Target intelligence / Profile preview

Penicillin-binding protein (transpeptidase) (PBP)

Target
PBP
Molecular classification
Enzyme, Transpeptidase, Carboxypeptidase (some isoforms, such as PBP5), Member of peptidoglycan biosynthesis machinery, PASTA-domain-containing protein (some PBPs)
01

Overview

Penicillin-binding proteins (PBPs) are a family of bacterial enzymes that catalyze the final cross-linking step of peptidoglycan biosynthesis using their transpeptidase activity, which is essential for bacterial cell wall integrity. PBPs are the principal targets of β-lactam antibiotics, which covalently modify the active-site serine, resulting in irreversible inhibition and bacterial death. Multiple PBP isoforms exist in bacteria, fulfilling specialized roles such as endopeptidase, carboxypeptidase, or sensor functions (such as PbpP). Alterations in PBPs, including the acquisition of low-affinity variants, are key determinants of antibiotic resistance in major pathogenic bacteria such as *Staphylococcus aureus* and *Enterococcus* species. PBPs are fundamental in bacterial cell cycle processes, and their disruption leads to cell lysis or aberrant cell division. Targeting PBPs remains a cornerstone of antibacterial therapy, although resistance mechanisms are a growing concern.

Other names
PBPsTranspeptidasesD-alanyl-D-alanine transpeptidase
02

Mechanism of action

β-lactam antibiotics: covalent acylation of the active site serine, stably inactivating the transpeptidase and preventing cell wall crosslinking Non-β-lactam inhibitors: competitive inhibition and substrate mimicry

03

Biological functions

Peptidoglycan crosslinking (cell wall biosynthesis)Cell shape maintenanceCell divisionCarboxypeptidase activity (some isoforms, such as PBP5)Antibiotic resistance sensor (PbpP in Bacillus species)
04

Disease associations

Infection (target of antibiotics for bacterial infection)Antibiotic resistance (mutations or acquired variants cause resistance)
05

Safety considerations

Bacterial resistance (modification or acquisition of low-affinity PBPs limits antibiotic effectiveness)Selection for multidrug-resistant pathogens ("ESKAPE" pathogens, including MRSA, VRE)Broad-spectrum inhibition can affect commensal flora, leading to secondary infections or dysbiosisHypersensitivity reactions to β-lactam antibiotics (not a target-specific issue, but relevant for drug intervention)
06

Interacting drugs

Penicillins (β-lactam antibiotics; e.g., benzylpenicillin)

4 more in the full profile.

07

Biomarkers

Expression or mutation of specific PBP isoforms (e.g., PBP2a in MRSA for diagnosis/prediction of β-lactam resistance)Detection of PBP variants for resistance monitoring

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