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Reconstitution and Functional Analysis of a Full-Length HepatitisC Virus NS5B Polymerase on a Supported Lipid Bilayer

机译:全长肝炎的重构和功能分析支持的脂质双层上存在C病毒NS5B聚合酶

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摘要

Therapeutic targeting of membrane-associated viral proteins is complicated by the challenge of investigating their enzymatic activities in the native membrane-bound state. To permit functional characterization of these proteins, we hypothesized that the supported lipid bilayer (SLB) can support in situ reconstitution of membrane-associated viral protein complexes. As proof-of-principle, we selected the hepatitis C virus (HCV) NS5B polymerase which is essential for HCV genome replication, and determined that the SLB platform enables functional reconstitution of membrane protein activity. Quartz crystal microbalance with dissipation (QCM-D) monitoring enabled label-free detection of full-length NS5B membrane association, its interaction with replicase subunits NS3, NS5A, and template RNA, and most importantly its RNA synthesis activity. This latter activity could be inhibited by the addition of candidate small molecule drugs. Collectively, our results demonstrate that the SLB platform can support functional studies of membrane-associated viral proteins engaged in critical biological activities.
机译:膜相关病毒蛋白的治疗靶向由于在天然膜结合状态下研究其酶活性的挑战而变得复杂。为了允许这些蛋白质的功能表征,我们假设支持的脂质双层(SLB)可以支持与膜相关的病毒蛋白复合物的原位重建。作为原理的证明,我们选择了丙型肝炎病毒(HCV)NS5B聚合酶,该酶对于HCV基因组复制是必不可少的,并确定SLB平台可实现膜蛋白活性的功能重建。带有耗散(QCM-D)监测的石英晶体微量天平可以实现全长NS5B膜缔合,与复制酶亚基NS3,NS5A和模板RNA的相互作用以及最重要的是RNA合成活性的无标记检测。后一种活性可以通过添加候选小分子药物来抑制。总的来说,我们的结果表明SLB平台可以支持从事关键生物学活动的膜相关病毒蛋白的功能研究。

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