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一种基于核衣壳的严重急性呼吸综合征冠状病毒2(SARS-CoV-2)转互补细胞培养系统,用于概括完整的病毒生命周期。

A Nucleocapsid-based Transcomplementation Cell Culture System of SARS-CoV-2 to Recapitulate the Complete Viral Life Cycle.

作者信息

Yu Yanying, Ju Xiaohui, Ding Qiang

机构信息

School of Medicine, Tsinghua University, Beijing 100084, China.

出版信息

Bio Protoc. 2021 Nov 5;11(21):e4257. doi: 10.21769/BioProtoc.4257.

Abstract

The ongoing COVID-19 pandemic is caused by severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2). As this virus is classified as a biosafety level-3 (BSL-3) agent, the development of countermeasures and basic research methods is logistically difficult. Recently, using reverse genetics, we developed a BSL-2 cell culture system for production of transcription- and replication-component virus-like-particles (trVLPs) by genetic transcomplementation. The system consists of two parts: SARS-CoV-2 GFP/ΔN genomic RNA, in which the nucleocapsid (N) gene, a critical gene for virion packaging, is replaced by a GFP reporter gene; and a packaging cell line for ectopic expression of N (Caco-2-N). The complete viral life cycle can be recapitulated and confined to Caco-2-N cells, with GFP positivity serving as a surrogate readout for viral infection. In addition, we utilized an intein-mediated protein splicing technique to split the N gene into two independent vectors and generated the Caco-2-N cells as a packaging cell line to further enhance the security of this cell culture model. Altogether, this system provides for a safe and convenient method to produce trVLPs in BSL-2 laboratories. These trVLPs can be modified to incorporate desired mutations, permitting high-throughput screening of antiviral compounds and evaluation of neutralizing antibodies. This protocol describes the details of the trVLP cell culture model to make SARS-CoV-2 research more readily accessible.

摘要

持续的新冠疫情是由严重急性呼吸综合征冠状病毒2(SARS-CoV-2)引起的。由于这种病毒被归类为生物安全3级(BSL-3)病原体,因此在后勤方面难以开展应对措施和基础研究方法的开发。最近,我们利用反向遗传学开发了一种BSL-2细胞培养系统,通过基因转互补作用生产转录和复制成分的病毒样颗粒(trVLP)。该系统由两部分组成:SARS-CoV-2 GFP/ΔN基因组RNA,其中病毒体包装的关键基因核衣壳(N)基因被绿色荧光蛋白(GFP)报告基因取代;以及用于异位表达N的包装细胞系(Caco-2-N)。完整的病毒生命周期可以在Caco-2-N细胞中重现并受到限制,GFP阳性作为病毒感染的替代读数。此外,我们利用内含肽介导的蛋白质剪接技术将N基因分成两个独立的载体,并生成Caco-2-N细胞作为包装细胞系,以进一步提高这种细胞培养模型的安全性。总之,该系统为在BSL-2实验室生产trVLP提供了一种安全便捷的方法。这些trVLP可以进行修饰以纳入所需的突变,从而允许高通量筛选抗病毒化合物和评估中和抗体。本方案描述了trVLP细胞培养模型的详细信息,以使SARS-CoV-2研究更容易进行。

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