首页> 外文期刊>Frontiers in Cellular and Infection Microbiology >Dengue Virus Capsid Interacts with DDX3X–A Potential Mechanism for Suppression of Antiviral Functions in Dengue Infection
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Dengue Virus Capsid Interacts with DDX3X–A Potential Mechanism for Suppression of Antiviral Functions in Dengue Infection

机译:登革热病毒衣壳与DDX3X相互作用–抑制登革热感染中抗病毒功能的潜在机制

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Dengue virus is a pathogen of global concern and has a huge impact on public health system in low- and middle-income countries. The capsid protein of dengue virus is least conserved among related flavivirus and there is very limited information on the role of cytosolic proteins that interact with dengue virus capsid. We identified DEAD (Asp-Glu-Ala-Asp) Box Helicase 3, an X-Linked (DDX3X), cytosolic ATP-dependent RNA helicase as a dengue virus capsid-interacting protein. We show that the N-terminal region of capsid is important for interaction with DDX3X, while the N-terminal domain of DDX3X seems to be involved in interaction with dengue capsid. DDX3X was down-regulated in dengue virus infected cells at later stages of infection. Our results show that DDX3X is an antiviral protein as suppression of DDX3X expression by siRNA led to an increase in viral titers and overexpression of DDX3X led to inhibition of viral replication. Knock-down of DDX3X did not affect induction of type I interferon response upon infection suggesting that the effect of DDX3X knock-down is independent of the interferon-dependent pathways that DDX3X modulates under normal conditions. Thus, our study identifies DDX3X as a dengue virus capsid interacting protein and indicates a potential link between the antiviral functions of DDX3X and dengue capsid at later stages of dengue infection.
机译:登革热病毒是全球关注的病原体,对中低收入国家的公共卫生系统产生巨大影响。登革病毒的衣壳蛋白在相关的黄病毒中保守性最低,关于与登革病毒衣壳相互作用的胞质蛋白的作用的信息非常有限。我们确定DEAD(Asp-Glu-Ala-Asp)盒解旋酶3,X链接(DDX3X),胞质ATP依赖性RNA解旋酶为登革病毒衣壳相互作用蛋白。我们显示衣壳的N末端区域对于与DDX3X相互作用很重要,而DDX3X的N末端域似乎参与了与登革衣壳的相互作用。在感染的后期,DDX3X在登革热病毒感染的细胞中被下调。我们的结果表明DDX3X是一种抗病毒蛋白,因为siRNA抑制DDX3X表达导致病毒滴度增加,而DDX3X的过表达导致病毒复制受到抑制。 DDX3X的基因敲除不影响感染后诱导I型干扰素的反应,这表明DDX3X的基因敲除的作用独立于DDX3X在正常条件下调节的干扰素依赖性途径。因此,我们的研究将DDX3X鉴定为登革病毒衣壳相互作用蛋白,并指出了在登革热感染后期DDX3X的抗病毒功能与登革衣壳之间的潜在联系。

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