AI Article Synopsis

  • Thiabendazole (TBZ) is a food preservative with anthelmintic properties, and a study explored its molecular interaction with herring sperm DNA (hsDNA) using computer simulations and experiments.
  • Molecular docking indicated that TBZ binds to DNA primarily at A-T and C-G regions in a groove binding mode, while molecular dynamics (MD) showed that hydrogen bonds help stabilize this TBZ-DNA complex.
  • The study's findings were further supported by techniques like NMR, fluorescence, circular dichroism, and FTIR, demonstrating TBZ's strong affinity for hsDNA and resulting in changes to DNA's conformation and structure.

Article Abstract

Thiabendazole (TBZ) is a commonly used food preservative and has a wide range of anthelmintic properties. In this study, computer simulations and experiments were conducted to investigate the interaction mechanism of TBZ and herring sperm DNA (hsDNA) at the molecular level. Molecular docking showed that TBZ interacted with DNA in groove mode and bound in A-T and C-G base pair regions. Molecular dynamics (MD) was used to evaluate the stability of the TBZ-DNA complex and found that the three phases in MD and the hydrogen bonds helped maintain the combination. NMR relaxation indicated that TBZ had a certain affinity to hsDNA with a binding constant of 462.43 L mol, and the thiazole ring was the main group bound with DNA. Results obtained from fluorescence experiments showed that the binding of TBZ and hsDNA was predominantly driven by enthalpy through a static quenching mechanism. Circular dichroism and viscosity measurements proved the groove binding mode. The FTIR results clarified the conformational changes of DNA, that the DNA helix became shorter and compact, and the DNA structure transformed from B-form to A-form.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9080843PMC
http://dx.doi.org/10.1039/c8ra03702gDOI Listing

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