Department of Biophysics, Faculty of Science, Palacky University, 17. listopadu 12, CZ-77146 Olomouc, Czech Republic.
J Inorg Biochem. 2013 Sep;126:46-54. doi: 10.1016/j.jinorgbio.2013.05.009. Epub 2013 May 28.
In order to shed light on the mechanism that underlies activity of bifunctional mononuclear Pt(II) analogs of transplatin we examined in the present work a DNA binding mode of the analog of transplatin, namely trans-[Pt(CH3NH2)2Cl2], in which NH3 groups were replaced only by a small, non-bulky methylamine ligand. This choice was made because we were interested to reveal the role of the bulkiness of the amines used to substitute NH3 in transplatin to produce antitumor-active Pt(II) drug. The results indicate that trans-[Pt(CH3NH2)2Cl2] forms a markedly higher amount of more distorting intrastrand cross-links than transplatin which forms in DNA preferentially less distorting and persisting monofunctional adducts. Also importantly, the accumulation of trans-[Pt(CH3NH2)2Cl2] in tumor cells was considerably greater than that of transplatin and cisplatin. In addition, the results of the present work demonstrate that the replacement of ammine groups by the non-bulky methylamine ligand in the molecule of ineffective transplatin results in a radical enhancement of its activity in tumor cell lines including cisplatin-resistant tumor cells. Thus, activation of the trans geometry in bifunctional mononuclear Pt(II) complexes can be also accomplished by replacement of ammine groups in transplatin by non-bulky methylamine ligands so that it is not limited only to the replacement by relatively bulky and stereochemically more demanding amino ligands.
为了阐明双功能单核铂(II)类顺铂类似物活性的作用机制,我们在目前的工作中研究了顺铂类似物,即反式-[Pt(CH3NH2)2Cl2]的 DNA 结合模式,其中仅用小的、非庞大的甲胺配体取代了 NH3 基团。之所以做出这样的选择,是因为我们有兴趣揭示用于取代顺铂中 NH3 的胺的庞大性在产生抗肿瘤活性的 Pt(II)药物中的作用。结果表明,反式-[Pt(CH3NH2)2Cl2]形成的明显更多的扭曲链内交联比顺铂形成的更喜欢扭曲和持久的单功能加合物。同样重要的是,反式-[Pt(CH3NH2)2Cl2]在肿瘤细胞中的积累明显大于顺铂和卡铂。此外,目前工作的结果表明,在无效顺铂分子中用非庞大的甲胺配体取代氨基团会导致其在包括顺铂耐药肿瘤细胞在内的肿瘤细胞系中的活性显著增强。因此,双功能单核铂(II)配合物的反式几何结构的激活也可以通过用非庞大的甲胺配体取代顺铂中的氨基团来实现,因此它不仅限于用相对庞大和立体化学要求更高的氨基配体来取代。