Target intelligence / Profile preview

Penicillin-binding proteins (PBPs) (PBPs)

Target
PBPs
Molecular classification
Enzyme, Transpeptidase, Glycosyltransferase, Bacterial cell wall synthesis protein
01

Overview

Penicillin-binding proteins (PBPs) in Enterococcus faecalis are a family of membrane-bound enzymes essential for the biosynthesis and maintenance of the bacterial peptidoglycan layer [2, 9]. These proteins are categorized into Class A (bifunctional transglycosylases/transpeptidases), Class B (monofunctional transpeptidases), and Class C (carboxypeptidases), each playing a distinct role in cell wall cross-linking and morphogenesis [1, 2]. In E. faecalis, PBP4 is the primary low-affinity transpeptidase responsible for the organism's intrinsic resistance to most cephalosporins and its reduced susceptibility to other beta-lactams [2, 5]. PBPs serve as the molecular targets for beta-lactam antibiotics, which inhibit the transpeptidation reaction by acylating the enzyme's active site [6, 7]. Mutations or overproduction of specific PBPs, particularly PBP4, are major drivers of clinical resistance, complicating the treatment of serious infections such as endocarditis and bacteremia [5, 8]. Consequently, these proteins are central to the study of antibiotic resistance mechanisms and the development of synergistic drug combinations [12].

Other names
Penicillin-binding protein 4 (PBP4)Penicillin-binding protein 5 (PBP5)PBP1a (PonA)PBP1b (PbpF)PBP1c (PbpZ)PBP2 (PbpA)PBP3 (PbpB)D,D-carboxypeptidase (DacA)
02

Mechanism of action

Beta-lactam antibiotics function as structural analogs of the D-alanyl-D-alanine terminus of peptidoglycan precursors. They covalently bind to the active-site serine residue within the transpeptidase domain of PBPs, forming a stable acyl-enzyme complex [2, 7]. This irreversible inhibition prevents the cross-linking of peptidoglycan chains, compromising the structural integrity of the bacterial cell wall and ultimately leading to cell lysis or growth arrest [6, 9].

03

Biological functions

Peptidoglycan synthesisCell wall cross-linkingTranspeptidationCell wall morphogenesisAntibiotic resistance
04

Disease associations

InfectionBacterial endocarditisUrinary tract infectionBacteremiaSepsis
05

Safety considerations

Intrinsic resistance to cephalosporinsEmergence of high-level resistance to penicillinsAntibiotic tolerance (bacteriostatic rather than bactericidal activity)Potential for treatment failure in deep-seated infections like endocarditis
06

Interacting drugs

Ampicillin

6 more in the full profile.

07

Biomarkers

Ampicillin Minimum Inhibitory Concentration (MIC)PBP4 gene mutations (e.g., V223I, A617T, P520S, Y605H)pbp4 mRNA expression levelsPBP4 protein abundance

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