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Analysis of the Lipid Composition of Mycobacteria by Thin Layer Chromatography
Published on: April 16, 2021
Loss of a Functionally and Structurally Distinct ld-Transpeptidase, LdtMt5, Compromises Cell Wall Integrity in
Leighanne A Brammer Basta1, Anita Ghosh2, Ying Pan2
1From the Taskforce to study Resistance Emergence and Antimicrobial development Technology (TREAT) and Division of Infectious Diseases, The Johns Hopkins University School of Medicine, Baltimore, Maryland 21231.
Abstract:
The final step of peptidoglycan (PG) biosynthesis in bacteria involves cross-linking of peptide side chains. This step in Mycobacterium tuberculosis is catalyzed by ld- and dd-transpeptidases that generate 3→3 and 4→3 transpeptide linkages, respectively. M. tuberculosis PG is predominantly 3→3 cross-linked, and LdtMt2 is the dominant ld-transpeptidase. There are four additional sequence paralogs of LdtMt2 encoded by the genome of this pathogen, and the reason for this apparent redundancy is unknown. Here, we studied one of the paralogs, LdtMt5, and found it to be structurally and functionally distinct. The structures of apo-LdtMt5 and its meropenem adduct presented here demonstrate that, despite overall architectural similarity to LdtMt2, the LdtMt5 active site has marked differences. The presence of a structurally divergent catalytic site and a proline-rich C-terminal subdomain suggest that this protein may have a distinct role in PG metabolism, perhaps involving other cell wall-anchored proteins. Furthermore, M. tuberculosis lacking a functional copy of LdtMt5 displayed aberrant growth and was more susceptible to killing by crystal violet, osmotic shock, and select carbapenem antibiotics. Therefore, we conclude that LdtMt5 is not a functionally redundant ld-transpeptidase, but rather it serves a unique and important role in maintaining the integrity of the M. tuberculosis cell wall.
Insights
Mycobacterium tuberculosis LdtMt5 is a unique transpeptidase, not redundant, crucial for cell wall integrity. Its absence causes aberrant growth and increased susceptibility to antibiotics and stress.
Area of Science:
- Microbiology
- Structural Biology
- Bacterial Pathogenesis
Background:
- Peptidoglycan (PG) cross-linking is essential for bacterial cell wall integrity.
- Mycobacterium tuberculosis utilizes ld- and dd-transpeptidases for PG cross-linking.
- LdtMt2 is the primary ld-transpeptidase, but its paralogs' roles are unclear.
Purpose of the Study:
- To investigate the structural and functional role of LdtMt5, a paralog of LdtMt2.
- To determine if LdtMt5 is functionally redundant or plays a unique role in M. tuberculosis.
Main Methods:
- X-ray crystallography to determine the structures of apo-LdtMt5 and its meropenem adduct.
- Functional analysis of M. tuberculosis lacking a functional LdtMt5 gene.
- Assessment of growth phenotypes and susceptibility to various stressors.
Main Results:
- LdtMt5 possesses a distinct active site and C-terminal subdomain compared to LdtMt2.
- M. tuberculosis lacking LdtMt5 exhibits aberrant growth.
- LdtMt5-deficient strains show increased susceptibility to crystal violet, osmotic shock, and carbapenem antibiotics.
Conclusions:
- LdtMt5 is not functionally redundant; it plays a unique and vital role in M. tuberculosis cell wall maintenance.
- The distinct structural features of LdtMt5 suggest a specialized function in PG metabolism.
- LdtMt5 is a potential target for novel antimicrobial strategies against M. tuberculosis.
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