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. 2021 Feb;73(2):486-502.
doi: 10.1002/hep.31282.

Functional Comparison of Interferon-α Subtypes Reveals Potent Hepatitis B Virus Suppression by a Concerted Action of Interferon-α and Interferon-γ Signaling

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Functional Comparison of Interferon-α Subtypes Reveals Potent Hepatitis B Virus Suppression by a Concerted Action of Interferon-α and Interferon-γ Signaling

Jieliang Chen et al. Hepatology. 2021 Feb.

Abstract

Background and aims: Interferon (IFN)-α, composed of numerous subtypes, plays a crucial role in immune defense. As the most studied subtype, IFN-α2 has been used for treating chronic hepatitis B virus (HBV) infection, with advantages of finite treatment duration and sustained virologic response, but its efficacy remains relatively low. This study aimed to screen for IFN-α subtypes with the highest anti-HBV potency and to characterize mechanisms of IFN-α-mediated HBV restriction.

Approach and results: Using cell culture-based HBV infection systems and a human-liver chimeric mouse model, IFN-α subtype-mediated antiviral response and signaling activation were comprehensively analyzed. IFN-α14 was identified as the most effective subtype in suppression of HBV covalently closed circular DNA transcription and HBV e antigen/HBV surface antigen production, with median inhibitory concentration values approximately 100-fold lower than those of the conventional IFN-α2. IFN-α14 alone elicited IFN-α and IFN-γ signaling crosstalk in a manner similar to the combined use of IFN-α2 and IFN-γ, inducing multiple potent antiviral effectors, which synergistically restricted HBV replication. Guanylate binding protein 5, one of the most differentially expressed genes between IFN-α14-treated and IFN-α2-treated liver cells, was identified as an HBV restriction factor. A strong IFN-α-IFN-α receptor subunit 1 interaction determines the anti-HBV activity of IFN-α. The in vivo anti-HBV activity of IFN-α14 and treatment-related transcriptional patterns were further confirmed, and few adverse effects were observed.

Conclusions: A concerted IFN-α and IFN-γ response in liver, which could be efficiently elicited by IFN-α subtype 14, is associated with potent HBV suppression. These data deepen the understanding of the divergent activities of IFN-α subtypes and the mechanism underlying the synergism between IFN-α and IFN-γ signaling, with implications for improved IFN therapy and HBV curative strategies.

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References

    1. Revill PA, Chisari FV, Block JM, Dandri M, Gehring AJ, Guo H, et al.; Members of the ICE‐HBV Working Groups; ICE‐HBV Stakeholders Group Chairs; ICE‐HBV Senior Advisors . A global scientific strategy to cure hepatitis B. Lancet Gastroenterol Hepatol 2019;4:545‐558.
    1. Hoffmann HH, Schneider WM, Rice CM. Interferons and viruses: an evolutionary arms race of molecular interactions. Trends Immunol 2015;36:124‐138.
    1. Wieland SF, Guidotti LG, Chisari FV. Intrahepatic induction of alpha/beta interferon eliminates viral RNA‐containing capsids in hepatitis B virus transgenic mice. J Virol 2000;74:4165‐4173.
    1. Tan G, Song H, Xu F, Cheng G. When hepatitis B virus meets interferons. Front Microbiol 2018;9:1611. https://doi.org/10.3389/fmicb.2018.01611 . https://www.frontiersin.org/journals/microbiology . - DOI
    1. Gibbert K, Schlaak JF, Yang D, Dittmer U. IFN‐alpha subtypes: distinct biological activities in anti‐viral therapy. Br J Pharmacol 2013;168:1048‐1058.

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