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SARS-CoV-2 基因组的快速组装揭示了 NSP6 导致奥密克戎 BA.1 变体衰减。

Rapid assembly of SARS-CoV-2 genomes reveals attenuation of the Omicron BA.1 variant through NSP6.

机构信息

Gladstone Institutes, San Francisco, CA, USA.

Department of Medicine, University of California, San Francisco, CA, USA.

出版信息

Nat Commun. 2023 Apr 21;14(1):2308. doi: 10.1038/s41467-023-37787-0.

Abstract

Although the SARS-CoV-2 Omicron variant (BA.1) spread rapidly across the world and effectively evaded immune responses, its viral fitness in cell and animal models was reduced. The precise nature of this attenuation remains unknown as generating replication-competent viral genomes is challenging because of the length of the viral genome (~30 kb). Here, we present a plasmid-based viral genome assembly and rescue strategy (pGLUE) that constructs complete infectious viruses or noninfectious subgenomic replicons in a single ligation reaction with >80% efficiency. Fully sequenced replicons and infectious viral stocks can be generated in 1 and 3 weeks, respectively. By testing a series of naturally occurring viruses as well as Delta-Omicron chimeric replicons, we show that Omicron nonstructural protein 6 harbors critical attenuating mutations, which dampen viral RNA replication and reduce lipid droplet consumption. Thus, pGLUE overcomes remaining barriers to broadly study SARS-CoV-2 replication and reveals deficits in nonstructural protein function underlying Omicron attenuation.

摘要

尽管 SARS-CoV-2 的奥密克戎变异株(BA.1)在全球范围内迅速传播,并有效地逃避了免疫反应,但它在细胞和动物模型中的病毒适应性降低。由于病毒基因组 (~30kb) 的长度,生成复制能力的病毒基因组具有挑战性,因此这种衰减的确切性质尚不清楚。在这里,我们提出了一种基于质粒的病毒基因组组装和拯救策略(pGLUE),该策略可在单个连接反应中以 >80%的效率构建完整的传染性病毒或非感染性亚基因组复制子。全长复制子和感染性病毒株分别可在 1 周和 3 周内生成。通过测试一系列天然存在的病毒以及德尔塔-奥密克戎嵌合复制子,我们表明奥密克戎非结构蛋白 6 具有关键的衰减突变,这些突变削弱了病毒 RNA 的复制并减少了脂滴的消耗。因此,pGLUE 克服了广泛研究 SARS-CoV-2 复制的剩余障碍,并揭示了奥密克戎衰减所涉及的非结构蛋白功能缺陷。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/98a5/10121567/420a722c0f87/41467_2023_37787_Fig1_HTML.jpg

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