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研究二羟丙茶碱与人溶菌酶相互作用的机制:一种生物物理和计算方法。

Studying the Mechanism of Interaction of Doxofylline with Human Lysozyme: A Biophysical and In Silico Approach.

机构信息

Zoology Department, College of Science, King Saud University, Riyadh 11451, Saudi Arabia.

出版信息

Molecules. 2023 Apr 14;28(8):3462. doi: 10.3390/molecules28083462.

Abstract

In this study, multiple spectroscopic and computational methods were utilized to investigate the binding mechanism of doxofylline with lysozyme. The in vitro methods were used to obtain the binding kinetics and thermodynamics. UV-vis spectroscopy indicated the formation of complex between doxofylline and lysozyme. The Gibb's free energy and binding constant from UV-vis data was obtained as -7.20 kcal M and 1.929 × 10 M, respectively. Doxofylline successfully quenched the fluorescence of lysozyme, confirming the formation of complex. The k and K values for the quenching of lysozyme's fluorescence by doxofylline were 5.74 × 10 M s and 3.32 × 10 M, respectively. These values signified a moderate binding affinity between doxofylline and lysozyme. In synchronous spectroscopy, red shifts were observed for indicating the changes in microenvironment of lysozyme following the binding of doxofylline. The secondary structural analysis was determined using circular dichroism (CD) which revealed an increase in % α-helical as a result of doxofylline interaction. The binding affinity and flexibility of lysozyme upon complexation have been revealed via molecular docking and molecular dynamic (MD) simulations, respectively. According to the many parameters of the MD simulation, the lysozyme-doxofylline complex was stable under physiological conditions. All during the simulation time, hydrogen bonds were continuously present. The MM-PBSA binding energy for lysozyme and doxofylline binding was found to be -30.55 kcal mol.

摘要

在这项研究中,我们采用了多种光谱和计算方法来研究茶碱与溶菌酶的结合机制。我们采用体外方法来获得结合的动力学和热力学性质。紫外-可见光谱表明茶碱与溶菌酶形成了复合物。从紫外-可见数据中得到的吉布斯自由能和结合常数分别为-7.20 kcal/mol 和 1.929×10 M。茶碱成功地猝灭了溶菌酶的荧光,证实了复合物的形成。茶碱猝灭溶菌酶荧光的 k 和 K 值分别为 5.74×10 M s 和 3.32×10 M,表明茶碱与溶菌酶之间具有中等的结合亲和力。在同步荧光光谱中,观察到红移,表明茶碱结合后溶菌酶微环境发生了变化。使用圆二色性(CD)进行二级结构分析,结果表明,由于茶碱的相互作用,α-螺旋的百分比增加。通过分子对接和分子动力学(MD)模拟分别揭示了结合前后溶菌酶的结合亲和力和灵活性。根据 MD 模拟的许多参数,在生理条件下,溶菌酶-茶碱复合物是稳定的。在整个模拟时间内,氢键都在不断地形成。溶菌酶和茶碱结合的 MM-PBSA 结合能为-30.55 kcal/mol。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/00c3/10146846/21cf3031032d/molecules-28-03462-g001.jpg

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