The role of TMS 12 in the staphylococcal multidrug efflux protein QacA.

J Antimicrob Chemother

College of Science and Engineering, Flinders University, Bedford Park, SA 5042, Australia.

Published: June 2023

AI Article Synopsis

  • The study focuses on a specific region in the QacA protein that is thought to play a key role in recognizing antimicrobial substances.
  • Researchers altered 38 amino acid residues in QacA to analyze how these changes affected aspects like protein expression, drug resistance, and interaction with certain compounds.
  • Findings revealed that certain mutations reduced resistance to drugs and highlighted the significance of specific amino acids in ensuring the protein's structural and functional integrity in transporting substrates.

Article Abstract

Objectives: To elucidate the importance of a region in QacA predicted to be important in antimicrobial substrate recognition.

Methods: A total of 38 amino acid residues within or flanking putative transmembrane helix segment (TMS) 12 of QacA were individually replaced with cysteine using site-directed mutagenesis. The impact of these mutations on protein expression, drug resistance, transport activity and interaction with sulphhydryl-binding compounds was determined.

Results: Accessibility analysis of cysteine-substituted mutants identified the extents of TMS 12, which allowed for refinement of the QacA topology model. Mutation of Gly-361, Gly-379 and Ser-387 in QacA resulted in reduced resistance to at least one bivalent substrate. Interaction with sulphhydryl-binding compounds in efflux and binding assays demonstrated the role of Gly-361 and Ser-387 in the binding and transport pathway of specific substrates. The highly conserved residue Gly-379 was found to be important for the transport of bivalent substrates, commensurate with the role of glycine residues in helical flexibility and interhelical interactions.

Conclusions: TMS 12 and its external flanking loop is required for the structural and functional integrity of QacA and contains amino acids directly involved in the interaction with substrates.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10269129PMC
http://dx.doi.org/10.1093/jac/dkad121DOI Listing

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