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痘苗病毒A35R蛋白的特性及其在毒力中的作用。

Characterization of the vaccinia virus A35R protein and its role in virulence.

作者信息

Roper Rachel L

机构信息

East Carolina University, Brody School of Medicine, 600 Moye Blvd., 5E106A, Department of Microbiology & Immunology, Greenville, NC 27834, USA.

出版信息

J Virol. 2006 Jan;80(1):306-13. doi: 10.1128/JVI.80.1.306-313.2006.

Abstract

The vaccinia virus A35R gene is highly conserved among poxviruses and encodes a previously uncharacterized hydrophobic acidic protein. Western blotting with anti-A35R peptide antibodies indicated that the protein is expressed early in infection and resolved as a single sharp band of approximately 23 kDa, slightly higher than the 20 kDa predicted from its sequence. The protein band appeared to be the same molecular weight on sodium dodecyl sulfate-polyacrylamide gel electrophoresis, whether expressed in an in vitro transcription/translation system without microsomes or expressed in infected cells, suggesting that it was not glycosylated. A mutant virus with the A35R gene deleted (vA35Delta) formed wild-type-sized plaques on all cell lines tested (human, monkey, mouse, and rabbit); thus, A35R is not required for replication and does not appear to be a host range gene. Although the A35R protein is hydrophobic, it is unlikely to be an integral membrane protein, as it partitioned to the aqueous phase during TX-114 partitioning. The protein could not be detected in virus-infected cell supernatants. A35R localized intracellularly to the virus factories, where the first stages of morphogenesis occur. The vA35Delta mutant formed near-normal levels of the various morphogenic stages of infectious virus particles and supported normal acid-induced fusion of virus-infected cells. Despite normal growth and morphogenesis in vitro, the vA35Delta mutant virus was attenuated in intranasal challenge of mice compared to wild-type and A35R rescue virus. Thus, the intracellular A35R protein plays a role in virulence. The A35R has little homology to any protein outside of poxviruses, suggesting a novel virulence mechanism.

摘要

痘苗病毒A35R基因在痘病毒中高度保守,编码一种以前未被鉴定的疏水酸性蛋白。用抗A35R肽抗体进行的蛋白质印迹分析表明,该蛋白在感染早期表达,呈现为一条约23 kDa的单一清晰条带,略高于根据其序列预测的20 kDa。无论在无微粒体的体外转录/翻译系统中表达还是在感染细胞中表达,该蛋白条带在十二烷基硫酸钠-聚丙烯酰胺凝胶电泳上的分子量似乎相同,这表明它没有糖基化。缺失A35R基因的突变病毒(vA35Delta)在所有测试的细胞系(人、猴、小鼠和兔)上形成野生型大小的噬斑;因此,复制不需要A35R,它似乎也不是宿主范围基因。尽管A35R蛋白具有疏水性,但它不太可能是一种整合膜蛋白,因为它在TX-114分配过程中分配到水相。在病毒感染的细胞上清液中检测不到该蛋白。A35R在细胞内定位于病毒工厂,形态发生的第一阶段在此发生。vA35Delta突变体形成的感染性病毒颗粒的各个形态发生阶段的水平接近正常,并支持病毒感染细胞的正常酸诱导融合。尽管在体外生长和形态发生正常,但与野生型和A35R拯救病毒相比,vA35Delta突变病毒在小鼠鼻内攻击中减毒。因此,细胞内A35R蛋白在毒力中起作用。A35R与痘病毒以外的任何蛋白几乎没有同源性,这表明存在一种新的毒力机制。

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