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首页> 外文期刊>Biochemistry >Interaction of a monoclonal IgE-specific antibody with cell-surface IgE-Fc epsilon RI: Characterization of equilibrium binding and secretory response
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Interaction of a monoclonal IgE-specific antibody with cell-surface IgE-Fc epsilon RI: Characterization of equilibrium binding and secretory response

机译:单克隆IgE特异性抗体与细胞表面IgE-FcεRI的相互作用:平衡结合和分泌反应的表征

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Aggregation of FcepsilonR1, the high-affinity cell-surface receptor for IgE antibody, is required for degranulation of basophils and mast cells, but not all receptor aggregates elicit this cellular response. The stereochemical constraints on clusters of FcepsilonRI that are able to signal cellular responses, such as degranulation, have yet to be fully defined. To improve our understanding of the properties of FcepsilonRI aggregates that influence receptor signaling, we have studied the interaction of 23G3, a rat IgG(1kappa), IgE-specific monoclonal antibody, with IgE-FcERI complexes on rat mucosal-type mast cells (RBL-2H3 line). We find that 23G3 is a potent secretagogue. This property and the structural features of 23G3 (two symmetrically arrayed IgE-specific binding sites) make 23G3 a potentially valuable reagent for investigating the relationship between FcepsilonRI clustering and FcepsilonRI-mediated signaling events. To develop a mathematical model of 23G3-induced aggregation of FcepsilonRI, we used fluorimetry and flow cytometry to quantitatively monitor equilibrium binding of FITC-labeled 23G3 intact Ab and its Fab' fragment to cell-surface IgE. The results indicate that IgE bound to FcepsilonRI expresses two epitopes for 23G3 binding; that 23G3 binds IgE resident on the cell surface with negative cooperativity; and that 23G3 appears to induce mostly but not exclusively noncyclic dimeric aggregates of FcepsilonRI. There is no simple relationship between receptor aggregation at equilibrium and the degranulation response. Further studies are needed to establish how 23G3-induced aggregation of IgE-FcepsilonRI correlates with cellular responses.
机译:FcepsilonR1是IgE抗体的高亲和力细胞表面受体的聚集,是嗜碱性粒细胞和肥大细胞脱粒所必需的,但并非所有受体聚集都能引发这种细胞应答。 FcepsilonRI簇上能够发出细胞反应(例如脱粒)的立体化学限制尚未完全定义。为了增进我们对FcepsilonRI聚集体影响受体信号传导特性的了解,我们研究了大鼠IgG(1kappa),IgE特异性单克隆抗体23G3与IgE-FcERI复合物在大鼠粘膜型肥大细胞(RBL)上的相互作用。 -2H3线)。我们发现23G3是有效的促分泌素。 23G3的这一特性和结构特征(两个对称排列的IgE特异性结合位点)使23G3成为研究FcepsilonRI聚类与FcepsilonRI介导的信号事件之间关系的潜在有价值的试剂。为了建立由23G3诱导的FcepsilonRI聚集的数学模型,我们使用了荧光法和流式细胞术来定量监测FITC标记的23G3完整抗体及其Fab'片段与细胞表面IgE的平衡结合。结果表明,与FcepsilonRI结合的IgE表达了23G3结合的两个表位。 23G3以负协同作用结合在细胞表面上的IgE;并且该23G3似乎主要但非唯一地诱导了FcepsilonRI的非环状二聚体聚集体。平衡时的受体聚集与脱粒反应之间没有简单的关系。需要进一步的研究来确定23G3诱导的IgE-FcepsilonRIRI聚集与细胞反应之间的关系。

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