School of Chemistry and Environmental Science, Henan Normal University, Mu Ye District, Xinxiang, China.
J Fluoresc. 2011 Jan;21(1):409-14. doi: 10.1007/s10895-010-0729-7. Epub 2010 Oct 16.
This study was designed to examine the interaction of 4'-O-(a-L-Cladinosyl) daunorubicin (DNR-D5), a disaccharide anthracycline with calf thymus deoxyribonucleic acid (ctDNA) by UV/Vis in combination with fluorescence spectroscopy and molecular modeling techniques under physiological conditions (Britton-Robinson buffer solutions, pH = 7.4). By the analysis of UV/Vis spectrum, it was observed that upon binding to ctDNA the anthraquinone chromophore of DNR-D5 could slide into the base pairs. Moreover, the large binding constant indicated DNR-D5 had a high affinity with ctDNA. At the same time, fluorescence spectra suggested that the quenching mechanism of the interaction of DNR-D5 to ctDNA was a static quenching type. The binding constants between DNR-D5 and ctDNA were calculated based on fluorescence quenching data at different temperatures. The negative ∆G implied that the binding process was spontaneous, and negative ∆H and negative ΔS suggested that hydrogen bonding force most likely played a major role in the binding of DNR-D5 to ctDNA. Moreover, the results obtained from molecular docking corroborate the experimental results obtained from spectroscopic investigations.
本研究旨在通过紫外/可见分光光度法结合荧光光谱法和分子模拟技术,在生理条件下( Britton-Robinson 缓冲溶液,pH=7.4)研究 4'-O-(a-L-克拉定糖基)柔红霉素(DNR-D5)与小牛胸腺脱氧核糖核酸(ctDNA)的相互作用。通过紫外/可见光谱分析,观察到 DNR-D5 的蒽醌发色团在与 ctDNA 结合时可以滑入碱基对。此外,大的结合常数表明 DNR-D5 与 ctDNA 具有高亲和力。同时,荧光光谱表明 DNR-D5 与 ctDNA 的相互作用的猝灭机制为静态猝灭型。基于不同温度下荧光猝灭数据计算了 DNR-D5 与 ctDNA 之间的结合常数。负的 ∆G 表明结合过程是自发的,负的 ∆H 和负的 ∆S 表明氢键力很可能在 DNR-D5 与 ctDNA 的结合中起主要作用。此外,分子对接的结果与光谱研究得到的实验结果相符。