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Poxvirus Protein MC132 from Molluscum Contagiosum Virus Inhibits NF-kappa B Activation by Targeting p65 for Degradation

机译:来自软疣传染病毒的痘病毒蛋白mC132通过靶向p65降解NF-κB活化

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摘要

Molluscum contagiosum virus (MCV) is unique in being the only known extant, human-adapted poxvirus, yet to date, it is very poorly characterized in terms of host-pathogen interactions. MCV causes persistent skin lesions filled with live virus, but these are generally immunologically silent, suggesting the presence of potent inhibitors of human antiviral immunity and inflammation. Fewer than five MCV immunomodulatory genes have been characterized in detail, but it is likely that many more remain to be discovered given the density of such sequences in all well-characterized poxviruses. Following virus infection, NF-kappa B activation occurs in response to both pattern recognition receptor (PRR) signaling and cellular activation by virus-elicited proinflammatory cytokines, such as tumor necrosis factor (TNF). As such, NF-kappa B activation is required for virus detection, antiviral signaling, inflammation, and clearance of viral infection. Hence, we screened a library of MCV genes for effects on TNF-stimulated NF-kappa B activation. This revealed MC132, a unique protein with no orthologs in other poxviral genomes, as a novel inhibitor of NF-kappa B. Interestingly, MC132 also inhibited PRR-and virus-activated NF-kappa B, since MC132 interacted with the NF-kappa B subunit p65 and caused p65 degradation. Unbiased affinity purification to identify host targets of MC132 revealed that MC132 acted by targeting NF-kappa B p65 for ubiquitin-dependent proteasomal degradation by recruiting p65 to a host Cullin-5/Elongin B/Elongin C complex. These data reveal a novel mechanism for poxviral inhibition of human innate immunity and further clarify how the human-adapted poxvirus MCV can so effectively evade antiviral immunity to persist in skin lesions. IMPORTANCE How human cells detect and respond to viruses is incompletely understood, but great leaps in our understanding have been made by studying both the early innate immune response and the ways that viruses evade it. Poxviruses adapt to specific hosts over time by evolving elegantly precise inhibitors targeting the rate-limiting steps of immunity. These inhibitors reveal new features of the antiviral response while also offering potent new tools for approaching therapeutic intervention in autoimmunity. Molluscum contagiosum virus (MCV) is the only known extant poxvirus specifically adapted to human infection, yet it remains poorly characterized. In this study, we report the identification of the MCV protein MC132 as a potent inhibitor of NF-kappa B, an essential regulatory crux of innate immunity. Furthermore, identification of the mechanism of inhibition of NF-kappa B by MC132 reveals an elegant example of convergent evolution with human herpesviruses. This discovery greatly expands our understanding of how MCV so effectively evades human immunity.
机译:软体动物传染性软体动物(Molluscum contagiosum virus,MCV)是唯一已知的现存的人类适应性痘病毒,但迄今为止,它在宿主-病原体相互作用方面的特征非常差。 MCV会引起充满活病毒的持续性皮肤损伤,但通常在免疫学上是沉默的,表明存在有效的人类抗病毒免疫和炎症抑制剂。不到五个特征的MCV免疫调节基因已被详细表征,但鉴于在所有特征明确的痘病毒中此类序列的密度,可能还有更多的待发现。病毒感染后,响应于模式识别受体(PRR)信号传导和病毒引起的促炎细胞因子(例如肿瘤坏死因子(TNF))的细胞激活,发生NF-κB激活。因此,NF-κB激活是病毒检测,抗病毒信号传递,炎症和清除病毒感染所必需的。因此,我们筛选了MCV基因库,以研究对TNF刺激的NF-κB活化的影响。这揭示了MC132是一种独特的蛋白质,在其他痘病毒基因组中没有直系同源基因,是NF-κB的新型抑制剂。有趣的是,MC132还抑制了PRR和病毒激活的NF-κB,因为MC132与NF-κB相互作用。亚基p65并引起p65降解。通过无偏亲和纯化鉴定MC132的宿主靶标,发现MC132通过将p65募集到宿主Cullin-5 / Elongin B / Elongin C复合体中,从而针对NF-κB p65进行泛素依赖性蛋白酶体降解。这些数据揭示了痘病毒抑制人类先天免疫的新机制,并进一步阐明了人类适应性痘病毒MCV如何有效逃避抗病毒免疫以在皮肤病变中持续存在。重要性尚未完全了解人类细胞如何检测和应对病毒,但是通过研究早期先天免疫应答和病毒逃避病毒的方式,我们的理解有了长足的进步。痘病毒通过发展针对免疫限速步骤的精确抑制剂来适应特定宿主。这些抑制剂揭示了抗病毒反应的新特征,同时也为在自身免疫中进行治疗性干预提供了有力的新工具。软体动物传染性软体动物病毒(MCV)是唯一已知的现存痘病毒,特别适合人类感染,但其特征仍然很差。在这项研究中,我们报告了将MCV蛋白MC132鉴定为NF-κB(一种先天免疫的重要调节关键)的有效抑制剂。此外,通过MC132抑制NF-κB的机制的鉴定揭示了人类疱疹病毒趋同进化的一个很好的例子。这一发现大大扩展了我们对MCV如何有效逃避人类免疫力的理解。

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