Arsenic trioxide impacts hepatitis B virus core nuclear localization and efficiently interferes with HBV infection
Abstract: The key to a curative treatment of hepatitis B virus (HBV) infection is the eradication of the intranuclear episomal covalently closed circular DNA (cccDNA), the stable persistence reservoir of HBV. Currently, established therapies can only limit HBV replication but fail to tackle the cccDNA. Thus, novel therapeutic approaches toward curative treatment are urgently needed. Recent publications indicated a strong association between the HBV core protein SUMOylation and the association with promyelocytic leukemia nuclear bodies (PML-NBs) on relaxed circular DNA to cccDNA conversion. We propose that interference with the cellular SUMOylation system and PML-NB integrity using arsenic trioxide provides a useful tool in the treatment of HBV infection. Our study showed a significant reduction in HBV-infected cells, core protein levels, HBV mRNA, and total DNA. Additionally, a reduction, albeit to a limited extent, of HBV cccDNA could be observed. Furthermore, this interference was also applied for the treatment of an established HBV infection, characterized by a stably present nuclear pool of cccDNA. Arsenic trioxide (ATO) treatment not only changed the amount of expressed HBV core protein but also induced a distinct relocalization to an extranuclear phenotype during infection. Moreover, ATO treatment resulted in the redistribution of transfected HBV core protein away from PML-NBs, a phenotype similar to that previously observed with SUMOylation-deficient HBV core. Taken together, these findings revealed the inhibition of HBV replication by ATO treatment during several steps of the viral replication cycle, including viral entry into the nucleus as well as cccDNA formation and maintenance. We propose ATO as a novel prospective treatment option for further pre-clinical and clinical studies against HBV infection
- Location
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Deutsche Nationalbibliothek Frankfurt am Main
- Extent
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Online-Ressource
- Language
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Englisch
- Notes
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Microbiology spectrum. - 12, 5 (2024) , e03788-23, ISSN: 2165-0497
- Event
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Veröffentlichung
- (where)
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Freiburg
- (who)
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Universität
- (when)
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2024
- Creator
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Hofmann, Samuel
Luther, Julius
Plank, Verena
Oswald, Andreas
Mai, Julia
Simons, Ilka
Miller, Julija
Falcone, Valeria
Hansen-Palmus, Lea
Hengel, Hartmut
Nassal, Michael
Protzer-Knolle, Ulrike
Schreiner, Sabrina
- DOI
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10.1128/spectrum.03788-23
- URN
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urn:nbn:de:bsz:25-freidok-2488745
- Rights
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Open Access; Der Zugriff auf das Objekt ist unbeschränkt möglich.
- Last update
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14.08.2025, 10:51 AM CEST
Data provider
Deutsche Nationalbibliothek. If you have any questions about the object, please contact the data provider.
Associated
- Hofmann, Samuel
- Luther, Julius
- Plank, Verena
- Oswald, Andreas
- Mai, Julia
- Simons, Ilka
- Miller, Julija
- Falcone, Valeria
- Hansen-Palmus, Lea
- Hengel, Hartmut
- Nassal, Michael
- Protzer-Knolle, Ulrike
- Schreiner, Sabrina
- Universität
Time of origin
- 2024