Department of Biological Sciences, Institute of Structural Molecular Biology, Birkbeck College, London, UK.
Genitourinary Malignancies Research Center, Lerner Research Institute, Cleveland Clinic, Cleveland, Ohio, USA.
J Biol Chem. 2022 Jun;298(6):102012. doi: 10.1016/j.jbc.2022.102012. Epub 2022 May 5.
Constitutive activation of the canonical NF-κB signaling pathway is a major factor in Kaposi's sarcoma-associated herpes virus pathogenesis where it is essential for the survival of primary effusion lymphoma. Central to this process is persistent upregulation of the inhibitor of κB kinase (IKK) complex by the virally encoded oncoprotein vFLIP. Although the physical interaction between vFLIP and the IKK kinase regulatory component essential for persistent activation, IKKγ, has been well characterized, it remains unclear how the kinase subunits are rendered active mechanistically. Using a combination of cell-based assays, biophysical techniques, and structural biology, we demonstrate here that vFLIP alone is sufficient to activate the IKK kinase complex. Furthermore, we identify weakly stabilized, high molecular weight vFLIP-IKKγ assemblies that are key to the activation process. Taken together, our results are the first to reveal that vFLIP-induced NF-κB activation pivots on the formation of structurally specific vFLIP-IKKγ multimers which have an important role in rendering the kinase subunits active through a process of autophosphorylation. This mechanism of NF-κB activation is in contrast to those utilized by endogenous cytokines and cellular FLIP homologues.
经典 NF-κB 信号通路的组成性激活是卡波氏肉瘤相关疱疹病毒发病机制的一个主要因素,对于原发性渗出淋巴瘤的存活至关重要。这一过程的核心是病毒编码的癌蛋白 vFLIP 持续上调 IκB 激酶(IKK)复合物。尽管 vFLIP 与 IKK 激酶调节亚基之间的物理相互作用对于持续激活至关重要,但 IKKγ 的物理相互作用已得到很好的描述,但仍不清楚激酶亚基在机制上是如何被激活的。在这里,我们使用细胞测定、生物物理技术和结构生物学的组合,证明了 vFLIP 本身足以激活 IKK 激酶复合物。此外,我们鉴定了弱稳定的高分子量 vFLIP-IKKγ 组装体,这些组装体是激活过程的关键。总之,我们的研究结果首次揭示了 vFLIP 诱导的 NF-κB 激活取决于结构特异性 vFLIP-IKKγ 多聚体的形成,这些多聚体通过自身磷酸化过程在使激酶亚基具有活性方面发挥重要作用。这种 NF-κB 激活机制与内源性细胞因子和细胞 FLIP 同源物所利用的机制不同。