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病毒蛋白六邻体在高致病性禽腺病毒 4 型诱导的自噬中的关键作用通过与 BAG3 相互作用,并促进 LMH 细胞中的病毒复制。

Critical Role of Viral Protein Hexon in Hypervirulent Fowl Adenovirus Serotype-4-Induced Autophagy by Interaction with BAG3 and Promotion of Viral Replication in LMH Cells.

机构信息

National Key Laboratory of Veterinary Public Health Security, China Agricultural University, Beijing, China.

Key Laboratory of Animal Epidemiology of the Ministry of Agriculture, China Agricultural University, Beijing, China.

出版信息

J Virol. 2023 Jun 29;97(6):e0028423. doi: 10.1128/jvi.00284-23. Epub 2023 May 31.

Abstract

Hepatitis-pericardial syndrome (HHS) is an acute highly infectious avian disease caused by fowl adenovirus serotype 4 (FAdV-4), characterized by fulminant hepatitis and hydropericardium in broilers. Since 2015, a widespread epidemic has occurred in China due to the emergence of hypervirulent FAdV-4 (HPFAdV-4), causing huge losses to the stakeholders. However, the pathogenesis of HPFAdV-4 and the host responses to its infection remain elusive. Here, we show that infection of leghorn male hepatocellular (LMH) cells by HPFAdV-4 induced complete autophagy in cells and that the autophagy induced by recombinant HPFAdV-4-ON1 (rHPFAdV-4-ON1), a viral strain generated by replacing the gene of wild-type HPFAdV-4 (HPFAdV-4-WT) with the one of nonpathogenic strain FAdV-4-ON1, was remarkably mitigated compared to that of the rHPFAdV-4-WT control, suggesting that HPFAdV-4 hexon is responsible for virus-induced autophagy. Importantly, we found that hexon interacted with a cellular protein, BAG3, a host protein that initiates autophagy, and that BAG3 expression increased in cells infected with HPFAdV-4. Furthermore, knockdown of BAG3 by RNA interference (RNAi) significantly inhibited HPFAdV-4- or hexon-induced autophagy and suppressed viral replication. On the contrary, expression of hexon markedly upregulated the expression of BAG3 via activating the P38 signaling pathway, triggering autophagy. Thus, these findings reveal that HPFAdV-4 hexon interacts with the host protein BAG3 and promotes BAG3 expression by activating P38 signaling pathway, thereby inducing autophagy and enhancing viral proliferation, which immensely furthers our understanding of the pathogenesis of HPFAdV-4 infection. HHS, mainly caused by HPFAdV-4, has caused large economic losses to the stakeholders in recent years. Infection of leghorn male hepatocellular (LMH) cells by HPFAdV-4 induced complete autophagy that is essential for HPFAdV-4 replication. By a screening strategy, the viral protein hexon was found responsible for virus-induced autophagy in cells. Importantly, hexon was identified as a factor promoting viral replication by interaction with BAG3, an initiator of host cell autophagy. These findings will help us to better understand the host response to HPFAdV-4 infection, providing a novel insight into the pathogenesis of HPFAdV-4 infection.

摘要

肝炎-心包综合征(Hepatitis-pericardial syndrome,HHS)是一种由禽腺病毒 4 型(Fowl adenovirus serotype 4,FAdV-4)引起的急性、高度传染性禽类疾病,其特征为肉鸡发生暴发性肝炎和心包积水。自 2015 年以来,由于高致病性 FAdV-4(Hypervirulent FAdV-4,HPFAdV-4)的出现,中国发生了广泛的流行,给利益相关者造成了巨大损失。然而,HPFAdV-4 的发病机制和宿主对其感染的反应仍不清楚。在这里,我们表明,HPFAdV-4 感染来航公鸡肝细胞(Leghorn male hepatocellular,LMH)细胞会诱导细胞内完全自噬,而用非致病性 FAdV-4-ON1 株替换野生型 HPFAdV-4(HPFAdV-4-WT)的基因 1 (ON1)生成的重组 HPFAdV-4-ON1(rHPFAdV-4-ON1)诱导的自噬与 rHPFAdV-4-WT 对照相比明显减轻,表明 HPFAdV-4 六邻体是病毒诱导自噬的原因。重要的是,我们发现六邻体与一种细胞蛋白 BAG3 相互作用,BAG3 是一种起始自噬的宿主蛋白,并且在感染 HPFAdV-4 的细胞中 BAG3 的表达增加。此外,通过 RNA 干扰(RNA interference,RNAi)敲低 BAG3 显著抑制了 HPFAdV-4 或六邻体诱导的自噬并抑制了病毒复制。相反,六邻体的表达通过激活 P38 信号通路显著上调了 BAG3 的表达,引发自噬。因此,这些发现揭示了 HPFAdV-4 六邻体与宿主蛋白 BAG3 相互作用,并通过激活 P38 信号通路促进 BAG3 的表达,从而诱导自噬并增强病毒增殖,这极大地促进了我们对 HPFAdV-4 感染发病机制的理解。HHS 主要由 HPFAdV-4 引起,近年来给利益相关者造成了巨大的经济损失。HPFAdV-4 感染来航公鸡肝细胞(LMH)细胞会诱导完全自噬,这对 HPFAdV-4 的复制至关重要。通过筛选策略,发现病毒蛋白六邻体是细胞中诱导病毒自噬的原因。重要的是,六邻体被鉴定为通过与宿主细胞自噬的启动子 BAG3 相互作用促进病毒复制的因素。这些发现将有助于我们更好地理解宿主对 HPFAdV-4 感染的反应,为 HPFAdV-4 感染的发病机制提供新的见解。

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