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IFI16 与 KAP1 合作维持 Epstein-Barr 病毒潜伏期。

IFI16 Partners with KAP1 to Maintain Epstein-Barr Virus Latency.

机构信息

Division of Infectious Diseases, Department of Pediatrics, University of Floridagrid.15276.37, Gainesville, Florida, USA.

Child Health Research Institute, Department of Pediatrics, University of Floridagrid.15276.37, Gainesville, Florida, USA.

出版信息

J Virol. 2022 Sep 14;96(17):e0102822. doi: 10.1128/jvi.01028-22. Epub 2022 Aug 15.

Abstract

Herpesviruses establish latency to ensure permanent residence in their hosts. Upon entry into a cell, these viruses are rapidly silenced by the host, thereby limiting the destructive viral lytic phase while allowing the virus to hide from the immune system. Notably, although the establishment of latency by the oncogenic herpesvirus Epstein-Barr virus (EBV) requires the expression of viral latency genes, latency can be maintained with a negligible expression of viral genes. Indeed, in several herpesviruses, the host DNA sensor IFI16 facilitated latency via H3K9me3 heterochromatinization. This silencing mark is typically imposed by the constitutive heterochromatin machinery (HCM). The HCM, in an antiviral role, also silences the lytic phase of EBV and other herpes viruses. We investigated if IFI16 restricted EBV lytic activation by partnering with the HCM and found that IFI16 interacted with core components of the HCM, including the KRAB-associated protein 1 (KAP1) and the site-specific DNA binding KRAB-ZFP SZF1. This partnership silenced the EBV lytic switch protein ZEBRA, encoded by the gene, thereby favoring viral latency. Indeed, IFI16 contributed to H3K9 trimethylation at lytic genes of all kinetic classes. In defining topology, we found that IFI16 coenriched with KAP1 at the promoter, and while IFI16 and SZF1 were each adjacent to KAP1 in latent cells, IFI16 and SZF1 were not. Importantly, we also found that disruption of latency involved rapid downregulation of IFI16 transcription. These findings revealed a previously unknown partnership between IFI16 and the core HCM that supports EBV latency via antiviral heterochromatic silencing. The interferon-gamma inducible protein 16 (IFI16) is a nuclear DNA sensor that mediates antiviral responses by activating the inflammasome, triggering an interferon response, and silencing lytic genes of herpesviruses. The last, which helps maintain latency of the oncoherpesvirus Epstein-Barr virus (EBV), is accomplished via H3K9me3 heterochromatinization through unknown mechanisms. Here, we report that IFI16 physically partners with the core constitutive heterochromatin machinery to silence the key EBV lytic switch protein, thereby ensuring continued viral latency in B lymphocytes. We also find that disruption of latency involves rapid transcriptional downregulation of IFI16. These findings point to hitherto unknown physical and functional partnerships between a well-known antiviral mechanism and the core components of the constitutive heterochromatin machinery.

摘要

疱疹病毒通过建立潜伏来确保在宿主体内的永久居留。病毒进入细胞后,宿主会迅速沉默这些病毒,从而限制了破坏性的病毒裂解期,同时使病毒躲避免疫系统。值得注意的是,尽管致癌疱疹病毒 EBV(Epstein-Barr virus)的潜伏期的建立需要病毒潜伏期基因的表达,但潜伏期可以通过病毒基因的微量表达来维持。事实上,在几种疱疹病毒中,宿主 DNA 传感器 IFI16 通过 H3K9me3 异染色质化促进潜伏。这种沉默标记通常由组成型异染色质机制(HCM)施加。HCM 在抗病毒作用中,也会沉默 EBV 和其他疱疹病毒的裂解期。我们研究了 IFI16 是否通过与 HCM 合作来限制 EBV 裂解激活,并发现 IFI16 与 HCM 的核心成分相互作用,包括 KRAB 相关蛋白 1(KAP1)和特定位点的 DNA 结合 KRAB-ZFP SZF1。这种伙伴关系沉默了 EBV 裂解开关蛋白 ZEBRA,由 基因编码,从而有利于病毒潜伏。事实上,IFI16 有助于所有动力学类别的裂解基因的 H3K9 三甲基化。在定义拓扑结构时,我们发现 IFI16 与 KAP1 在 启动子上共富集,并且虽然 IFI16 和 SZF1 在潜伏细胞中都与 KAP1 相邻,但 IFI16 和 SZF1 并不相邻。重要的是,我们还发现,潜伏期的破坏涉及 IFI16 转录的快速下调。这些发现揭示了 IFI16 和核心 HCM 之间以前未知的伙伴关系,通过抗病毒异染色质沉默支持 EBV 潜伏。干扰素 γ诱导蛋白 16(IFI16)是一种核 DNA 传感器,通过激活炎症小体、引发干扰素反应和沉默疱疹病毒的裂解基因来介导抗病毒反应。最后一点有助于维持致癌疱疹病毒 EBV(Epstein-Barr virus)的潜伏期,这是通过未知机制通过 H3K9me3 异染色质化实现的。在这里,我们报告 IFI16 通过物理方式与核心组成型异染色质机制合作,沉默 EBV 关键裂解开关蛋白,从而确保 B 淋巴细胞中持续的病毒潜伏。我们还发现,潜伏期的破坏涉及 IFI16 的快速转录下调。这些发现指向了一种众所周知的抗病毒机制与组成型异染色质机制的核心成分之间以前未知的物理和功能伙伴关系。

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