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The structures of penicillin-binding protein 4 (PBP4) and PBP5 from Enterococci provide structural insights into β-lactam resistance.
- Source :
-
The Journal of biological chemistry [J Biol Chem] 2018 Nov 30; Vol. 293 (48), pp. 18574-18584. Date of Electronic Publication: 2018 Oct 24. - Publication Year :
- 2018
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Abstract
- The final steps of cell-wall biosynthesis in bacteria are carried out by penicillin-binding proteins (PBPs), whose transpeptidase domains form the cross-links in peptidoglycan chains that define the bacterial cell wall. These enzymes are the targets of β-lactam antibiotics, as their inhibition reduces the structural integrity of the cell wall. Bacterial resistance to antibiotics is a rapidly growing concern; however, the structural underpinnings of PBP-derived antibiotic resistance are poorly understood. PBP4 and PBP5 are low-affinity, class B transpeptidases that confer antibiotic resistance to Enterococcus faecalis and Enterococcus faecium , respectively. Here, we report the crystal structures of PBP4 (1.8 Å) and PBP5 (2.7 Å) in their apo and acyl-enzyme complexes with the β-lactams benzylpenicillin, imipenem, and ceftaroline. We found that, although these three β-lactams adopt geometries similar to those observed in other class B PBP structures, there are small, but significant, differences that likely decrease antibiotic efficacy. Further, we also discovered that the N-terminal domain extensions in this class of PBPs undergo large rigid-body rotations without impacting the structure of the catalytic transpeptidase domain. Together, our findings are defining the subtle functional and structural differences in the Enterococcus PBPs that allow them to support transpeptidase activity while also conferring bacterial resistance to antibiotics that function as substrate mimics.
- Subjects :
- Acylation
Bacterial Proteins genetics
Bacterial Proteins isolation & purification
Bacterial Proteins metabolism
Carbapenems pharmacology
Catalytic Domain
Cephalosporins pharmacology
Enterococcus faecalis drug effects
Enterococcus faecium drug effects
Microbial Sensitivity Tests
Penicillin-Binding Proteins genetics
Penicillin-Binding Proteins isolation & purification
Penicillin-Binding Proteins metabolism
Penicillins metabolism
Protein Conformation
Protein Domains
Protein Isoforms genetics
Protein Isoforms isolation & purification
Bacterial Proteins chemistry
Enterococcus faecalis metabolism
Enterococcus faecium metabolism
Penicillin-Binding Proteins chemistry
Protein Isoforms chemistry
beta-Lactam Resistance genetics
Subjects
Details
- Language :
- English
- ISSN :
- 1083-351X
- Volume :
- 293
- Issue :
- 48
- Database :
- MEDLINE
- Journal :
- The Journal of biological chemistry
- Publication Type :
- Academic Journal
- Accession number :
- 30355734
- Full Text :
- https://doi.org/10.1074/jbc.RA118.006052