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首页> 外文期刊>The Journal of Immunology: Official Journal of the American Association of Immunologists >The Zinc Finger Mutation C417R of I-kappaB Kinase gamma Impairs Lipopolysaccharide- and TNF-Mediated NF-kappaB Activation through Inhibiting Phosphorylation of the I-KB Kinase beta Activation Loop
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The Zinc Finger Mutation C417R of I-kappaB Kinase gamma Impairs Lipopolysaccharide- and TNF-Mediated NF-kappaB Activation through Inhibiting Phosphorylation of the I-KB Kinase beta Activation Loop

机译:I-kappaB激酶γ的锌指突变C417R通过抑制I-KB激酶β激活环的磷酸化而损害脂多糖和TNF介导的NF-kappaB的激活。

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摘要

The activation of the I-kappaB kinase (IKK) complex by TNF or LPS stimulates phosphorylation and degradation of I-kappaBalpha,leading to the nuclear translocation of NF-kappaB.The IKK complex is mainly composed of two catalytic subunits,IKKalpha and IKKbeta,and a chaperon subunit IKKgamma.Although IKKgamma does not have catalytic activity,it is essential for IKK activation induced by multiple stimuli.Importantly,the key residue cysteine 417 at the zinc finger domain of IKKgamma has been found to be mutated to arginine (IKKgammaC417R) in a human genetic disorder called the anhydrotic ectodermal dysplasia with immunodeficiency.To understand the underlying mechanisms of immunodeficiency,we examined whether the IKKgammaC417R mutant modified IKK activation and NF-kappaB transcription stimulated by LPS or TNF in human monocytes.We found that overexpression of IKKgammaC417R severely impaired LPS- and TNF-induced I-KBa phosphorylation and degradation in a dominant-negative fashion.Also,LPS- and TNF-induced NF-kappaB transcription was inhibited by IKKgammaC417R.The reconstitution of IKKgamma,but not IKKgammaC417R,in IKKgamma-deficient cells restored NF-kappaB signaling,indicating the zinc finger structure of IKKgamma plays a key role in IKK activation.Moreover,C417R mutation in IKKgamma abolished both LPS- and TNF-induced phosphorylation of the activation loop of IKKbeta.Collectively,our results indicated that the zinc finger structure of IKKgamma plays a key role in LPS- and TNF-induced NF-kappaB activation.The anhydrotic ectodermal dysplasia with immunodeficiency patients' immunodeficiency may be associated with NF-kappaB defect in response to bacterial stimulation.
机译:TNF或LPS激活I-kappaB激酶(IKK)复合物会刺激I-kappaBalpha的磷酸化和降解,从而导致NF-kappaB的核易位。IKK复合物主要由两个催化亚基IKKalpha和IKKbeta组成,尽管IKKgamma不具有催化活性,但它对于多种刺激诱导的IKK激活至关重要。重要的是,已发现IKKgamma锌指结构域的关键残基半胱氨酸417突变为精氨酸(IKKgammaC417R)为了了解免疫缺陷的潜在机制,我们研究了IKKgammaC417R突变体是否修饰了LPS或TNF刺激的人单核细胞中的IKK活化和NF-κB转录。我们发现IKKgammaC417R过表达LPS和TNF导致的LPS和TNF诱导的I-KBa磷酸化和降解严重受损。 d TNF诱导的NF-κB转录被IKKgammaC417R抑制。在IKKgamma缺陷细胞中重建IKKgamma而不是IKKgammaC417R可以恢复NF-kappaB信号传导,这表明IKKgamma的锌指结构在IKK激活中起关键作用。 IKKgamma中的C417R突变消除了LPS和TNF诱导的IKKbeta激活环的磷酸化。总的来说,我们的结果表明IKKgamma的锌指结构在LPS和TNF诱导的NF-kappaB激活中起关键作用。免疫缺陷患者的外胚层发育不良患者的免疫缺陷可能与细菌刺激引起的NF-κB缺陷有关。

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