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Generation and Comparative Genomics of Synthetic Dengue Viruses

机译:合成登革病毒的一代和比较基因组学

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Synthetic virology is an important multidisciplinary scientific field, with emerging applications in biotechnology and medicine, aiming at developing methods to generate and engineer synthetic viruses. Here we demonstrate a full multidisciplinary pipeline for generation and analysis of synthetic RNA viruses and specifically apply it to Dengue virus type 2 (DENV-2). The major steps of the pipeline include comparative genomics of endogenous and synthetic viral strains. In particular, we show that although the synthetic DENV-2 viruses were found to have lower nucleotide variability, their phenotype, as reflected in the study of the AG129 mouse model morbidity, RNA levels, and neutralization antibodies, is similar or even more pathogenic in comparison to the wildtype master strain. These results may suggest that synthetic DENV-2 may enhance virulence if the correct sequence is selected. The approach reported here can be used for understanding the functionality and the fitness effects of any set of mutations in viral RNA. It can be also used for editing RNA viruses for various target applications.
机译:合成病毒学是一个重要的多学科科学领域,具有生物技术和医学的新兴应用,旨在开发生成和工程工程的方法。在这里,我们展示了一种完整的多学科管道,用于生成和分析合成RNA病毒,并专门将其应用于登革热病毒2(Denv-2)。管道的主要步骤包括内源性和合成病毒菌株的比较基因组学。特别地,我们表明,尽管发现合成Denv-2病毒具有较低的核苷酸变异性,它们的表型,如在AG129小鼠模型发病率,RNA水平和中和抗体的研究中反映,是相似甚至更致病的与野生型大师菌株的比较。这些结果可能表明,如果选择正确的序列,则合成Denv-2可以增强毒力。这里报道的方法可用于理解病毒RNA中任何一组突变的功能和健身效果。它还可以用于编辑用于各种目标应用的RNA病毒。

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