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铜基药物与人血清白蛋白(HSA)的合成、表征及相互作用研究:光谱学和分子对接研究。

Synthesis, characterization and interaction studies of copper based drug with Human Serum Albumin (HSA): spectroscopic and molecular docking investigations.

机构信息

Department of Chemistry, Aligarh Muslim University, Aligarh 202 002, UP, India.

出版信息

J Photochem Photobiol B. 2012 Sep 3;114:132-9. doi: 10.1016/j.jphotobiol.2012.05.021. Epub 2012 Jun 15.

Abstract

A new water soluble copper(II) complex, [Cu(glygly)(ssz)(H(2)O)]⋅6H(2)O, 1 derived from dipeptide (glycyl glycine anion) and sulfasalazine was synthesized and characterized by elemental analysis (CHN), molar conductance measurements and spectroscopic methods (IR, UV-vis, ESI-MS). The complex 1 is non-ionic in nature and possess octahedral geometry around Cu(II) metal ion. The interaction of complex 1 with Human Serum Albumin (HSA) was investigated under physiological condition in Tris-HCl buffer solution at pH 7.4 by means of various spectroscopic methods (fluorescence, CD and FTIR) and molecular docking technique. The results of fluorescence titration revealed that the complex 1 strongly quench the intrinsic fluorescence of HSA through a static quenching procedure. Binding constants (K(b)) and the number of binding sites (n≈1) were calculated using modified Stern-Volmer equations. The thermodynamic parameters ΔG at different temperatures were calculated subsequently the value of ΔH and ΔS was also calculated which revealed that the hydrophobic and hydrogen bonding interactions play a major role in HSA-complex 1 association. The distance r between donor (HSA) and acceptor (complex 1) was obtained according to fluorescence resonance energy transfer and the alterations of HSA secondary structure induced by complex 1 were confirmed by FT-IR and CD measurements.

摘要

一种新的水溶性铜(II)配合物,[Cu(glygly)(ssz)(H2O)]·6H2O,1 由二肽(甘氨酰甘氨酸阴离子)和柳氮磺胺吡啶衍生而来,通过元素分析(CHN)、摩尔电导率测量和光谱方法(IR、UV-vis、ESI-MS)进行了表征。该配合物 1 为非离子性,在 Cu(II)金属离子周围具有八面体几何构型。在生理条件下,在 Tris-HCl 缓冲溶液中(pH 值为 7.4),通过各种光谱方法(荧光、CD 和 FTIR)和分子对接技术研究了配合物 1 与人血清白蛋白(HSA)的相互作用。荧光滴定的结果表明,该配合物 1 通过静态猝灭过程强烈猝灭 HSA 的本征荧光。使用修正的 Stern-Volmer 方程计算了结合常数(K(b))和结合位点的数量(n≈1)。随后计算了不同温度下的热力学参数ΔG,还计算了ΔH 和 ΔS 的值,这表明疏水相互作用和氢键相互作用在 HSA-配合物 1 结合中起主要作用。根据荧光共振能量转移获得了供体(HSA)和受体(配合物 1)之间的距离 r,并通过 FT-IR 和 CD 测量证实了配合物 1 诱导的 HSA 二级结构的变化。

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