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Analysis of the Lipid Composition of Mycobacteria by Thin Layer Chromatography
Published on: April 16, 2021
Discovery of Isonitrile Lipopeptide Chalkophores from Pathogenic Mycobacteria
Kaimin Jia1, Helen Sun1, Quang Kim Huynh2
1Department of Chemical and Biomolecular Engineering, University of California Berkeley, Berkeley, California 94720, United States.
Abstract:
The virulence-associated isonitrile lipopeptide (INLP) biosynthetic gene cluster is conserved across Mycobacterium tuberculosis and many nontuberculous mycobacteria (NTM) pathogens, yet the corresponding mycobacterial metabolites have not been fully characterized, and their biological functions are still debated. Here, we report a precursor neutral loss chromatography based mass spectrometry strategy that enables the targeted discovery of INLPs from Mycobacterium fortuitum, a fast-growing NTM pathogen. By monitoring a characteristic neutral loss of 27.1 Da corresponding to hydrogen cyanide, we identified a family of INLPs directly from bacterial culture extracts. Structural elucidation of a representative compound using NMR and high-resolution MS revealed a distinctive terminal methylated carboxyl group, contrasting with previously reported INLPs bearing linear alcohol, acetal, or cyclic motifs. Bioinformatic analysis and in vitro enzymatic assays identified a methyltransferase encoded within the INLP BGC responsible for methyl ester formation. Furthermore, metal-binding assays demonstrated selective chelation of Cu(I) and Cu(II) by the isolated INLP, but no detectable interaction with Zn(II), suggesting a role in copper homeostasis. These findings represent the first full structural characterization of an INLP from pathogenic mycobacteria, expand our understanding of the enzymes involved in INLP modification, and unequivocally support the copper-binding activity of INLPs from these pathogens.
Insights
Researchers discovered novel isonitrile lipopeptides (INLPs) in Mycobacterium fortuitum, revealing a unique methyl ester modification and selective copper-binding activity. This advances understanding of mycobacterial virulence factors.
Area of Science:
- Microbiology
- Biochemistry
- Chemical Biology
Background:
- The isonitrile lipopeptide (INLP) biosynthetic gene cluster is present in Mycobacterium tuberculosis and nontuberculous mycobacteria (NTM) pathogens.
- However, INLPs from mycobacteria remain poorly characterized, and their biological roles are debated.
Purpose of the Study:
- To characterize INLPs from the NTM pathogen Mycobacterium fortuitum.
- To elucidate the structure and function of these virulence-associated metabolites.
Main Methods:
- Developed a precursor neutral loss chromatography-based mass spectrometry strategy targeting a hydrogen cyanide neutral loss.
- Performed structural elucidation using NMR and high-resolution MS.
- Conducted bioinformatic analysis, in vitro enzymatic assays, and metal-binding studies.
Main Results:
- Identified a family of INLPs from M. fortuitum, including a novel compound with a terminal methylated carboxyl group.
- Discovered a methyltransferase enzyme responsible for the methyl ester formation.
- Demonstrated selective binding of Cu(I) and Cu(II) by the identified INLP, suggesting a role in copper homeostasis.
Conclusions:
- This study provides the first full structural characterization of an INLP from pathogenic mycobacteria.
- Expands knowledge of INLP-modifying enzymes and confirms the copper-binding activity of mycobacterial INLPs.
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