【2h】

Signal processing by its coil zipper domain activates IKKγ

机译:通过其线圈拉链域进行信号处理可激活IKKγ

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摘要

NF-κB activation occurs upon degradation of its inhibitor I-κB and requires prior phosphorylation of the inhibitor by I-κB kinase (IKK). Activity of IKK is governed by its noncatalytic subunit IKKγ. Signaling defects due to missense mutations in IKKγ have been correlated to its inability to either become ubiquitylated or bind ubiquitin noncovalently. Because the relative contribution of these events to signaling had remained unknown, we have studied mutations in the coil-zipper (CoZi) domain of IKKγ that either impair signaling or cause constitutive NF-κB activity. Certain signaling-deficient alleles neither bound ubiquitin nor were they ubiquitylated by TRAF6. Introducing an activating mutation into those signaling-impaired alleles restored their ubiquitylation and created mutants constitutively activating NF-κB without repairing the ubiquitin-binding defect. Constitutive activity therefore arises downstream of ubiquitin binding but upstream of ubiquitylation. Such constitutive activity reveals a signal-processing function for IKKγ beyond that of a mere ubiquitin-binding adaptor. We propose that this signal processing may involve homophilic CoZi interactions as suggested by the enhanced affinity of CoZi domains from constitutively active IKKγ.
机译:NF-κB活化会在其抑制剂I-κB降解时发生,并且需要事先通过I-κB激酶(IKK)对抑制剂进行磷酸化。 IKK的活性受其非催化亚基IKKγ支配。由于IKKγ的错义突变而引起的信号缺陷已与其无法泛素化或非共价结合泛素的能力有关。由于这些事件对信号传导的相对贡献仍然未知,因此我们研究了IKKγ的卷曲拉链(CoZi)结构域中的突变,这些突变会损害信号传导或导致组成型NF-κB活性。某些信号不足的等位基因既不结合泛素也不被TRAF6泛素化。向那些信号受损的等位基因中引入激活突变可恢复其泛素化,并产生组成型激活NF-κB的突变体而无需修复泛素结合缺陷。因此,组成性活性出现在遍在蛋白结合的下游但遍在泛素化的上游。这种组成性活性揭示了IKKγ的信号处理功能超出了单纯的泛素结合衔接子。我们提议该信号处理可能涉及同源CoZi相互作用,这是由组成型活性IKKγ产生的CoZi域的亲和力增强所暗示的。

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