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Energetics and Conformational Changes upon Complexation of a Phenothiazine Drug with Human Serum Albumin

机译:吩噻嗪类药物与人血清白蛋白复合后的能量学和构象变化

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The interactions and complexation process of the amphiphilic phenothiazine fluphenazine hydrochloride with human serum albumin in aqueous buffered solutions of pH 3.0 and 7.4 have been examined by zeta-potential,isothermal titration calorimetry (ITC),UV-vis spectroscopy,and dynamic light scattering (DLS) techniques with the aim of analyzing the effect of hydrophobic and electrostatic forces on the complexation process and the alteration of protein conformation upon binding.Thus,the energetics and stoichiometry of the binding process were derived from ITC data.The enthalpies of binding obtained are small and exothermic,so the Gibbs energies of binding are dominated by large increases in entropy,consistent with hydrophobic interactions at a acidic pH.However,at physiological pH,binding to the first class of binding sites is dominated by an enthalpic contribution due to the existence of electrostatic interactions and probably some hydrogen bonding.Binding isotherms were obtained from microcalorimetric data by using a theoretical model based on the Langmuir isotherm.zeta-Potential data showed a reversal in the sign of the protein charge at pH 7.4,as a consequence of the binding of the drug to the protein.Gibbs energies of drug binding per mole of drag were also derived from zeta-potential data.On the other hand,binding of the phenothiazine that causes a conformational transition on the protein structure was followed as a function of drug concentration using UV-vis spectroscopy,and the data were analyzed to obtain the Gibbs energy of the transition in water (DELTAG_w~°) and in a hydrophobic environment (DELTAAG_(hc)~°).Finally,the population distribution of the different species in solution and the size of the complexes were analyzed through dynamic light scattering.The existence of an aggregation process of drug/protein complexes,as a consequence of the expanded structure of the protein induced by the drug and subsequent further binding,is in agreement with ITC data.In addition,detection of drug aggregates at concentrations below the drug critical micelle concentration was also detected by this technique.
机译:通过ζ电势,等温滴定量热法(ITC),紫外可见分光光度法和动态光散射(DLS)研究了两亲性吩噻嗪氟奋乃静盐酸盐与人血清白蛋白在pH 3.0和7.4水溶液中的相互作用和络合过程。 ),目的是分析疏水力和静电力对结合过程和蛋白质构象改变的影响。因此,结合过程的能量学和化学计量是从ITC数据中得出的,所获得的结合焓很小并放热,因此结合的吉布斯能量主要由熵的增加决定,这与酸性pH下的疏水相互作用相一致。但是,在生理pH下,与第一类结合位点的结合主要是由于存在的焓贡献静电相互作用和可能的氢键的结合。通过使用基于Langmuir等温线的理论模型进行的比色法数据.zeta电位数据显示在pH 7.4时蛋白质电荷的符号反转,这是由于药物与蛋白质结合的结果。使用zeta电位数据也可以得到1摩尔的阻力。另一方面,使用紫外-可见光谱法追踪引起蛋白质结构构象转变的吩噻嗪的结合与药物浓度的关系,并对数据进行分析以得出求出水和疏水环境中跃迁的吉布斯能(DELTAG_w〜°)。最后,通过动态光分析了溶液中不同物种的种群分布和络合物的大小。由于药物诱导的蛋白质扩展结构以及随后的进一步结合而导致的药物/蛋白质复合物聚集过程的存在与ITC数据相符。另外,通过该技术还检测到低于药物临界胶束浓度的药物聚集体。

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