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April 18, 2026BioMed Research International0 citationsOpen Access

Synthesis, Biological Evaluation, and Molecular Docking of Tellurium‐Containing Benzothiazole Derivatives as Enzyme Inhibitors of DNA Gyrase and Dihydrofolate Reductase

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OHOlha HalehaVPValeriy Pantyo�K�. N. Korol'

Key Points

  • This research aims to evaluate new tellurium-containing benzothiazole derivatives as potential enzyme inhibitors.
  • Synthesis of alkenyl and alkynyl thio-derivatives of 2-mercaptobenzothiazole using tellurium tetrahalides.
  • Characterization of synthesized compounds by IR and NMR spectroscopy.
  • Antibacterial testing against Staphylococcus aureus and Escherichia coli to determine MIC and MBC values.
  • Molecular docking studies against DNA gyrase B and dihydrofolate reductase.
  • Minimum inhibitory concentrations for the compounds ranged from 31.25 to 250 µg/mL.
  • Alkynyl- and alkenyl-substituted derivatives showed the highest antibacterial activity.
  • Several compounds inhibited biofilm formation at sub-MIC concentrations.
  • Predicted binding energies for enzyme interactions ranged from -4.9 to -6.7 kcal/mol.

Abstract

Tellurium-containing heterocycles represent an emerging class of organochalcogen compounds with notable redox properties and antimicrobial potential. Incorporation of tellurium into sulfur- and nitrogen-containing frameworks can enhance biological activity through increased polarizability and favorable noncovalent interactions. In this study, a series of novel alkenyl and alkynyl thio-derivatives of 2-mercaptobenzothiazole were synthesized via electrophilic heterocyclization with tellurium tetrahalides and evaluated for antibacterial and antibiofilm activity. The resulting benzothiazolium tellurate derivatives were characterized by IR and 1H/13C NMR spectroscopy, RF values, and elemental analysis. Antibacterial testing against Staphylococcus aureus and Escherichia coli revealed minimum inhibitory concentration (MIC) values ranging from 31.25 to 250 μg/mL and minimum bactericidal concentration (MBC) values of 62.5-500 μg/mL, with alkynyl- and alkenyl-substituted derivatives displaying the highest activity. Several compounds also demonstrated pronounced inhibition of biofilm formation at sub-MIC concentrations. Molecular docking studies were performed against bacterial DNA gyrase B and dihydrofolate reductase (DHFR). The most active alkynyl derivative exhibited favorable binding within the ATP-binding pocket of S. aureus gyrase B, whereas selected alkenyl derivatives showed stable accommodation in the active site of E. coli DHFR. Predicted binding energies ranged from -4.9 to -6.7 kcal/mol, consistent with moderate but meaningful ligand-enzyme interactions. The results indicate that tellurium-containing benzothiazolium derivatives constitute a promising exploratory scaffold for antimicrobial and antibiofilm agents. Their activity appears to arise from a combination of enzyme binding, electrophilic reactivity, and enhanced electronic interactions introduced by tellurium incorporation, supporting further investigation of these systems in preclinical antimicrobial research.

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Cite This Study

Haleha et al. (2026) studied this question.

synapsesocial.com/papers/69e3203440886becb653f534https://doi.org/10.1155/bmri/9439665
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