UMR "Émergence des Pathologies Virales" (EPV: Aix-Marseille Univ - IRD 190 - Inserm 1207 - EHESP - IHU Méditerranée Infection), Marseille, France.
Emerg Microbes Infect. 2018 Mar 21;7(1):40. doi: 10.1038/s41426-018-0040-2.
Reverse genetics systems enable the manipulation of viral genomes and are proving to be essential for studying RNA viruses. Methods for generating clonal virus populations are particularly useful for studying the impact of genomic modifications on viral properties. Here, by exploiting a chikungunya virus model, we compare viral populations and their replicative fitness when generated using either the rapid and user-friendly PCR-based ISA (Infectious Subgenomic Amplicons) method or classical infectious clone technology. As anticipated, the ISA method resulted in greater genetic diversity of the viral populations, but no significant difference in viral fitness in vitro was observed. On the basis of these results, a new ISA-derived reverse genetics procedure was developed. This method, designated 'SuPReMe' (Subgenomic Plasmids Recombination Method), in which digested plasmids containing subgenomic DNA fragments were directly transfected into permissive cells, retains the following major advantages of the ISA method: it is rapid, flexible and does not require the cloning of complete genomes. Moreover, SuPReMe has been shown to produce virus populations with genetic diversity and replicative fitness similar to those obtained using conventional infectious clone technology. SuPReMe, therefore, represents an effective and promising option for the rapid generation of clonal recombinant populations of single-stranded positive-sense RNA viruses.
反向遗传学系统能够对病毒基因组进行操作,并且已被证明对于研究 RNA 病毒是必不可少的。生成克隆病毒群体的方法对于研究基因组修饰对病毒特性的影响特别有用。在这里,我们通过利用基孔肯雅病毒模型,比较了当使用基于 PCR 的快速且用户友好的 ISA(感染性亚基因组扩增子)方法或经典的感染性克隆技术生成病毒群体时,病毒群体及其复制适应性。正如预期的那样,ISA 方法导致病毒群体的遗传多样性更大,但在体外观察到病毒适应性没有显著差异。基于这些结果,开发了一种新的基于 ISA 的反向遗传学程序。这种方法称为“SuPReMe”(亚基因组质粒重组方法),其中包含亚基因组 DNA 片段的消化质粒被直接转染到允许的细胞中,保留了 ISA 方法的以下主要优点:快速、灵活,并且不需要克隆完整的基因组。此外,SuPReMe 已被证明能够产生遗传多样性和复制适应性类似于使用传统感染性克隆技术获得的病毒群体。因此,SuPReMe 代表了一种有效且有前途的选择,可用于快速生成单链正链 RNA 病毒的克隆重组群体。