10(5) M(-1)). The specificity of the non-glycosylated receptor for human IgG subclasses bound to Sepharose was IgG1 > IgG3 >> IgG4 >>> IgG2. Thus, the extracellular polypeptide of Fc gammaRIIIb dictates the interaction of the receptor with IgG subclasses although glycosylation plays an inhibitory role in the interaction with human IgG3.

摘要

IgG抗体的Fc区域与低亲和力Fcγ受体(FcγR)的结合触发了免疫系统中的重要效应功能。IIIb型FcγR(FcγRIIIb或CD16)是一种高度糖基化的蛋白质,通过糖基磷脂酰肌醇连接锚定在中性粒细胞的膜上。该受体通过IgG免疫复合物促进细胞活化。为了更好地理解配体-受体结合的本质,我们研究了人IgG亚类与两种可溶性形式的FcγRIIIb(sFcγRIIIb或sCD16)之间相互作用的亲和力和动力学,这两种形式对应于受体细胞外区域的188个N端氨基酸,一种是在真核细胞中产生的糖基化形式(euc.sCD16),另一种是在大肠杆菌中产生的非糖基化形式(proc.sCD16)。使用BIAcore仪器进行的实时测量蛋白质结合的实验表明,单体人IgG1和IgG3,但不是IgG2、IgG4、IgA以及IgG1的二价抗原结合片段(F(ab')2),以1.3±0.6×10(6) M(-1)和2.6±0.4×10(5) M(-1)的亲和力常数(K(A))与固定化的euc.sCD16结合。proc.sCD16与人IgG1的亲和力常数在相同范围内(1.1±0.2×10(6) M(-1)),而与人IgG3的亲和力常数则高出两倍(4.2±0.4×10(5) M(-1))。与琼脂糖结合的非糖基化受体对人IgG亚类的特异性为IgG1 > IgG3 >> IgG4 >>> IgG2。因此,FcγRIIIb的细胞外多肽决定了该受体与IgG亚类的相互作用,尽管糖基化在与人IgG3的相互作用中起抑制作用。

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