Department of Pharmaceutical Technology and Biochemistry and BioTechMed Centre, Faculty of Chemistry, Gdańsk University of Technology, Gabriela Narutowicza Str. 11/12, 80-233, Gdańsk, Poland.
Institute of Bioorganic Chemistry, Polish Academy of Sciences, Zygmunta Noskowskiego Str. 12/14, 61-704, Poznań, Poland.
Sci Rep. 2023 Mar 1;13(1):3431. doi: 10.1038/s41598-023-30587-y.
Members of a novel class of anticancer compounds, exhibiting high antitumor activity, i.e. the unsymmetrical bisacridines (UAs), consist of two heteroaromatic ring systems. One of the ring systems is an imidazoacridinone moiety, with the skeleton identical to the structural base of Symadex. The second one is a 1-nitroacridine moiety, hence it may be regarded as Nitracrine's structural basis. These monoacridine units are connected by an aminoalkyl linker, which vary in structure. In theory, these unsymmetrical dimers should act as double-stranded DNA (dsDNA) bis-intercalators, since the monomeric units constituting the UAs were previously reported to exhibit an intercalating mode of binding into dsDNA. On the contrary, our earlier, preliminary studies have suggested that specific and/or structurally well-defined binding of UAs into DNA duplexes might not be the case. In this contribution, we have revisited and carefully examined the dsDNA-binding properties of monoacridines C-1305, C-1311 (Symadex), C-283 (Ledakrin/Nitracrine) and C-1748, as well as bisacridines C-2028, C-2041, C-2045 and C-2053 using advanced NMR techniques, aided by molecular modelling calculations and the analysis of UV-VIS spectra, decomposed by chemometric techniques. These studies allowed us to explain, why the properties of UAs are not a simple sum of the features exhibited by the acridine monomers.
一类新型抗癌化合物的成员具有高抗肿瘤活性,即不对称双吖啶(UAs),由两个杂芳环系统组成。其中一个环系统是咪唑并吖啶酮部分,其骨架与Symadex 的结构基础相同。第二个是 1-硝基吖啶部分,因此可以将其视为 Nitracrine 的结构基础。这些单吖啶单元通过结构不同的氨基烷基连接体连接。理论上,这些不对称二聚体应该作为双链 DNA(dsDNA)双嵌入剂起作用,因为构成 UAs 的单体单元先前被报道具有嵌入 dsDNA 的结合方式。相反,我们早期的初步研究表明,UA 与 DNA 双链的特异性和/或结构明确的结合可能并非如此。在本研究中,我们重新审视并仔细研究了单吖啶 C-1305、C-1311(Symadex)、C-283(Ledakrin/Nitracrine)和 C-1748 以及双吖啶 C-2028、C-2041、C-2045 和 C-2053 的 dsDNA 结合特性,使用了先进的 NMR 技术,辅助以分子建模计算和通过化学计量学技术分解的 UV-VIS 光谱分析。这些研究使我们能够解释为什么 UAs 的性质不是吖啶单体表现出的特征的简单总和。