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Characterization of the Interaction Between Caffeine and Soybean Selenoprotein by Spectroscopic and Cyclic Voltammetric Methods

机译:咖啡因与大豆硒蛋白在光谱和循环伏安法中的表征

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The quantitative interaction of soybean selenoprotein (SSP) with caffeine (CAF) has been studied by fluorescence, cyclic voltammetry and resonance Rayleigh scattering (RRS) spectra. Fluorescence results demonstrate that the quenching of SSP, induced by CAF, can mainly be attributed to static quenching, and the relative contribution of dynamic quenching is about 0.37% by using a Stem-Volmer analysis. The binding constant (K (a)) and binding sites (n) of the formed SSP/CAF complex at 293 K calculated from the fluorescence quenching results were found to be 4.29 x 10(4) L center dot mol(-1) and 1.22, respectively, which is relatively consistent with the corresponding values obtained by cyclic voltammetry. Based on Forster's theory, the average binding distance (r) between CAF and SSP was found to be 3.03 nm. The interaction mechanism between CAF and SSP was also supported by inspecting the RRS spectra. The effect of CAF on the conformation of SSP was investigated by using the fluorescence phase diagram and circular dichroism spectra. The experimental results show that SSP binding to CAF follows the two-state model and the helical content of SSP decreases after the interaction. In addition, the effect of CAF on the antioxidant activity of SSP was revealed by ultraviolet spectrophotometry. According to the results, SSP/CAF possesses significantly higher antioxidant activity than the control soybean selenoprotein.
机译:通过荧光,循环伏安法和共振瑞利散射(RRS)光谱研究了大豆硒蛋白(SSP)与咖啡因(CAF)的定量相互作用。荧光结果表明,CAF诱导的SSP的猝灭可以主要归因于静态猝灭,通过使用茎Volmer分析,动态猝灭的相对贡献约为0.37%。从荧光猝灭结果计算的293k中形成的SSP / CAF复合物的结合常数(k(a))和结合位点(n)被发现为4.29×10(4)l中心点mol(-1) 1.22分别与通过循环伏安法获得的相应值相对一致。基于Forster的理论,发现CAF和SSP之间的平均结合距离(R)为3.03nm。通过检查RRS光谱,还支持CAF和SSP之间的相互作用机制。通过使用荧光相位图和圆形二色性光谱研究了CAF对SSP构象的影响。实验结果表明,与CAF的SSP结合遵循两种模型,并且在相互作用后SSP的螺旋含量降低。此外,CAF对SSP抗氧化活性的影响被紫外分光光度法揭示。根据结果​​,SSP / CAF比对照大豆硒蛋白具有明显较高的抗氧化活性。

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