4.6 Article

Canocapavir Is a Novel Capsid Assembly Modulator Inducing a Conformational Change of the Linker Region of HBV Core Protein

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VIRUSES-BASEL
卷 15, 期 5, 页码 -

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MDPI
DOI: 10.3390/v15051195

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hepatitis B virus; hepatitis B virus core protein; core protein allosteric modulator; capsid assembly; viral particle egress; allosteric effect

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Canocapavir is a novel antiviral agent that is currently in phase II clinical trial for hepatitis B virus (HBV) infection. It prevents the encapsidation of HBV pregenomic RNA and increases the accumulation of cytoplasmic empty capsids by targeting the hydrophobic pocket of HBV core protein (HBc). Canocapavir treatment reduces the egress of naked capsids and interferes with the interaction between HBc and HBV large surface protein, resulting in diminished production of empty virions. Moreover, Canocapavir induces a conformational change of capsids, exposing the C-terminus of HBc linker region on the exterior.
Canocapavir is a novel antiviral agent with characteristics of core protein allosteric modulators (CpAMs) that is currently in a phase II clinical trial for treatment of hepatitis B virus (HBV) infection. Herein, we show that Canocapavir prevented the encapsidation of HBV pregenomic RNA and increased the accumulation of cytoplasmic empty capsids, presumably by targeting the hydrophobic pocket at the dimer-dimer interface of HBV core protein (HBc). Canocapavir treatment markedly reduced the egress of naked capsids, which could be reversed by Alix overexpression through a mechanism other than direct association of Alix with HBc. Moreover, Canocapavir interfered with the interaction between HBc and HBV large surface protein, resulting in diminished production of empty virions. Of particular note, Canocapavir induced a conformational change of capsids, with the C-terminus of HBc linker region fully exposed on the exterior of capsids. We posit that the allosteric effect may have great importance in the anti-HBV activity of Canocapavir, given the emerging virological significance of HBc linker region. In support of this notion, the mutation at HBc V124W typically recapitulated the conformational change of the empty capsid with aberrant cytoplasmic accumulation. Collectively, our results indicate Canocapavir as a mechanistically distinct type of CpAMs against HBV infection.

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