Institute of Molecular Chemistry, University of Dijon, ICMUB CNRS UMR6302 , 21078 Dijon, France.
J Am Chem Soc. 2014 Sep 3;136(35):12406-14. doi: 10.1021/ja506331x. Epub 2014 Aug 20.
Recent and unambiguous evidences of the formation of DNA and RNA G-quadruplexes in cells has provided solid support for these structures to be considered as valuable targets in oncology. Beyond this, they have lent further credence to the anticancer strategies relying on small molecules that selectively target these higher-order DNA/RNA architectures, referred to as G-quadruplex ligands. They have also shed bright light on the necessity of designing multitasking ligands, displaying not only enticing quadruplex interacting properties (affinity, structural selectivity) but also additional features that make them usable for detecting quadruplexes in living cells, notably for determining whether, when, and where these structures fold and unfold during the cell cycle and also for better assessing the consequences of their stabilization by external agents. Herein, we report a brand new design of such multitasking ligands, whose structure experiences a quadruplex-promoted conformational switch that triggers not only its quadruplex affinity (i.e., smart ligands, which display high affinity and selectivity for DNA/RNA quadruplexes) but also its fluorescence (i.e., smart probes, which behave as selective light-up fluorescent reporters on the basis of a fluorogenic electron redistribution). The first prototype of such multifunctional ligands, termed PyroTASQ, represents a brand new generation of quadruplex ligands that can be referred to as "twice-as-smart" quadruplex ligands.
近年来,越来越多的证据表明 DNA 和 RNA 形成 G-四链体在细胞中,这为将这些结构视为肿瘤学中有价值的靶点提供了确凿的依据。除此之外,它们还进一步证明了依赖于选择性靶向这些高级 DNA/RNA 结构的小分子的抗癌策略是合理的,这些小分子被称为 G-四链体配体。它们还阐明了设计多功能配体的必要性,这些配体不仅具有诱人的四链体相互作用特性(亲和力、结构选择性),而且还具有其他特性,使它们能够用于检测活细胞中的四链体,特别是用于确定这些结构在细胞周期中何时以及在何处折叠和展开,以及更好地评估外部试剂稳定它们的后果。在此,我们报告了这种多功能配体的全新设计,其结构经历了四链体促进的构象转换,不仅触发了其四链体亲和力(即智能配体,对 DNA/RNA 四链体具有高亲和力和选择性),还触发了其荧光(即智能探针,基于荧光团电子重分布的选择性点亮荧光报告)。这种多功能配体的第一个原型,称为 PyroTASQ,代表了一类全新的四链体配体,可以称之为“两倍智能”的四链体配体。