Dipartimento di Scienze Farmaceutiche, Università di Padova,Via Marzolo, 5, 35131 Padova, Italy.
J Am Chem Soc. 2009 Sep 16;131(36):13132-41. doi: 10.1021/ja904876q.
We have developed novel G-quadruplex (G-4) ligand/alkylating hybrid structures, tethering the naphthalene diimide moiety to quaternary ammonium salts of Mannich bases, as quinone-methide precursors, activatable by mild thermal digestion (40 degrees C). The bis-substituted naphthalene diimides were efficiently synthesized, and their reactivity as activatable bis-alkylating agents was investigated in the presence of thiols and amines in aqueous buffered solutions. The electrophilic intermediate, quinone-methide, involved in the alkylation process was trapped, in the presence of ethyl vinyl ether, in a hetero Diels-Alder [4 + 2] cycloaddition reaction, yielding a substituted 2-ethoxychroman. The DNA recognition and alkylation properties of these new derivatives were investigated by gel electrophoresis, circular dichroism, and enzymatic assays. The alkylation process occurred preferentially on the G-4 structure in comparison to other DNA conformations. By dissecting reversible recognition and alkylation events, we found that the reversible process is a prerequisite to DNA alkylation, which in turn reinforces the G-quadruplex structural rearrangement.
我们开发了新型的 G-四链体(G-4)配体/烷化剂杂合结构,将萘二酰亚胺部分连接到曼尼希碱基的季铵盐上,作为醌-甲叉的前体,可通过温和的热消解(40°C)激活。双取代的萘二酰亚胺被高效合成,并在含有巯基和胺的水缓冲溶液中研究了它们作为可激活的双烷化剂的反应性。涉及烷基化过程的亲电中间体醌-甲叉在乙基乙烯基醚的存在下,通过杂 Diels-Alder [4+2]环加成反应被捕获,生成取代的 2-乙氧基色满。通过凝胶电泳、圆二色性和酶测定研究了这些新衍生物的 DNA 识别和烷基化性质。与其他 DNA 构象相比,烷基化过程优先发生在 G-4 结构上。通过剖析可逆识别和烷基化事件,我们发现可逆过程是 DNA 烷基化的前提,而 DNA 烷基化又反过来加强了 G-四链体的结构重排。