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建立一株 I 型猫冠状病毒 C3663 的强毒全长 cDNA 克隆。

Establishment of a Virulent Full-Length cDNA Clone for Type I Feline Coronavirus Strain C3663.

机构信息

Laboratory of Clinical Research on Infectious Diseases, Research Institute for Microbial Diseases, Osaka University, Osaka, Japan.

Laboratory of Veterinary Microbiology, Joint Faculty of Veterinary Medicine, Yamaguchi University, Yamaguchi, Japan.

出版信息

J Virol. 2019 Oct 15;93(21). doi: 10.1128/JVI.01208-19. Print 2019 Nov 1.

Abstract

Feline infectious peritonitis (FIP) is one of the most important infectious diseases in cats and is caused by feline coronavirus (FCoV). Tissue culture-adapted type I FCoV shows reduced FIP induction in experimental infections, which complicates the understanding of FIP pathogenesis caused by type I FCoV. We previously found that the type I FCoV strain C3663 efficiently induces FIP in specific-pathogen-free cats through the naturally infectious route. In this study, we employed a bacterial artificial chromosome-based reverse genetics system to gain more insights into FIP caused by the C3633 strain. We successfully generated recombinant virus (rC3663) from Fcwf-4 cells transfected with infectious cDNA that showed growth kinetics similar to those shown by the parental virus. Next, we constructed a reporter C3663 virus carrying the nanoluciferase (Nluc) gene to measure viral replication with high sensitivity. The inhibitory effects of different compounds against rC3663-Nluc could be measured within 24 h postinfection. Furthermore, we found that A72 cells derived from canine fibroblasts permitted FCoV replication without apparent cytopathic effects. Thus, our reporter virus is useful for uncovering the infectivity of type I FCoV in different cell lines, including canine-derived cells. Surprisingly, we uncovered aberrant viral RNA transcription of rC3663 in A72 cells. Overall, we succeeded in obtaining infectious cDNA clones derived from type I FCoV that retained its virulence. Our recombinant FCoVs are powerful tools for increasing our understanding of the viral life cycle and pathogenesis of FIP-inducing type I FCoV. Feline coronavirus (FCoV) is one of the most significant coronaviruses, because this virus induces feline infectious peritonitis (FIP), which is a lethal disease in cats. Tissue culture-adapted type I FCoV often loses pathogenicity, which complicates research on type I FCoV-induced feline infectious peritonitis (FIP). Since we previously found that type I FCoV strain C3663 efficiently induces FIP in specific-pathogen-free cats, we established a reverse genetics system for the C3663 strain to obtain recombinant viruses in the present study. By using a reporter C3663 virus, we were able to examine the inhibitory effect of 68 compounds on C3663 replication in Fcwf-4 cells and infectivity in a canine-derived cell line. Interestingly, one canine cell line, A72, permitted FCoV replication but with low efficiency and aberrant viral gene expression.

摘要

猫传染性腹膜炎 (FIP) 是猫科动物中最重要的传染病之一,由猫冠状病毒 (FCoV) 引起。组织培养适应的 I 型 FCoV 在实验感染中显示出降低的 FIP 诱导作用,这使得对 I 型 FCoV 引起的 FIP 发病机制的理解变得复杂。我们之前发现,I 型 FCoV 株 C3663 通过自然感染途径在无特定病原体猫中有效地诱导 FIP。在这项研究中,我们采用基于细菌人工染色体的反向遗传学系统来更深入地了解由 C3633 株引起的 FIP。我们成功地从转染了传染性 cDNA 的 Fcwf-4 细胞中生成了重组病毒 (rC3663),其生长动力学与亲本病毒相似。接下来,我们构建了携带纳米荧光素酶 (Nluc) 基因的报告 C3663 病毒,以高灵敏度测量病毒复制。在感染后 24 小时内,可以测量不同化合物对 rC3663-Nluc 的抑制作用。此外,我们发现源自犬成纤维细胞的 A72 细胞允许 FCoV 复制而没有明显的细胞病变效应。因此,我们的报告病毒可用于揭示不同细胞系(包括犬源细胞)中 I 型 FCoV 的感染性。令人惊讶的是,我们在 A72 细胞中发现 rC3663 的异常病毒 RNA 转录。总的来说,我们成功地获得了保留其毒力的 I 型 FCoV 的传染性 cDNA 克隆。我们的重组 FCoV 是增加对诱导 FIP 的 I 型 FCoV 的病毒生命周期和发病机制的理解的有力工具。猫冠状病毒 (FCoV) 是最重要的冠状病毒之一,因为该病毒会引起猫传染性腹膜炎 (FIP),这是一种猫科动物的致命疾病。组织培养适应的 I 型 FCoV 通常会失去致病性,这使得对 I 型 FCoV 诱导的猫传染性腹膜炎 (FIP) 的研究变得复杂。由于我们之前发现 I 型 FCoV 株 C3663 可有效地在无特定病原体的猫中诱导 FIP,因此我们在本研究中建立了 C3663 株的反向遗传学系统以获得重组病毒。通过使用报告 C3663 病毒,我们能够检查 68 种化合物对 Fcwf-4 细胞中 C3663 复制和犬源细胞系感染的抑制作用。有趣的是,一种犬源细胞系 A72 允许 FCoV 复制,但效率低且病毒基因表达异常。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9683/6803248/f5648d4d4a31/JVI.01208-19-f0001.jpg

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