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.

Plos One
|August 6, 2014
PubMed

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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