| Literature DB >> 28631897 |
Yijie Sha1, Xu Chen2, Bing Niu1, Qin Chen1.
Abstract
Quercetin, a ubiquitous flavanoid, has numerous pharmacological effects, such as antioxidant and antitumor. Previous studies showed nucleic acids were the potential biological targets for antitumor medicine. For exploring the mechanism of DNA-target medicine, the interaction between quercetin and calf thymus DNA was studied based on the method of spectrometry and simulation in our study. Firstly, the interaction between quercetin and calf thymus DNA was confirmed by fluorescence spectrometry. Furthermore, circular dichroism, fluorescence polarization, competitive displacement assay, and salt concentration dependence assay were applied to search the interaction mode of quercetin-calf thymus DNA, which proved the existence of groove binding and electrostatic interaction. Meanwhile, quenching constant Ksv , binding constant Ka and the number of binding sites n was calculated, inferring that the fluorescence quenching occurred by static quenching process, and the main acting force was hydrogen bond. Finally, molecular docking was used to simulate and analyze the interaction between quercetin and calf thymus DNA.Entities:
Keywords: Calf thymus DNA; Fluorescence polarization; Fluorescence spectroscopy; Groove binding; Molecular docking; Quercetin
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Year: 2017 PMID: 28631897 DOI: 10.1002/cbdv.201700133
Source DB: PubMed Journal: Chem Biodivers ISSN: 1612-1872 Impact factor: 2.408