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DDX3X 被蛇头状囊泡病毒磷蛋白劫持,通过稳定磷蛋白促进病毒复制。

DDX3X Is Hijacked by Snakehead Vesiculovirus Phosphoprotein To Facilitate Virus Replication via Stabilization of the Phosphoprotein.

机构信息

State Key Laboratory of Agricultural Microbiology, Hubei Hongshan Laboratory, Engineering Research Center of Green Development for Conventional Aquatic Biological Industry in the Yangtze River Economic Belt, Ministry of Education, College of Fisheries, Huazhong Agricultural University, Wuhan, China.

State Key Laboratory of Developmental Biology of Freshwater Fish, College of Life Science, Hunan Normal University, Changsha, China.

出版信息

J Virol. 2023 Feb 28;97(2):e0003523. doi: 10.1128/jvi.00035-23. Epub 2023 Feb 6.

Abstract

Asp-Glu-Ala-Asp (DEAD) box helicase 3 X-linked (DDX3X) plays important regulatory roles in the replication of many viruses. However, the role of DDX3X in rhabdovirus replication has seldomly been investigated. In this study, snakehead vesiculovirus (SHVV), a kind of fish rhabdovirus, was used to study the role of DDX3X in rhabdovirus replication. DDX3X was identified as an interacting partner of SHVV phosphoprotein (P). The expression level of DDX3X was increased at an early stage of SHVV infection and then decreased to a normal level at a later infection stage. Overexpression of DDX3X promoted, while knockdown of DDX3X using specific small interfering RNAs (siRNAs) suppressed, SHVV replication, indicating that DDX3X was a proviral factor for SHVV replication. The N-terminal and core domains of DDX3X (DDX3X-N and DDX3X-Core) were determined to be the regions responsible for its interaction with SHVV P. Overexpression of DDX3X-Core suppressed SHVV replication by competitively disrupting the interaction between full-length DDX3X and SHVV P, suggesting that full-length DDX3X-P interaction was required for SHVV replication. Mechanistically, DDX3X-mediated promotion of SHVV replication was due not to inhibition of interferon expression but to maintenance of the stability of SHVV P to avoid autophagy-lysosome-dependent degradation. Collectively, our data suggest that DDX3X is hijacked by SHVV P to ensure effective replication of SHVV, which suggests an important anti-SHVV target. This study will help elucidate the role of DDX3X in regulating the replication of rhabdoviruses. Growing evidence has suggested that DDX3X plays important roles in virus replication. In one respect, DDX3X inhibits the replication of viruses, including hepatitis B virus, influenza A virus, Newcastle disease virus, duck Tembusu virus, and red-spotted grouper nervous necrosis virus. In another respect, DDX3X is required for the replication of viruses, including hepatitis C virus, Japanese encephalitis virus, West Nile virus, murine norovirus, herpes simplex virus, and severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2). Because DDX3X has rarely been investigated in rhabdovirus replication, this study aimed at investigating the role of DDX3X in rhabdovirus replication by using the fish rhabdovirus SHVV as a model. We found that DDX3X was required for SHVV replication, with the mechanism that DDX3X interacts with and maintains the stability of SHVV phosphoprotein. Our data provide novel insights into the role of DDX3X in virus replication and will facilitate the design of antiviral drugs against rhabdovirus infection.

摘要

天冬氨酸-谷氨酸-丙氨酸-天冬氨酸(DEAD)框解旋酶 3 X 连锁(DDX3X)在许多病毒的复制中发挥重要的调节作用。然而,DDX3X 在弹状病毒复制中的作用很少被研究。在本研究中,蛇头鱼水泡病毒(SHVV),一种鱼类弹状病毒,被用于研究 DDX3X 在弹状病毒复制中的作用。DDX3X 被鉴定为 SHVV 磷蛋白(P)的相互作用伙伴。在 SHVV 感染的早期,DDX3X 的表达水平增加,然后在后期感染阶段下降到正常水平。DDX3X 的过表达促进了 SHVV 的复制,而使用特异性小干扰 RNA(siRNA)敲低 DDX3X 则抑制了 SHVV 的复制,表明 DDX3X 是 SHVV 复制的促病毒因子。DDX3X 的 N 端和核心结构域(DDX3X-N 和 DDX3X-Core)被确定为负责与 SHVV P 相互作用的区域。DDX3X-Core 的过表达通过竞争性破坏全长 DDX3X 与 SHVV P 之间的相互作用来抑制 SHVV 复制,表明全长 DDX3X-P 相互作用是 SHVV 复制所必需的。从机制上讲,DDX3X 介导的 SHVV 复制促进作用不是由于抑制干扰素表达,而是由于维持 SHVV P 的稳定性以避免自噬-溶酶体依赖性降解。总之,我们的数据表明,DDX3X 被 SHVV P 劫持以确保 SHVV 的有效复制,这提示了一个重要的抗 SHVV 靶标。这项研究将有助于阐明 DDX3X 在调节弹状病毒复制中的作用。越来越多的证据表明,DDX3X 在病毒复制中发挥重要作用。在一方面,DDX3X 抑制病毒的复制,包括乙型肝炎病毒、甲型流感病毒、新城疫病毒、鸭坦布苏病毒和红鳍东方鲀神经坏死病毒。在另一方面,DDX3X 是丙型肝炎病毒、日本脑炎病毒、西尼罗河病毒、鼠诺如病毒、单纯疱疹病毒和严重急性呼吸综合征冠状病毒 2(SARS-CoV-2)等病毒复制所必需的。由于 DDX3X 在弹状病毒复制中的研究甚少,本研究旨在以鱼类弹状病毒 SHVV 为模型,研究 DDX3X 在弹状病毒复制中的作用。我们发现 DDX3X 是 SHVV 复制所必需的,其机制是 DDX3X 与 SHVV 磷蛋白相互作用并维持其稳定性。我们的数据为 DDX3X 在病毒复制中的作用提供了新的见解,并将有助于设计针对弹状病毒感染的抗病毒药物。

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