β-Lactamase Suppression as a Strategy to Target Methicillin-Resistant Staphylococcus aureus: Proof of Concept

Payton M Thomas1, Margaret A Deming1, Aurijit Sarkar1

  • 1Department of Basic Pharmaceutical Sciences, Fred Wilson School of Pharmacy, High Point University, One University Parkway, High Point, North Carolina 27268, United States.

ACS Omega
|December 26, 2022
PubMed

Insights

Pyrimidine-2-amines (P2As) enhance penicillin G efficacy against MRSA by reducing beta-lactamase activity, not direct inhibition. This approach revives penicillin G

Area of Science:

  • Microbiology
  • Infectious Diseases
  • Drug Discovery

Background:

  • Methicillin-resistant Staphylococcus aureus (MRSA) poses a significant threat due to resistance mechanisms like beta-lactamase and PBP2a.
  • Existing antimicrobial strategies struggle against MRSA, necessitating novel approaches to enhance current therapies.
  • Direct inhibition of beta-lactamase has proven ineffective and can lead to resistant infections.

Purpose of the Study:

  • To investigate the potential of pyrimidine-2-amines (P2As) in enhancing the efficacy of penicillin G against MRSA.
  • To explore the mechanism by which P2As affect beta-lactamase activity and MRSA susceptibility.
  • To evaluate the advantage of penicillin G enhancement over penicillinase-insensitive beta-lactams like oxacillin.

Main Methods:

  • Testing the minimum inhibitory concentration (MIC) of penicillin G in combination with P2As against MRSA strains.
  • Assessing the effect of P2As on beta-lactamase activity without direct enzyme inhibition.
  • Investigating the impact of P2As on known antimicrobial-enhancement targets (Stk1, VraS) and global regulators.

Main Results:

  • 50 μM P2As reduced the MIC of penicillin G against MRSA by up to 16-fold.
  • P2As reduced beta-lactamase activity without directly inhibiting the enzyme.
  • Penicillin G enhancement was observed, while oxacillin showed no improvement due to PBP2a expression.
  • P2As were found to modulate an unknown global regulator, distinct from Stk1 and VraS.

Conclusions:

  • Pyrimidine-2-amines offer a novel strategy to restore penicillin G's utility against MRSA by suppressing beta-lactamase activity.
  • This approach circumvents the limitations of direct beta-lactamase inhibition and offers an advantage over penicillinase-insensitive beta-lactams.
  • P2As represent a promising avenue for developing new antimicrobial therapies against challenging MRSA infections.

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