Target intelligence / Profile preview

Penicillin-binding protein 1A, 1B, and 3 (PBP 1A, 1B, and 3) (PBPs 1A, 1B, and 3)

Target
PBPs 1A, 1B, and 3
Molecular classification
Enzyme, Transpeptidase, Glycosyltransferase, Penicillin-binding protein
01

Overview

Penicillin-binding proteins (PBPs) 1A, 1B, and 3 are essential bacterial enzymes located on the outer surface of the cytoplasmic membrane, where they catalyze the final stages of peptidoglycan cell wall synthesis [1, 23]. PBPs 1A and 1B are high-molecular-weight Class A bifunctional enzymes possessing both transglycosylase activity, which polymerizes glycan strands, and transpeptidase activity, which cross-links peptide side chains [23, 27]. PBP3, also known as FtsI in many Gram-negative species, is a Class B transpeptidase specifically required for the formation of the division septum during bacterial replication [1, 27]. These proteins are the primary therapeutic targets for beta-lactam antibiotics, including penicillins, cephalosporins, and carbapenems [11, 24]. These drugs act as substrate analogs that covalently bind to the active-site serine of the transpeptidase domain, forming a stable acyl-enzyme complex that irreversibly inhibits the enzyme [18, 20]. The resulting failure to maintain cell wall integrity leads to morphological changes, such as filamentation or spheroplast formation, and ultimately results in bacterial cell lysis and death [1, 26]. Resistance to these drugs often arises through the acquisition of low-affinity PBP variants or the production of beta-lactamases that degrade the antibiotics before they reach their targets [20, 24]. Understanding the specific binding affinities of different antibiotics for these PBPs is crucial for developing effective treatments against multi-drug resistant bacterial pathogens [22, 24].

Other names
PBP1APBP1BPBP3MrcAMrcBFtsIponAponBftsIPeptidoglycan synthase 1APeptidoglycan synthase 1BSeptum-forming transpeptidase
02

Mechanism of action

Beta-lactam antibiotics act as structural analogs of the D-alanyl-D-alanine terminus of peptidoglycan precursors [11, 18]. They covalently bind to the active-site serine residue of the transpeptidase domain of PBPs, forming a stable acyl-enzyme complex [1, 20]. This irreversible inhibition prevents the cross-linking of peptidoglycan strands, leading to a weakened cell wall, osmotic instability, and eventual bacterial cell lysis [11, 26].

03

Biological functions

Peptidoglycan biosynthesisCell wall organizationCell divisionCell elongationTranspeptidationTransglycosylation
04

Disease associations

Infection
05

Safety considerations

Antibiotic resistance (target modification)Hypersensitivity reactionsAllergic reactionsGastrointestinal distressSeizures (at high doses of certain carbapenems)
06

Interacting drugs

Penicillin G

9 more in the full profile.

07

Biomarkers

Minimum Inhibitory Concentration (MIC)Bacterial filamentationSpheroplast formationPBP occupancy

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