State Key Laboratory of Food Science and Technology, Nanchang University, No. 235 Nanjing East Road, Nanchang 330047, China.
Spectrochim Acta A Mol Biomol Spectrosc. 2012 Oct;96:1012-9. doi: 10.1016/j.saa.2012.08.002. Epub 2012 Aug 16.
The binding mechanism of triadimenol (NOL) to calf thymus DNA (ctDNA) in physiological buffer (pH 7.4) was investigated by multispectroscopic methods including UV-vis absorption, fluorescence, circular dichroism (CD), Fourier transform infrared (FT-IR), and nuclear magnetic resonance ((1)H NMR) spectroscopy, coupled with viscosity measurements and atomic force microscopy (AFM) technique. The results suggested that NOL interacted with ctDNA by intercalation mode. CD and AFM assays showed that NOL can damage the base stacking of ctDNA and result in regional cleavage of the two DNA strands. FT-IR and (1)H NMR spectra coupled with molecular docking revealed that a specific binding mainly exists between NOL and G-C base pairs of the ctDNA where two hydrogen bonds form. Moreover, the association constants of NOL with DNA at three different temperatures were determined to be in the 10(3) L mol(-1) range. The calculated thermodynamic parameters suggested that the binding of NOL to ctDNA was driven mainly by hydrogen bond and van der Waals.
三氮脒(NOL)与小牛胸腺 DNA(ctDNA)在生理缓冲液(pH 7.4)中的结合机制通过多种光谱方法进行了研究,包括紫外可见吸收、荧光、圆二色性(CD)、傅里叶变换红外(FT-IR)和核磁共振(1H NMR)光谱法,以及粘度测量和原子力显微镜(AFM)技术。结果表明,NOL 通过嵌入模式与 ctDNA 相互作用。CD 和 AFM 测定表明,NOL 可以破坏 ctDNA 的碱基堆积并导致两条 DNA 链的局部断裂。FT-IR 和 1H NMR 光谱与分子对接表明,NOL 与 ctDNA 的 G-C 碱基对之间存在特定的结合,其中形成两个氢键。此外,还确定了 NOL 在三个不同温度下与 DNA 的结合常数在 103 L mol-1范围内。计算得到的热力学参数表明,NOL 与 ctDNA 的结合主要由氢键和范德华力驱动。