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Screening of the Pandemic Response Box Library Identified CRM1/XPO1 as an Anti-Mammarenavirus Druggable Target
Chukwudi A Ofodile1,2, Beatrice Cubitt2, Ngozi Onyemelukwe3
1Department of Medical Microbiology and Public Health, Faculty of Medical Laboratory Science, Nnamdi Azikiwe University, Awka 435102, Nigeria.
Abstract:
Mammarenaviruses (MaAv) cause persistent infection in their natural rodent hosts across the world and, via zoonotic events, can cause severe disease in humans. Thus, the MaAv Lassa virus (LASV) in Western Africa and the Junin virus (JUNV) in the Argentinean Pampas cause hemorrhagic fever diseases with significant case fatality rates in their endemic regions. In addition, the globally distributed MaAv lymphocytic choriomeningitis virus (LCMV) is an underrecognized human pathogen of clinical significance capable of causing devastating infections in neonates and immunocompromised individuals. Despite their impact on human health, there are currently no FDA-approved vaccines or specific antiviral treatments for MaAv infections. Existing anti-MaAv therapies are limited to the off-label use of ribavirin, whose efficacy remains controversial; hence, the development of novel therapeutics to combat human pathogenic MaAv is vital. We employed a high-throughput cell-based infection assay to screen the Pandemic Response Box, a collection of 400 diverse compounds with established antimicrobial activity, for MaAv inhibitors. We identified Ro-24-7429, an antagonist of the HIV-1 Tat protein and RUNX family transcription factor 1 inhibitor; WO 2006118607 A2, a dihydroorotate dehydrogenase inhibitor; and verdinexor, a novel selective inhibitor of nuclear export (SINE) targeting the XPO1/CRM1, as potent anti-MaAv compounds. Consistent with their distinct validated targets, verdinexor and WO 2006118607 A2 exhibited very strong synergistic antiviral activity when used in combination therapy. Our findings pave the way for the development of verdinexor as a potent host-directed antiviral against MaAv, which could be integrated into the development of combination therapy with direct- or host-acting antivirals to combat human pathogenic MaAv.
Insights
New research identifies potent antiviral compounds against Mammarenaviruses (MaAv), including Lassa virus. Verdinexor, a host-directed therapy, shows promise for combination treatments against these significant human pathogens.
Area of Science:
- Virology
- Infectious Diseases
- Drug Discovery
Background:
- Mammarenaviruses (MaAv) cause persistent infections in rodents and severe zoonotic diseases in humans, including Lassa fever and hemorrhagic fevers.
- Human pathogenic MaAvs like Lassa virus (LASV) and Junin virus (JUNV) pose significant public health threats with high fatality rates.
- Current treatments for MaAv infections are limited, with ribavirin's efficacy being controversial, highlighting the urgent need for novel antiviral therapies.
Purpose of the Study:
- To screen for novel antiviral compounds effective against Mammarenaviruses (MaAv).
- To identify host-directed or direct-acting antiviral agents for potential therapeutic use against MaAv infections.
- To explore synergistic combinations of antiviral compounds for enhanced efficacy.
Main Methods:
- A high-throughput cell-based infection assay was utilized to screen a library of 400 diverse antimicrobial compounds.
- The Pandemic Response Box was screened to identify inhibitors of MaAv replication.
- Identified compounds were evaluated for their antiviral activity and potential synergistic effects.
Main Results:
- Three potent anti-MaAv compounds were identified: Ro-24-7429, WO 2006118607 A2 (a dihydroorotate dehydrogenase inhibitor), and verdinexor (a selective inhibitor of nuclear export targeting XPO1/CRM1).
- Verdinexor and WO 2006118607 A2 demonstrated significant synergistic antiviral activity in combination therapy.
- These findings highlight the potential of verdinexor as a host-directed antiviral agent.
Conclusions:
- Verdinexor is a promising host-directed antiviral candidate for treating MaAv infections.
- Combination therapy involving verdinexor could be a viable strategy to combat human pathogenic MaAv.
- Further development of these compounds could lead to much-needed therapeutics for MaAv diseases.
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