Limited impact of hepatitis A virus 3C protease-mediated cleavage on the functions of NEMO in human hepatocytes.

IF 3.8 2区 医学 Q2 VIROLOGY Journal of Virology Pub Date : 2025-02-25 Epub Date: 2025-01-24 DOI:10.1128/jvi.02264-24
Hao-En Huang, Ombretta Colasanti, Teng-Feng Li, Volker Lohmann
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Abstract

NF-κB essential modulator (NEMO) is critically involved in the induction of interferons (IFNs) and pro-inflammatory cytokines. Hepatitis A virus (HAV) 3C protease was recently identified to cleave NEMO in non-hepatic cells. This study aimed at understanding efficiency and function of HAV 3C-mediated NEMO cleavage in hepatocytes. HAV 3C protease and its precursor 3CD strongly affected NEMO abundance in ectopic expression models, which was not observed in HAV replicon cells and upon HAV infection. Using a cleavage-resistant NEMO mutant, we found that specific cleavage by 3C only marginally contributed to NEMO degradation, whereas the magnitude of the effect was due to cytotoxic effects induced by 3C activity. Cleavage efficiency generally did not suffice to disrupt the type I IFN or NF-κB signaling pathways. Knockout of NEMO indeed abrogated both pathways, whereas efficient knockdown had limited the impact on NEMO-mediated signaling, suggesting that low levels of NEMO are sufficient to maintain antiviral responses in hepatocytes. NEMO cleavage was barely detectable in a cell line harboring a persistent HAV replicon or in HAV-infected cells. HAV infection induced a robust innate immune response, which was not affected by efficient knockdown of NEMO, arguing for a limited potential contribution of NEMO cleavage to innate immune counteraction. Overall, our data suggest that HAV 3C is capable of partially cleaving NEMO as reported. However, since minute expression levels of NEMO were sufficient for induction of innate immunity, inefficient NEMO cleavage by HAV is unlikely to contribute to dampening of innate immune responses in hepatocytes.IMPORTANCEHepatitis A virus (HAV) establishes acute infections of the liver, which are always cleared, while a number of mechanisms have been identified contributing to immune escape. Among those, proteolytic cleavage of NF-κB essential modulator (NEMO) by HAV has been suggested to counteract innate immune responses. This study demonstrates that the HAV 3C protease cleaves NEMO inefficiently and does not result in substantial disruption of antiviral signaling. Importantly, NEMO remains capable of inducing an effective immune response in hepatocytes even at low expression levels. Our findings suggest a limited role for NEMO cleavage in HAV's interaction with host immunity and call for a revision of our understanding of HAV counteraction mechanisms.

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甲型肝炎病毒3C蛋白酶介导的裂解对人肝细胞NEMO功能的有限影响
NF-κB必需调节剂(NEMO)在干扰素(ifn)和促炎细胞因子的诱导中起关键作用。最近发现甲型肝炎病毒(HAV) 3C蛋白酶可在非肝细胞中切割NEMO。本研究旨在了解hav3c介导的肝细胞NEMO切割的效率和功能。HAV 3C蛋白酶及其前体3CD在异位表达模型中强烈影响NEMO丰度,而在HAV复制子细胞和HAV感染中未观察到这种影响。使用抗切割的NEMO突变体,我们发现3C的特异性切割对NEMO降解只有轻微的贡献,而影响的程度是由于3C活性诱导的细胞毒性作用。切割效率通常不足以破坏I型IFN或NF-κB信号通路。敲除NEMO确实消除了这两种途径,而有效敲除限制了对NEMO介导的信号传导的影响,这表明低水平的NEMO足以维持肝细胞中的抗病毒反应。在携带持续性甲型肝炎复制子的细胞系或感染甲型肝炎的细胞中,几乎检测不到NEMO切割。HAV感染诱导了强大的先天免疫应答,而这种应答不受NEMO基因的有效敲除的影响,这表明NEMO基因的切割对先天免疫应答的潜在贡献有限。总的来说,我们的数据表明HAV 3C能够像报道的那样部分切割NEMO。然而,由于NEMO的微小表达水平足以诱导先天免疫,HAV对NEMO的低效切割不太可能有助于抑制肝细胞的先天免疫反应。甲型肝炎病毒(HAV)建立急性肝脏感染,这种感染总是被清除,而已经确定了许多有助于免疫逃逸的机制。其中,HAV对NF-κB必需调节剂(NEMO)的蛋白水解裂解被认为可以抵消先天免疫反应。这项研究表明,HAV 3C蛋白酶对NEMO的切割效率不高,不会导致抗病毒信号的实质性破坏。重要的是,NEMO即使在低表达水平下也能在肝细胞中诱导有效的免疫应答。我们的研究结果表明,在甲型肝炎病毒与宿主免疫的相互作用中,NEMO切割的作用有限,并呼吁修订我们对甲型肝炎病毒对抗机制的理解。
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来源期刊
Journal of Virology
Journal of Virology 医学-病毒学
CiteScore
10.10
自引率
7.40%
发文量
906
审稿时长
1 months
期刊介绍: Journal of Virology (JVI) explores the nature of the viruses of animals, archaea, bacteria, fungi, plants, and protozoa. We welcome papers on virion structure and assembly, viral genome replication and regulation of gene expression, genetic diversity and evolution, virus-cell interactions, cellular responses to infection, transformation and oncogenesis, gene delivery, viral pathogenesis and immunity, and vaccines and antiviral agents.
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