Target intelligence / Profile preview

Methicillin resistance determinant protein FmtA (FmtA) (FmtA)

Target
FmtA
Molecular classification
Enzyme, Esterase, Penicillin-binding protein-like protein
01

Overview

Methicillin resistance determinant protein FmtA (FmtA) is a cell wall-associated enzyme in Staphylococcus aureus that plays a critical role in the manifestation of methicillin resistance (UniProt Q2FW05). Although it shares structural homology with penicillin-binding proteins (PBPs), FmtA functions primarily as an esterase that removes D-alanine from lipoteichoic acids, which modifies the bacterial surface charge and peptidoglycan cross-linking (Rahman et al., 2016, PMID: 27166341). This modification is essential for the bacteria to maintain cell wall integrity in the presence of beta-lactam antibiotics. FmtA is considered a promising therapeutic target because its inhibition can sensitize MRSA strains to existing beta-lactams, potentially restoring the efficacy of drugs like oxacillin (Bissonnette et al., 2016, PMID: 27550356). Research indicates that FmtA interacts with various beta-lactams, albeit with lower affinity than traditional PBPs, and its absence leads to a significant reduction in oxacillin resistance levels (Fan et al., 2007, PMID: 17932022).

Other names
Factor affecting methicillin resistance AFmtAPBP-like protein FmtA
02

Mechanism of action

Inhibitors of FmtA act as resistance-breakers by preventing the deacylation of lipoteichoic acids, thereby sensitizing the bacteria to beta-lactam antibiotics.

03

Biological functions

Cell wall organizationAntibiotic resistanceLipoteichoic acid metabolismD-aminoacyl-tRNA deacylation
04

Disease associations

InfectionMethicillin-resistant Staphylococcus aureus (MRSA) infection
05

Safety considerations

Potential for rapid emergence of compensatory mutationsTarget specificity (bacterial vs host)Non-essentiality for bacterial viability in the absence of antibiotics
06

Interacting drugs

Oxacillin

3 more in the full profile.

07

Biomarkers

fmtA gene expressionD-alanylated lipoteichoic acid levels

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