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可溶性 CD23 控制人类 B 细胞中的 IgE 合成和动态平衡。

Soluble CD23 controls IgE synthesis and homeostasis in human B cells.

机构信息

Medical Research Council and Asthma UK Centre in Allergic Mechanisms of Asthma, King's College London, Guy's Hospital, London SE1 9RT, UK.

出版信息

J Immunol. 2012 Apr 1;188(7):3199-207. doi: 10.4049/jimmunol.1102689. Epub 2012 Mar 5.

Abstract

CD23, the low-affinity receptor for IgE, exists in membrane and soluble forms. Soluble CD23 (sCD23) fragments are released from membrane (m)CD23 by the endogenous metalloprotease a disintegrin and metalloprotease 10. When purified tonsil B cells are incubated with IL-4 and anti-CD40 to induce class switching to IgE in vitro, mCD23 is upregulated, and sCD23 accumulates in the medium prior to IgE synthesis. We have uncoupled the effects of mCD23 cleavage and accumulation of sCD23 on IgE synthesis in this system. We show that small interfering RNA inhibition of CD23 synthesis or inhibition of mCD23 cleavage by an a disintegrin and metalloprotease 10 inhibitor, GI254023X, suppresses IL-4 and anti-CD40-stimulated IgE synthesis. Addition of a recombinant trimeric sCD23 enhances IgE synthesis in this system. This occurs even when endogenous mCD23 is protected from cleavage by GI254023X, indicating that IgE synthesis is positively controlled by sCD23. We show that recombinant trimeric sCD23 binds to cells coexpressing mIgE and mCD21 and caps these proteins on the B cell membrane. Upregulation of IgE by sCD23 occurs after class-switch recombination, and its effects are isotype-specific. These results suggest that mIgE and mCD21 cooperate in the sCD23-mediated positive regulation of IgE synthesis on cells committed to IgE synthesis. Feedback regulation may occur when the concentration of secreted IgE becomes great enough to allow binding to mCD23, thus preventing further release of sCD23. We interpret these results with the aid of a model for the upregulation of IgE by sCD23.

摘要

CD23,即 IgE 的低亲和力受体,存在于膜结合和可溶性两种形式。膜结合型 CD23(mCD23)通过内源性金属蛋白酶 a disintegrin 和金属蛋白酶 10 释放出可溶性 CD23(sCD23)片段。当纯化的扁桃体 B 细胞在体外与 IL-4 和抗 CD40 共孵育以诱导 IgE 的类别转换时,mCD23 上调,并且 sCD23 在 IgE 合成之前积累在培养基中。我们已经在该系统中分离出 mCD23 切割和 sCD23 积累对 IgE 合成的影响。我们表明,通过 CD23 合成的小干扰 RNA 抑制或通过 a disintegrin 和金属蛋白酶 10 抑制剂 GI254023X 抑制 mCD23 切割可抑制 IL-4 和抗 CD40 刺激的 IgE 合成。添加重组三聚体 sCD23 可增强该系统中的 IgE 合成。即使当内源性 mCD23 受到 GI254023X 的保护而免于切割时,也会发生这种情况,这表明 IgE 合成受到 sCD23 的正向控制。我们表明,重组三聚体 sCD23 与共表达 mIgE 和 mCD21 的细胞结合,并在 B 细胞膜上封闭这些蛋白。sCD23 上调 IgE 的作用发生在类别转换重组之后,并且具有同种型特异性。这些结果表明,mIgE 和 mCD21 合作,通过 sCD23 介导对已承诺合成 IgE 的细胞的 IgE 合成进行正向调节。当分泌的 IgE 浓度变得足够高以允许与 mCD23 结合时,可能会发生反馈调节,从而防止进一步释放 sCD23。我们借助于 sCD23 上调 IgE 的模型来解释这些结果。

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