Related Experiment Video
Updated: Apr 26, 2026

Author Spotlight: Scalable Drug Screening Protocol for Efficient Discovery of M. abscessus Treatments
Published on: October 25, 2024
A bioluminescence-based chemical screen identifies a bactericidal naphthalen-1-ylmethanamine scaffold targeting MmpL3
Samsher Singh1, Ria Sorayah1, Yushu Chen2
1Lee Kong Chian School of Medicine, Nanyang Technological University, Singapore 636921, Singapore.
Abstract:
Treatment of Mycobacterium abscessus pulmonary disease (Mabs-PD) is a growing global health challenge. The lack of bactericidal antibiotics effective at therapeutically relevant concentrations underscores an urgent need for drug discovery. Targeting cell wall synthesis is a promising strategy for drug discovery, as exemplified by the clinical success of broad-spectrum β-lactam antibiotics. Here, we employ a bioluminescence-based whole-cell assay optimized to identify compounds that disrupt both cell wall synthesis and oxidative phosphorylation. A focused drug library screen against Mabs reveals a chemically tractable naphthalen-1-ylmethanamine scaffold with potent bactericidal activity. The optimized derivative GM47-1 targets MmpL3, compromises cell wall integrity, induces ATP leakage, and uncouples respiration. Further chemical optimization yields a derivative with nanomolar minimum inhibitory concentration, bactericidal activity against intracellular Mabs, and efficacy in a zebrafish infection model. Together, these findings identify a promising scaffold for therapeutic development and demonstrate the utility of this bioluminescence-based platform for discovering bactericidal agents against Mabs.
More Related Videos
09:29In Vivo Investigation of Antimicrobial Blue Light Therapy for Multidrug-resistant Acinetobacter baumannii Burn Infections Using Bioluminescence Imaging
Published on: April 28, 2017
09:24Optical Screening of Novel Bacteria-specific Probes on Ex Vivo Human Lung Tissue by Confocal Laser Endomicroscopy
Published on: November 29, 2017