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Reactive dirty fragments: implications for tuberculosis drug discovery

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CURRENT OPINION IN MICROBIOLOGY
卷 21, 期 -, 页码 7-12

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CURRENT BIOLOGY LTD
DOI: 10.1016/j.mib.2014.06.015

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资金

  1. Ministry of Health, National Medical Research Council [CBRG/022/2012, TCR12dec007, CG/013/2013, CBRG12nov049]
  2. Ministry of Education [MOE2013-T3-1-004]
  3. Singapore MIT Alliance for Research and Technology [SMA 039-531, 040-531]
  4. School of Medicine/National University of Singapore (StartUpFY2011TDick)
  5. School of Medicine

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Reactive multi-target fragments, old synthetic antimycobacterials that are activated inside Mycobacterium tuberculosis bacilli and are smaller than the usual drug-like, single-target molecules, represent critical components of current tuberculosis chemotherapies. Recent studies showed that para-aminosalicylic acid is recognized as a substrate by dihydropteroate synthase and poisons the downstream folate pathway. Pyrazinamide, a key relapse-reducing drug, is metabolized by an amidase and the reaction product interferes with trans-translation, membrane potential and other targets. However, the mechanism of action of pyrazinamide remains ill-defined and needs to be understood to rationally approach treatment shortening. The success of small dirty drugs and prodrugs suggests that fragment-based whole cell screens should be re-introduced in our current antimycobacterial drug discovery efforts.

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