In silico design, synthesis and antitubercular activity of novel 2-acylhydrazono-5-arylmethylene-4-thiazolidinones as enoyl-acyl carrier protein reductase inhibitors

J Biomol Struct Dyn. 2025 Aug;43(13):6681-6699. doi: 10.1080/07391102.2024.2319678. Epub 2024 Mar 7.

Abstract

Mycobacteria regulate the synthesis of mycolic acid through the fatty acid synthase system type 1 (FAS I) and the fatty acid synthase system type-2 (FAS-II). Because mammalian cells exclusively utilize the FAS-I enzyme system for fatty acid production, targeting the FAS-II enzyme system could serve as a specific approach for developing selective antimycobacterial drugs. Enoyl-acyl carrier protein reductase enzyme (MtInhA), part of the FAS-II enzyme system, contains the NADH cofactor in its active site and reduces the intermediate. Molecular docking studies were performed on an in-house database (∼2200 compounds). For this study, five different crystal structures of MtInhA (PDB Code: 4TZK, 4BQP, 4D0S, 4BGE, 4BII) were used due to rotamer difference, mutation and the presence of cofactors. Molecular dynamics simulations (250 ns) were performed for the novel 2-acylhydrazono-5-arylmethylene-4-thiazolidinones derivatives selected by molecular docking studies. Twenty-three compounds selected by in silico methods were synthesized. Antitubercular activity and MtInhA enzyme inhibition studies were performed for compounds whose structures were elucidated by IR,1H-NMR,13C-NMR, HSQC, HMBC, MS and elemental analysis.

Keywords: MtInhA inhibitors; Mycobacterium tuberculosis; molecular dynamics; molecular modeling; thiazolidin-4-one.

MeSH terms

  • Antitubercular Agents* / chemical synthesis
  • Antitubercular Agents* / chemistry
  • Antitubercular Agents* / pharmacology
  • Catalytic Domain
  • Drug Design*
  • Enoyl-(Acyl-Carrier-Protein) Reductase (NADH)* / antagonists & inhibitors
  • Enoyl-(Acyl-Carrier-Protein) Reductase (NADH)* / chemistry
  • Enzyme Inhibitors* / chemical synthesis
  • Enzyme Inhibitors* / chemistry
  • Enzyme Inhibitors* / pharmacology
  • Molecular Docking Simulation
  • Molecular Dynamics Simulation
  • Mycobacterium tuberculosis / drug effects
  • Mycobacterium tuberculosis / enzymology
  • Protein Binding
  • Thiazolidines* / chemical synthesis
  • Thiazolidines* / chemistry
  • Thiazolidines* / pharmacology

Substances

  • Antitubercular Agents
  • Enzyme Inhibitors
  • Enoyl-(Acyl-Carrier-Protein) Reductase (NADH)
  • Thiazolidines