4.6 Review

Virion Secretion of Hepatitis B Virus Naturally Occurring Core Antigen Variants

Journal

CELLS
Volume 10, Issue 1, Pages -

Publisher

MDPI
DOI: 10.3390/cells10010043

Keywords

hepatitis B virus (HBV); naturally occurring mutation; HBV core antigen; immature virion secretion; genome maturation; hydrophobic pocket; compensatory mutation; persistence; hydrodynamic mouse model

Categories

Funding

  1. Kaohsiung Medical University, Kaohsiung, Taiwan
  2. Academia Sinica [AS-SUMMIT-109, MOST-108-3114-Y-001-002, AS-KPQ-109-BioMed]
  3. Ministry of Science and Technology, Taiwan [MOST 107-2321-B-001-028, MOST 107-0210-01-19-01, MOST 109-2314-B-037-137, MOST 109-2811-B-037-526]

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Mutant 97L of HBc in chronic hepatitis B patients exhibits an immature secretion phenotype, contrary to the dogma of wild type HBV virion secretion predominantly containing mature double-stranded DNA genomes. Aberrant behaviors in virion secretion were observed in other naturally occurring HBc variants, possibly mediated by compensatory mutations. Virion secretion regulated by HBV genome maturity could be a potential target for antiviral drug development.
In natural infection, hepatitis B virus (HBV) core protein (HBc) accumulates frequent mutations. The most frequent HBc variant in chronic hepatitis B patients is mutant 97L, changing from an isoleucine or phenylalanine to a leucine (L) at HBc amino acid 97. One dogma in the HBV research field is that wild type HBV secretes predominantly virions containing mature double-stranded DNA genomes. Immature genomes, containing single-stranded RNA or DNA, do not get efficiently secreted until reaching genome maturity. Interestingly, HBc variant 97L does not follow this dogma in virion secretion. Instead, it exhibits an immature secretion phenotype, which preferentially secretes virions containing immature genomes. Other aberrant behaviors in virion secretion were also observed in different naturally occurring HBc variants. A hydrophobic pocket around amino acid 97 was identified by bioinformatics, genetic analysis, and cryo-EM. We postulated that this hydrophobic pocket could mediate the transduction of the genome maturation signal for envelopment from the capsid interior to its surface. Virion morphogenesis must involve interactions between HBc, envelope proteins (HBsAg) and host factors, such as components of ESCRT (endosomal sorting complex required for transport). Immature secretion can be offset by compensatory mutations, occurring at other positions in HBc or HBsAg. Recently, we demonstrated in mice that the persistence of intrahepatic HBV DNA is related to virion secretion regulated by HBV genome maturity. HBV virion secretion could be an antiviral drug target.

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