首页> 美国卫生研究院文献>Molecules >Use of Spectroscopic Zeta Potential and Molecular Dynamic Techniques to Study the Interaction between Human Holo-Transferrin and Two Antagonist Drugs: Comparison of Binary and Ternary Systems
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Use of Spectroscopic Zeta Potential and Molecular Dynamic Techniques to Study the Interaction between Human Holo-Transferrin and Two Antagonist Drugs: Comparison of Binary and Ternary Systems

机译:利用光谱Zeta电位和分子动力学技术研究人全铁转铁蛋白与两种拮抗药之间的相互作用:二元和三元体系的比较

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摘要

For the first time, the binding of ropinirole hydrochloride (ROP) and aspirin (ASA) to human holo-transferrin (hTf) has been investigated by spectroscopic approaches (fluorescence quenching, synchronous fluorescence, time-resolved fluorescence, three-dimensional fluorescence, UV-vis absorption, circular dichroism, resonance light scattering), as well as zeta potential and molecular modeling techniques, under simulated physiological conditions. Fluorescence analysis was used to estimate the effect of the ROP and ASA drugs on the fluorescence of hTf as well as to define the binding and quenching properties of binary and ternary complexes. The synchronized fluorescence and three-dimensional fluorescence spectra demonstrated some micro-environmental and conformational changes around the Trp and Tyr residues with a faint red shift. Thermodynamic analysis displayed the van der Waals forces and hydrogen bonds interactions are the major acting forces in stabilizing the complexes. Steady-state and time-resolved fluorescence data revealed that the fluorescence quenching of complexes are static mechanism. The effect of the drugs aggregating on the hTf resulted in an enhancement of the resonance light scattering (RLS) intensity. The average binding distance between were computed according to the forster non-radiation energy transfer theory. The circular dichroism (CD) spectral examinations indicated that the binding of the drugs induced a conformational change of hTf. Measurements of the zeta potential indicated that the combination of electrostatic and hydrophobic interactions between ROP, ASA and hTf formed micelle-like clusters. The molecular modeling confirmed the experimental results. This study is expected to provide important insight into the interaction of hTf with ROP and ASA to use in various toxicological and therapeutic processes.
机译:首次通过光谱方法(荧光猝灭,同步荧光,时间分辨荧光,三维荧光,紫外线)研究了盐酸罗匹尼罗(ROP)和阿司匹林(ASA)与人全转铁蛋白(hTf)的结合。 -vis吸收,圆二色性,共振光散射)以及zeta电位和分子建模技术,均处于模拟的生理条件下。荧光分析用于评估ROP和ASA药物对hTf荧光的影响,以及定义二元和三元复合物的结合和猝灭特性。同步荧光和三维荧光光谱表明,Trp和Tyr残基周围有一些微环境和构象变化,并带有微弱的红移。热力学分析表明范德华力和氢键相互作用是稳定配合物的主要作用力。稳态和时间分辨荧光数据表明配合物的荧光猝灭是静态机制。药物聚集对hTf的作用导致共振光散射(RLS)强度的增强。根据forster非辐射能量转移理论计算了两者之间的平均结合距离。圆二色性(CD)光谱检查表明,药物的结合诱导了hTf的构象变化。 ζ电势的测量表明,ROP,ASA和hTf之间的静电和疏水相互作用共同形成了胶束状簇。分子建模证实了实验结果。预期该研究将提供有关hTf与ROP和ASA相互作用的重要见解,以用于各种毒理学和治疗过程。

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