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工程化抵抗 Zika 病毒的转基因表达多顺反子簇的合成小 RNA。

Engineered resistance to Zika virus in transgenic expressing a polycistronic cluster of synthetic small RNAs.

机构信息

Section of Cell and Developmental Biology, University of California, San Diego, La Jolla, CA 92093.

Division of Biology and Biological Engineering, California Institute of Technology, Pasadena, CA 91125.

出版信息

Proc Natl Acad Sci U S A. 2019 Feb 26;116(9):3656-3661. doi: 10.1073/pnas.1810771116. Epub 2019 Feb 5.

Abstract

Recent Zika virus (ZIKV) outbreaks have highlighted the necessity for development of novel vector control strategies to combat arboviral transmission, including genetic versions of the sterile insect technique, artificial infection with to reduce population size and/or vectoring competency, and gene drive-based methods. Here, we describe the development of mosquitoes synthetically engineered to impede vector competence to ZIKV. We demonstrate that a polycistronic cluster of engineered synthetic small RNAs targeting ZIKV is expressed and fully processed in , ensuring the formation of mature synthetic small RNAs in the midgut where ZIKV resides in the early stages of infection. Critically, we demonstrate that engineered mosquitoes harboring the anti-ZIKV transgene have significantly reduced viral infection, dissemination, and transmission rates of ZIKV. Taken together, these compelling results provide a promising path forward for development of effective genetic-based ZIKV control strategies, which could potentially be extended to curtail other arboviruses.

摘要

最近的寨卡病毒(ZIKV)疫情凸显了开发新的媒介控制策略以对抗虫媒病毒传播的必要性,包括遗传版本的不育昆虫技术、用感染来减少种群数量和/或媒介效能,以及基于基因驱动的方法。在这里,我们描述了合成工程蚊子的开发,以阻碍对 ZIKV 的媒介效能。我们证明,针对 ZIKV 的工程合成小 RNA 的多顺反子簇在中肠中表达和完全加工,确保成熟的合成小 RNA 在 ZIKV 感染早期存在于中肠的地方形成。至关重要的是,我们证明携带抗 ZIKV 转基因的工程化蚊子具有显著降低 ZIKV 的病毒感染、传播和传播率。总之,这些令人信服的结果为开发有效的基于遗传的 ZIKV 控制策略提供了有希望的途径,这可能扩展到抑制其他虫媒病毒。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9025/6397566/5184beb50245/pnas.1810771116fig01.jpg

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