Graduate Institute of Medical Sciences, National Defense Medical Center, Taipei, 11490, Taiwan.
Institute of Preventive Medicine, National Defense Medical Center, Taipei, 11490, Taiwan.
Sci Rep. 2021 Jun 10;11(1):12321. doi: 10.1038/s41598-021-91830-y.
Reverse genetics is an important tool in the elucidation of viral replication and the development of countermeasures; however, these methods are impeded by laborious and inefficient replicon delivery methods. This paper demonstrates the use of a baculovirus to facilitate the efficient delivery of autonomous CHIKV replicons into mosquito and mammalian cells in vitro as well as adult mosquitoes in vivo. The efficacy of this approach was verified via co-localization among an eGFP reporter, nsP1, and dsRNA as well as through the inhibition of an RNA-dependent RNA polymerase (RdRp) null mutation (DDAA) in nsP4, or the treatment of a known antiviral compound (6-azauridine). We also investigated the correlation between CHIKV replicon-launched eGFP expression and the effectiveness of CHIKV replicon variants in inducing IFN-β expression in human cell lines. This delivery method based on a single vector is applicable to mosquito and mammalian cells in seeking to decipher the mechanisms underlying CHIKV replication, elucidate virus-host interactions, and develop antivirals. This study presents an effective alternative to overcome many of the technological issues related to the study and utilization of autonomous arbovirus replicons.
反向遗传学是阐明病毒复制和开发对策的重要工具;然而,这些方法受到繁琐和低效的复制子传递方法的阻碍。本文展示了使用杆状病毒来促进自主 CHIKV 复制子在体外的蚊子和哺乳动物细胞以及体内成年蚊子中的有效传递。通过 eGFP 报告基因、nsP1 和 dsRNA 之间的共定位以及 RNA 依赖性 RNA 聚合酶 (RdRp) 缺失突变 (DDAA) 在 nsP4 中的抑制或已知抗病毒化合物 (6-氮尿苷) 的处理,验证了这种方法的功效。我们还研究了 CHIKV 复制子启动的 eGFP 表达与 CHIKV 复制子变体在诱导人细胞系中 IFN-β 表达方面的有效性之间的相关性。这种基于单个载体的递送方法适用于蚊子和哺乳动物细胞,旨在破译 CHIKV 复制的机制,阐明病毒-宿主相互作用,并开发抗病毒药物。本研究提供了一种有效的替代方法,可以克服与自主虫媒病毒复制子的研究和利用相关的许多技术问题。