Treatment of chronic hepadnavirus infection in a woodchuck animal model with an inhibitor of protein folding and trafficking (original) (raw)
References
Mehta, A., Lu, X., Block, T.M., Blumberg, B.S. & Dwek, R.A. Hepatitis B virus envelope proteins vary drastically in their sensitivity to glycan processing. Proc. Natl. Acad. Sci. USA94, 1822–1827 (1997). ArticleCAS Google Scholar
Lu, X. et al. Aberrant trafficking of hepatitis B virus glycoproteins in cells in which N-glycan processing is inhibited. Proc. Natl. Acad. Sci USA94, 2380–2385 (1997). ArticleCAS Google Scholar
Sherker, A. & Marion, P. Hepadnaviruses and hepatocellular carcinoma. Ann Revs. Microb.45, 475–508 (1991). ArticleCAS Google Scholar
Tipples, G.A. et al. Mutations in the HBV RNA-dependent DNA polymerase confers resistance to lamivudine in vivo. Hepatology24, 714–717 (1996). PubMedCAS Google Scholar
Tennant, B.C. & Gerin, J.L. The woodchuck model of hepatitis B virus infection. In: The Liver: Biology and pathobiology. 3rd edition. Eds. Aries, I.M. et al. Raven press, Publisher (NY, NY) pp. 1455–1466 (1994). Google Scholar
Hoofnagle, J.H. & DiBisceglie, A.M. Drug Therapy: The treatment of chronic viral hepatitis. New Engl. J. Med.336, 347–356 (1997). ArticleCAS Google Scholar
Wong, D.C., Shi, J.W.K., Purcell, R.H., Gerin, J.L. & London, W.T. Natural and experimental infection of woodchucks with woodchuck hepatitis virus, as measured by new, specific assays for woodchuck hepatitis surface antigen and antibody. J. Clin. Microb.15, 484–490 (1982). CAS Google Scholar
Lu, X., Mehta, A., Butters, T., Dwek, R. & Block, T. Evidence that N-linked glycosylation is necessary for hepatitis B virus secretion. Virol.213, 660–665 (1995). ArticleCAS Google Scholar
Cullen, J.M. et al. In vivo antiviral activity and pharmacokinetics of (-)-cis-5-fluoro-1-[2-(hydroxymethly)-1,3-oxathiolan-5-yl] cytosine in woodchuck hepatitis virus-infected woodchucks. Antimicro. Agents Chemo.41, 2076–2082 (1997). ArticleCAS Google Scholar
Nowak, M.A. et al. Viral dynamics in hepatitis B virus infection. Proc. Natl. Acad. Sci. USA93, 4398–4402 (1996). ArticleCAS Google Scholar
Ueda, K., Tsurimoto, T. & Matsubara, K. Three Envelope Proteins of Hepatitis B virus: Large S, Middle S, and Major S needed for the formation of Dane particles J. Virol.65, 3521–3529 (1991). PubMedPubMed CentralCAS Google Scholar
Seifer, M., Heermann, K.H. & Gerlich, W.J. Replication of hepatitis B virus in transfected nonhepatic cells. Virol.179, 300–311 (1990). ArticleCAS Google Scholar
Wei, Y., Tavis, J.E. & Ganem, D. Relationship between viral DNA synthesis and virion envelopment in hepatitis B virus. J. Virol.70, 6455–6458 (1997). Google Scholar
Abe, K., Kurata, T. & Shikata, T. Localization of woodchuck hepatitis virus in the liver. Hepatology8, 88–92 (1988). ArticleCAS Google Scholar
Moore, S.E. & Spiro, R.G. Demonstration that Golgi endo—D-mannosidase provides a glucosidase independent pathway for the formation of complex N-linked oligosaccharides of glycoproteins. J. Biol. Chem.265, 13104–13112 (1990). PubMedCAS Google Scholar
Werr, M. & Prange, R. Role for calnexin and N-linked glycosylation in the assembly and secretion of hepatitis B virus middle envelope protein particles. J. Virol.7, 778–782
Jacob, G.S. Glycosylation inhibitors in biology and medicine. Curr. Opin Struct. Biol.5, 605–611 (1995). ArticleCAS Google Scholar
Karpas, A. et al. Amino sugar derivatives as potential anti-HIV agents . Proc. Natl. Acad. Sci. USA85, 9229–9233 (1988). ArticleCAS Google Scholar
Fontana, R.J. & Lok, A.S.F. Combination therapy for chronic hepatitis B. Hepatology26, 234–236 (1997). ArticleCAS Google Scholar
Korba, A.B. et al. Liver-targeted antiviral nucleosides: Enhanced antiviral activity of phosphatidyl-dideoxyguanosine versus dideoxyguanosine in woodchuck hepatitis virus infection in vivo . Hepatology23, No.6 958–963 (1996). PubMedCAS Google Scholar
Lee, W.M. et al. Antibodies to polymerized albumin in woodchuck hepatitis virus infection. Viral Immuno.6, 13–19 (1993). ArticleCAS Google Scholar
Guile, G.R., Rudd, P., Wing, D., Prime, S.B. & Dwek, R.A. A rapid high-resolution high-performance liquid chromatographic method for separating glycan mixtures and analyzing oligosaccharide profiles. Anal. Biochem.240, 210–226 (1996). ArticleCAS Google Scholar
Rudd, P.M. et al. Oligosaccharide Sequence Technology. Nature388, 205–208 (1997). ArticleCAS Google Scholar