Tuberculosis is still a leading cause of death in developing countries, for which there is an urgent need for new pharmacological agents. The synthesis of the novel antimycobacterial drug class of benzothiazinones (BTZs) and the identification of their cellular target as DprE1 (Rv3790), a component of the decaprenylphosphoryl-b-D-ribose 2'-epimerase complex, have been reported recently. Here, we describe the identification and characterization of a novel resistance mechanism to BTZ in Mycobacterium smegmatis. The overexpression of the nitroreductase NfnB leads to the inactivation of the drug by reduction of a critical nitro-group to an amino-group. The direct involvement of NfnB in the inactivation of the lead compound BTZ043 ...
Electron deficient nitroaromatic compounds such as BTZ043 and its closest congener, PBTZ169, and rel...
Electron deficient nitroaromatic compounds such as BTZ043 and its closest congener, PBTZ169, and rel...
and display nanomolar bactericidal activity againstMycobacterium tuberculosis in vitro. Structure-ac...
Tuberculosis is still a leading cause of death worldwide. The selection and spread of Mycobacterium ...
Tuberculosis is still a leading cause of death worldwide. The selection and spread of Mycobacterium ...
Tuberculosis is still a leading cause of death worldwide. The selection and spread of Mycobacterium ...
New drugs are required to counter the tuberculosis (TB) pandemic. Here, we describe the synthesis an...
The benzothiazinone BTZ043 is a tuberculosis drug candidate with nanomolar whole-cell activity. BTZ0...
The loss of human lives to tuberculosis (TB) continues essentially unabated as a result of poverty, ...
8-Nitro-1,3-benzothiazin-4-ones (BTZs), with BTZ043 and PBTZ169 as the most advanced compounds, repr...
New drugs are required to counter the tuberculosis (TB) pandemic. Here, we describe the synthesis an...
Tuberculosis is still a leading cause of death in developing countries and a resurgent disease in de...
Abstract Nitro-substituted 1,3-benzothiazinones (nitro-BTZs) are mechanism-based covalent inhibitors...
The benzothiazinone lead compound, BTZ043, kills Mycobacterium tuberculosis by inhibiting the essent...
Benzothiazinones (BTZs) are a class of compounds found to be extremely potent against both drug-susc...
Electron deficient nitroaromatic compounds such as BTZ043 and its closest congener, PBTZ169, and rel...
Electron deficient nitroaromatic compounds such as BTZ043 and its closest congener, PBTZ169, and rel...
and display nanomolar bactericidal activity againstMycobacterium tuberculosis in vitro. Structure-ac...
Tuberculosis is still a leading cause of death worldwide. The selection and spread of Mycobacterium ...
Tuberculosis is still a leading cause of death worldwide. The selection and spread of Mycobacterium ...
Tuberculosis is still a leading cause of death worldwide. The selection and spread of Mycobacterium ...
New drugs are required to counter the tuberculosis (TB) pandemic. Here, we describe the synthesis an...
The benzothiazinone BTZ043 is a tuberculosis drug candidate with nanomolar whole-cell activity. BTZ0...
The loss of human lives to tuberculosis (TB) continues essentially unabated as a result of poverty, ...
8-Nitro-1,3-benzothiazin-4-ones (BTZs), with BTZ043 and PBTZ169 as the most advanced compounds, repr...
New drugs are required to counter the tuberculosis (TB) pandemic. Here, we describe the synthesis an...
Tuberculosis is still a leading cause of death in developing countries and a resurgent disease in de...
Abstract Nitro-substituted 1,3-benzothiazinones (nitro-BTZs) are mechanism-based covalent inhibitors...
The benzothiazinone lead compound, BTZ043, kills Mycobacterium tuberculosis by inhibiting the essent...
Benzothiazinones (BTZs) are a class of compounds found to be extremely potent against both drug-susc...
Electron deficient nitroaromatic compounds such as BTZ043 and its closest congener, PBTZ169, and rel...
Electron deficient nitroaromatic compounds such as BTZ043 and its closest congener, PBTZ169, and rel...
and display nanomolar bactericidal activity againstMycobacterium tuberculosis in vitro. Structure-ac...