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Biophysical Screening of a Focused Library for the Discovery of CYP121 Inhibitors as Novel Antimycobacterials.

Christian BrengelAndreas ThomannAlexander SchifrinGiuseppe AllegrettaAhmed A M KamalJörg HaupenthalIsabell SchnorrSang Hyun ChoScott G FranzblauMartin EmptingJens EberhardRolf W Hartmann
Published in: ChemMedChem (2017)
The development of novel antimycobacterial agents against Mycobacterium tuberculosis (Mtb) is urgently required due to the appearance of multidrug resistance (MDR) combined with complicated long-term treatment. CYP121 was shown to be a promising novel target for inhibition of mycobacterial growth. In this study, we describe the rational discovery of new CYP121 inhibitors by a systematic screening based on biophysical and microbiological methods. The best hits originating from only one structural class gave initial information about molecular motifs required for binding and activity. The initial screening procedure was followed by mode-of-action studies and further biological characterizations. The results demonstrate superior antimycobacterial efficacy and a decreased toxicity profile of our frontrunner compound relative to the reference compound econazole. Due to its low molecular weight, promising biological profile, and physicochemical properties, this compound is an excellent starting point for further rational optimization.
Keyphrases
  • mycobacterium tuberculosis
  • small molecule
  • pulmonary tuberculosis
  • healthcare
  • health information
  • binding protein
  • replacement therapy