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A Multicomponent RNA-Based Control System Regulates Subgenomic mRNA Transcription in a Tombusvirus▿ †

机译:基于多组分RNA的控制系统调节Tombusvirus中的亚基因组mRNA转录▿

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摘要

During infections, positive-strand RNA tombusviruses transcribe two subgenomic (sg) mRNAs that allow for the expression of a subset of their genes. This process is thought to involve an unconventional mechanism involving the premature termination of the virally encoded RNA-dependent RNA polymerase while it is copying the virus genome. The 3′ truncated minus strands generated by termination are then used as templates for sg mRNA transcription. In addition to requiring an extensive network of long-distance RNA-RNA interactions (H.-X. Lin and K. A. White, EMBO J. 23:3365-3374, 2004), the transcription of tombusvirus sg mRNAs also involves several additional RNA structures. In vivo analysis of these diverse RNA elements revealed that they function at distinct steps in the process by facilitating the formation or stabilization of the long-distance interactions, modulating minus-strand template production, or promoting the initiation of sg mRNA transcription. All of the RNA elements characterized could be readily incorporated into a premature termination model for sg mRNA transcription. Overall, the analyses revealed a complex system that displays a high level of structural integration and functional coordination. This multicomponent RNA-based control system may serve as a useful paradigm for understanding related transcriptional processes in other positive-sense RNA viruses.
机译:在感染期间,正链RNA鼓膜病毒转录两个亚基因组(sg)mRNA,从而表达其基因的一个子集。人们认为该过程涉及一种非常规机制,该机制涉及在复制病毒基因组时病毒编码的RNA依赖性RNA聚合酶的过早终止。然后将终止产生的3'截短负链用作sg mRNA转录的模板。除了需要广泛的长距离RNA-RNA相互作用网络(H.-X. Lin和KA White,EMBO J. 23:3365-3374,2004)外,弓形病毒sg mRNA的转录还涉及其他几个RNA结构。这些不同的RNA元素的体内分析表明,它们通过促进长距离相互作用的形成或稳定,调节负链模板的产生或促进sg mRNA转录的启动,在过程的不同步骤中起作用。表征的所有RNA元件都可以轻松整合到sg mRNA转录的过早终止模型中。总体而言,分析揭示了一个复杂的系统,该系统显示出高水平的结构集成和功能协调。这种基于多组分RNA的控制系统可以用作了解其他正性RNA病毒中相关转录过程的有用范例。

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