Specific and nonhepatotoxic degradation of nuclear hepatitis B virus cccDNA.
basic_science · Level V
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- Record sourced from PubMed, PMID 24557838.
- Also identified by DOI 10.1126/science.1243462 and PMC identifier 6309542.
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Abstract
Current antiviral agents can control but not eliminate hepatitis B virus (HBV), because HBV establishes a stable nuclear covalently closed circular DNA (cccDNA). Interferon-α treatment can clear HBV but is limited by systemic side effects. We describe how interferon-α can induce specific degradation of the nuclear viral DNA without hepatotoxicity and propose lymphotoxin-β receptor activation as a therapeutic alternative. Interferon-α and lymphotoxin-β receptor activation up-regulated APOBEC3A and APOBEC3B cytidine deaminases, respectively, in HBV-infected cells, primary hepatocytes, and human liver needle biopsies. HBV core protein mediated the interaction with nuclear cccDNA, resulting in cytidine deamination, apurinic/apyrimidinic site formation, and finally cccDNA degradation that prevented HBV reactivation. Genomic DNA was not affected. Thus, inducing nuclear deaminases-for example, by lymphotoxin-β receptor activation-allows the development of new therapeutics that, in combination with existing antivirals, may cure hepatitis B.
Medical subject headings
- Antiviral Agents
- DNA, Circular
- DNA, Viral
- Hepatitis B
- Hepatitis B virus
- Hepatocytes
- Interferon-alpha
- Lymphotoxin beta Receptor