Ran Dehuan, Wu Xia, Zheng Jinhua, Yang Jinghe, Zhou Haiping, Zhang Meifeng, Tang Yongjun
Key Laboratory of Colloid and Interface Chemistry, Ministry of Education, School of Chemistry and Chemical Engineering, Shandong University, Jinan, Shandong, People's Republic of China.
J Fluoresc. 2007 Nov;17(6):721-6. doi: 10.1007/s10895-007-0226-9. Epub 2007 Aug 17.
In this paper, the interaction between florasulam (FU, 2',6',8-trifluoro-5-methoxy [Kragh-Hansen U, Molecular aspects of ligand binding to serum albumin. Pharmacol Rev 33(1):17-53 1981; Carter DC and Ho JX, Structure of serum albumin. Adv Protein Chem 45:153-203 1994; He XM, and Carter DC, Atomic structure and chemistry of human serum albumin. Nature 358(6383):209-215 1992] triazolo [1,5-c]pyrimidine-2-sulfonanilide) and bovine serum albumin (BSA) was investigated by fluorescence, ultraviolet absorption (UV) and Far-UV circular dichroism (CD) spectrometries. A strong fluorescence quenching was observed and the quenching mechanism was considered as static quenching. The binding constant of FU with BSA at 299 and 309 K were obtained as 1.5 x 10(4) and 7.1 x 10(3) l mol(-1), respectively. There was one binding site between FU and BSA. The thermodynamic parameters enthalpy change (DeltaH) and entropy change (DeltaS) were calculated as -57.89 kJ mol(-1) and -113.6 J mol(-1) K(-1), respectively, which indicated that the acting force between FU and BSA was mainly hydrogen bond and Van der Waals force. According to the Förster non-radiation energy transfer theory, the average binding distance between donor (BSA) and acceptor (FU) was obtained (r = 1.59 nm). The investigations of the UV/Vis and CD spectra of the system showed that the conformation of BSA was changed in presence of FU.
本文采用荧光光谱、紫外吸收光谱和远紫外圆二色光谱法研究了氯氟磺隆(FU,2',6',8-三氟-5-甲氧基[克拉格-汉森U,配体与血清白蛋白结合的分子方面。药理学评论33(1):17-53 1981;卡特DC和何JX,血清白蛋白的结构。蛋白质化学进展45:153-203 1994;何XM和卡特DC,人血清白蛋白的原子结构与化学。自然358(6383):209-215 1992]三唑并[1,5-c]嘧啶-2-磺酰苯胺)与牛血清白蛋白(BSA)之间的相互作用。观察到强烈的荧光猝灭,猝灭机制被认为是静态猝灭。在299 K和309 K时,FU与BSA的结合常数分别为1.5×10⁴和7.1×10³ l·mol⁻¹。FU与BSA之间存在一个结合位点。热力学参数焓变(ΔH)和熵变(ΔS)分别计算为-57.89 kJ·mol⁻¹和-113.6 J·mol⁻¹·K⁻¹,这表明FU与BSA之间的作用力主要是氢键和范德华力。根据Förster非辐射能量转移理论,得到了供体(BSA)与受体(FU)之间的平均结合距离(r = 1.59 nm)。对该体系紫外可见光谱和圆二色光谱的研究表明,在FU存在下BSA的构象发生了变化。