» Articles » PMID: 17875990

A Substituted Tetrahydro-tetrazolo-pyrimidine is a Specific and Novel Inhibitor of Hepatitis B Virus Surface Antigen Secretion

Overview
Specialty Pharmacology
Date 2007 Sep 19
PMID 17875990
Citations 28
Authors
Affiliations
Soon will be listed here.
Abstract

The high levels of hepatitis B virus (HBV) surface antigen (HBsAg)-bearing subviral particles in the serum of chronically infected individuals are thought to play a role in suppressing the HBV-specific immune response. Current therapeutics are not directed at reducing this viral antigenemia; thus, our group has focused on identifying inhibitors of HBsAg secretion. By using the HBV-expressing cell line HepG2.2.15, high-throughput screening of an 80,288-compound synthetic small-molecule library identified HBF-0259, an aromatically substituted tetrahydro-tetrazolo-(1, 5-a)-pyrimidine. Following resynthesis, HBF-0259 had a 50% effective concentration of approximately 1.5 microM in a secondary, HBV-expressing cell line, with a concentration that exhibited 50% cytotoxicity of >50 microM. The equilibrium concentration of HBF-0259 in aqueous solution at physiological pH was 15 to 16 microM; the selective index was thus >9. As intended by our screening paradigm, HBF-0259 is a selective, potent inhibitor of secretion of both subviral and DNA-containing viral particles, while the secretion of alpha-1-acid glycoprotein and alpha-1-antitrypsin was unaffected. The HBV e antigen, which is not a constituent of HBV particles, was also unaffected, suggesting that the secretion of particles bearing HBV structural glycoproteins is targeted directly. Inhibitory activity was also confirmed by transfection of HBsAg, indicating that the action of the compound is independent of those of other viral proteins. HBF-0259 had no effect on HBV DNA synthesis, demonstrating that inhibition is independent of viral genomic replication. Finally, HBF-0259 had little or no effect on the cell-to-cell spread of two unrelated viruses, suggesting that it is a specific inhibitor of secretion of HBsAg. Possible mechanisms of action and the implications for its development are discussed.

Citing Articles

New tetrazolopyrrolidine-1,2,3-triazole analogues as potent anticancer agents: design, synthesis and molecular docking studies.

Kumar Gandham S, Kudale A, Allaka T, Chepuri K, Jha A Mol Divers. 2023; 28(5):3313-3329.

PMID: 37938509 DOI: 10.1007/s11030-023-10762-z.


Pimobendan Inhibits HBV Transcription and Replication by Suppressing HBV Promoters Activity.

Yuan S, Yu H, Yang Z, Qin Y, Ren J, Cheng S Front Pharmacol. 2022; 13:837115.

PMID: 35721154 PMC: 9204083. DOI: 10.3389/fphar.2022.837115.


A novel piperazine derivative that targets hepatitis B surface antigen effectively inhibits tenofovir resistant hepatitis B virus.

Kiruthika S, Bhat R, Dash R, Rathore A, Vivekanandan P, Jayaram B Sci Rep. 2021; 11(1):11723.

PMID: 34083665 PMC: 8175705. DOI: 10.1038/s41598-021-91196-1.


Establishment of stable cell lines in which the HBV genome replicates episomally for evaluation of antivirals.

Sun S, Li Y, Liu B, Zhang B, Han S, Li X Arch Med Sci. 2020; 16(2):407-413.

PMID: 32190152 PMC: 7069427. DOI: 10.5114/aoms.2018.79712.


Niacin analogue, 6-Aminonicotinamide, a novel inhibitor of hepatitis B virus replication and HBsAg production.

Ren F, Yang X, Hu Z, Wong V, Xu H, Ren J EBioMedicine. 2019; 49:232-246.

PMID: 31680002 PMC: 6945246. DOI: 10.1016/j.ebiom.2019.10.022.


References
1.
Shin M, Kang E, Lee Y . A flavonoid from medicinal plants blocks hepatitis B virus-e antigen secretion in HBV-infected hepatocytes. Antiviral Res. 2005; 67(3):163-8. DOI: 10.1016/j.antiviral.2005.06.005. View

2.
Ferrari C, Penna A, Bertoletti A, Valli A, Antoni A, Giuberti T . Cellular immune response to hepatitis B virus-encoded antigens in acute and chronic hepatitis B virus infection. J Immunol. 1990; 145(10):3442-9. View

3.
Seeger C, Mason W . Hepatitis B virus biology. Microbiol Mol Biol Rev. 2000; 64(1):51-68. PMC: 98986. DOI: 10.1128/MMBR.64.1.51-68.2000. View

4.
Cocchi F, Menotti L, Dubreuil P, Lopez M . Cell-to-cell spread of wild-type herpes simplex virus type 1, but not of syncytial strains, is mediated by the immunoglobulin-like receptors that mediate virion entry, nectin1 (PRR1/HveC/HIgR) and nectin2 (PRR2/HveB). J Virol. 2000; 74(8):3909-17. PMC: 111902. DOI: 10.1128/jvi.74.8.3909-3917.2000. View

5.
Michalak T, Hodgson P, Churchill N . Posttranscriptional inhibition of class I major histocompatibility complex presentation on hepatocytes and lymphoid cells in chronic woodchuck hepatitis virus infection. J Virol. 2000; 74(10):4483-94. PMC: 111969. DOI: 10.1128/jvi.74.10.4483-4494.2000. View