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建立杆状病毒诱导的 CRISPR/Cas9 系统用于转基因家蚕的抗病毒研究。

Establishment of a baculovirus-inducible CRISPR/Cas9 system for antiviral research in transgenic silkworms.

机构信息

State Key Laboratory of Silkworm Genome Biology, Southwest University, Chongqing, 400716, China.

Joint National Laboratory for Antibody Drug Engineering, Institute of Immunology, Henan University School of Medicine, Kaifeng, 475004, China.

出版信息

Appl Microbiol Biotechnol. 2018 Nov;102(21):9255-9265. doi: 10.1007/s00253-018-9295-8. Epub 2018 Aug 28.

Abstract

The CRISPR/Cas9 system is a powerful genetic engineering technique that has been widely used in gene therapy, as well as in the development of novel antimicrobials and transgenic insects. However, several challenges, including the lack of effective host target genes and the off-target effects, limit the application of CRISPR/Cas9 in insects. To mitigate these difficulties, we established a highly efficient virus-inducible CRISPR/Cas9 system in transgenic silkworms. This system includes the baculovirus-inducible promoter 39K, which directs transcription of the gene encoding, the Cas9 protein, and the U6 promoter which targets the sgATAD3A site of the ATPase family AAA domain-containing protein 3 (ATAD3A) gene. The double-positive transgenic line sgATAD3A×39K-Cas9 (ATAD3A-KO) was obtained by hybridization; antiviral activity in this hybrid transgenic line is induced only after Bombyx mori nucleopolyhedrovirus (BmNPV) infection. The BmNPV-inducible system significantly reduced off-target effects and did not affect the economically important characteristics of the transgenic silkworms. Most importantly, this novel system efficiently and consistently edited target genes, inhibiting BmNPV replication after the transgenic silkworms were inoculated with occlusion bodies (OBs). The suppression of BmNPV by the virus-inducible system was comparable to that of the stably expressed CRISPR/Cas9 system. Therefore, we successfully established a highly efficient BmNPV-inducible ATAD3A-KO transgenic silkworm line, with improved gene targeting specificity and antiviral efficiency. Our study thereby provides insights into the treatment of infectious diseases and into the control of insect pests.

摘要

CRISPR/Cas9 系统是一种强大的基因工程技术,已广泛应用于基因治疗,以及新型抗菌药物和转基因昆虫的开发。然而,包括缺乏有效的宿主靶基因和脱靶效应在内的一些挑战限制了 CRISPR/Cas9 在昆虫中的应用。为了缓解这些困难,我们在转基因家蚕中建立了一种高效的病毒诱导型 CRISPR/Cas9 系统。该系统包括杆状病毒诱导启动子 39K,其指导编码 Cas9 蛋白的基因的转录,以及靶向 ATP 酶家族 AAA 结构域包含蛋白 3(ATAD3A)基因 sgATAD3A 位点的 U6 启动子。通过杂交获得了双阳性转基因系 sgATAD3A×39K-Cas9(ATAD3A-KO);只有在感染家蚕核型多角体病毒(BmNPV)后,该杂交转基因系才会诱导抗病毒活性。BmNPV 诱导系统显著降低了脱靶效应,且不会影响转基因家蚕的经济重要特性。最重要的是,这种新型系统能够高效且一致地编辑靶基因,在接种包含体(OB)后抑制 BmNPV 的复制。病毒诱导系统对 BmNPV 的抑制作用与稳定表达的 CRISPR/Cas9 系统相当。因此,我们成功建立了一种高效的 BmNPV 诱导型 ATAD3A-KO 转基因家蚕系,提高了基因靶向特异性和抗病毒效率。我们的研究为传染病的治疗和昆虫的防治提供了新的思路。

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