Small molecule deubiquitinase inhibitors promote macrophage anti-infective capacity
Marie-Eve Charbonneau1, Marta J Gonzalez-Hernandez1, Hollis D Showalter2
1Department of Microbiology and Immunology, University of Michigan, Ann Arbor, Michigan, United States of America.
Abstract:
The global spread of anti-microbial resistance requires urgent attention, and diverse alternative strategies have been suggested to address this public health concern. Host-directed immunomodulatory therapies represent one approach that could reduce selection for resistant bacterial strains. Recently, the small molecule deubiquitinase inhibitor WP1130 was reported as a potential anti-infective drug against important human food-borne pathogens, notably Listeria monocytogenes and noroviruses. Utilization of WP1130 itself is limited due to poor solubility, but given the potential of this new compound, we initiated an iterative rational design approach to synthesize new derivatives with increased solubility that retained anti-infective activity. Here, we test a small library of novel synthetic molecules based on the structure of the parent compound, WP1130, for anti-infective activity in vitro. Our studies identify a promising candidate, compound 9, which reduced intracellular growth of L. monocytogenes at concentrations that caused minimal cellular toxicity. Compound 9 itself had no bactericidal activity and only modestly slowed Listeria growth rate in liquid broth culture, suggesting that this drug acts as an anti-infective compound by modulating host-cell function. Moreover, this new compound also showed anti-infective activity against murine norovirus (MNV-1) and human norovirus, using the Norwalk virus replicon system. This small molecule inhibitor may provide a chemical platform for further development of therapeutic deubiquitinase inhibitors with broad-spectrum anti-infective activity.
Insights
Researchers developed a novel deubiquitinase inhibitor, compound 9, to combat antimicrobial resistance. This compound effectively reduced Listeria monocytogenes and norovirus infections by modulating host-cell function, offering a promising therapeutic platform.
Area of Science:
- Microbiology
- Drug Discovery
- Immunology
Background:
- Antimicrobial resistance is a growing global health threat.
- Host-directed therapies offer an alternative to traditional antibiotics.
- Deubiquitinase inhibitors show potential as anti-infective agents.
Purpose of the Study:
- To design and synthesize novel deubiquitinase inhibitors with improved solubility and retained anti-infective activity.
- To evaluate the efficacy of these compounds against Listeria monocytogenes and noroviruses.
- To identify a lead compound for further therapeutic development.
Main Methods:
- Iterative rational design and synthesis of WP1130 derivatives.
- In vitro testing of anti-infective activity against L. monocytogenes.
- Assessment of anti-noroviral activity using the Norwalk virus replicon system.
- Evaluation of cellular toxicity.
Main Results:
- Compound 9, a novel WP1130 derivative, demonstrated significant reduction in intracellular L. monocytogenes growth with minimal toxicity.
- Compound 9 exhibited anti-infective activity against both murine norovirus (MNV-1) and human norovirus.
- The compound's mechanism appears to involve host-cell modulation rather than direct bactericidal effects.
Conclusions:
- Compound 9 represents a promising candidate for developing new host-directed therapies against bacterial and viral pathogens.
- The developed small molecule inhibitor provides a chemical platform for broad-spectrum anti-infective drug discovery.
- Further development of deubiquitinase inhibitors could offer novel strategies to combat antimicrobial resistance.
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