Institute of Genomics and Bioinformatics, National Chung Hsing University, Taichung, 402, Taiwan.
Biometals. 2013 Feb;26(1):1-12. doi: 10.1007/s10534-012-9589-8. Epub 2012 Oct 25.
Mithramycin (Mith) forms a drug-metal complex with a 2:1 stoichiometry by chelation with a Ni(II) ion, which was determined using circular dichroism spectroscopy. Mith exhibits an increased affinity (~55 fold) for Ni(II) in the presence of DNA compared to the absence of DNA, suggesting that DNA acts as an effective template to facilitate chelation. Also, we characterized the DNA-acting properties of a Ni(II) derivative of Mith. Kinetic analysis using surface plasmon resonance and UV melting studies revealed that Ni(II)(Mith)(2) binds to duplex DNA with a higher affinity compared to Mg(II)(Mith)(2). The thermodynamic parameters revealed a higher free energy of formation for duplex DNA in the presence of Ni(II)(Mith)(2) compared to duplex DNA in the presence of Mg(II)(Mith)(2). The results of a DNA-break assay indicated that Ni(II)(Mith)(2) is capable of promoting one-strand cleavage of plasmid DNA in the presence of hydrogen peroxide; the DNA cleavage rate of Ni(II)(Mith)(2) was calculated to be 4.1 × 10(-4) s(-1). In cell-based experiments, Ni(II)(Mith)(2) exhibited a more efficient reduction of c-myc and increased cytotoxicity compared to Mith alone because of its increased DNA-binding and cleavage activity. The evidence obtained in this study suggests that the biological effects of Ni(II)(Mith)(2) require further investigation in the future.
米托蒽醌(Mith)通过与 Ni(II) 离子螯合形成 2:1 的药物-金属配合物,这是通过圆二色性光谱确定的。与不存在 DNA 相比,Mith 在存在 DNA 时对 Ni(II) 的亲和力增加了 (~55 倍),这表明 DNA 作为一种有效的模板促进了螯合作用。此外,我们还对 Mith 的 Ni(II) 衍生物的 DNA 作用特性进行了表征。使用表面等离子体共振和紫外熔融研究的动力学分析表明,与 Mg(II)(Mith)(2) 相比,Ni(II)(Mith)(2) 与双链 DNA 具有更高的结合亲和力。热力学参数表明,与 Mg(II)(Mith)(2) 存在时的双链 DNA 相比,Ni(II)(Mith)(2) 存在时双链 DNA 的形成自由能更高。DNA 断裂分析的结果表明,Ni(II)(Mith)(2) 在过氧化氢存在下能够促进质粒 DNA 的单链断裂;Ni(II)(Mith)(2) 的 DNA 断裂速率计算为 4.1×10(-4)s(-1)。在细胞实验中,由于 Ni(II)(Mith)(2) 增加了 DNA 结合和切割活性,与单独使用 Mith 相比,Ni(II)(Mith)(2) 能够更有效地降低 c-myc 并增加细胞毒性。本研究获得的证据表明,Ni(II)(Mith)(2) 的生物学效应需要在未来进一步研究。