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Mapping RNA-capsid interactions and RNA secondary structure within virus particles using next-generation sequencing

机译:使用下一代测序在病毒颗粒中映射RNA衣壳相互作用和RNA二级结构

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摘要

To characterize RNA-capsid binding sites genome-wide within mature RNA virus particles, we have developed a Next-Generation Sequencing (NGS) platform: viral Photo-Activatable Ribonucleoside CrossLinking (vPAR-CL). In vPAR-CL, 4-thiouridine is incorporated into the encapsidated genomes of virus particles and subsequently UV-crosslinked to adjacent capsid proteins. We demonstrate that vPAR-CL can readily and reliably identify capsid binding sites in genomic viral RNA by detecting crosslink-specific uridine to cytidine transitions in NGS data. Using Flock House virus (FHV) as a model system, we identified highly consistent and significant vPAR-CL signals across virus RNA genome, indicating a clear tropism of the encapsidated RNA genome. Certain interaction sites coincide with previously identified functional RNA motifs. We additionally performed dimethyl sulfate mutational profiling with sequencing (DMS-MaPseq) to generate a high-resolution profile of single-stranded genomic RNA inside viral particles. Combining vPAR-CL and DMS-MaPseq reveals that the predominant RNA-capsid interaction sites favored double-stranded RNA regions. We disrupted secondary structures associated with vPAR-CL sites using synonymous mutations, resulting in varied effects to virus replication, propagation and packaging. Certain mutations showed substantial deficiency in virus replication, suggesting these RNA-capsid sites are multifunctional. These provide further evidence to support that FHV packaging and replication are highly coordinated and inter-dependent events.
机译:为了在成熟的RNA病毒颗粒内进行基因组的RNA衣壳结合位点,我们开发了下一代测序(NGS)平台:病毒光可激活核糖核苷交联(VPAR-CL)。在VPAR-Cl中,将4-硫氨酸掺入病毒颗粒的包封基因组中,随后与相邻的衣壳蛋白联交。我们证明VPAR-CL可以通过检测NGS数据中的细胞链脲对细胞苷转变来易于和可靠地识别基因组病毒RNA中的衣壳结合位点。使用植物病毒(FHV)作为模型系统,我们遍历病毒RNA基因组的高度一致和重要的VPAR-CL信号,表明封装的RNA基因组的透明热衷。某些相互作用位点与先前鉴定的功能性RNA基序一致。另外,用测序(DMS-MAPSEQ)另外对硫酸二甲酯突变分析进行,以产生病毒颗粒内的单链基因组RNA的高分辨率分辨率。组合VPAR-CL和DMS-MAPSEQ显示主要的RNA-衣壳相互作用位点赞成双链RNA区域。我们使用同义突变中断与VPAR-CL网站相关的二次结构,从而对病毒复制,传播和包装产生多种效应。某些突变显示病毒复制的显着缺陷,表明这些RNA-衣壳位点是多功能的。这些提供了进一步的证据,支持FHV包装和复制是高度协调和依赖性的事件。

著录项

  • 来源
    《Nucleic Acids Research》 |2020年第2期|共21页
  • 作者

    Zhou Yiyang; Routh Andrew;

  • 作者单位

    Univ Texas Med Branch Ctr Integrat Med Sci IMS Galveston TX 77555 USA;

    Univ Texas Med Branch Ctr Integrat Med Sci IMS Galveston TX 77555 USA;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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