Chauhan Mala, Banerjee Kakoli, Arjmand Farukh
Department of Chemistry, Aligarh Muslim University, Aligarh-202002, India, and National Institute of Immunology, New Delhi, India.
Inorg Chem. 2007 Apr 16;46(8):3072-82. doi: 10.1021/ic061753a. Epub 2007 Mar 23.
Novel trinuclear complexes C23H31N6O6CuSn2Cl5 [1], C23H31N6O6CuZr2Cl5 [2], C23H31N6O6ZnSn2Cl5 [3], and C23H31N6O6ZnZr2Cl5 [4] were synthesized and characterized by spectroscopic (IR, 1H, 13C, 2D COSY, and 119Sn NMR, EPR, UV-vis, ESI-MS) and analytical methods. In complexes 1-4, the geometry of copper and zinc metal ions were described as square-based pyramidal with l-tryptophan coordinated to copper/zinc via carboxylate group while Sn/Zr was present in the hexacoordinate environment. The interaction of 1 and 2 with calf thymus DNA in Tris buffer was studied by electronic absorption titration, luminescence titration, cyclic voltammetry, circular dichroism, and viscometric measurements. The emission quenching of these complexes by [Fe(CN)6]4- depressed greatly when bound to DNA. Observed changes in the circular dichoric spectra of DNA in presence of 1 and 2 support the strong binding of complexes with DNA. The relative specific viscosity of DNA bound to 1 and 2 decreased, indicating that the complexes bind to DNA via covalent binding. The results reveal that the extent of DNA binding of 1 was greater than that of 2. To evaluate the mechanistic pathway of DNA inhibition, counting experiments and MTT assay were employed to assess the induction of apoptosis by 1. Western blot analysis of whole cell lysates and mitochondrial fractions with Bcl-2 and p-53 family proteins and caspase-3 colorimetry assay were also carried out on a human neuroblastoma cell line SY5Y.
合成了新型三核配合物C23H31N6O6CuSn2Cl5 [1]、C23H31N6O6CuZr2Cl5 [2]、C23H31N6O6ZnSn2Cl5 [3]和C23H31N6O6ZnZr2Cl5 [4],并通过光谱法(红外光谱、1H、13C、二维COSY和119Sn核磁共振、电子顺磁共振、紫外可见光谱、电喷雾电离质谱)和分析方法对其进行了表征。在配合物1 - 4中,铜和锌金属离子的几何构型被描述为方形金字塔形,L - 色氨酸通过羧酸根基团与铜/锌配位,而锡/锆处于六配位环境中。通过电子吸收滴定、发光滴定、循环伏安法、圆二色性和粘度测量研究了1和2与Tris缓冲液中小牛胸腺DNA的相互作用。当这些配合物与DNA结合时,[Fe(CN)6]4 - 对它们的发射猝灭作用大大降低。在1和2存在下观察到的DNA圆二色光谱变化支持了配合物与DNA的强结合。与1和2结合的DNA的相对比粘度降低,表明配合物通过共价结合与DNA结合。结果表明,1与DNA的结合程度大于2。为了评估DNA抑制的作用机制途径,采用计数实验和MTT法评估1诱导细胞凋亡的情况。还对人神经母细胞瘤细胞系SY5Y进行了全细胞裂解物和线粒体组分的Bcl - 2和p - 53家族蛋白的蛋白质印迹分析以及caspase - 3比色法测定。