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Identification of TRAF6-dependent NEMO polyubiquitination sites through analysis of a new NEMO mutation causing incontinentia pigmenti

机译:通过分析导致色素失禁的新NEMO突变来鉴定TRAF6依赖性NEMO多泛素化位点

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摘要

The regulatory subunit NEMO is involved in the mechanism of activation of IκB kinase (IKK), the kinase complex that controls the NF-κB signaling pathway. During this process, NEMO is modified post-translationally through K63-linked polyubiquitination. We report the molecular characterization of a new missense mutation of NEMO (A323P) which causes a severe form of incontinentia pigmenti (OMIM#308300), an inherited disease characterized predominantly by skin inflammation. The A323P mutation was found to impair TNF-, IL-1-, LPS- and PMA/ionomycin-induced NF-κB activation, as well as to disrupt TRAF6-dependent NEMO polyubiquitination, due to a defective NEMO/TRAF6 interaction. Mutagenesis identified the affected ubiquitination sites as three lysine residues located in the vicinity of A323. Unexpectedly, these lysines were ubiquitinated together with two previously identified lysines not connected to TRAF6. Mutation of all these ubiquitination sites severely impaired NF-κB activation induced by stimulation with IL-1, LPS, Nod2/RICK or serum/LPA. In contrast, mutation at all of these sites had only a limited effect on stimulation by TNF. These findings indicate that post-translational modification of NEMO through K63-linked polyubiquitination is a key event in IKK activation and that perturbation of this step may cause human pathophysiology.
机译:调控亚基NEMO参与了IκB激酶(IKK)的激活机制,IKK是控制NF-κB信号通路的激酶复合物。在此过程中,NEMO通过K63连接的多聚泛素化被翻译后修饰。我们报告了新的错义突变的NEMO(A323P)的分子特征,该突变导致严重形式的色素失禁(OMIM#308300),一种以皮肤炎症为特征的遗传性疾病。发现由于缺陷的NEMO / TRAF6相互作用,A323P突变会损害TNF-,IL-1,LPS-和PMA /离子霉素诱导的NF-κB活化,并破坏TRAF6依赖性NEMO多聚泛素化。诱变将受影响的泛素化位点鉴定为位于A323附近的三个赖氨酸残基。出乎意料的是,这些赖氨酸与两个先前未与TRAF6连接的赖氨酸一起泛素化。所有这些泛素化位点的突变都严重损害了IL-1,LPS,Nod2 / RICK或血清/ LPA刺激引起的NF-κB活化。相比之下,所有这些位点的突变对TNF刺激的作用有限。这些发现表明,通过K63连接的多聚泛素化作用,NEMO的翻译后修饰是IKK激活中的关键事件,该步骤的扰动可能会导致人类病理生理。

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