Unit of Herpesvirus and Molecular Virology, Key Laboratory of Molecular Virology and Immunology, Institut Pasteur of Shanghai, Chinese Academy of Sciences, University of Chinese Academy of Sciences, Shanghai, China.
State Key Laboratory of Oncogenes and Related Genes, Shanghai Cancer Institute, Renji Hospital, Shanghai Jiao Tong University School of Medicine, Shanghai, China.
J Virol. 2020 Feb 28;94(6). doi: 10.1128/JVI.01956-19.
Late gene expression of betaherpesviruses and gammaherpesviruses is tightly controlled by virus-encoded transactivation factors (vTFs). We recently proved that the 6 vTFs of murine cytomegalovirus (MCMV) form a complex to regulate late gene transcription. pM49, one of the vTFs that has not been studied before, was identified to be a component of the complex that interacts with pM95. In this study, we began to investigate the potential role of pM49 in viral late gene expression. A recombinant MCMV expressing C-terminal FLAG-tagged pM49 was constructed to study the expression kinetics and localization of pM49. pM49 was expressed at the late time of virus infection. Inhibition of viral DNA synthesis by phosphonate sodium phosphonic acid (PAA) abolished pM49 expression, indicating that it is a late protein. pM49 colocalized with pM44 at the viral replication compartment, similarly to other viral vTFs that have been reported. Mutant virus lacking full-length pM49 expression failed to express viral late genes, leading to nonproductive infection. The expression of immediate early and early genes was not affected, and viral DNA synthesis was only minimally affected during pM49-deficient virus infection. All of these data support the role of pM49 in viral late gene expression. After a series of mutagenesis analyses, two key residues, K325 and C326, were identified as required for pM49-pM95 interaction. Cells expressing pM49 with either single mutation of these two residues failed to rescue the late gene expression and support the replication of pM49-deficient virus. Our results indicated that pM49-pM95 interaction is essential for viral late gene expression. Cytomegalovirus (CMV) infections result in morbidity and mortality in immunocompromised individuals, and the virus is also a major cause of birth defects in newborns. Currently, because of the unavailability of vaccines against this virus and restricted antiviral therapies with low toxicity, as well as the emergency of resistant strain of this virus, the understanding of viral late gene regulation may provide clues to study new antiviral drugs or vaccines. In this study, we report that MCMV protein pM49 is critical for viral late gene transcription, based on its interaction with pM95. This finding reveals the important role of pM49-pM95 interaction in the regulation of viral late gene expression and that it could be a future potential target for therapeutic intervention in CMV diseases.
β疱疹病毒和γ疱疹病毒的晚期基因表达受到病毒编码的转录激活因子(vTFs)的严格调控。我们最近证明,鼠巨细胞病毒(MCMV)的 6 个 vTF 形成一个复合物来调节晚期基因转录。pM49 是以前尚未研究过的 vTF 之一,被鉴定为与 pM95 相互作用的复合物的组成部分。在这项研究中,我们开始研究 pM49 在病毒晚期基因表达中的潜在作用。构建了表达 C 末端 FLAG 标签化 pM49 的重组 MCMV,以研究 pM49 的表达动力学和定位。pM49 在病毒感染的晚期表达。膦酸钠(PAA)抑制病毒 DNA 合成,使 pM49 表达消失,表明它是一种晚期蛋白。pM49 与 pM44 一起定位于病毒复制区,与已报道的其他病毒 vTF 相似。缺乏全长 pM49 表达的突变病毒无法表达病毒晚期基因,导致非生产性感染。早期和早期基因的表达不受影响,pM49 缺陷病毒感染期间病毒 DNA 合成仅受到轻微影响。所有这些数据都支持 pM49 在病毒晚期基因表达中的作用。经过一系列诱变分析,确定了两个关键残基 K325 和 C326 是 pM49-pM95 相互作用所必需的。表达这两个残基中任一残基发生单点突变的细胞均无法挽救晚期基因表达并支持 pM49 缺陷病毒的复制。我们的结果表明,pM49-pM95 相互作用对于病毒晚期基因表达是必需的。巨细胞病毒(CMV)感染会导致免疫功能低下个体的发病率和死亡率,该病毒也是新生儿出生缺陷的主要原因。目前,由于缺乏针对该病毒的疫苗和具有低毒性的有限抗病毒治疗方法,以及该病毒耐药株的出现,对病毒晚期基因调控的了解可能为研究新的抗病毒药物或疫苗提供线索。在这项研究中,我们报告说,MCMV 蛋白 pM49 与其与 pM95 的相互作用对于病毒晚期基因转录至关重要。这一发现揭示了 pM49-pM95 相互作用在调节病毒晚期基因表达中的重要作用,并且它可能成为 CMV 疾病中治疗干预的未来潜在靶点。