首页> 美国卫生研究院文献>other >Mutation of Non-Essential Cysteines Shows that NF-κB Essential Modulator (NEMO) Forms a Constitutive Noncovalent Dimer that Binds IκB Kinase-β (IKKβ) with High Affinity
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Mutation of Non-Essential Cysteines Shows that NF-κB Essential Modulator (NEMO) Forms a Constitutive Noncovalent Dimer that Binds IκB Kinase-β (IKKβ) with High Affinity

机译:非必需半胱氨酸的突变表明NF-κB必需调节剂(NEMO)形成了组成性非共价二聚体该二聚体以高亲和力结合了IκB激酶-β(IKKβ)。

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摘要

NEMO (NF-κB essential modulator) associates with the catalytic subunits IKKα and IKKβ to form the IκB kinase (IKK) complex, and is a key regulator of NF-κB pathway signaling. Biochemical and structural characterization of NEMO has been challenging, however, leading to conflicting data on basic biochemical properties such as the oligomeric state of active NEMO and its binding affinity for IKKβ. We show that up to seven of NEMO’s 11 cysteine residues can be mutated to generate recombinant full-length NEMO that is highly soluble and active. Using a fluorescence anisotropy binding assay we show that full-length NEMO binds a 44-mer peptide encompassing residues 701-745 of IKKβ with KD = 2.2 ± 0.8 nM. The IKKβ binding affinities of mutants with five and seven Cys-to-Ala substitutions are indistinguishable from that of wild-type NEMO. Moreover, when expressed in NEMO −/− fibroblasts, the 5xAla and 7xAla NEMO mutants can interact with cellular IKKβ and restore NF-κB signaling to provide protection against TNFα-induced cell death. Treatment of the NEMO-reconstituted cells with H2O2 led to formation of covalent dimers for wild-type NEMO and the 5xAla mutant, but not for the 7xAla mutant, confirming that Cys54 and/or Cys347 can mediate inter-chain disulfide bonding. However, the IKKβ binding affinity of NEMO is unaffected by the presence or absence of inter-chain disulfide bonding at Cys54 – which lies within the IKKβ binding domain of NEMO – or at Cys347, indicating that NEMO exists as a noncovalent dimer independent of the redox state of its cysteines. This conclusion was corroborated by the observation that the secondary structure content of NEMO and its thermal stability were independent of the presence or absence of inter-chain disulfide bonds.
机译:NEMO(NF-κB必需调节剂)与催化亚基IKKα和IKKβ结合形成IκB激酶(IKK)复合物,并且是NF-κB信号通路的关键调节剂。 NEMO的生化和结构表征一直具有挑战性,但是,导致有关基本生化特性(例如活性NEMO的寡聚状态及其对IKKβ的结合亲和力)的数据相互矛盾。我们显示,NEMO的11个半胱氨酸残基中有多达7个可以突变,以生成重组的全长NEMO,其高度可溶且具有活性。使用荧光各向异性结合测定法,我们显示全长NEMO以KD = 2.2±0.8 nM结合包含IKKβ残基701-745的44-mer肽。具有5个和7个Cys-Ala取代的突变体的IKKβ结合亲和力与野生型NEMO的IKKβ结合亲和力没有区别。此外,当在NEMO-/-成纤维细胞中表达时,5xAla和7xAla NEMO突变体可以与细胞IKKβ相互作用并恢复NF-κB信号传导,从而提供针对TNFα诱导的细胞死亡的保护作用。用H2O2处理NEMO重构的细胞导致形成野生型NEMO和5xAla突变体的共价二聚体,而不是7xAla突变体,这证实Cys54和/或Cys347可介导链间二硫键。但是,NEMO的IKKβ结合亲和力不受Cys54(位于NEMO的IKKβ结合域之内)或Cys347处链间二硫键的存在或不存在的影响,表明NEMO以独立于氧化还原的非共价二聚体形式存在半胱氨酸的状态。 NEMO的二级结构含量及其热稳定性与链间二硫键的存在与否无关,这证实了这一结论。

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