a College of Chemistry , Changchun Normal University , Changchun 130032 , PR China.
J Biomol Struct Dyn. 2019 Apr;37(6):1464-1476. doi: 10.1080/07391102.2018.1461138. Epub 2018 Apr 24.
Two aminoglycosides, micronomicin (MN), and tobramycin (TB), binding with DNA were studied using various spectroscopic techniques including fluorescence, UV-Vis, FT-IR, and CD spectroscopy coupled with relative viscosity and molecular docking. Studies of fluorescence quenching and time-resolved fluorescence spectroscopy all revealed that MN/TB quenching the fluorescence of DNA-EB belonged to static quenching. The binding constants and binding sites were obtained. The values of ΔH, ΔS, and ΔG suggested that van der Waals force or hydrogen bond might be the main binding force. FT-IR and CD spectroscopy revealed that the binding of MN/TB with DNA had an effect on the secondary structure of DNA. Binding mode of MN/TB with DNA was groove binding which was ascertained by viscosity measurements, CD spectroscopy, ionic strength, melting temperature (T), contrast experiments with single stranded (ssDNA), and double stranded DNA (dsDNA). Molecular docking analysis further confirmed that the groove binding was more acceptable result.
两种氨基糖苷类抗生素,米诺霉素(MN)和妥布霉素(TB),与 DNA 的结合使用包括荧光、紫外-可见、FT-IR 和 CD 光谱学以及相对粘度和分子对接等各种光谱技术进行了研究。荧光猝灭和时间分辨荧光光谱学研究均表明,MN/TB 猝灭 DNA-EB 的荧光属于静态猝灭。得到了结合常数和结合位点。ΔH、ΔS 和 ΔG 的值表明范德华力或氢键可能是主要的结合力。FT-IR 和 CD 光谱学表明,MN/TB 与 DNA 的结合对 DNA 的二级结构有影响。MN/TB 与 DNA 的结合模式是沟结合,这是通过粘度测量、CD 光谱学、离子强度、熔点(T)、与单链(ssDNA)和双链 DNA(dsDNA)的对比实验来确定的。分子对接分析进一步证实了沟结合是更可接受的结果。