牛血清白蛋白与2,2′-联吡啶辛基甘氨酸-硝酸钯相互作用的微热法和光谱研究。

Hassan Mansoori-Torshizi, Mahbobe Islami-Moghaddam, Ali-Akbar Saboury
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引用次数: 0

摘要

牛血清白蛋白(BSA)与新型钯(II)配合物[Pd(bpy)(Oct-Gly)]NO(3) (bpy, 2,2 -联吡啶的相互作用在30 mmol/L Tris缓冲液中,采用等温滴定法、紫外可见分光光度法和微量热法对Oct-Gly(辛基甘氨酸)进行了研究。在300和310 K的温度下,该配合物在BSA上有一组18个结合位点,在结合过程中具有正的协同性。300 K和310 K时的Hill系数分别为2.2和2.4。该钯配合物与牛血清白蛋白的结合是吸热的,在300和310 K下的平均结合常数分别为21.0和16.4 (mmol/L)(-1)。该复合物可以使蛋白质变性为表面活性剂。在300和310 K时,BSA与配合物的稳定性分别为84和58 kJ/mol。同时,与配合物相互作用引起的牛血清白蛋白变性焓为842 kJ/mol。
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A microcalorimetry and spectroscopy study on the interaction of BSA with 2,2'-bipyridine octylglycinato palladium(II) nitrate.

The interaction of bovine serum albumin (BSA) with a new palladium(II) complex [Pd(bpy)(Oct-Gly)]NO(3) (bpy, 2,2 -bipyridine; Oct-Gly, octyl-glycine) was studied by isothermal titration UV-visible spectrophotometry and microcalorimetry in 30 mmol/L Tris buffer, pH 7.0. There is a set of 18 binding sites for this complex on BSA at 300 and 310 K with positive cooperativity in the binding process. The Hill coefficients at 300 and 310 K are 2.2 and 2.4, respectively. The binding of this palladium complex on BSA is endothermic with mean association binding constant of 21.0 and 16.4 (mmol/L) (-1) at 300 and 310 K, respectively. The complex can denature the protein as surfactants. The stability of BSA in the interaction study with the complex is 84 and 58 kJ/mol at 300 and 310 K, respectively. Also, the enthalpy of BSA denaturation due to the interaction with the complex is 842 kJ/mol.

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