Spectroscopic Study on the Interaction between Mobic and Lysozyme

Bao-Sheng Liu, Xu Cheng, Hongcai Zhang
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Abstract

Under simulated physiological conditions (pH=7.40), the interaction between Mobic and lysozyme was studied by synchronous fluorescence spectroscopy, ultraviolet spectroscopy, circular dichroism spectroscopy and molecular docking simulation technique.The results of spectroscopy showed that the fluorescence of lysozyme was statically quenched by Mobic, the number of binding sites was about 1, and the conformation of lysozyme was changed.The thermodynamic parameters obtained from the van't Hoff equation show that the Gibbs free energy ΔG<0 showed that the reaction between them was spontaneous, and ΔH<0, ΔS>0, indicating that the hydrophobic force plays an important role in the formation of Mobic-lysozyme complex.The results of molecular docking showed that the binding site of Mobic was close to the active site composed of Asp48 and Glu35 residues, indicating that Mobic could change the microenvironment of amino acid residues at the catalytic active center of lysozyme.The results of docking further showed that there was a hydrogen bond between Moby and lysozyme, so the interaction between Mobic and lysozyme was driven by hydrophobic interaction and hydrogen bond. Keywords— Mobic; lysozyme; spectroscopy; conformational; molecular docking.
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Mobic与溶菌酶相互作用的光谱研究
在模拟生理条件(pH=7.40)下,采用同步荧光光谱、紫外光谱、圆二色光谱和分子对接模拟技术研究了Mobic与溶菌酶的相互作用。光谱分析结果表明,Mobic静态猝灭了溶菌酶的荧光,结合位点数约为1个,并改变了溶菌酶的构象。由van't Hoff方程得到的热力学参数为:Gibbs自由能ΔG0,说明疏水力在mobic -溶菌酶络合物的形成中起重要作用。分子对接结果显示,Mobic的结合位点靠近由Asp48和Glu35残基组成的活性位点,表明Mobic可以改变溶菌酶催化活性中心氨基酸残基的微环境。对接结果进一步表明,Moby与溶菌酶之间存在一个氢键,因此Moby与溶菌酶的相互作用是由疏水相互作用和氢键驱动的。关键词- Mobic;溶菌酶;光谱法;构象;分子对接。
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