Chemistry Department, Brooklyn College and The Graduate Center, The City University of New York, 2900 Bedford Avenue, Brooklyn, NY 11210, USA.
J Inorg Biochem. 2011 Jan;105(1):39-45. doi: 10.1016/j.jinorgbio.2010.09.005.
The interactions of π-arene-Ru(II)-chloroquine complexes with human serum albumin (HSA), apotransferrin and holotransferrin have been studied by circular dichroism (CD) and UV-Visible spectroscopies, together with isothermal titration calorimetry (ITC). The data for [Ru(η(6)-p-cymene)(CQ)(H(2)O)Cl]PF(6) (1), [Ru(η(6)-benzene)(CQ)(H(2)O)Cl]PF(6) (2), [Ru(η(6)-p-cymene)(CQ)(H(2)O)(2)]PF(6) (3), [Ru(η(6)-p-cymene)(CQ)(en)]PF(6) (4), [Ru(η(6)-p-cymene)(η(6)-CQDP)]BF(4) (5) (CQ: chloroquine; DP: diphosphate; en: ethylenediamine), in comparison with CQDP and [Ru(η(6)-p-cymene)(en)Cl][PF(6)] (6) as controls demonstrate that 1, 2, 3, and 5, which contain exchangeable ligands, bind to HSA and to apotransferrin in a covalent manner. The interaction did not affect the α-helical content in apotransferrin but resulted in a loss of this type of structure in HSA. The binding was reversed in both cases by a decrease in pH and in the case of the Ru-HSA adducts, also by addition of chelating agents. A weaker interaction between complexes 4 and 6 and HSA was measured by ITC but was not detectable spectroscopically. No interactions were observed for complexes 4 and 6 with apotransferrin or for CQDP with either protein. The combined results suggest that the arene-Ru(II)-chloroquine complexes, known to be active against resistant malaria and several lines of cancer cells, also display a good transport behavior that makes them good candidates for drug development.
已通过圆二色性(CD)和紫外可见光谱以及等温热滴定法(ITC)研究了π-芳基-Ru(II)-氯喹配合物与人血清白蛋白(HSA)、脱铁转铁蛋白和转铁蛋白的相互作用。数据表明,[Ru(η(6)-对伞花烃)(CQ)(H2O)Cl]PF6(1)、[Ru(η(6)-苯)(CQ)(H2O)Cl]PF6(2)、[Ru(η(6)-对伞花烃)(CQ)(H2O)(2)][PF6](2)(3)、[Ru(η(6)-对伞花烃)(CQ)(en)][PF6](2)(4)、[Ru(η(6)-对伞花烃)(η(6)-CQDP)][BF4](2)(5)(CQ:氯喹;DP:二磷酸盐;en:乙二胺)与 CQDP 和 [Ru(η(6)-对伞花烃)(en)Cl][PF6](6)作为对照物的比较表明,1、2、3 和 5 种配合物含有可交换配体,以共价方式与 HSA 和脱铁转铁蛋白结合。这种相互作用没有影响脱铁转铁蛋白中的α-螺旋含量,但导致 HSA 中这种结构的丧失。在两种情况下,通过降低 pH 和对于 Ru-HSA 加合物,通过添加螯合剂也可以逆转结合。ITC 测量了配合物 4 和 6 与 HSA 之间较弱的相互作用,但在光谱上无法检测到。复合物 4 和 6 与脱铁转铁蛋白或 CQDP 与任何一种蛋白质均未观察到相互作用。综合结果表明,已知对耐药性疟疾和几种癌细胞有效的芳基-Ru(II)-氯喹配合物也表现出良好的转运行为,使其成为药物开发的良好候选物。