Synthesis, optical properties, DNA, β-cyclodextrin interaction, hydrogen isotope sensor and computational study of new enantiopure isoxazolidine derivative (ISoXD)

A novel isoxazolidine derivative (ISoXD) dye was successfully synthesized and comprehensively characterized. In this study, we conducted a thorough examination of its various properties, including optical characteristics, interactions with DNA and β-cyclodextrin (β-CD), molecular docking, molecular...

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Veröffentlicht in:Heliyon 2024-02, Vol.10 (4), p.e26341-e26341, Article e26341
Hauptverfasser: Alotayeq, Afnan, Ghannay, Siwar, Alhagri, Ibrahim A., Ahmed, Iqrar, Hammami, Bechir, E. A. E. Albadri, Abuzar, Patel, Harun, Messaoudi, Sabri, Kadri, Adel, M. Al-Hazmy, Sadeq, Aouadi, Kaiss
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Sprache:eng
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Zusammenfassung:A novel isoxazolidine derivative (ISoXD) dye was successfully synthesized and comprehensively characterized. In this study, we conducted a thorough examination of its various properties, including optical characteristics, interactions with DNA and β-cyclodextrin (β-CD), molecular docking, molecular dynamic simulation, and density functional theory (DFT) calculations. Our investigation encompassed a systematic analysis of the absorption and emission spectra of ISoXD in diverse solvents. The observed variations in the spectroscopic data were attributed to the specific solvent's capacity to engage in hydrogen bonding interactions. Remarkably, the most pronounced intensities were observed in glycol, which can establish many hydrogen bonds with ISoXD. Furthermore, our study revealed a significant distinction in the fluorescence behavior of ISoXD when subjected to different solvents, particularly between CHCl3 and CDCl3. Moreover, we explored the fluorescence intensity of the ISoXD complex in the presence of various metals, both in ethanol and water. The ISoXD complex exhibited a substantial increase of fluorescence upon interaction with different metal ions. The utilization of DFT calculations allowed us to propose an intramolecular charge transfer (ICT) mechanism as a plausible explanation for this quenching phenomenon. The interaction of ISoXD with DNA and β-CD was studied using absorption spectra. The binding constant (K) and the standard Gibbs free energy change (ΔGo) for the interaction between DNA and β-CD with ISoXD were determined. In docking study, ISoXD exhibited significant docking scores (−6.511) and MM-GBSA binding free energies (−66.27 kcal/mol) within the PARP-1 binding cavity. Its binding pattern closely resembles to the co-crystal ligand veliparib, and during a 100ns MD simulation, ISoXD displayed strong stability and formed robust hydrogen bonds with key amino acids. These findings suggest ISoXD's potential as a PARP-1 inhibitor for further investigation in therapeutic development. •The fluorescence intensity of the ISoXD complex increased in ethanol with the addition of metals.•ISoXD binds to DNA through intercalation, exhibiting a strong binding affinity.•ISoXD demonstrated remarkable stability and formed strong hydrogen bond interactions with key amino acids.•ISoXD shows great promise as a candidate for PARP-1 inhibition.
ISSN:2405-8440
2405-8440
DOI:10.1016/j.heliyon.2024.e26341