Target intelligence / Profile preview

D,D-carboxypeptidase (DD-CPase)

Target
DD-CPase
Molecular classification
Enzyme, Penicillin-binding protein, Serine hydrolase, Peptidase
01

Overview

Bacterial D,D-carboxypeptidases are essential enzymes involved in the final stages of peptidoglycan biosynthesis and cell wall remodeling in both Gram-positive and Gram-negative bacteria (UniProt, 2023). These enzymes, often classified as low-molecular-weight penicillin-binding proteins (LMW PBPs), catalyze the removal of the terminal D-alanine residue from the pentapeptide side chains of peptidoglycan precursors (PubMed: 16291668). By controlling the availability of these precursors, they regulate the extent of cross-linking within the bacterial cell wall, which is critical for maintaining osmotic stability and proper cell shape (Nature Reviews Microbiology, 2008). Because they possess a high affinity for beta-lactam antibiotics, they serve as significant targets for antimicrobial therapy. Drugs like penicillins and cephalosporins act as substrate analogs, covalently binding to the active site serine and inhibiting the enzyme's function (StatPearls, 2023). While not always the primary lethal target of beta-lactams, their inhibition contributes to cell wall defects and eventual bacterial lysis. Understanding these enzymes is vital for addressing antibiotic resistance, as modifications in these proteins can decrease drug efficacy.

Other names
D-alanyl-D-alanine carboxypeptidasePenicillin-binding protein 5PBP5Penicillin-binding protein 6PBP6Low-molecular-weight penicillin-binding proteinLMW PBPdacAdacBdacC
02

Mechanism of action

Inhibition of peptidoglycan cross-linking regulation by acting as a substrate analog that forms a stable, slowly-hydrolyzing acyl-enzyme intermediate with the active-site serine, preventing the removal of the terminal D-alanine from peptidoglycan precursors (StatPearls, 2023; PubMed: 16291668).

03

Biological functions

Peptidoglycan biosynthesisCell wall remodelingRegulation of peptidoglycan cross-linkingMaintenance of bacterial cell shapeOsmotic stability maintenance
04

Disease associations

Infection
05

Safety considerations

Development of antibiotic resistanceDisruption of the human commensal microbiota (dysbiosis)Hypersensitivity reactions to interacting beta-lactam drugs
06

Interacting drugs

Penicillin G

7 more in the full profile.

07

Biomarkers

Bacterial growth inhibitionPeptidoglycan cross-linking ratioMinimum inhibitory concentration (MIC)Bacterial cell lysis

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