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Spectroscopic Studies on the Interaction of Fluorine Containing Triazole with Bovine Serum Albumin

机译:含氟三唑与牛血清白蛋白相互作用的光谱研究

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The binding of one fluorine including triazole (C10H9FN4S, FTZ) to bovine serum albumin (BSA) was studied by spectroscopic techniques including fluorescence spectroscopy, UV–Vis absorption, and circular dichroism (CD) spectroscopy under simulative physiological conditions. Fluorescence data revealed that the fluorescence quenching of BSA by FTZ was the result of forming a complex of BSA–FTZ, and the binding constants (K a) at three different temperatures (298, 304, and 310 K) were 1.516 × 104, 1.627 × 104, and 1.711 × 104 mol L−1, respectively, according to the modified Stern–Volmer equation. The thermodynamic parameters ΔH and ΔS were estimated to be 7.752 kJ mol−1 and 125.217 J mol−1 K−1, respectively, indicating that hydrophobic interaction played a major role in stabilizing the BSA–FTZ complex. It was observed that site I was the main binding site for FTZ to BSA from the competitive experiments. The distance r between donor (BSA) and acceptor (FTZ) was calculated to be 7.42 nm based on the Förster theory of non-radioactive energy transfer. Furthermore, the analysis of fluorescence data and CD data revealed that the conformation of BSA changed upon the interaction with FTZ.
机译:用光谱法研究了一种含三唑的氟(C 10 H 9 FN 4 S,FTZ)与牛血清白蛋白(BSA)的结合。模拟生理条件下的荧光光谱,UV-Vis吸收和圆二色谱(CD)光谱等技术。荧光数据表明,FTZ对BSA的荧光猝灭是形成BSA–FTZ配合物的结果,并且是在三种不同温度(298、304和310 K)下的结合常数(K a ) )分别为1.516×10 4 ,1.627×10 4 和1.711×10 4 mol L -1 分别根据修改后的Stern-Volmer方程。热力学参数ΔH和ΔS估计分别为7.752 kJ mol -1 和125.217 J mol -1 K -1 疏水相互作用在稳定BSA-FTZ复合物中起着重要作用。从竞争实验中观察到,位点I是FTZ与BSA的主要结合位点。根据非放射性能量转移的Förster理论,施主(BSA)与受主(FTZ)之间的距离r为7.42 nm。此外,对荧光数据和CD数据的分析表明,BSA的构型随与FTZ的相互作用而改变。

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