首页> 美国卫生研究院文献>Journal of Virology >Chimeric Feline Coronaviruses That Encode Type II Spike Protein on Type I Genetic Background Display Accelerated Viral Growth and Altered Receptor Usage
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Chimeric Feline Coronaviruses That Encode Type II Spike Protein on Type I Genetic Background Display Accelerated Viral Growth and Altered Receptor Usage

机译:在I型遗传背景上编码II型穗蛋白的嵌合猫科冠状病毒显示病毒生长加快和受体使用改变。

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摘要

Persistent infection of domestic cats with feline coronaviruses (FCoVs) can lead to a highly lethal, immunopathological disease termed feline infectious peritonitis (FIP). Interestingly, there are two serotypes, type I and type II FCoVs, that can cause both persistent infection and FIP, even though their main determinant of host cell tropism, the spike (S) protein, is of different phylogeny and displays limited sequence identity. In cell culture, however, there are apparent differences. Type II FCoVs can be propagated to high titers by employing feline aminopeptidase N (fAPN) as a cellular receptor, whereas the propagation of type I FCoVs is usually difficult, and the involvement of fAPN as a receptor is controversial. In this study we have analyzed the phenotypes of recombinant FCoVs that are based on the genetic background of type I FCoV strain Black but encode the type II FCoV strain 79-1146 S protein. Our data demonstrate that recombinant FCoVs expressing a type II FCoV S protein acquire the ability to efficiently use fAPN for host cell entry and corroborate the notion that type I FCoVs use another main host cell receptor. We also observed that recombinant FCoVs display a large-plaque phenotype and, unexpectedly, accelerated growth kinetics indistinguishable from that of type II FCoV strain 79-1146. Thus, the main phenotypic differences for type I and type II FCoVs in cell culture, namely, the growth kinetics and the efficient usage of fAPN as a cellular receptor, can be attributed solely to the FCoV S protein.
机译:用猫冠状病毒(FCoV)持续感染家猫会导致高度致命的免疫病理性疾病,称为猫传染性腹膜炎(FIP)。有趣的是,有两种血清型,I型和II型FCoV,可引起持续感染和FIP,即使它们是宿主细胞向性的主要决定因素,即穗状蛋白(S)蛋白,具有不同的系统发育,并且显示出有限的序列同一性。但是,在细胞培养中,存在明显的差异。通过使用猫氨基肽酶N(fAPN)作为细胞受体,II型FCoV可以繁殖至高滴度,而I型FCoV的繁殖通常是困难的,并且fAPN作为受体的参与尚存争议。在这项研究中,我们分析了重组FCoV的表型,这些表型基于I型FCoV株Black的遗传背景,但编码II型FCoV株79-1146 S蛋白。我们的数据表明,表达II型FCoV S蛋白的重组FCoV获得了有效使用fAPN进入宿主细胞的能力,并证实了I FCoV使用另一种主要宿主细胞受体的观念。我们还观察到重组FCoVs表现出大噬斑表型,出乎意料的是,与II型FCoV株79-1146的生长动力学没有区别。因此,细胞培养中I型和II型FCoV的主要表型差异,即fAPN作为细胞受体的生长动力学和有效利用,只能归因于FCoV S蛋白。

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