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首页> 外文期刊>The journal of immunology >Cutting Edge: Ezrin Regulates Inflammation by Limiting B Cell IL-10 Production
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Cutting Edge: Ezrin Regulates Inflammation by Limiting B Cell IL-10 Production

机译:前沿:Ezrin通过限制B细胞IL-10产生来调节炎症

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IL-10 produced by B cells is important for controlling inflammation, thus underscoring the need to identify mechanisms regulating its production. In this study, we demonstrate that conditional deletion of ezrin in B cells increases IL-10 production induced by TLR4 ligation. The MyD88-independent Toll/IL-1R domain–containing adapter inducing IFN-β–IFN regulatory factor 3 pathway is required for Ezrin-deficient B cells to produce higher IL-10 upon LPS stimulation. Treatment of B cells with a novel small-molecule inhibitor of ezrin induces its dephosphorylation and increases LPS-induced NF-κB and IFN regulatory factor 3 activation and IL-10 secretion, indicating a role for threonine 567 phosphorylation of ezrin in limiting IL-10. Loss of ezrin in B cells results in dampened proinflammatory response to a sublethal dose of LPS in vivo, which is dependent on increased IL-10 production. Taken together, our data yield new insights into molecular and membrane-cytoskeletal regulation of B cell IL-10 production and reveal ezrin as a potential therapeutic target in inflammatory diseases.
机译:B细胞产生的IL-10对于控制炎症很重要,因此强调了确定调节其产生的机制的需要。在这项研究中,我们证明B细胞中有条件的ezrin缺失会增加TLR4连接诱导的IL-10产生。依赖MyD88的Toll / IL-1R结构域适配器可以诱导IFN-β-IFN调节因子3通路,这是Ezrin缺陷型B细胞在LPS刺激下产生更高的IL-10所必需的。用新型的ezrin小分子抑制剂处理B细胞可诱导其去磷酸化并增加LPS诱导的NF-κB和IFN调节因子3的激活以及IL-10的分泌,这表明ezrin的苏氨酸567磷酸化在限制IL-10中的作用。 B细胞中ezrin的丢失导致体内对亚致死剂量LPS​​的促炎反应减弱,这取决于IL-10产生的增加。综上所述,我们的数据对B细胞IL-10产生的分子和膜细胞骨架调节产生了新见解,并揭示了ezrin作为炎症性疾病的潜在治疗靶标。

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