Identification of new anti-mycobacterial agents based on quinoline-isatin hybrids targeting enoyl acyl carrier protein reductase (InhA)
Jazyk angličtina Země Spojené státy americké Médium print-electronic
Typ dokumentu časopisecké články, práce podpořená grantem
PubMed
38262087
DOI
10.1016/j.bioorg.2024.107138
PII: S0045-2068(24)00043-9
Knihovny.cz E-zdroje
- Klíčová slova
- Biological activities, InhA inhibitors, Molecular docking, Molecular dynamics Simulation, Mycobacterium tuberculosis,
- MeSH
- antituberkulotika farmakologie chemie MeSH
- bakteriální proteiny metabolismus MeSH
- chinoliny * farmakologie MeSH
- isatin * farmakologie MeSH
- lidé MeSH
- mikrobiální testy citlivosti MeSH
- Mycobacterium tuberculosis * MeSH
- oxidoreduktasy metabolismus MeSH
- protein přenášející acyl farmakologie MeSH
- simulace molekulového dockingu MeSH
- Check Tag
- lidé MeSH
- Publikační typ
- časopisecké články MeSH
- práce podpořená grantem MeSH
- Názvy látek
- antituberkulotika MeSH
- bakteriální proteiny MeSH
- chinoliny * MeSH
- isatin * MeSH
- oxidoreduktasy MeSH
- protein přenášející acyl MeSH
Tuberculosis (TB) is a global issue that poses a significant economic burden as a result of the ongoing emergence of drug-resistant strains. The urgent requirement for the development of novel antitubercular drugs can be addressed by targeting specific enzymes. One such enzyme, Mycobacterium tuberculosis (MTB) enoyl-acyl carrier protein (enoyl-ACP) reductase (InhA), plays a crucial role in the survival of the MTB bacterium. In this research study, a series of hybrid compounds combining quinolone and isatin were synthesized and assessed for their effectiveness against MTB, as well as their ability to inhibit the activity of the InhA enzyme in this bacterium. Among the compounds tested, 7a and 5g exhibited the most potent inhibitory activity against MTB, with minimum inhibitory concentration (MIC) values of 55 and 62.5 µg/mL, respectively. These compounds were further evaluated for their inhibitory effects on InhA and demonstrated significant activity compared to the reference drug Isoniazid (INH), with IC50 values of 0.35 ± 0.01 and 1.56 ± 0.06 µM, respectively. Molecular docking studies investigated the interactions between compounds 7a and 5g and the target enzyme, revealing hydrophobic contacts with important amino acid residues in the active site. To further confirm the stability of the complexes formed by 5g and 7a with the target enzyme, molecular dynamic simulations were employed, which demonstrated that both compounds 7a and 5g undergo minor structural changes and remain nearly stable throughout the simulated process, as assessed through RMSD, RMSF, and Rg values.
Department of Medical Physiology College of Medicine King Khalid University Asir 61421 Saudi Arabia
Institute of Natural Products Chemistry VAST 18 Hoang Quoc Viet Caugiay Hanoi 10000 Viet Nam
Institute of Organic Chemistry and Biochemistry Academy of Sciences Prague Czech Republic
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