首页> 美国卫生研究院文献>Journal of Virology >The MC160 Protein Expressed by the Dermatotropic Poxvirus Molluscum Contagiosum Virus Prevents Tumor Necrosis Factor Alpha-Induced NF-κB Activation via Inhibition of I Kappa Kinase Complex Formation
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The MC160 Protein Expressed by the Dermatotropic Poxvirus Molluscum Contagiosum Virus Prevents Tumor Necrosis Factor Alpha-Induced NF-κB Activation via Inhibition of I Kappa Kinase Complex Formation

机译:脱皮性痘病毒软体动物感染的表达的MC160蛋白通过抑制Iκ激酶复合物的形成来预防肿瘤坏死因子α诱导的NF-κB活化。

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摘要

The pluripotent cytokine tumor necrosis factor alpha (TNF-α) binds to its cognate TNF receptor I (TNF-RI) to stimulate inflammation via activation of the NF-κB transcription factor. To prevent the detrimental effects of TNF-α in keratinocytes infected with the molluscum contagiosum virus (MCV), this poxvirus is expected to produce proteins that block at least one step of the TNF-RI signal transduction pathway. One such product, the MC160 protein, is predicted to interfere with this cellular response because of its homology to other proteins that regulate TNF-RI-mediated signaling. We report here that expression of MC160 molecules did significantly reduce TNF-α-mediated NF-κB activation in 293T cells, as measured by gene reporter and gel mobility shift assays. Since we observed that MC160 decreased other NF-κB activation pathways, namely those activated by receptor-interacting protein, TNF receptor-associated factor 2, NF-κB-inducing kinase, or MyD88, we hypothesized that the MC160 product interfered with I kappa kinase (IKK) activation, an event common to multiple signal transduction pathways. Indeed, MC160 protein expression was associated with a reduction in in vitro IKK kinase activity and IKK subunit phosphorylation. Further, IKK1-IKK2 interactions were not detected in MC160-expressing cells, under conditions demonstrated to induce IKK complex formation, but interactions between the MC160 protein and the major IKK subunits were undetectable. Surprisingly, MC160 expression correlated with a decrease in IKK1, but not IKK2 levels, suggesting a mechanism for MC160 disruption of IKK1-IKK2 interactions. MCV has probably retained its MC160 gene to inhibit NF-κB activation by interfering with signaling via multiple biological mediators. In the context of an MCV infection in vivo, MC160 protein expression may dampen the cellular production of proinflammatory molecules and enhance persistent infections in host keratinocytes.
机译:多能细胞因子肿瘤坏死因子α(TNF-α)与其同源的TNF受体I(TNF-RI)结合,通过激活NF-κB转录因子刺激炎症。为了防止TNF-α在感染了软体动物感染的角质形成细胞中产生有害作用,预期这种痘病毒会产生阻断TNF-RI信号转导途径至少一步的蛋白质。预测此类产品之一MC160蛋白会干扰这种细胞反应,因为它与调节TNF-RI介导的信号传导的其他蛋白具有同源性。我们在这里报告说,MC160分子的表达确实显着降低了293T细胞中TNF-α介导的NF-κB的活化,如通过基因报告基因和凝胶迁移率检测所测。由于我们观察到MC160降低了其他NF-κB激活途径,即被受体相互作用蛋白,TNF受体相关因子2,NF-κB诱导激酶或MyD88激活的途径,因此我们假设MC160产物干扰了Iκ激酶。 (IKK)激活,这是多个信号转导途径共有的事件。实际上,MC160蛋白表达与体外IKK激酶活性降低和IKK亚基磷酸化有关。此外,在证明可诱导IKK复合物形成的条件下,未在表达MC160的细胞中检测到IKK1-IKK2相互作用,但无法检测到MC160蛋白与主要IKK亚基之间的相互作用。出人意料的是,MC160的表达与IKK1的降低相关,但与IKK2的水平不相关,这提示了MC160破坏IKK1-IKK2相互作用的机制。 MCV可能保留了其MC160基因,通过干扰多种生物介质的信号传导来抑制NF-κB的活化。在体内MCV感染的情况下,MC160蛋白表达可能会抑制促炎分子的细胞产生并增强宿主角质形成细胞中的持续感染。

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