Division of Chemistry and Biological Chemistry, School of Physical and Mathematical Sciences, Nanyang Technological University, 21 Nanyang Link, Singapore, 637371, Singapore.
Sci Rep. 2018 Jan 15;8(1):767. doi: 10.1038/s41598-017-19095-y.
G-quadruplexes (GQ) folded by the oncogenic G-rich sequences are the promising targets for developing anticancer therapeutic molecules. However, the current drug development mainly focused on non-covalent dynamic binders to stabilize GQ structures, while the covalent targeting from inorganic complexes via chelating principles, as a potent therapeutic strategy was surprisingly lack of exploration. Herein, a series of dinuclear platinum complexes, (Pt(Dip)Cl)(μ-diamine) (Dip: 4,7-diphenyl-1,10-phenanthroline), were designed to contain two dual-functional Pt cores connected by an alkyl linkage. Pt3 with nonanediamine linkage optimized the specific binding towards c-myc G-quadruplex via dual functional clamp on GQ as 1) non-covalently π-stacking of aromatic ligands, and 2) two Pt(II) cores covalently chelated to guanines at both 3'- and 5'-ends.
G-四链体(GQ)由致癌性富含 G 的序列折叠而成,是开发抗癌治疗分子的有前途的靶标。然而,当前的药物开发主要集中在非共价动态结合物上,以稳定 GQ 结构,而通过螯合原理的无机配合物的共价靶向,作为一种有效的治疗策略,令人惊讶地缺乏探索。在此,设计了一系列双核铂配合物,(Pt(Dip)Cl)(μ-diamine)(Dip:4,7-二苯基-1,10-菲咯啉),它们包含通过烷基键连接的两个双功能 Pt 核。通过双重功能夹在 GQ 上,具有非癸二胺键的 Pt3 优化了对 c-myc G-四链体的特异性结合,方式为 1)芳族配体的非共价π堆积,和 2)两个 Pt(II)核在 3'-和 5'-末端共价螯合鸟嘌呤。