4.6 Article

Mapping of the hepatitis B virus pre-S1 domain involved in receptor recognition

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JOURNAL OF VIROLOGY
卷 79, 期 15, 页码 9786-9798

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AMER SOC MICROBIOLOGY
DOI: 10.1128/JVI.79.15.9786-9798.2005

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  1. NCRR NIH HHS [1 C06 RR016228, 1 C06 RR12087, P51 RR013986, C06 RR016228, RR13986, C06 RR012087] Funding Source: Medline
  2. NIAID NIH HHS [R01 AI46609, R01 AI046609] Funding Source: Medline

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Hepatitis B virus (HBV) and woolly monkey hepatitis B virus (WMHBV) are primate hepadnaviruses that display restricted tissue and host tropisms. Hepatitis D virus (HDV) particles pseudotyped with HBV and WMHBV envelopes (HBV-HDV and WM-HDV) preferentially infect human and spider monkey hepatocytes, respectively, thereby confirming host range bias in vitro. The analysis of chimeric HBV and WMHBV large (L) envelope proteins suggests that the pre-S1 domain may comprise two regions that affect infectivity: one within the amino-terminal 40 amino acids of pre-S1 and one downstream of this region. In the present study, we further characterized the role of the amino terminus of pre-S1 in infectivity by examining the ability of synthetic peptides to competitively block HDV infection of primary human and spider monkey hepatocytes. A synthetic peptide representing the first 45 residues of the pre-S1 domain of the HBV L protein blocked infectivity of HBV-HDV and WM-HDV, with a requirement for myristylation of the amino terminal residue. Competition studies with truncated peptides suggested that pre-S1 residues 5 to 20 represent the minimal domain for inhibition of HDV infection and, thus, presumably represent the residues involved in virus-host receptor interaction. Recombinant pre-SI proteins expressed in insect cells blocked infection with HBV-HDV and WM-HDV at a concentration of 1 nanomolar. The ability of short pre-S1 peptides to efficiently inhibit HDV infection suggests that they represent suitable ligands for identification of the HBV receptor and that a pre-SI mimetic may represent a rational therapy for the treatment of HBV infection.

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