Target intelligence / Profile preview

Glutamate racemase (Streptococcus pyogenes) (MurI)

Target
MurI
Molecular classification
Enzyme, Isomerase, Racemase
01

Overview

Glutamate racemase (MurI) is an essential enzyme in Streptococcus pyogenes that catalyzes the reversible racemization of L-glutamate to D-glutamate (UniProt: P0C0G1). This reaction is vital for the bacteria because D-glutamate is a necessary building block for the biosynthesis of peptidoglycan, the primary structural component of the bacterial cell wall (PubMed: 11514511). Since D-glutamate is not used in human protein synthesis and humans lack a glutamate racemase ortholog, this enzyme is considered an ideal target for the development of narrow-spectrum antibiotics (PubMed: 15103634). Inhibition of MurI prevents the formation of the peptidoglycan cross-links, leading to cell wall instability and bacterial death. This target is particularly relevant for treating S. pyogenes infections, which include common conditions like strep throat as well as severe invasive diseases such as necrotizing fasciitis and streptococcal toxic shock syndrome (PubMed: 22432285). Current drug discovery efforts focus on competitive inhibitors and transition-state analogs that bind to the enzyme's active site to block its catalytic activity (PubMed: 19435314).

Other names
MurIGlutamic acid racemaseD-glutamate racemase
02

Mechanism of action

Inhibition of the conversion of L-glutamate to D-glutamate, thereby disrupting the synthesis of the peptidoglycan layer and leading to bacterial cell lysis.

03

Biological functions

Peptidoglycan biosynthesisCell wall organizationD-amino acid metabolism
04

Disease associations

InfectionStreptococcal pharyngitisNecrotizing fasciitisScarlet feverStreptococcal toxic shock syndrome
05

Safety considerations

Development of antimicrobial resistanceSelectivity over human enzymes (low risk as humans lack this pathway)Potential for off-target effects on commensal microbiota
06

Interacting drugs

D-glutamate analogs (experimental)

2 more in the full profile.

07

Biomarkers

Streptococcus pyogenes DNABacterial loadPeptidoglycan synthesis markers

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