Department of Chemistry , Georgia State University , Petit Science Center, 100 Piedmont Ave SE. Atlanta Georgia 30303 , United States.
Center for Diagnostics and Therapeutics , Georgia State University , Petit Science Center, 100 Piedmont Ave SE , Atlanta , Georgia 30303 , United States.
Bioconjug Chem. 2019 Oct 16;30(10):2647-2663. doi: 10.1021/acs.bioconjchem.9b00571. Epub 2019 Sep 26.
G-Quadruplex DNA has been recognized as a highly appealing target for the development of new selective chemotherapeutics, which could result in markedly reduced toxicity toward normal cells. In particular, the cyanine dyes that bind selectively to G-quadruplex structures without targeting duplex DNA have attracted attention due to their high amenability to structural modifications that allows fine-tuning of their biomolecular interactions. We have previously reported pentamethine and symmetric trimethine cyanines designed to effectively bind G-quadruplexes through end stacking interactions. Herein, we are reporting a second generation of drug candidates, the asymmetric trimethine cyanines. These have been synthesized and evaluated for their quadruplex binding properties. Incorporating a benz[,]indolenine heterocyclic unit increased overall quadruplex binding, and elongating the alkyl length increases the quadruplex-to-duplex binding specificity.
G-四链体 DNA 已被认为是开发新型选择性化疗药物的极具吸引力的靶标,这可能导致对正常细胞的毒性显著降低。特别是,能够选择性结合 G-四链体结构而不靶向双链 DNA 的花菁染料因其易于进行结构修饰而受到关注,这使得可以精细调整它们的生物分子相互作用。我们之前曾报道过通过末端堆积相互作用有效地结合 G-四链体的五甲川和对称三甲川花菁。在此,我们报告了第二代候选药物,即不对称三甲川花菁。已经合成了这些化合物,并对它们的四链体结合特性进行了评估。在其中引入苯并[,]吲哚啉杂环单元增加了整体四链体结合,并且延长烷基长度增加了四链体与双链体的结合特异性。