Journo Chloé, Filipe Josina, About Frédégonde, Chevalier Sébastien A, Afonso Philippe V, Brady John N, Flynn David, Tangy Frédéric, Israël Alain, Vidalain Pierre-Olivier, Mahieux Renaud, Weil Robert
Unité d'Epidémiologie et Physiopathologie des Virus Oncogènes, CNRS URA 3015, Institut Pasteur, Paris, France.
PLoS Pathog. 2009 Jul;5(7):e1000521. doi: 10.1371/journal.ppat.1000521. Epub 2009 Jul 17.
Nuclear factor (NF)-kappaB is a major survival pathway engaged by the Human T-Lymphotropic Virus type 1 (HTLV-1) Tax protein. Tax1 activation of NF-kappaB occurs predominantly in the cytoplasm, where Tax1 binds NF-kappaB Essential Modulator (NEMO/IKKgamma) and triggers the activation of IkappaB kinases. Several independent studies have shown that Tax1-mediated NF-kappaB activation is dependent on Tax1 ubiquitination. Here, we identify by co-immunoprecipitation assays NEMO-Related Protein (NRP/Optineurin) as a binding partner for Tax1 in HTLV-1 infected and Tax1/NRP co-expressing cells. Immunofluorescence studies reveal that Tax1, NRP and NEMO colocalize in Golgi-associated structures. The interaction between Tax1 and NRP requires the ubiquitin-binding activity of NRP and the ubiquitination sites of Tax1. In addition, we observe that NRP increases the ubiquitination of Tax1 along with Tax1-dependent NF-kappaB signaling. Surprisingly, we find that in addition to Tax1, NRP interacts cooperatively with the Tax1 binding protein TAX1BP1, and that NRP and TAX1BP1 cooperate to modulate Tax1 ubiquitination and NF-kappaB activation. Our data strongly suggest for the first time that NRP is a critical adaptor that regulates the assembly of TAX1BP1 and post-translationally modified forms of Tax1, leading to sustained NF-kappaB activation.
核因子(NF)-κB是1型人类嗜T淋巴细胞病毒(HTLV-1)Tax蛋白激活的主要生存途径。Tax1对NF-κB的激活主要发生在细胞质中,在此处Tax1与NF-κB必需调节因子(NEMO/IKKγ)结合并触发IκB激酶的激活。多项独立研究表明,Tax1介导的NF-κB激活依赖于Tax1的泛素化。在此,我们通过免疫共沉淀分析确定,在HTLV-1感染细胞和Tax1/NRP共表达细胞中,NEMO相关蛋白(NRP/视黄醛结合蛋白)是Tax1的结合伴侣。免疫荧光研究显示,Tax1、NRP和NEMO共定位于高尔基体相关结构。Tax1与NRP之间的相互作用需要NRP的泛素结合活性和Tax1的泛素化位点。此外,我们观察到NRP与Tax1依赖性NF-κB信号传导一起增加Tax1的泛素化。令人惊讶的是,我们发现除了Tax1,NRP还与Tax1结合蛋白TAX1BP1协同相互作用,并且NRP和TAX1BP1共同调节Tax1的泛素化和NF-κB激活。我们的数据首次有力地表明,NRP是一种关键衔接蛋白,可调节TAX1BP1的组装以及Tax1的翻译后修饰形式,从而导致NF-κB的持续激活。