Design, Syntheses, and Anti-TB Activity of 1,3-Benzothiazinone Azide and Click Chemistry Products Inspired by BTZ043

ACS Medicinal Chemistry Letters
2016.0

Abstract

Electron deficient nitroaromatic compounds such as BTZ043 and its closest congener, PBTZ169, and related agents are a promising new class of anti-TB compounds. Herein we report the design and syntheses of 1,3-benzothiazinone azide (BTZ-N3) and related click chemistry products based on the molecular mode of activation of BTZ043. Our computational docking studies indicate that BTZ-N3 binds in the essentially same pocket as that of BTZ043. Detailed biochemical studies with cell envelope enzyme fractions of Mycobacterium smegmatis combined with our model biochemical reactivity studies with nucleophiles indicated that, in contrast to BTZ043, the azide analogue may have a different mode of activation for anti-TB activity. Subsequent enzymatic studies with recombinant DprE1 from Mtb followed by MIC determination in NTB1 strain of Mtb (harboring Cys387Ser mutation in DprE1 and is BTZ043 resistant) unequivocally indicated that BTZ-N3 is an effective reversible and noncovalent inhibitor of DprE1.

Knowledge Graph

Similar Paper

Design, Syntheses, and Anti-TB Activity of 1,3-Benzothiazinone Azide and Click Chemistry Products Inspired by BTZ043
ACS Medicinal Chemistry Letters 2016.0
Syntheses and Antituberculosis Activity of 1,3-Benzothiazinone Sulfoxide and Sulfone Derived from BTZ043
ACS Medicinal Chemistry Letters 2015.0
Synthesis and evaluation of triazole congeners of nitro-benzothiazinones potentially active against drug resistant Mycobacterium tuberculosis demonstrating bactericidal efficacy
RSC Medicinal Chemistry 2022.0
Synthesis and bioactivity of novel triazole incorporated benzothiazinone derivatives as antitubercular and antioxidant agent
Bioorganic & Medicinal Chemistry Letters 2016.0
Sulfur rich 2-mercaptobenzothiazole and 1,2,3-triazole conjugates as novel antitubercular agents
European Journal of Medicinal Chemistry 2014.0
Synthesis and biological evaluation of novel 1,2,3-triazole derivatives as anti-tubercular agents
Bioorganic & Medicinal Chemistry Letters 2017.0
Identification of N-Benzyl 3,5-Dinitrobenzamides Derived from PBTZ169 as Antitubercular Agents
ACS Medicinal Chemistry Letters 2018.0
Identification of Better Pharmacokinetic Benzothiazinone Derivatives as New Antitubercular Agents
ACS Medicinal Chemistry Letters 2017.0
Identification of novel benzothiopyranone compounds against Mycobacterium tuberculosis through scaffold morphing from benzothiazinones
European Journal of Medicinal Chemistry 2018.0
1,2,3-Triazole derivatives as antitubercular agents: synthesis, biological evaluation and molecular docking study
MedChemComm 2015.0