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鉴定受遗传性皮肤病交界性营养不良影响的新 NEMO/TRAF6 界面。

Identification of a new NEMO/TRAF6 interface affected in incontinentia pigmenti pathology.

机构信息

INSERM U781, Hôpital Necker-Enfants Malades and Université Paris-Descartes, 75015 Paris, France.

出版信息

Hum Mol Genet. 2010 Aug 15;19(16):3138-49. doi: 10.1093/hmg/ddq222. Epub 2010 Jun 7.

Abstract

NF-kappaB Essential MOdulator (NEMO) has been shown to play a critical role in NF-kappaB activation, as the regulatory subunit of IkappaB kinase. Upon cell stimulation, NEMO can be modified through phosphorylation, sumoylation or ubiquitination. In the latter case, not much is known regarding the exact function of this posttranslational modification. One of the E3 ligase responsible for K63-linked NEMO polyubiquitination is TRAF6, which participates in several signaling pathways controlling immunity, osteoclastogenesis, skin development and brain functions. We previously observed a potentially important interaction between NEMO and TRAF6. In this study, we defined in more detail the domains required for this interaction, uncovering a new binding site for TRAF6 located at the amino-terminus of NEMO and recognized by the coiled-coil domain of TRAF6. This site appears to work in concert with the previously identified NEMO ubiquitin-binding domain which binds polyubiquitinated chains, suggesting a dual mode of TRAF6 recognition. We also showed that E57K mutation of NEMO found in a mild form of the genetic disease incontinentia pigmenti, resulted in impaired TRAF6 binding and IL-1beta signaling. In contrast, activation of NF-kappaB by TNF-alpha was not affected. These data demonstrate that NEMO/TRAF6 interaction has physiological relevance and might represent a new target for therapeutic purposes.

摘要

NF-κB 必需调节剂 (NEMO) 已被证明在 NF-κB 激活中发挥关键作用,作为 IκB 激酶的调节亚基。在细胞刺激后,NEMO 可以通过磷酸化、SUMO 化或泛素化进行修饰。在后一种情况下,对于这种翻译后修饰的确切功能知之甚少。负责 K63 连接的 NEMO 多泛素化的 E3 连接酶之一是 TRAF6,它参与控制免疫、破骨细胞生成、皮肤发育和大脑功能的几种信号通路。我们之前观察到 NEMO 和 TRAF6 之间存在潜在的重要相互作用。在这项研究中,我们更详细地定义了这种相互作用所需的结构域,揭示了 NEMO 氨基末端的一个新的 TRAF6 结合位点,该位点被 TRAF6 的卷曲螺旋结构域识别。该位点似乎与先前鉴定的 NEMO 泛素结合结构域协同作用,该结构域结合多泛素化链,提示 TRAF6 识别的双重模式。我们还表明,在遗传性疾病色素失禁症的轻度形式中发现的 NEMO E57K 突变导致 TRAF6 结合和 IL-1β信号受损。相比之下,TNF-α 激活的 NF-κB 不受影响。这些数据表明,NEMO/TRAF6 相互作用具有生理相关性,可能代表治疗的新靶点。

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