Institut de Chimie Moléculaire, ICMUB CNRS UMR6302, UBFC, 21078 Dijon, France.
Faculty of Pharmaceutical Sciences, The University of British Columbia, Vancouver, Canada.
Sci Rep. 2016 Aug 18;6:32141. doi: 10.1038/srep32141.
Guanine-rich DNA or RNA sequences can fold into higher-order, four-stranded structures termed quadruplexes that are suspected to play pivotal roles in cellular mechanisms including the control of the genome integrity and gene expression. However, the biological relevance of quadruplexes is still a matter of debate owing to the paucity of unbiased evidences of their existence in cells. Recent reports on quadruplex-specific antibodies and small-molecule fluorescent probes help dispel reservations and accumulating evidences now pointing towards the cellular relevance of quadruplexes. To better assess and comprehend their biology, developing new versatile tools to detect both DNA and RNA quadruplexes in cells is essential. We report here a smart fluorescent probe that allows for the simple detection of quadruplexes thanks to an uncommon spectroscopic mechanism known as the red-edge effect (REE). We demonstrate that this effect could open avenues to greatly enhance the ability to visualize both DNA and RNA quadruplexes in human cells, using simple protocols and fluorescence detection facilities.
富含鸟嘌呤的 DNA 或 RNA 序列可以折叠成称为四重体的高级四链结构,这些结构被怀疑在包括控制基因组完整性和基因表达在内的细胞机制中发挥关键作用。然而,由于缺乏其在细胞中存在的无偏证据,四重体的生物学相关性仍然存在争议。最近关于四重体特异性抗体和小分子荧光探针的报告有助于消除疑虑,越来越多的证据表明四重体与细胞相关。为了更好地评估和理解它们的生物学特性,开发新的多功能工具来检测细胞中的 DNA 和 RNA 四重体至关重要。我们在这里报告了一种智能荧光探针,由于一种称为红色边缘效应 (REE) 的不常见光谱机制,它可以简单地检测四重体。我们证明,这种效应可以为使用简单的协议和荧光检测设备在人类细胞中可视化 DNA 和 RNA 四重体的能力提供极大的增强途径。