The lipopeptide antibiotic daptomycin (DAP) is a key drug against serious enterococcal infections, but the emergence of resistance in the clinical setting is a major concern. The LiaFSR system plays a prominent role in the development of DAP resistance (DAP-R) in enterococci, and blocking this stress response system has been proposed as a novel therapeutic strategy. In this work, we identify LiaR-independent pathways in Enterococcus faecalis that regulate cell membrane adaptation in response to antibiotics. We adapted E. faecalis OG1RF (a laboratory strain) and S613TM (a clinical strain) lacking liaR to increasing concentrations of DAP, leading to the development of DAP-R and elevated MICs to bacitracin and ceftriaxone. Whole genome sequencing identified changes in the YxdJK two-component regulatory system and a putative fatty acid kinase (dak) in both DAP-R strains. Deletion of the gene encoding the YxdJ response regulator in both the DAP-R mutant and wild-type OG1RF decreased MICs to DAP, even when a functional LiaFSR system was present. Mutations in dak were associated with slower growth, decreased membrane fluidity and alterations of cell morphology. These findings suggest that overlapping stress response pathways can provide protection against antimicrobial peptides in E. faecalis at a significant cost in bacterial fitness.
LiaR-independent pathways to daptomycin resistance in Enterococcus faecalis reveal a multilayer defense against cell envelope antibiotics.
粪肠球菌中不依赖于 LiaR 的达托霉素耐药途径揭示了针对细胞包膜抗生素的多层防御机制
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作者:Miller William R, Tran Truc T, Diaz Lorena, Rios Rafael, Khan Ayesha, Reyes Jinnethe, Prater Amy G, Panesso Diana, Shamoo Yousif, Arias Cesar A
| 期刊: | Molecular Microbiology | 影响因子: | 2.600 |
| 时间: | 2019 | 起止号: | 2019 Mar;111(3):811-824 |
| doi: | 10.1111/mmi.14193 | 研究方向: | 细胞生物学 |
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