Spectroscopic and molecular docking studies on the binding mechanism of Mobic and lipase

Bao-Sheng Liu, Xu Cheng, Hongcai Zhang
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引用次数: 3

Abstract

Under simulated physiological conditions (pH=7.40), the interaction between non-steroidal anti-inflammatory drug mopicol and lipase was studied by fluorescence spectrum, ultraviolet absorption spectrum, circular dichroism spectrum and computer simulation technique. The experimental results showed that Mobic could quench the fluorescence of lipase by static quenching, and the binding site number is about 1. According to Forster's theory of non-radiation energy transfer, the binding distance between Mobic and lipase was obtained, r 0, indicating that hydrophobic force played a major role in the formation of Mobic and lipase complex. The results of synchronous fluorescence spectra, UV spectra and circular dichroism spectra showed that Mobic changed the conformation of lipase. The molecular docking results showed that the binding position of Mobic was close to the active center, indicating that Mobic could change the microenvironment of amino acid residues at the active center of lipase catalysis. The results of docking showed that there was hydrogen bond between Mobic and lipase, so the interaction between Mobic and lipase was driven by hydrophobic interaction and hydrogen bond.
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Mobic与脂肪酶结合机理的光谱与分子对接研究
在模拟生理条件(pH=7.40)下,采用荧光光谱、紫外吸收光谱、圆二色光谱和计算机模拟技术研究了非甾体抗炎药mopicol与脂肪酶的相互作用。实验结果表明,Mobic可以静态猝灭脂肪酶的荧光,结合位点数约为1。根据Forster的非辐射能量传递理论,得到了Mobic与脂肪酶的结合距离r 0,说明疏水力在Mobic与脂肪酶复合物的形成中起主要作用。同步荧光光谱、紫外光谱和圆二色光谱结果表明,Mobic改变了脂肪酶的构象。分子对接结果显示,Mobic的结合位置靠近活性中心,说明Mobic可以改变脂肪酶催化活性中心氨基酸残基的微环境。对接结果表明,Mobic与脂肪酶之间存在氢键,因此Mobic与脂肪酶的相互作用是由疏水相互作用和氢键驱动的。
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