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通过定向缺失群特异性基因获得的减毒活冠状病毒疫苗可预防猫传染性腹膜炎。

Live, attenuated coronavirus vaccines through the directed deletion of group-specific genes provide protection against feline infectious peritonitis.

作者信息

Haijema Bert Jan, Volders Haukeline, Rottier Peter J M

机构信息

Institute of Virology, Department of Infectious Diseases and Immunology, Faculty of Veterinary Medicine, Utrecht University, 3584 CL Utrecht, The Netherlands.

出版信息

J Virol. 2004 Apr;78(8):3863-71. doi: 10.1128/jvi.78.8.3863-3871.2004.

Abstract

Feline infectious peritonitis (FIP) is a fatal immunity-mediated disease caused by mutants of a ubiquitous coronavirus. Since previous attempts to protect cats under laboratory and field conditions have been largely unsuccessful, we used our recently developed system of reverse genetics (B. J. Haijema, H. Volders, and P. J. M. Rottier, J. Virol. 77:4528-4538, 2003) for the development of a modified live FIP vaccine. With this objective, we deleted the group-specific gene cluster open reading frame 3abc or 7ab and obtained deletion mutant viruses that not only multiplied well in cell culture but also showed an attenuated phenotype in the cat. At doses at which the wild-type virus would be fatal, the mutants with gene deletions did not cause any clinical symptoms. They still induced an immune response, however, as judged from the high levels of virus-neutralizing antibodies. The FIP virus (FIPV) mutant lacking the 3abc cluster and, to a lesser extent, the mutant missing the 7ab cluster, protected cats against a lethal homologous challenge; no protection was obtained with the mutant devoid of both gene clusters. Our studies show that the deletion of group-specific genes from the coronavirus genome results in live attenuated candidate vaccines against FIPV. More generally, our approach may allow the development of vaccines against infections with other pathogenic coronaviruses, including that causing severe acute respiratory syndrome in humans.

摘要

猫传染性腹膜炎(FIP)是一种由普遍存在的冠状病毒突变体引起的致命性免疫介导疾病。由于之前在实验室和野外条件下保护猫的尝试大多未成功,我们利用最近开发的反向遗传学系统(B. J. Haijema、H. Volders和P. J. M. Rottier,《病毒学杂志》77:4528 - 4538,2003年)来研发一种改良的FIP活疫苗。为了实现这一目标,我们删除了组特异性基因簇开放阅读框3abc或7ab,获得了缺失突变病毒,这些病毒不仅在细胞培养中增殖良好,而且在猫身上表现出减毒表型。在野生型病毒会致命的剂量下,基因缺失的突变体没有引起任何临床症状。然而,从高水平的病毒中和抗体判断,它们仍然诱导了免疫反应。缺失3abc簇的FIP病毒(FIPV)突变体,以及在较小程度上缺失7ab簇的突变体,能保护猫免受致命的同源攻击;而缺失两个基因簇的突变体则没有提供保护。我们的研究表明,从冠状病毒基因组中删除组特异性基因可产生针对FIPV的减毒活候选疫苗。更普遍地说,我们的方法可能有助于开发针对其他致病性冠状病毒感染的疫苗,包括导致人类严重急性呼吸综合征的病毒。

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