首页> 美国卫生研究院文献>The Journal of Experimental Medicine >An interleukin 4 (IL-4) mutant protein inhibits both IL-4 or IL-13- induced human immunoglobulin G4 (IgG4) and IgE synthesis and B cell proliferation: support for a common component shared by IL-4 and IL-13 receptors
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An interleukin 4 (IL-4) mutant protein inhibits both IL-4 or IL-13- induced human immunoglobulin G4 (IgG4) and IgE synthesis and B cell proliferation: support for a common component shared by IL-4 and IL-13 receptors

机译:白介素4(IL-4)突变蛋白抑制IL-4或IL-13诱导的人免疫球蛋白G4(IgG4)和IgE合成以及B细胞增殖:支持IL-4和IL-13受体共有的共同成分

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摘要

Interleukin 4 (IL-4) and IL-13 share many biological functions. Both cytokines promote growth of activated human B cells and induce naive human surface immunoglobulin D+ (sIgD+) B cells to produce IgG4 and IgE. Here we show that a mutant form of human IL-4, in which the tyrosine residue at position 124 is replaced by aspartic acid (hIL- 4.Y124D), specifically blocks IL-4 and IL-13-induced proliferation of B cells costimulated by anti-CD40 mAbs in a dose-dependent fashion. A mouse mutant IL-4 protein (mIL-4.Y119D), which antagonizes the biological activity of mouse IL-4, was ineffective. In addition, hIL- 4.Y124D, at concentrations of up to 40 nM, did not affect IL-2-induced B cell proliferation. hIL-4.Y124D did not have detectable agonistic activity in these B cell proliferation assays. Interestingly, hIL- 4.Y124D also strongly inhibited both IL-4 or IL-13-induced IgG4 and IgE synthesis in cultures of peripheral blood mononuclear cells, or highly purified sIgD+ B cells cultured in the presence of anti-CD40 mAbs. IL-4 and IL-13-induced IgE responses were inhibited > 95% at a approximately 50- or approximately 20-fold excess of hIL-4.Y124D, respectively, despite the fact that the IL-4 mutant protein had a weak agonistic activity. This agonistic activity was 1.6 +/- 1.9% (n = 4) of the maximal IgE responses induced by saturating concentrations of IL-4. Taken together, these data indicate that there are commonalities between the IL-4 and IL-13 receptor. In addition, since hIL-4.Y124D inhibited both IL-4 and IL-13-induced IgE synthesis, it is likely that antagonistic mutant IL-4 proteins may have potential clinical use in the treatment of IgE-mediated allergic diseases.
机译:白介素4(IL-4)和IL-13具有许多生物学功能。两种细胞因子均能促进活化的人类B细胞的生长,并诱导幼稚的人类表面免疫球蛋白D +(sIgD +)B细胞产生IgG4和IgE。在这里,我们显示了人IL-4的一种突变形式,其中第124位的酪氨酸残基被天冬氨酸(hIL-4.Y124D)取代,特异性阻断IL-4和IL-13诱导的B细胞增殖。抗CD40 mAb的剂量依赖性。拮抗小鼠IL-4生物学活性的小鼠突变IL-4蛋白(mIL-4.Y119D)无效。此外,浓度高达40 nM的hIL-4.Y124D不会影响IL-2诱导的B细胞增殖。在这些B细胞增殖试验中,hIL-4.Y124D没有可检测的激动活性。有趣的是,hIL-4.Y124D还强烈抑制了外周血单核细胞或在抗CD40 mAb存在下培养的高度纯化的sIgD + B细胞培养物中IL-4或IL-13诱导的IgG4和IgE合成。 IL-4和IL-13诱导的IgE反应在hIL-4.Y124D过量约50倍或约20倍时被抑制> 95%,尽管IL-4突变蛋白的激动作用很弱活动。这种激动活性是饱和IL-4浓度诱导的最大IgE反应的1.6 +/- 1.9%(n = 4)。综上所述,这些数据表明IL-4和IL-13受体之间存在共性。此外,由于hIL-4.Y124D抑制了IL-4和IL-13诱导的IgE合成,因此拮抗突变型IL-4蛋白可能在治疗IgE介导的过敏性疾病中具有潜在的临床用途。

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