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具有 IKBKG/NEMO 功能获得性突变的人类树突状细胞有丝分裂原激活的蛋白激酶活性受损。

Dendritic cells from humans with hypomorphic mutations in IKBKG/NEMO have impaired mitogen-activated protein kinase activity.

机构信息

Laboratory of Host Defenses, NIAID, National Institutes of Health, Bethesda, Maryland, USA.

出版信息

Hum Mutat. 2011 Mar;32(3):318-24. doi: 10.1002/humu.21439.

Abstract

The covalent attachment of lysine 63-linked polyubiquitin to the zinc-finger domain of IKBKG/NEMO (also known as IKKγ) is necessary for full activation of NF-κB. Impairments of this biochemical mechanism explain the deleterious effects of hypomorphic NEMO mutations on NF-κB signaling function in humans suffering from X-linked ectodermal dysplasia and immunodeficiency. Nevertheless, the biological function of the NEMO zinc-finger domain in the regulation of mitogen-activated protein kinase (MAPK) activity is poorly understood. Here we show that dendritic cells from patients with EDI caused by a C-terminal E391X deletion of the zinc finger of NEMO exhibit impaired MAPK activation in response to lipopolysaccharide (LPS) stimulation. Interestingly, DCs from patients with a C417R missense mutation within the zinc finger domain of NEMO in which ubiquitination of NEMO is preserved are also defective in JNK and ERK activity following LPS stimulation. Our findings indicate that the structural integrity of the NEMO ZF domain is more important than its polyubiquitination for full activation of the MAPK. Furthermore, phosphorylation and polyubiquitination of upstream TAK1 were significantly reduced in the E391X zinc-finger deleted patients, indicating that the NEMO zinc finger may play an important role in assembling the proximal signaling complex for MAPK activation.

摘要

赖氨酸 63 位连接的多泛素与 IKBKG/NEMO(也称为 IKKγ)锌指结构域的共价连接对于 NF-κB 的完全激活是必要的。这种生化机制的缺陷解释了低能 NEMO 突变对人类 X 连锁外胚层发育不良和免疫缺陷中 NF-κB 信号功能的有害影响。然而,NEMO 锌指结构域在调节丝裂原活化蛋白激酶(MAPK)活性方面的生物学功能知之甚少。在这里,我们表明,由 NEMO 锌指 C 端 E391X 缺失引起的 EDI 患者的树突状细胞在 LPS 刺激下表现出 MAPK 激活受损。有趣的是,NEMO 锌指结构域内 C417R 错义突变的患者的 DCs,其中 NEMO 的泛素化得到保留,在 LPS 刺激后 JNK 和 ERK 活性也存在缺陷。我们的发现表明,NEMO ZF 结构域的结构完整性对于 MAPK 的完全激活比其多泛素化更为重要。此外,E391X 锌指缺失患者中上游 TAK1 的磷酸化和多泛素化显著减少,表明 NEMO 锌指可能在组装 MAPK 激活的近端信号复合物中发挥重要作用。

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