Mügge Carolin, Musumeci Domenica, Michelucci Elena, Porru Francesca, Marzo Tiziano, Massai Lara, Messori Luigi, Weigand Wolfgang, Montesarchio Daniela
Institute of Inorganic and Analytical Chemistry, Friedrich-Schiller-University Jena, Humboldtstraße 8, 07743 Jena, Germany.
Department of Chemical Sciences, University of Naples Federico II, Via Cintia, 21, 80126 Napoli, Italy; Institute of Biostructures and Bioimages, Via Mezzocannone 16, 80134 Napoli, Italy.
J Inorg Biochem. 2016 Jul;160:198-209. doi: 10.1016/j.jinorgbio.2016.02.013. Epub 2016 Feb 12.
In the search for novel platinum-based anticancer therapeutic agents, we have recently established a structural motif of (O,S) bidentate ligands bound to a Pt(II) metal center which is effective against various cancer cell lines. Aiming at further enhancing the cytotoxicity of metal-based drugs, the identification of potential biological targets and elucidation of the mode of action of selected lead compounds is of utmost importance. Here we report our studies on the DNA interaction of three representative Pt(II) complexes of the investigated series, using various model systems and analytical techniques. In detail, CD spectroscopy as well as ESI-MS and MS(2) techniques were applied to gain an overall picture of the binding properties of this class of (O,S) bidentate Pt(II) compounds with defined oligonucleotide sequences in single strand, duplex or G-quadruplex form, as well as with the nucleobase 9-methylguanine. On the whole, it was demonstrated that the tested compounds interact with DNA and produce conformational changes of different extents depending on the sequence and structure of the examined oligonucleotide. Guanine was established as the preferential target within the DNA sequence, but in the absence or unavailability of guanines, alternative binding sites can be addressed. The implications of these results are thoroughly discussed.
在寻找新型铂基抗癌治疗药物的过程中,我们最近建立了一种与Pt(II)金属中心结合的(O,S)双齿配体结构基序,该结构基序对多种癌细胞系有效。为了进一步提高金属基药物的细胞毒性,确定潜在的生物学靶点并阐明所选先导化合物的作用模式至关重要。在此,我们报告了使用各种模型系统和分析技术对所研究系列的三种代表性Pt(II)配合物与DNA相互作用的研究。具体而言,应用圆二色光谱以及电喷雾电离质谱和二级质谱技术,以全面了解这类(O,S)双齿Pt(II)化合物与单链、双链或G-四链体形式的特定寡核苷酸序列以及与核碱基9-甲基鸟嘌呤的结合特性。总体而言,结果表明,所测试的化合物与DNA相互作用,并根据所检测寡核苷酸的序列和结构产生不同程度的构象变化。鸟嘌呤被确定为DNA序列中的优先靶点,但在鸟嘌呤不存在或无法利用时,可以找到替代结合位点。对这些结果的意义进行了深入讨论。