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IκB激酶γ(IKKγ)的羧基末端区域是IKK完全激活所必需的。

The carboxyl-terminal region of IkappaB kinase gamma (IKKgamma) is required for full IKK activation.

作者信息

Makris Constantin, Roberts Jaclyn L, Karin Michael

机构信息

Laboratory of Gene Regulation and Signal Transduction, Department of Pharmacology, University of California, San Diego, La Jolla 92093-0636, USA.

出版信息

Mol Cell Biol. 2002 Sep;22(18):6573-81. doi: 10.1128/MCB.22.18.6573-6581.2002.

Abstract

IkappaB kinase gamma (IKKgamma) (also known as NEMO, Fip-3, and IKKAP-1) is the essential regulatory component of the IKK complex; it is required for NF-kappaB activation by various stimuli, including tumor necrosis factor alpha (TNF-alpha), interleukin 1 (IL-1), phorbol esters, lipopolysaccharides, and double-stranded RNA. IKKgamma is encoded by an X-linked gene, deficiencies in which may result in two human genetic disorders, incontinentia pigmenti (IP) and hypohidrotic ectodermal dysplasia with severe immunodeficiency. Subsequent to the linkage of IKKgamma deficiency to IP, we biochemically characterized the effects of a mutation occurring in an IP-affected family on IKK activity and NF-kappaB signaling. This particular mutation results in premature termination, such that the variant IKKgamma protein lacks its putative C-terminal Zn finger and, due to decreased mRNA stability, is underexpressed. Correspondingly, IKK and NF-kappaB activation by TNF-alpha and, to a lesser extent, IL-1 are reduced. Mutagenesis of the C-terminal region of IKKgamma was performed in an attempt to define the role of the putative Zn finger and other potential functional motifs in this region. The mutants were expressed in IKKgamma-deficient murine embryonic fibroblasts (MEFs) at levels comparable to those of endogenous IKKgamma in wild-type MEFs and were able to associate with IKKalpha and IKKbeta. Substitution of two leucines within a C-terminal leucine zipper motif markedly reduced IKK activation by TNF-alpha and IL-1. Another point mutation resulting in a cysteine-to-serine substitution within the putative Zn finger motif affected IKK activation by TNF-alpha but not by IL-1. These results may explain why cells that express these or similar mutant alleles are sensitive to TNF-alpha-induced apoptosis despite being able to activate NF-kappaB in response to other stimuli.

摘要

IκB激酶γ(IKKγ)(也称为NEMO、Fip-3和IKKAP-1)是IKK复合物的关键调节成分;它是多种刺激(包括肿瘤坏死因子α(TNF-α)、白细胞介素1(IL-1)、佛波酯、脂多糖和双链RNA)激活核因子κB(NF-κB)所必需的。IKKγ由一个X连锁基因编码,该基因的缺陷可能导致两种人类遗传疾病,色素失禁症(IP)和伴有严重免疫缺陷的少汗性外胚层发育不良。在将IKKγ缺陷与IP联系起来之后,我们对一个受IP影响的家族中发生的突变对IKK活性和NF-κB信号传导的影响进行了生化特征分析。这个特定的突变导致过早终止,使得变异的IKKγ蛋白缺乏其假定的C端锌指,并且由于mRNA稳定性降低而表达不足。相应地,TNF-α对IKK和NF-κB的激活作用以及IL-1在较小程度上的激活作用都降低了。对IKKγ的C端区域进行诱变,试图确定该区域假定的锌指和其他潜在功能基序的作用。这些突变体在IKKγ缺陷的小鼠胚胎成纤维细胞(MEF)中的表达水平与野生型MEF中内源性IKKγ的水平相当,并且能够与IKKα和IKKβ结合。在C端亮氨酸拉链基序中替换两个亮氨酸显著降低了TNF-α和IL-1对IKK的激活作用。另一个点突变导致假定的锌指基序内的半胱氨酸被丝氨酸取代,影响了TNF-α对IKK的激活作用,但不影响IL-1对IKK的激活作用。这些结果可能解释了为什么表达这些或类似突变等位基因的细胞尽管能够对其他刺激激活NF-κB,但对TNF-α诱导的细胞凋亡敏感。

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