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人巨细胞病毒逃避干扰素 β 诱导的 APOBEC3G 编辑活性的策略。

Strategy of Human Cytomegalovirus To Escape Interferon Beta-Induced APOBEC3G Editing Activity.

机构信息

Department of Public Health and Pediatric Sciences, University of Turin, Turin, Italy.

Scientific Institute IRCCS Eugenio Medea, Bosisio Parini, Italy.

出版信息

J Virol. 2018 Sep 12;92(19). doi: 10.1128/JVI.01224-18. Print 2018 Oct 1.

Abstract

The apolipoprotein B editing enzyme catalytic subunit 3 (APOBEC3) is a family of DNA cytosine deaminases that mutate and inactivate viral genomes by single-strand DNA editing, thus providing an innate immune response against a wide range of DNA and RNA viruses. In particular, APOBEC3A (A3A), a member of the APOBEC3 family, is induced by human cytomegalovirus (HCMV) in decidual tissues where it efficiently restricts HCMV replication, thereby acting as an intrinsic innate immune effector at the maternal-fetal interface. However, the widespread incidence of congenital HCMV infection implies that HCMV has evolved to counteract APOBEC3-induced mutagenesis through mechanisms that still remain to be fully established. Here, we have assessed gene expression and deaminase activity of various APOBEC3 gene family members in HCMV-infected primary human foreskin fibroblasts (HFFs). Specifically, we show that APOBEC3G (A3G) gene products and, to a lesser degree, those of A3F but not of A3A, are upregulated in HCMV-infected HFFs. We also show that HCMV-mediated induction of A3G expression is mediated by interferon beta (IFN-β), which is produced early during HCMV infection. However, knockout or overexpression of A3G does not affect HCMV replication, indicating that A3G is not a restriction factor for HCMV. Finally, through a bioinformatics approach, we show that HCMV has evolved mutational robustness against IFN-β by limiting the presence of A3G hot spots in essential open reading frames (ORFs) of its genome. Overall, our findings uncover a novel immune evasion strategy by HCMV with profound implications for HCMV infections. APOBEC3 family of proteins plays a pivotal role in intrinsic immunity defense mechanisms against multiple viral infections, including retroviruses, through the deamination activity. However, the currently available data on APOBEC3 editing mechanisms upon HCMV infection remain unclear. In the present study, we show that particularly the APOBEC3G (A3G) member of the deaminase family is strongly induced upon infection with HCMV in fibroblasts and that its upregulation is mediated by IFN-β. Furthermore, we were able to demonstrate that neither A3G knockout nor A3G overexpression appears to modulate HCMV replication, indicating that A3G does not inhibit HCMV replication. This may be explained by HCMV escape strategy from A3G activity through depletion of the preferred nucleotide motifs (hot spots) from its genome. The results may shed light on antiviral potential of APOBEC3 activity during HCMV infection, as well as the viral counteracting mechanisms under A3G-mediated selective pressure.

摘要

载脂蛋白 B 编辑酶催化亚基 3(APOBEC3)是一类 DNA 胞嘧啶脱氨酶,通过单链 DNA 编辑使病毒基因组发生突变和失活,从而提供针对广泛的 DNA 和 RNA 病毒的先天免疫反应。特别是 APOBEC3 家族的成员 APOBEC3A(A3A),在蜕膜组织中被人类巨细胞病毒(HCMV)诱导,在那里它有效地限制 HCMV 的复制,从而在母体-胎儿界面充当固有先天免疫效应物。然而,广泛发生的先天性 HCMV 感染意味着 HCMV 已经进化出通过仍有待充分确定的机制来对抗 APOBEC3 诱导的突变。在这里,我们评估了 HCMV 感染的原代人包皮成纤维细胞(HFF)中各种 APOBEC3 基因家族成员的基因表达和脱氨酶活性。具体来说,我们表明 APOBEC3G(A3G)基因产物,并且在较小程度上,A3F 的基因产物,但不是 A3A 的基因产物,在 HCMV 感染的 HFF 中上调。我们还表明,HCMV 介导的 A3G 表达诱导是由干扰素β(IFN-β)介导的,IFN-β是在 HCMV 感染早期产生的。然而,A3G 的敲除或过表达并不影响 HCMV 的复制,表明 A3G 不是 HCMV 的限制因子。最后,通过一种生物信息学方法,我们表明 HCMV 通过限制其基因组中必需开放阅读框(ORF)中 A3G 热点的存在,进化出对 IFN-β的突变稳健性。总体而言,我们的发现揭示了 HCMV 的一种新的免疫逃避策略,对 HCMV 感染具有深远的影响。APOBEC3 家族蛋白通过脱氨酶活性在多种病毒感染(包括逆转录病毒)的固有免疫防御机制中发挥关键作用。然而,目前关于 HCMV 感染后 APOBEC3 编辑机制的可用数据仍不清楚。在本研究中,我们表明,特别是脱氨酶家族的 APOBEC3G(A3G)成员在成纤维细胞中受到 HCMV 感染的强烈诱导,其上调由 IFN-β介导。此外,我们能够证明 A3G 敲除或过表达似乎都不会调节 HCMV 的复制,表明 A3G 不会抑制 HCMV 的复制。这可能是由于 HCMV 通过从其基因组中耗尽优选核苷酸基序(热点)来逃避 A3G 活性。研究结果可能揭示了 APOBEC3 活性在 HCMV 感染期间的抗病毒潜力,以及在 A3G 介导的选择压力下病毒的对抗机制。

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