Discipline of Physics and MEMS, Indian Institute of Technology Indore, Simrol, 453552, India.
National Institute for Nanotechnology, University of Alberta, Edmonton, Canada.
J Fluoresc. 2018 Jan;28(1):373-380. doi: 10.1007/s10895-017-2199-7. Epub 2017 Dec 14.
In the present work, the interaction of phosphorous heterocycle (PH) with calf thymus DNA (CTDNA) has been studied using spectroscopy and verified by molecular modeling which is found to be in consonance with each other. Apparent association constant (K = 4.77 × 10 M), calculated using UV-Vis spectra indicating an adequate complex formation between CTDNA and PH. A dynamic mode of the fluorescence quenching mechanism in case of ethidium bromide (EB) + CTDNA by PH has been observed confirming formation of DNA-PH complex. A moderate binding constants of PH with CTDNA + EB has been observed (2.74 × 10 M at 293 K) by means of fluorescence data. Calculated values of thermodynamic parameters enthalpy change (ΔH) and entropy change (ΔS), suggests weak (van der Walls like) force and hydrogen bonds playing the main role in the binding of PH to CTDNA. Furthermore, the results of circular dichroism (CD) reveal that PH does not disturb native conformation of CTDNA. As observed from absorption and fluorescence spectroscopy the binding mode of PH with DNA was indicative of a non-intercalative binding, which was supposed to be a groove binding. The molecular modeling results show that PH is capable of binding DNA having docking binding energy = -7.26 kcal × mol. Above mentioned experimental results are found to be in consonance with molecular docking simulations and supports the CTDNA-PH binding. Graphical Abstract.
在本工作中,使用光谱法研究了磷杂环(PH)与小牛胸腺 DNA(CTDNA)的相互作用,并通过分子建模进行了验证,结果发现两者是一致的。使用紫外可见光谱计算得到的表观结合常数(K=4.77×10^M)表明CTDNA 和 PH 之间存在充分的配合物形成。在 PH 存在的情况下,溴化乙锭(EB)与 CTDNA 之间的荧光猝灭机制呈现动态模式,证实了 DNA-PH 配合物的形成。通过荧光数据观察到 PH 与 CTDNA+EB 的中等结合常数(293 K 时为 2.74×10^M)。通过热力学参数焓变(ΔH)和熵变(ΔS)的计算值表明,弱(范德华力样)力和氢键在 PH 与 CTDNA 的结合中起主要作用。此外,圆二色性(CD)的结果表明 PH 不会干扰 CTDNA 的天然构象。从吸收和荧光光谱观察到,PH 与 DNA 的结合模式表明其为非嵌入结合,推测为沟结合。分子建模结果表明,PH 能够与 DNA 结合,其对接结合能=-7.26 kcal×mol。上述实验结果与分子对接模拟结果一致,支持 CTDNA-PH 结合。