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δ抗原的突变分析:对丁型肝炎病毒组装和复制的影响

Mutational analysis of delta antigen: effect on assembly and replication of hepatitis delta virus.

作者信息

Chang M F, Chen C J, Chang S C

机构信息

Institute of Biochemistry, College of Medicine, National Taiwan University, Taipei, Republic of China.

出版信息

J Virol. 1994 Feb;68(2):646-53. doi: 10.1128/JVI.68.2.646-653.1994.

Abstract

Hepatitis delta virus requires a helper function from hepatitis B virus for packaging, release, and infection of hepatocytes. The assembly of large delta antigen (HDAg) is mediated by copackaging with the small surface antigen of hepatitis B virus (HBsAg), and the assembly of small HDAg requires interactions with large HDAg. To examine the molecular mechanisms by which small HBsAg, large HDAg, and small HDAg interact, we have established a virion assembly system in COS7 cells by cotransfecting plasmids encoding the small HBsAg, the small HDAg, and large HDAg mutants. Results indicate that sequences within the C-terminal 19-amino-acid domain flanking the Cxxx isoprenylation motif are important for the assembly of large HDAg. In addition, a large HDAg mutant bearing extra sequences separating the C-terminal 19-amino-acid domain from the common regions of the small and large HDAgs is capable, like the wild-type large HDAg, of copackaging with small HBsAg. The ability of assembly is also demonstrated for a large HDAg mutant from which nuclear localization signals have been removed. Furthermore, a cryptic signal within the N-terminal 50 amino acid residues other than the putative N-terminal coiled-coil structure and a subdomain between amino acid residues 50 and 65 of the large HDAg are important for the assembly of small HDAg as well as the trans-dominant negative regulation of large HDAg in hepatitis delta virus replication.

摘要

丁型肝炎病毒需要乙型肝炎病毒的辅助功能来进行包装、释放以及感染肝细胞。大丁型抗原(HDAg)的组装是通过与乙型肝炎病毒(HBsAg)的小表面抗原共包装介导的,而小HDAg的组装则需要与大HDAg相互作用。为了研究小HBsAg、大HDAg和小HDAg相互作用的分子机制,我们通过共转染编码小HBsAg、小HDAg和大HDAg突变体的质粒,在COS7细胞中建立了病毒体组装系统。结果表明,Cxxx异戊二烯化基序侧翼的C末端19个氨基酸结构域内的序列对于大HDAg的组装很重要。此外,一个带有额外序列的大HDAg突变体,该序列将C末端19个氨基酸结构域与小HDAg和大HDAg的共同区域分隔开,与野生型大HDAg一样,能够与小HBsAg共包装。去除核定位信号的大HDAg突变体也表现出组装能力。此外,大HDAg的N末端50个氨基酸残基内除推定的N末端卷曲螺旋结构之外的一个隐蔽信号以及大HDAg氨基酸残基50至65之间的一个亚结构域,对于小HDAg的组装以及丁型肝炎病毒复制中大HDAg的反式显性负调控都很重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a279/236498/88c1dc388d51/jvirol00011-0081-a.jpg

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