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Binding site for IgE of the human lymphocyte low-affinity Fc epsilon receptor (Fc epsilon RII/CD23) is confined to the domain homologous with animal lectins.

机译:人淋巴细胞低亲和力Fcε受体(FcεRII/ CD23)的IgE的结合位点被限制在与动物凝集素同源的结构域中。

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摘要

The lymphocyte low-affinity receptor for IgE (Fc epsilon RII) is involved in two seemingly unrelated processes: (i) promotion of general B-cell growth and (ii) isotype-specific IgE synthesis. To characterize domains of Fc epsilon RII important for effector function, we have expressed Fc epsilon RII mutants in mammalian cells. The results show that the IgE-binding region of Fc epsilon RII corresponds almost exactly to a domain of 123 amino acid residues homologous with the carbohydrate-binding domain of C-type animal lectins. With the recent demonstration that Fc epsilon RII binds to IgE independently of any lectin-like activity [Vercelli, D., Helm, B., Marsh, P., Padlan, E., Geha, R.S. & Gould, H. (1989) Nature (London) 338, 649-651], it is now clear that, in this case, the lectin module has evolved to interact with a protein rather than a carbohydrate moiety. The epitopes of several independent monoclonal antibodies that inhibit the binding of IgE to Fc epsilon RII are clustered within the lectin-like domain. Some of these antibodies are also known to suppress, isotype-specifically, the interleukin 4-promoted IgE synthesis from peripheral blood mononuclear cells or the spontaneous synthesis of IgE by B cells isolated from atopic donors. The epitope of MHM6, an anti-F epsilon RII monoclonal antibody delivering an epitope-restricted growth-promoting effect on B cells, is also located within the lectin-like domain. Thus, the lectin module of Fc epsilon RII not only acts as a carbohydrate-independent, isotype-specific Fc receptor but may also participate in the general regulation of B-cell growth.
机译:IgE的淋巴细胞低亲和力受体(Fc epsilon RII)涉及两个看似无关的过程:(i)促进一般B细胞生长和(ii)同型特异性IgE合成。为了表征对于效应子功能重要的FcεRII的结构域,我们已经在哺乳动物细胞中表达了FcεRII突变体。结果表明,FcεRII的IgE结合区几乎完全对应于与C型动物凝集素的碳水化合物结合域同源的123个氨基酸残基的域。随着最近的证明,FcεRII与IgE结合而与任何凝集素样活性无关[Vercelli,D.,Helm,B.,Marsh,P.,Padlan,E.,Geha,R.S。等。 &Gould,H.(1989)Nature(London)338,649-651],现在很清楚,在这种情况下,凝集素模块已经进化为与蛋白质而不是碳水化合物部分相互作用。几种抑制IgE与FcεRII结合的独立单克隆抗体的表位聚集在凝集素样结构域内。还已知其中一些抗体同种型特异性抑制白细胞介素4促进的外周血单核细胞合成IgE或自特应性供体分离的B细胞自发合成IgE。 MHM6的抗原决定簇也位于凝集素样结构域内,MHM6的抗原决定簇是一种抗F epsilon RII单克隆抗体,可对B细胞产生表位限制的促生长作用。因此,FcεRII的凝集素模块不仅充当不依赖碳水化合物,同种型特异性的Fc受体,而且还可以参与B细胞生长的一般调节。

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