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The Lipid Kinase Phosphatidylinositol-4 Kinase III Alpha Regulates the Phosphorylation Status of Hepatitis C Virus NS5A

机译:脂质激酶磷脂酰肌醇-4激酶IIIα调节丙型肝炎病毒NS5A的磷酸化状态。

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摘要

The lipid kinase phosphatidylinositol 4-kinase III alpha (PI4KIIIα) is an essential host factor of hepatitis C virus (HCV) replication. PI4KIIIα catalyzes the synthesis of phosphatidylinositol 4-phosphate (PI4P) accumulating in HCV replicating cells due to enzyme activation resulting from its interaction with nonstructural protein 5A (NS5A). This study describes the interaction between PI4KIIIα and NS5A and its mechanistic role in viral RNA replication. We mapped the NS5A sequence involved in PI4KIIIα interaction to the carboxyterminal end of domain 1 and identified a highly conserved PI4KIIIα functional interaction site (PFIS) encompassing seven amino acids, which are essential for viral RNA replication. Mutations within this region were also impaired in NS5A-PI4KIIIα binding, reduced PI4P levels and altered the morphology of viral replication sites, reminiscent to the phenotype observed by silencing of PI4KIIIα. Interestingly, abrogation of RNA replication caused by mutations in the PFIS correlated with increased levels of hyperphosphorylated NS5A (p58), indicating that PI4KIIIα affects the phosphorylation status of NS5A. RNAi-mediated knockdown of PI4KIIIα or pharmacological ablation of kinase activity led to a relative increase of p58. In contrast, overexpression of enzymatically active PI4KIIIα increased relative abundance of basally phosphorylated NS5A (p56). PI4KIIIα therefore regulates the phosphorylation status of NS5A and viral RNA replication by favoring p56 or repressing p58 synthesis. Replication deficiencies of PFIS mutants in NS5A could not be rescued by increasing PI4P levels, but by supplying functional NS5A, supporting an essential role of PI4KIIIα in HCV replication regulating NS5A phosphorylation, thereby modulating the morphology of viral replication sites. In conclusion, we demonstrate that PI4KIIIα activity affects the NS5A phosphorylation status. Our results highlight the importance of PI4KIIIα in the morphogenesis of viral replication sites and its regulation by facilitating p56 synthesis.
机译:脂质激酶磷脂酰肌醇4-激酶IIIα(PI4KIIIα)是丙型肝炎病毒(HCV)复制的重要宿主因子。 PI4KIIIα催化HCV复制细胞中积累的磷酸磷脂酰肌醇4-磷酸酯(PI4P)的合成,这是由于其与非结构蛋白5A(NS5A)相互作用而引起的酶活化。这项研究描述了PI4KIIIα和NS5A之间的相互作用及其在病毒RNA复制中的作用。我们将参与PI4KIIIα相互作用的NS5A序列定位到结构域1的羧基末端,并确定了一个高度保守的PI4KIIIα功能相互作用位点(PFIS),其中包含七个氨基酸,这对于病毒RNA复制至关重要。该区域内的突变也受到NS5A-PI4KIIIα结合的损害,PI4P水平降低并改变了病毒复制位点的形态,令人联想到通过沉默PI4KIIIα观察到的表型。有趣的是,由PFIS中的突变引起的RNA复制的废除与超磷酸化NS5A(p58)的水平升高相关,表明PI4KIIIα影响NS5A的磷酸化状态。 RNAi介导的PI4KIIIα的敲低或激酶活性的药理消除导致p58的相对增加。相反,酶活性PI4KIIIα的过表达增加了基础磷酸化NS5A的相对丰度(p56)。因此,PI4KIIIα通过促进p56或抑制p58合成来调节NS5A的磷酸化状态和病毒RNA复制。不能通过提高PI4P水平来挽救NS5A中PFIS突变体的复制缺陷,而是通过提供功能性NS5A,支持PI4KIIIα在调节NS5A磷酸化的HCV复制中的重要作用,从而调节病毒复制位点的形态。总之,我们证明PI4KIIIα活性会影响NS5A的磷酸化状态。我们的结果强调了PI4KIIIα在病毒复制位点的形态发生及其通过促进p56合成进行调控中的重要性。

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