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Updated: Jan 29, 2026

Preparation of Agar Bead Embedded Mycobacterium abscessus to Inoculate Immunocompetent Mice Intratracheally
Published on: April 25, 2025
Loss-of-Function Mutations in the Penicillin-Binding Protein PonA1 Confer Agar-Dependent Resistance to Durlobactam in
Dereje Abate Negatu1, Wassihun Wedajo Aragaw1, Min Xie1
1Center for Discovery and Innovation, Hackensack Meridian Health, 111 Ideation Way, Nutley, NJ 07110, USA.
Abstract:
Background: Infections caused by the multidrug-resistant pathogen Mycobacterium abscessus (Mab) are notoriously difficult to treat. The novel β-lactamase inhibitor durlobactam, in combination with β-lactams, shows potent bactericidal activity against Mab, but the potential for acquired resistance remains a clinical concern. Objectives: To identify and characterize mechanisms of acquired resistance to durlobactam in Mab. Methods: In vitro single-step resistance selection was performed by plating wild-type Mab ATCC 19977 and by transcriptional silencing using a CRISPR interference (CRISPRi) system. Minimum inhibitory concentrations (MICs) were determined by both an agar-based method and broth microdilution. Results: Whole-genome sequencing of durlobactam-resistant mutants identified loss-of-function mutations in ponA1, a gene encoding a class A penicillin-binding protein involved in cell wall synthesis. Targeted deletion of ponA1 (ΔponA1) and CRISPRi-mediated knockdown of ponA1 expression both recapitulated the resistance phenotype, resulting in a significant increase in the durlobactam MIC on solid agar media. Strikingly, broth microdilution MICs remained largely unaffected. Conclusions: Inactivation of the peptidoglycan synthase PonA1 is a novel mechanism of resistance to durlobactam in Mab that is phenotypically expressed only during growth on solid surfaces. This finding identifies a specific genetic pathway for resistance and highlights that standard broth-based susceptibility testing could miss clinically relevant resistance mechanisms.
Insights
Inactivating the PonA1 gene confers resistance to durlobactam in Mycobacterium abscessus, but only on solid media. Standard broth testing may miss this novel resistance mechanism.
Area of Science:
- Microbiology
- Drug Resistance
- Genetics
Background:
- Mycobacterium abscessus (Mab) infections are difficult to treat due to multidrug resistance.
- Durlobactam, a novel beta-lactamase inhibitor, shows promise against Mab but acquired resistance is a concern.
Purpose of the Study:
- To identify and characterize mechanisms of acquired resistance to durlobactam in Mab.
- Investigate genetic pathways leading to durlobactam resistance.
Main Methods:
- In vitro resistance selection and whole-genome sequencing of durlobactam-resistant Mab mutants.
- CRISPR interference (CRISPRi) system used for transcriptional silencing.
- Minimum inhibitory concentrations (MICs) determined by agar-based and broth microdilution methods.
Main Results:
- Loss-of-function mutations in ponA1, encoding a cell wall synthesis protein, were identified in resistant mutants.
- Targeted deletion and CRISPRi knockdown of ponA1 recapitulated resistance, increasing MICs on agar.
- Broth microdilution MICs were largely unaffected, indicating surface-dependent resistance.
Conclusions:
- Inactivation of peptidoglycan synthase PonA1 is a novel resistance mechanism to durlobactam in Mab.
- This resistance is phenotypically expressed only during growth on solid surfaces.
- Standard broth-based susceptibility testing may fail to detect this clinically relevant resistance.
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