Abstract
The increasing prevalence of antibiotic resistance represents a significant public health concern, underscoring the urgent need for the development of novel therapeutic strategies. The antibiotic effects of macrolides, the second most widely used class of antibiotics, are counteracted by Erm proteins through the methylation of adenosine 2058 of the 23S ribosomal RNA (rRNA) (~ 2900 nucleotides), yielding either monomethylated or dimethylated A2058. This methylation is the molecular basis for preventing macrolides from binding and leads to the development of resistance of bacteria including Staphylococcus, Streptococcus and Enterococcus. While the function of Erm proteins have been thoroughly investigated, the role of the ribosomal RNA in acquiring antibiotic resistance is frequently underestimated, given that the ribosomal RNA is the actual target for methylation. Here, we present the comprehensive 1H, 13C and 15N NMR resonance assignment for the part of the 23S rRNA that serves as the Erm substrate in antimicrobial resistance. Furthermore, we compare the chemical shift signature of the unmethylated to the monomethylated and dimethylated RNA construct and show that changes in the RNA upon methylation are locally restricted. The resonance assignments provide a starting point for investigating and targeting the molecular mechanism of the resistance-conferring Erm proteins.
Original language | English |
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Pages (from-to) | 133-145 |
Number of pages | 13 |
Journal | Biomolecular NMR Assignments |
Volume | 19 |
Issue number | 1 |
Early online date | 3 Apr 2025 |
DOIs | |
Publication status | Published - Jun 2025 |
Bibliographical note
Publisher Copyright:© The Author(s) 2025.
Funding
We want to thank Elke Stirnal and Kerstin Witt for the excellent support in RNA sample purification. In addition, we want to thank Matthias Becker for the inspiring and supportive discussions at any time.
Funders | Funder number |
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German Consortium for Translational Cancer Research | |
Fonds der Chemischen Industrie | |
Deutschen Konsortium für Translationale Krebsforschung | |
Frankfurt Cancer Institute | |
Hessisches Ministerium für Wissenschaft und Kunst | III L 5-519/03/03.001-(0015) |
Keywords
- 23S ribosomal RNA
- Antibiotic resistance
- DMA
- Erythromycin methyl transferase
- m6A
- Solution NMR-spectroscopy