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  1. Transcriptional regulation of a gonococcal gene encoding a virulence factor (L-lactate permease)
  2. Mechanistic Basis for Decreased Antimicrobial Susceptibility in a Clinical Isolate of Neisseria gonorrhoeae Possessing a Mosaic-Like mtr Efflux Pump Locus
  3. Mosaic Drug Efflux Gene Sequences from CommensalNeisseriaCan Lead to Low-Level Azithromycin Resistance Expressed byNeisseria gonorrhoeaeClinical Isolates
  4. cis- andtrans-Acting Factors Influence Expression of thenorM-Encoded Efflux Pump ofNeisseria gonorrhoeaeand Levels of Gonococcal Susceptibility to Substrate Antimicrobials
  5. Control ofgdhRExpression inNeisseria gonorrhoeaevia Autoregulation and a Master Repressor (MtrR) of a Drug Efflux Pump Operon
  6. The MisR Response Regulator Is Necessary for Intrinsic Cationic Antimicrobial Peptide and Aminoglycoside Resistance in Neisseria gonorrhoeae
  7. Overproduction of the MtrCDE Efflux Pump in Neisseria gonorrhoeae Produces Unexpected Changes in Cellular Transcription Patterns
  8. Phase-Variable Expression oflptAModulates the Resistance of Neisseria gonorrhoeae to Cationic Antimicrobial Peptides
  9. Antibiotic resistance in Neisseria gonorrhoeae: origin, evolution, and lessons learned for the future
  10. Immune response to extracellular bacteria
  11. Antimicrobial Peptides and Human Disease
  12. Antibacterial Peptide Protocols
  13. Interaction of lysosomal cathepsin G with N. gonorrhoeae