Divsalar Adeleh, Saboury Ali Akbar, Mansoori-Torshizi Hassan, Moghaddam Mahboube Islami, Ahmad Faizan, Hakimelahi Golam Hossein
a Institute of Biochemistry and Biophysics University of Tehran , Tehran , Iran.
J Biomol Struct Dyn. 2009 Apr;26(5):587-597. doi: 10.1080/07391102.2009.10507274.
Abstract An new water-soluble Pd(II) complex, 2,2'-bipyridin n-butyl dithiocarbamato Pd(II) nitrate has been synthesized. The Pd(II) complex has been characterized by elemental analysis and conductivity measurements as well as spectroscopic methods such as infrared, 1H NMR, and ultraviolet-visible. The interaction between this new design Pd(II)-complex, an anti-tumor component, with carrier proteins of β-lactoglobulin-A and -B (BLG-A and -B) were studied at different temperatures of 27, 37, 42, and 47 °C by fluorescence spectroscopy and far-UV circular dichroism (CD) spectrophotometric techniques. A strong fluorescence quenching interaction of Pd(II) complex with BLG-A and -B was observed at different temperatures. The binding parameters were evaluated by fluorescence quenching method. The thermodynamic parameters, including ΔH°, ΔS°, and ΔG° were calculated by fluorescence quenching method indicated that the electrostatic and hydrophobic forces might play a major role in the interactions of Pd(II) complex with BLG-A and -B, respectively. The distances between donors (Trps of the BLG-A and -B) and acceptor (Pd(II) complex) were obtained according to the fluorescence resonance energy transfer (FRET). Far-UV CD studies showed that the Pd(II) complex did not represent any significant changes in the secondary structures of BLG- A and -B. The difference in the interaction properties observed for BLG-A and -B with Pd(II) complex is related to the difference in the amino acid sequences between these two variants.
摘要 合成了一种新型水溶性钯(II)配合物,即2,2'-联吡啶正丁基二硫代氨基甲酸钯(II)硝酸盐。通过元素分析、电导率测量以及红外、1H NMR和紫外可见等光谱方法对该钯(II)配合物进行了表征。采用荧光光谱法和远紫外圆二色(CD)分光光度技术,在27、37、42和47℃等不同温度下研究了这种新型设计的钯(II)配合物(一种抗肿瘤成分)与β-乳球蛋白-A和-B(BLG-A和-B)载体蛋白之间的相互作用。在不同温度下均观察到钯(II)配合物与BLG-A和-B之间存在强烈的荧光猝灭相互作用。通过荧光猝灭法评估了结合参数。用荧光猝灭法计算得到的包括ΔH°、ΔS°和ΔG°在内的热力学参数表明,静电作用和疏水作用可能分别在钯(II)配合物与BLG-A和-B的相互作用中起主要作用。根据荧光共振能量转移(FRET)获得了供体(BLG-A和-B中的色氨酸)与受体(钯(II)配合物)之间的距离。远紫外CD研究表明,钯(II)配合物并未使BLG-A和-B的二级结构发生任何显著变化。观察到的BLG-A和-B与钯(II)配合物相互作用性质的差异与这两种变体之间氨基酸序列的差异有关。