Target intelligence / Profile preview

Class C serine β-lactamase (AmpC) (AmpC)

Target
AmpC
Molecular classification
Enzyme, Hydrolase, Serine β-lactamase, Ambler Class C
01

Overview

Class C serine β-lactamases, commonly known as AmpC enzymes, are a critical class of bacterial enzymes that provide resistance to a wide array of β-lactam antibiotics, including penicillins, cephamycins, and most cephalosporins (Bush & Jacoby, 2010). These enzymes are typically found in Gram-negative bacteria such as Enterobacter, Citrobacter, and Pseudomonas aeruginosa, where they can be encoded on the chromosome or acquired via plasmids (Jacoby, 2009). Unlike Class A β-lactamases, AmpC enzymes are not effectively inhibited by traditional clinical inhibitors like clavulanic acid or sulbactam, posing a significant therapeutic challenge (Tamma et al., 2019). Their expression is often inducible, meaning exposure to certain antibiotics can trigger a massive increase in enzyme production, potentially leading to clinical failure even if the bacteria initially appeared susceptible (Meini et al., 2019). To address this, new therapeutic combinations involving diazabicyclooctane inhibitors, such as ceftazidime-avibactam, have been developed to neutralize the enzyme and restore antibiotic efficacy (Shirley, 2018). Understanding the prevalence and induction potential of AmpC is vital for effective antimicrobial stewardship and the management of multidrug-resistant infections.

Other names
AmpC β-lactamaseCephalosporinaseClass C beta-lactamaseSerine-type enterobacterial β-lactamaseGroup 1 β-lactamase
02

Mechanism of action

Inhibitors like avibactam and relebactam act by covalently binding to the active-site serine residue of the Class C β-lactamase, forming a stable enzyme-inhibitor complex that prevents the enzyme from degrading β-lactam antibiotics (Shirley, 2018; Tamma et al., 2019).

03

Biological functions

Hydrolysis of β-lactam antibioticsBacterial antibiotic resistancePeptidoglycan metabolism regulation
04

Disease associations

Bacterial infectionAntimicrobial resistanceNosocomial infectionUrinary tract infectionBacteremia
05

Safety considerations

Inducible resistance leading to treatment failureSelection of stable derepressed mutants during therapyLimited efficacy of traditional inhibitors like clavulanic acidPotential for co-resistance with other mechanisms like porin loss (Meini et al., 2019)
06

Interacting drugs

Avibactam

7 more in the full profile.

07

Biomarkers

Presence of ampC gene (PCR/NGS)Cefoxitin resistance (phenotypic)Blc gene expressionResistance to 3rd generation cephalosporins with susceptibility to carbapenems (Jacoby, 2009)

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