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新城疫病毒融合蛋白中的两个单突变赋予了血凝素 - 神经氨酸酶非依赖性的融合促进能力,并减弱了对鸡的致病性。

Two single mutations in the fusion protein of Newcastle disease virus confer hemagglutinin-neuraminidase independent fusion promotion and attenuate the pathogenicity in chickens.

作者信息

Ji Yanhong, Liu Tao, Jia Yane, Liu Bin, Yu Qingzhong, Cui Xiaole, Guo Fengfeng, Chang Huiyun, Zhu Qiyun

机构信息

State Key Laboratory of Veterinary Etiological Biology, Lanzhou Veterinary Research Institute, Chinese Academy of Agricultural Sciences, Lanzhou 730046, PR China.

United States Department of Agriculture, Agriculture Research Service, US National Poultry Research Center, Southeast Poultry Research Laboratory, Athens, GA 30605, USA.

出版信息

Virology. 2017 Sep;509:146-151. doi: 10.1016/j.virol.2017.06.021. Epub 2017 Jun 21.

Abstract

The fusion (F) protein of Newcastle disease virus (NDV) affects viral infection and pathogenicity through mediating membrane fusion. Previously, we found NDV with increased fusogenic activity in which contained T458D or G459D mutation in the F protein. Here, we investigated the effects of these two mutations on viral infection, fusogenicity and pathogenicity. Syncytium formation assays indicated that T458D or G459D increased the F protein cleavage activity and enhanced cell fusion with or without the presence of HN protein. The T458D- or G459D-mutated NDV resulted in a decrease in virus replication or release from cells. The animal study showed that the pathogenicity of the mutated NDVs was attenuated in chickens. These results indicate that these two single mutations in F altered or diminished the requirement of HN for promoting membrane fusion. The increased fusogenic activity may disrupt the cellular machinery and consequently decrease the virus replication and pathogenicity in chickens.

摘要

新城疫病毒(NDV)的融合(F)蛋白通过介导膜融合影响病毒感染和致病性。此前,我们发现F蛋白中含有T458D或G459D突变的NDV,其融合活性增强。在此,我们研究了这两种突变对病毒感染、融合性和致病性的影响。合胞体形成试验表明,T458D或G459D增加了F蛋白的裂解活性,并在有或没有HN蛋白存在的情况下增强了细胞融合。T458D或G459D突变的NDV导致病毒复制或从细胞中释放减少。动物研究表明,突变的NDV在鸡中的致病性减弱。这些结果表明,F蛋白中的这两个单突变改变或减少了HN促进膜融合的需求。增加的融合活性可能会破坏细胞机制,从而降低病毒在鸡中的复制和致病性。

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