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锌指抗病毒蛋白对人巨细胞病毒的应变依赖性限制。

Strain-Dependent Restriction of Human Cytomegalovirus by Zinc Finger Antiviral Proteins.

机构信息

Department of Infectious Diseases, School of Immunology & Microbial Sciences, King's College London, London, United Kingdom.

Institute of Infection & Immunity, St George's, University of London, London, United Kingdom.

出版信息

J Virol. 2023 Mar 30;97(3):e0184622. doi: 10.1128/jvi.01846-22. Epub 2023 Mar 14.

Abstract

Cellular antiviral factors that recognize viral nucleic acid can inhibit virus replication. These include the zinc finger antiviral protein (ZAP), which recognizes high CpG dinucleotide content in viral RNA. Here, we investigated the ability of ZAP to inhibit the replication of human cytomegalovirus (HCMV). Depletion of ZAP or its cofactor KHNYN increased the titer of the high-passage HCMV strain AD169 but had little effect on the titer of the low-passage strain Merlin. We found no obvious difference in expression of several viral proteins between AD169 and Merlin in ZAP knockdown cells, but observed a larger increase in infectious virus in AD169 compared to Merlin in the absence of ZAP, suggesting that ZAP inhibited events late in AD169 replication. In addition, there was no clear difference in the CpG abundance of AD169 and Merlin RNAs, indicating that genomic content of the two virus strains was unlikely to be responsible for differences in their sensitivity to ZAP. Instead, we observed less ZAP expression in Merlin-infected cells late in replication compared to AD169-infected cells, which may be related to different abilities of the two virus strains to regulate interferon signaling. Therefore, there are strain-dependent differences in the sensitivity of HCMV to ZAP, and the ability of low-passage HCMV strain Merlin to evade inhibition by ZAP is likely related to its ability to regulate interferon signaling, not the CpG content of RNAs produced from its genome. Determining the function of cellular antiviral factors can inform our understanding of virus replication. The zinc finger antiviral protein (ZAP) can inhibit the replication of diverse viruses. Here, we examined ZAP interaction with the DNA virus human cytomegalovirus (HCMV). We found HCMV strain-dependent differences in the ability of ZAP to influence HCMV replication, which may be related to the interaction of HCMV strains with the type I interferon system. These observations affect our current understanding of how ZAP restricts HCMV and how HCMV interacts with the type I interferon system.

摘要

细胞抗病毒因子可以识别病毒核酸并抑制病毒复制。其中包括锌指抗病毒蛋白(ZAP),它可以识别病毒 RNA 中的高 CpG 二核苷酸含量。在这里,我们研究了 ZAP 抑制人巨细胞病毒(HCMV)复制的能力。ZAP 或其共因子 KHNYN 的耗竭增加了高传代 HCMV 株 AD169 的滴度,但对低传代株 Merlin 的滴度几乎没有影响。我们发现 ZAP 敲低细胞中 AD169 和 Merlin 之间几种病毒蛋白的表达没有明显差异,但在没有 ZAP 的情况下,AD169 中的感染性病毒增加幅度明显大于 Merlin,表明 ZAP 抑制了 AD169 复制后期的事件。此外,AD169 和 Merlin RNA 的 CpG 丰度没有明显差异,表明两种病毒株的基因组含量不太可能是它们对 ZAP 敏感性差异的原因。相反,我们观察到 Merlin 感染细胞中 ZAP 的表达在复制后期比 AD169 感染细胞中少,这可能与两种病毒株调节干扰素信号的能力不同有关。因此,HCMV 对 ZAP 的敏感性存在株间差异,低传代 HCMV 株 Merlin 逃避 ZAP 抑制的能力可能与其调节干扰素信号的能力有关,而不是其基因组产生的 RNA 的 CpG 含量有关。 确定细胞抗病毒因子的功能可以帮助我们了解病毒复制。锌指抗病毒蛋白(ZAP)可以抑制多种病毒的复制。在这里,我们研究了 ZAP 与 DNA 病毒人巨细胞病毒(HCMV)的相互作用。我们发现 ZAP 对 HCMV 复制的影响存在株间差异,这可能与 HCMV 株与 I 型干扰素系统的相互作用有关。这些观察结果影响了我们目前对 ZAP 限制 HCMV 的方式以及 HCMV 如何与 I 型干扰素系统相互作用的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f60a/10062169/14ca299a02b8/jvi.01846-22-f001.jpg

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