Science · 1996 · 433 citations · 18 references
GeneticsBacteriologyMolecular BiologyMolecular GeneticsKatg Catalase-peroxidase ActivityRedox BiologyOxidative StressDrug ResistanceTranscriptional RegulationGene StructureAntimicrobial ResistancePulmonary TuberculosisBiochemistryMycobacterium Tuberculosis InfectionsTuberculosisKatg ActivityMolecular MicrobiologyReactive Oxygen SpecieGene ExpressionClinical MicrobiologyNatural SciencesMicrobiologyHost ResistanceMedicine
Mutations that eliminate KatG catalase-peroxidase activity prevent activation of isoniazid and are a major mechanism of resistance to this principal drug for the treatment of Mycobacterium tuberculosis infections. However, the loss of KatG activity in clinical isolates seemed paradoxical because KatG is considered an important factor for the survival of the organism. Expression of either KatG or the recently identified alkyl hydroperoxidase AhpC was sufficient to protect bacilli against the toxic effects of organic peroxides. To survive during infection, isoniazid-resistant KatG mutants have apparently compensated for the loss of KatG catalase-peroxidase activity by a second mutation, resulting in hyperexpression of AhpC.
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Biochemistry of Oxidative Stress
Helmut Sies · Angewandte Chemie International Edition in English · 1986 · 1.3K citations
The catalase—peroxidase gene and isoniazid resistance of Mycobacterium tuberculosis
Ying Zhang, Béate Heym, B.W. Allen et al. · Nature · 1992 · 1.3K citations · Full text
Ho Zoon Chae, Keith Robison, Leslie B. Poole et al. · Proceedings of the National Academy of Sciences · 1994 · 742 citations · Full text