Abstract / Summary
Chronic hepatitis B virus (HBV) infection persists under current antiviral therapy because covalently closed circular DNA (cccDNA) remains in the infected hepatocytes as a durable transcriptional template. Although type I interferon (IFN-I) can reduce HBV cccDNA gene expression, the host effectors and mechanisms that restrict cccDNA remain incompletely defined. Using a minicircle-based HBV cccDNA expressing a Gaussia luciferase reporter gene (mcHBV-GLuc), we investigated how promyelocytic leukemia protein (PML) suppresses HBV cccDNA activity. Multiple PML isoforms reduced cccDNA-driven reporter activity and HBsAg production, and HBx-deficient (ΔX) mcHBV cccDNA was more susceptible than wild-type cccDNA to PML-mediated inhibition. Interestingly, efficient antiviral activity required the major PML SUMOylation sites. Disruption of SMC5/6 function attenuated PML-mediated repression of HBx-deficient cccDNA, associated with reduced PML SUMOylation and PML nuclear-body organization. These findings identify PML as a SUMO-dependent inhibitor of HBV cccDNA activity and reveal a context-dependent functional relationship between PML and SMC5/6 that is modulated by HBx.