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沉默维甲酸X受体α表达可增强细胞培养中早期乙型肝炎病毒感染。

Silencing Retinoid X Receptor Alpha Expression Enhances Early-Stage Hepatitis B Virus Infection In Cell Cultures.

作者信息

Song Mei, Sun Yinyan, Tian Ji, He Wenhui, Xu Guangwei, Jing Zhiyi, Li Wenhui

机构信息

Graduate Program, Chinese Academy of Medical Sciences and Peking Union Medical College, Beijing, China.

National Institute of Biological Sciences, Beijing, China.

出版信息

J Virol. 2018 Mar 28;92(8). doi: 10.1128/JVI.01771-17. Print 2018 Apr 15.

Abstract

Multiple steps of the life cycle of hepatitis B virus (HBV) are known to be coupled to hepatic metabolism. However, the details of involvement of the hepatic metabolic milieu in HBV infection remain incompletely understood. Hepatic lipid metabolism is controlled by a complicated transcription factor network centered on retinoid X receptor alpha (RXRα). Here, we report that RXRα negatively regulates HBV infection at an early stage in cell cultures. The RXR-specific agonist bexarotene inhibits HBV in HepG2 cells expressing the sodium taurocholate cotransporting polypeptide (NTCP) (HepG2-NTCP), HepaRG cells, and primary hepatocytes (PTHs); reducing RXRα expression significantly enhanced HBV infection in the cells. Transcriptome sequencing (RNA-seq) analysis of HepG2-NTCP cells with a disrupted α gene revealed that reduced gene expression in arachidonic acid (AA)/eicosanoid biosynthesis pathways, including the AA synthases phospholipase A2 group IIA (PLA2G2A), is associated with increased HBV infection. Moreover, exogenous treatment of AA inhibits HBV infection in HepG2-NTCP cells. These data demonstrate that RXRα is an important cellular factor in modulating HBV infection and implicate the participation of AA/eicosanoid biosynthesis pathways in the regulation of HBV infection. Understanding how HBV infection is connected with hepatic lipid metabolism may provide new insights into virus infection and its pathogenesis. By a series of genetic studies in combination with transcriptome analysis and pharmacological assays, we here investigated the role of cellular retinoid X receptor alpha (RXRα), a crucial transcription factor for controlling hepatic lipid metabolism, in HBV infection in cell cultures. We found that silencing of RXRα resulted in elevated HBV covalently closed circular DNA (cccDNA) formation and viral antigen production, while activation of RXRα reduced HBV infection efficiency. Our results also showed that silencing phospholipase A2 group IIA (PLA2G2A), a key enzyme of arachidonic acid (AA) synthases, enhanced HBV infection efficiency in HepG2-NTCP cells and that exogenous AA treatment reduced HBV infection in the cells. These findings unveil RXRα as an important cellular factor in modulating HBV infection and may point to a new strategy for host-targeted therapies against HBV.

摘要

已知乙型肝炎病毒(HBV)生命周期的多个步骤与肝脏代谢相关联。然而,肝脏代谢环境在HBV感染中的具体参与细节仍未完全了解。肝脏脂质代谢受以视黄酸X受体α(RXRα)为中心的复杂转录因子网络控制。在此,我们报告RXRα在细胞培养的早期阶段对HBV感染起负调控作用。RXR特异性激动剂贝沙罗汀可抑制表达牛磺胆酸钠共转运多肽(NTCP)的HepG2细胞(HepG2-NTCP)、HepaRG细胞和原代肝细胞(PTH)中的HBV;显著降低RXRα表达会增强细胞中的HBV感染。对α基因被破坏的HepG2-NTCP细胞进行转录组测序(RNA-seq)分析发现,花生四烯酸(AA)/类二十烷酸生物合成途径中的基因表达降低,包括AA合成酶磷脂酶A2 IIA组(PLA2G2A),与HBV感染增加有关。此外,外源性给予AA可抑制HepG2-NTCP细胞中的HBV感染。这些数据表明RXRα是调节HBV感染的重要细胞因子,并提示AA/类二十烷酸生物合成途径参与HBV感染的调控。了解HBV感染如何与肝脏脂质代谢相关联,可能为病毒感染及其发病机制提供新的见解。通过一系列基因研究结合转录组分析和药理学试验,我们在此研究了细胞视黄酸X受体α(RXRα),一种控制肝脏脂质代谢的关键转录因子,在细胞培养中对HBV感染的作用。我们发现沉默RXRα会导致HBV共价闭合环状DNA(cccDNA)形成和病毒抗原产生增加,而激活RXRα会降低HBV感染效率。我们的结果还表明,沉默磷脂酶A2 IIA组(PLA2G2A),一种AA合成酶的关键酶,可增强HepG2-NTCP细胞中的HBV感染效率,而外源性给予AA可降低细胞中的HBV感染。这些发现揭示RXRα是调节HBV感染的重要细胞因子,并可能指向一种针对HBV的宿主靶向治疗新策略。

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