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PNAS Plus: Single-molecule FRET reveals a corkscrew RNA structure for the polymerase-bound influenza virus promoter

机译:PNAS Plus:单分子FRET揭示了开瓶器RNA结构用于聚合酶结合的流感病毒启动子

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摘要

The influenza virus is a major human and animal pathogen responsible for seasonal epidemics and occasional pandemics. The genome of the influenza A virus comprises eight segments of single-stranded, negative-sense RNA with highly conserved 5′ and 3′ termini. These termini interact to form a double-stranded promoter structure that is recognized and bound by the viral RNA-dependent RNA polymerase (RNAP); however, no 3D structural information for the influenza polymerase-bound promoter exists. Functional studies have led to the proposal of several 2D models for the secondary structure of the bound promoter, including a corkscrew model in which the 5′ and 3′ termini form short hairpins. We have taken advantage of an insect-cell system to prepare large amounts of active recombinant influenza virus RNAP, and used this to develop a highly sensitive single-molecule FRET assay to measure distances between fluorescent dyes located on the promoter and map its structure both with and without the polymerase bound. These advances enabled the direct analysis of the influenza promoter structure in complex with the viral RNAP, and provided 3D structural information that is in agreement with the corkscrew model for the influenza virus promoter RNA. Our data provide insights into the mechanisms of promoter binding by the influenza RNAP and have implications for the understanding of the regulatory mechanisms involved in the transcription of viral genes and replication of the viral RNA genome. In addition, the simplicity of this system should translate readily to the study of any virus polymerase–promoter interaction.
机译:流感病毒是导致季节性流行病和偶发性大流行病的主要人类和动物病原体。甲型流感病毒的基因组包含8个单链负义RNA片段,其5'和3'末端高度保守。这些末端相互作用形成双链启动子结构,该结构可被病毒依赖RNA的RNA聚合酶(RNAP)识别并结合。但是,不存在与流感病毒聚合酶结合的启动子的3D结构信息。功能性研究已提出了针对结合的启动子二级结构的几种2D模型的建议,包括5'和3'末端形成短发夹的开瓶器模型。我们利用昆虫细胞系统制备了大量的活性重组流感病毒RNAP,并将其用于开发高度灵敏的单分子FRET分析法,以测量启动子上荧光染料之间的距离,并绘制其结构图。并且没有聚合酶结合。这些进展使得可以直接分析与病毒RNAP结合的流感启动子结构,并提供与流感病毒启动子RNA的开瓶器模型一致的3D结构信息。我们的数据提供了由流感RNAP结合启动子的机制的见解,并有助于理解涉及病毒基因转录和病毒RNA基因组复制的调控机制。另外,该系统的简便性应易于转化为对任何病毒聚合酶-启动子相互作用的研究。

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