Journal of Virology · 1989 · 144 citations · 56 references
ImmunologyHepatitis BPathologyPlasma MembranesVirus Envelope ProteinsViral Structural ProteinViral HepatitisLiver PhysiologyVirologyPre-s2 RegionBiomolecular EngineeringMolecular VirologyHepatologyViral Attachment ProteinHepatitisHuman Serum AlbuminProtein EngineeringLiver Plasma MembranesLiver DiseaseVaccine DesignMedicine
Hepatitis B virus particles contain three related viral envelope proteins, the small, middle, and large S (surface) proteins. All three proteins contain the small S amino acid sequence at their carboxyl terminus. It is not clear which of these S proteins functions as the viral attachment protein, binding to a target cell receptor and initiating infection. In this report, recombinant hepatitis B surface antigen (rHBsAg) particles, which contain only virus envelope proteins, were radioactively labeled, and their attachment to human liver membranes was examined. Only the rHBsAg particles containing the large S protein were capable of directly attaching to liver plasma membranes. The attachment was saturable and could be prevented by competition with unlabeled particles or by a monoclonal antibody specific for the large S protein. In the presence of polymerized human serum albumin, both large and middle S protein-containing rHBsAg particles were capable of attaching to the liver plasma membranes. Small S protein-containing rHBsAg particles were not able to attach even in the presence of polymerized human serum albumin. These results indicate that the large S protein may be the viral attachment protein for hepatocytes, binding directly to liver plasma membranes by its unique amino-terminal (pre-S1) sequence. These results also indicate that polymerized human serum albumin or a similar molecule could act as an intermediate receptor, attaching to liver plasma membranes and to the amino acid sequence (pre-S2) shared by the middle and large S proteins but not contained in the small S protein.
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Large surface proteins of hepatitis B virus containing the pre-s sequence
K.‐H. Heermann, U Goldmann, W Schwartz et al. · Journal of Virology · 1984 · 817 citations · Full text
Robert A. Olmsted, N Elango, Gregory A. Prince et al. · Proceedings of the National Academy of Sciences · 1986 · 324 citations · Full text