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HCV NS3 BLOCKING EFFECT ON IFN INDUCED ISGS LIKE VIPERIN AND IL28 WITH AND WITHOUT NS4A

机译:HCV NS3阻断对有或没有NS4A的IFN诱导的像VIPERIN和IL28的ISGS的作用

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Background: Hepatitis C virus (HCV) is able to down-regulate innate immune response. It is important to know the immune pathways that this virus interacts with. HCV non-structural protein 3 (NS3) plays an important role in this viral feature. HCV NS3 protein could affect the expression of antiviral protein such as viperin, and interleukin 28whichare important proteins in antiviral response.Objectives: HCV has developed different mechanisms to maintain a persistent infection, especially by disrupting type I interferon response and subsequent suppression of expression of Interferon stimulatory genes (ISGs). Viperin, a member of ISGs, is considered as a host antiviral protein, which interferes with viral replication. Since it is a good target for some viruses to evade host responses, it is interesting to study if HCV has evolved a mechanism to interfere with this member of ISGs.Materials and Methods: We evaluated the impact of NS3, NS3/4A and a mutated nonfunctional NS3 on ISGs expression such as viperin and IL-28 after the induction of IFN signaling Jak-STAT pathway using IFN-.Results: NS3 protein disrupted the expressions of viperin gene and IL-28, an inducer for the expression of ISGs and viperin itself. By comparing the roles of NS3 and NS3/4A protease activities in suppressing the innate immune responses, we also showed that NS3 (without NS4A) has the ability to down-regulate ISGs expression, similar to that of NS3/4A.Conclusions: ISGs expression is impeded by NS3 protease activity and its interaction with Jak-STAT pathway proteins. In addition, the NS3/4A substrates spectrum seems to be similar to those of NS3.
机译:背景:丙型肝炎病毒(HCV)能够下调先天免疫反应。重要的是要知道这种病毒相互作用的免疫途径。 HCV非结构蛋白3(NS3)在此病毒功能中起重要作用。 HCV NS3蛋白可能会影响抗病毒反应中重要的蛋白如抗病毒蛋白viperin和白细胞介素28的表达。刺激基因(ISG)。 ISG的成员Viperin被认为是抗病毒宿主蛋白,会干扰病毒复制。由于它是某些病毒逃避宿主反应的良好靶标,因此研究HCV是否已发展出一种干扰此ISG成员的机制很有趣。材料和方法:我们评估了NS3,NS3 / 4A和突变的影响。干扰素诱导IFN-γJak-STAT通路后,NS3对ISGs表达的影响如蛇毒和IL-28。本身。通过比较NS3和NS3 / 4A蛋白酶活性在抑制先天免疫应答中的作用,我们还表明NS3(无NS4A)具有下调ISGs表达的能力,类似于NS3 / 4A。 NS3蛋白酶的活性及其与Jak-STAT途径蛋白的相互作用阻碍了它的表达。此外,NS3 / 4A底物光谱似乎与NS3相似。

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