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Molluscum Contagiosum Virus Protein MC005 Inhibits NF-kappa B Activation by Targeting NEMO-Regulated I kappa B Kinase Activation

机译:传染性软疣病毒蛋白mC005通过靶向NEmO调节的IκB激酶激活来抑制NF-κB活化

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摘要

Molluscum contagiosum virus (MCV), the only known extant human-adapted poxvirus, causes a long-duration infection characterized by skin lesions that typically display an absence of inflammation despite containing high titers of live virus. Despite this curious presentation, MCV is very poorly characterized in terms of host-pathogen interactions. The absence of inflammation around MCV lesions suggests the presence of potent inhibitors of human antiviral immunity and inflammation. However, only a small number of MCV immunomodulatory genes have been characterized in detail. It is likely that many more remain to be discovered, given the density of such sequences in other poxvirus genomes. NF-kappa B activation occurs in response to both virus-induced pattern recognition receptor (PRR) signaling and cellular activation by virus-induced proinflammatory cytokines like tumor necrosis factor and interleukin-1. Activated NF-kappa B drives cytokine and interferon gene expression, leading to inflammation and virus clearance. We report that MC005, which has no orthologs in other poxvirus genomes, is a novel inhibitor of PRR- and cytokine-stimulated NF-kappa B activation. MC005 inhibited NF-kappa B proximal to the I kappa B kinase (IKK) complex, and unbiased affinity purification revealed that MC005 interacts with the IKK subunit NEMO (NF-kappa B essential modulator). MC005 binding to NEMO prevents the conformational priming of the IKK complex that occurs when NEMO binds to ubiquitin chains during pathway activation. These data reveal a novel mechanism of poxvirus inhibition of human innate immunity, validate current dynamic models of NEMO-dependent IKK complex activation, and further clarify how the human-adapted poxvirus MCV can so effectively evade antiviral immunity and suppress inflammation to persist in human skin lesions. IMPORTANCE Poxviruses adapt to specific hosts over time, evolving and tailoring elegantly precise inhibitors of the rate-limiting steps within the signaling pathways that control innate immunity and inflammation. These inhibitors reveal new features of the antiviral response, clarify existing models of signaling regulation while offering potent new tools for approaching therapeutic intervention in autoimmunity and inflammatory disease. Molluscum contagiosum virus (MCV) is the only known extant poxvirus specifically adapted to human infection and appears adept at evading normal human antiviral responses, yet it remains poorly characterized. We report the identification of MCV protein MC005 as an inhibitor of the pathways leading to the activation of NF-kappa B, an essential regulator of innate immunity. Further, identification of the mechanism of inhibition of NF-kappa B by MC005 confirms current models of the complex way in which NF-kappa B is regulated and greatly expands our understanding of how MCV so effectively evades human immunity.
机译:软体动物感染性软腐病毒(MCV)是唯一已知的现存人类适应性痘病毒,它会导致长期感染,其特征是尽管含有高滴度的活病毒,但皮肤病变通常没有炎症。尽管出现了这种奇怪的现象,但在宿主-病原体相互作用方面,MCV的特征仍然很差。 MCV病变周围无炎症提示存在有效的人类抗病毒免疫和炎症抑制剂。然而,仅少数特征的MCV免疫调节基因已被详细表征。鉴于其他痘病毒基因组中此类序列的密度,可能还有更多的待发现。 NF-κB激活是对病毒诱导的模式识别受体(PRR)信号传导和病毒诱导的促炎性细胞因子(如肿瘤坏死因子和白介素-1)的细胞激活的响应。活化的NF-κB驱动细胞因子和干扰素基因表达,从而导致炎症和病毒清除。我们报告说,MC005,在其他痘病毒基因组中没有直系同源物,是PRR和细胞因子刺激的NF-κB激活的新型抑制剂。 MC005抑制了IκB激酶(IKK)复合体附近的NF-κB,无偏亲和纯化显示MC005与IKK亚基NEMO(NF-κB必需调节剂)相互作用。 MC005与NEMO的结合可防止IKK复合物的构象引发,该途径在通路激活期间NEMO与泛素链结合时发生。这些数据揭示了痘病毒抑制人类先天免疫的新机制,验证了依赖NEMO的IKK复合物激活的当前动态模型,并进一步阐明了适应人类的痘病毒MCV如何有效逃避抗病毒免疫力并抑制炎症持续存在于人的皮肤中病变。重要事项痘病毒会随着时间的推移适应特定的宿主,从而在控制先天免疫和炎症的信号传导途径内发展和定制出精确精确的限速步骤抑制剂。这些抑制剂揭示了抗病毒反应的新功能,阐明了现有的信号调节模型,同时为在自身免疫性疾病和炎症性疾病中进行治疗性干预提供了有效的新工具。传染性软体动物病毒(Molluscum contagiosum virus,MCV)是唯一已知的现存专门针对人类感染的现存痘病毒,似乎擅长逃避正常的人类抗病毒反应,但其特征仍然很差。我们报告了鉴定MCV蛋白MC005作为导致NF-κB激活的途径的抑制剂,NF-κB是先天免疫的重要调节剂。此外,通过MC005抑制NF-κB的机理的鉴定证实了目前调控NF-κB的复杂方式的模型,并极大地扩展了我们对MCV如何有效逃避人类免疫力的理解。

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