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Mutational analysis of the hepatitis B virus P gene product: domain structure and RNase H activity.
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A recombinant hepatitis B core antigen polypeptide with the protamine-like domain deleted self-assembles into capsid particles but fails to bind nucleic acids.
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Hepatitis B virus nucleocapsid assembly: primary structure requirements in the core protein.
J Virol. 1990 Jul;64(7):3319-30
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A short cis-acting sequence is required for hepatitis B virus pregenome encapsidation and sufficient for packaging of foreign RNA.
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The P gene product of hepatitis B virus is required as a structural component for genomic RNA encapsidation.
J Virol. 1990 Nov;64(11):5324-32
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Mutations affecting hepadnavirus plus-strand DNA synthesis dissociate primer cleavage from translocation and reveal the origin of linear viral DNA.
J Virol. 1991 Mar;65(3):1255-62
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Characterization and genetic analysis of alternatively spliced transcripts of hepatitis B virus in infected human liver tissues and transfected HepG2 cells.
J Virol. 1991 Apr;65(4):1680-6
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A domain of the hepadnavirus capsid protein is specifically required for DNA maturation and virus assembly.
J Virol. 1991 May;65(5):2511-7
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Defective hepatitis B virus particles are generated by packaging and reverse transcription of spliced viral RNAs in vivo.
J Virol. 1991 Oct;65(10):5539-43
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The arginine-rich domain of the hepatitis B virus core protein is required for pregenome encapsidation and productive viral positive-strand DNA synthesis but not for virus assembly.
J Virol. 1992 Jul;66(7):4107-16
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RNA- and DNA-binding activities in hepatitis B virus capsid protein: a model for their roles in viral replication.
J Virol. 1992 Sep;66(9):5232-41
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Hepatitis B virus replication.
Trends Microbiol. 1993 Sep;1(6):221-8
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Multiple functions of capsid protein phosphorylation in duck hepatitis B virus replication.
J Virol. 1994 Jul;68(7):4341-8
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Three-dimensional structure of hepatitis B virus core particles determined by electron cryomicroscopy.
Cell. 1994 Jun 17;77(6):943-50
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In vivo and in vitro expression of defective hepatitis B virus particles generated by spliced hepatitis B virus RNA.
Hepatology. 1995 Jul;22(1):10-9
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Determination of the fold of the core protein of hepatitis B virus by electron cryomicroscopy.
Nature. 1997 Mar 6;386(6620):88-91
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Visualization of a 4-helix bundle in the hepatitis B virus capsid by cryo-electron microscopy.
Nature. 1997 Mar 6;386(6620):91-4
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Heterogeneity and common features of defective hepatitis B virus genomes derived from spliced pregenomic RNA.
Virology. 1997 Nov 24;238(2):363-71
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Duck hepatitis B virus nucleocapsids formed by N-terminally extended or C-terminally truncated core proteins disintegrate during viral DNA maturation.
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Roles of the three major phosphorylation sites of hepatitis B virus core protein in viral replication.
Virology. 1999 Jul 5;259(2):342-8
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The crystal structure of the human hepatitis B virus capsid.
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Hepatitis B virus biology.
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Core protein phosphorylation modulates pregenomic RNA encapsidation to different extents in human and duck hepatitis B viruses.
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Genotype-specific synthesis and secretion of spliced hepatitis B virus genomes in hepatoma cells.
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Global control of hepatitis B virus infection.
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Base pairing among three cis-acting sequences contributes to template switching during hepadnavirus reverse transcription.
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Central role of a serine phosphorylation site within duck hepatitis B virus core protein for capsid trafficking and genome release.
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Underrepresentation of the 3' region of the capsid pregenomic RNA of duck hepatitis B virus.
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Hepatitis B virus transcript produced by RNA splicing.
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Polymerase gene products of hepatitis B viruses are required for genomic RNA packaging as wel as for reverse transcription.
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