Scoditti Stefano, Dabbish Eslam, Sicilia Emilia
Department of Chemistry and Chemical Technologies, Università della Calabria, 87036 Arcavacata di Rende (CS), Italy.
Department of Chemistry and Chemical Technologies, Università della Calabria, 87036 Arcavacata di Rende (CS), Italy.
J Inorg Biochem. 2021 Jun;219:111447. doi: 10.1016/j.jinorgbio.2021.111447. Epub 2021 Mar 27.
The monofunctional Pt(II) drug phenanthriplatin is a leading preclinical anticancer drug, whose main characteristic is the presence of the extended aromatic system of the phenanthridine ligand, which allows intercalation. Intercalation, in turn, induces DNA unwinding and facilitates DNA binding. Aiming at verifying to what extent the peculiar cytotoxic activity of phenanthriplatin depends on the specific size of the aromatic system, two phenanthriplatin derivatives have been designed increasing the number of the rings in the N-heterocyclic ligand, and their reactivity has been computationally investigated. Both quantum mechanical DFT computations and molecular dynamics (MD) simulations have been employed to investigate some of the aspects that are considered important for the activity of Pt(II) monofunctional complexes. In particular, the substitution of the chlorido ligand with water, subsequent interaction of the aquated complexes with guanine as a model, eventual deactivation by the model N-acetyl methionine as well as intercalation into, binding to and distortion of DNA have been examined. The outcomes of such analysis have been compared with the analogous ones for the phenanthriplatin complex in order to highlight how the addition of one more ring to the phenanthridine ligand and, eventually, its identity influence the reactivity and, consequently, the cytotoxic profile of the complexes.
单功能铂(II)药物菲啶铂是一种领先的临床前抗癌药物,其主要特征是存在菲啶配体的扩展芳香体系,这使得它能够嵌入。嵌入反过来又会诱导DNA解旋并促进DNA结合。为了验证菲啶铂独特的细胞毒性活性在多大程度上取决于芳香体系的特定大小,设计了两种菲啶铂衍生物,增加了N-杂环配体中的环数,并对它们的反应活性进行了计算研究。量子力学密度泛函理论(DFT)计算和分子动力学(MD)模拟都被用于研究一些被认为对铂(II)单功能配合物活性很重要的方面。特别是,研究了用氯配体被水取代后,水合配合物与鸟嘌呤作为模型的后续相互作用、模型N-乙酰甲硫氨酸的最终失活以及嵌入DNA、与DNA结合和使DNA扭曲的情况。已将此类分析的结果与菲啶铂配合物的类似结果进行比较,以突出在菲啶配体上增加一个环以及最终其结构如何影响配合物的反应活性,进而影响其细胞毒性特征。