Institut Pasteur, Unité de Biochimie Structurale et Cellulaire, Department of Structural Biology and Chemistry, CNRS, UMR 3528, 25/28 rue du Dr. Roux 75724 Paris cedex 15, France; Université Pierre et Marie Curie, Cellule Pasteur UPMC, rue du Dr. Roux 75015 Paris, France.
Institut Pasteur, Unité de Biochimie Structurale et Cellulaire, Department of Structural Biology and Chemistry, CNRS, UMR 3528, 25/28 rue du Dr. Roux 75724 Paris cedex 15, France.
J Biol Chem. 2013 Nov 22;288(47):33722-33737. doi: 10.1074/jbc.M113.483305. Epub 2013 Oct 7.
Hypomorphic mutations in the X-linked human NEMO gene result in various forms of anhidrotic ectodermal dysplasia with immunodeficiency. NEMO function is mediated by two distal ubiquitin binding domains located in the regulatory C-terminal domain of the protein: the coiled-coil 2-leucine zipper (CC2-LZ) domain and the zinc finger (ZF) domain. Here, we investigated the effect of the D406V mutation found in the NEMO ZF of an ectodermal dysplasia with immunodeficiency patients. This point mutation does not impair the folding of NEMO ZF or mono-ubiquitin binding but is sufficient to alter NEMO function, as NEMO-deficient fibroblasts and Jurkat T lymphocytes reconstituted with full-length D406V NEMO lead to partial and strong defects in NF-κB activation, respectively. To further characterize the ubiquitin binding properties of NEMO ZF, we employed di-ubiquitin (di-Ub) chains composed of several different linkages (Lys-48, Lys-63, and linear (Met-1-linked)). We showed that the pathogenic mutation preferentially impairs the interaction with Lys-63 and Met-1-linked di-Ub, which correlates with its ubiquitin binding defect in vivo. Furthermore, sedimentation velocity and gel filtration showed that NEMO ZF, like other NEMO related-ZFs, binds mono-Ub and di-Ub with distinct stoichiometries, indicating the presence of a new Ub site within the NEMO ZF. Extensive mutagenesis was then performed on NEMO ZF and characterization of mutants allowed the proposal of a structural model of NEMO ZF in interaction with a Lys-63 di-Ub chain.
X 连锁人类 NEMO 基因的功能减弱突变导致各种形式的无汗性外胚层发育不良伴免疫缺陷。NEMO 的功能是通过位于蛋白质调节 C 端结构域中的两个远端泛素结合结构域介导的:卷曲螺旋 2-亮氨酸拉链(CC2-LZ)结构域和锌指(ZF)结构域。在这里,我们研究了在免疫缺陷性外胚层发育不良患者的 NEMO ZF 中发现的 D406V 突变的影响。该点突变不会损害 NEMO ZF 的折叠或单泛素结合,但足以改变 NEMO 的功能,因为用全长 D406V NEMO 重建的 NEMO 缺陷成纤维细胞和 Jurkat T 淋巴细胞分别导致 NF-κB 激活的部分和强烈缺陷。为了进一步表征 NEMO ZF 的泛素结合特性,我们使用了由几种不同连接(Lys-48、Lys-63 和线性(Met-1 连接))组成的二泛素(di-Ub)链。我们表明,致病性突变优先损害与 Lys-63 和 Met-1 连接的 di-Ub 的相互作用,这与其体内的泛素结合缺陷相关。此外,沉降速度和凝胶过滤表明,NEMO ZF 与其他 NEMO 相关 ZF 一样,以不同的化学计量比结合单泛素和二泛素,表明在 NEMO ZF 内存在新的 Ub 结合位点。然后对 NEMO ZF 进行了广泛的突变,并对突变体的特性进行了表征,提出了 NEMO ZF 与 Lys-63 二泛素链相互作用的结构模型。