HBV Core Promoter Inhibition by Tubulin Polymerization Inhibitor (SRI-32007)

Author:

Kalkeri Raj1ORCID,Peng Junzhong1,Huang Chunsheng1,Cai Zhaohui1,Ptak Roger G.1,Suto Mark J.2

Affiliation:

1. Infectious Disease Research, Drug Development Division, Southern Research, Frederick, MD, USA

2. Drug Discovery, Southern Research, Birmingham, AL, USA

Abstract

Approximately 257 million people chronically infected with hepatitis B virus (HBV) worldwide are at risk of developing hepatocellular carcinoma (HCC). However, despite the availability of potent nucleoside/tide inhibitors, currently there are no curative therapies for chronic HBV infections. To identify potential new antiviral molecules, a select group of compounds previously evaluated in clinical studies were tested against 12 different viruses. Amongst the compounds tested, SRI-32007 (CYT997) demonstrated antiviral activity against HBV (genotype D) in HepG2.2.2.15 cell-based virus yield assay with 50% effective concentration (EC50) and selectivity index (SI) of 60.1 nM and 7.2, respectively. Anti-HBV activity of SRI-32007 was further confirmed against HBV genotype B in huh7 cells with secreted HBe antigen endpoint (EC50 40 nM and SI 250). To determine the stage of HBV life cycle inhibited by SRI-32007, time of addition experiment was conducted in HepG2-NTCP cell-based HBV infectious assay. Results indicated that SRI-32007 retained anti-HBV activity even when added 72 hours postinfection (72 h). Additional mechanism of action studies demonstrated potent inhibition of HBV core promoter activity by SRI-32007 with an EC50 of 40 nM and SI of >250. This study demonstrates anti-HBV activity of a repurposed compound SRI-32007 through inhibition of HBV core promoter activity. Further evaluation of SRI-32007 in HBV animal models is needed to confirm its activity in vivo. Our experiments illustrate the utility of repurposing strategy to identify novel antiviral chemical leads. HBV core promoter inhibitors such as SRI-32007 might enable the development of novel therapeutic strategies to combat HBV infections.

Funder

Southern Research

Publisher

Hindawi Limited

Subject

Infectious Diseases,Virology

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1. Reshaping an Acyclic Nucleoside Phosphonate into a Selective Anti-hepatitis B Virus Compound;Journal of Medicinal Chemistry;2022-06-27

2. Adjuvant Discovery via a High Throughput Screen using Human Primary Mononuclear Cells;2022-06-18

3. Toward a complete cure for chronic hepatitis B: Novel therapeutic targets for hepatitis B virus;Clinical and Molecular Hepatology;2022-01-01

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