THE NATIVE FORM AND MATURATION PROCESS OF HEPATITIS-C VIRUS CORE PROTEIN

Citation
K. Yasui et al., THE NATIVE FORM AND MATURATION PROCESS OF HEPATITIS-C VIRUS CORE PROTEIN, Journal of virology, 72(7), 1998, pp. 6048-6055
Citations number
47
Categorie Soggetti
Virology
Journal title
ISSN journal
0022538X
Volume
72
Issue
7
Year of publication
1998
Pages
6048 - 6055
Database
ISI
SICI code
0022-538X(1998)72:7<6048:TNFAMP>2.0.ZU;2-J
Abstract
The maturation and subcellular localization of hepatitis C virus (HCV) core protein were investigated with both a vaccinia virus expression system and CHO cell lines stably transformed with HCV cDNA. Two HCV co re proteins, with molecular sizes of 21 kDa (p21) and 23 kDa (p23), we re identified. The C-terminal end of p23 is amino acid 191 of the HCV polyprotein, and p21 is produced as a result of processing between ami no acids 174 and 191. The subcellular localization of the HCV core pro tein,vas examined by confocal laser scanning microscopy. Although HCV core protein resided predominantly in the cytoplasm, it was also found in the nucleus and had the same molecular size as p21 in both locatio ns, as determined by subcellular fractionation. The HCV core proteins had different immunoreactivities to a panel of monoclonal antibodies. Antibody 5E3 stained core protein in both the cytoplasm and the nucleu s, C7-50 stained core protein only in the cytoplasm, and 499S stained core protein only in the nucleus. These results clearly indicate that the p23 form of HCV core protein is processed to p21 in the cytoplasm and that the core protein in the nucleus has a higher-order structure different from that of p21 in the cytoplasm. HCV core protein in sera of patients with HCV infection was analyzed in order to determine the molecular size of genuinely processed HCV core protein. HCV core prote in in sera was found to have exactly the same molecular weight as the p21 protein. These results suggest that p21 core protein is a componen t of native viral particles.