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首页> 外文期刊>Nanoscale >An ion-controlled four-color fluorescent telomeric switch on DNA origami structures
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An ion-controlled four-color fluorescent telomeric switch on DNA origami structures

机译:一个ion-controlled四色荧光特性开关DNA折纸结构

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摘要

The folding of single-stranded telomeric DNA into guanine (G) quadruplexes is a conformational change that plays a major role in sensing and drug targeting. The telomeric DNA can be placed on DNA origami nanostructures to make the folding process extremely selective for K+ ions even in the presence of high Na+ concentrations. Here, we demonstrate that the K+-selective G-quadruplex formation is reversible when using a cryptand to remove K+ from the G-quadruplex. We present a full characterization of the reversible switching between single-stranded telomeric DNA and G-quadruplex structures using Forster resonance energy transfer (FRET) between the dyes fluorescein (FAM) and cyanine3 (Cy3). When attached to the DNA origami platform, the G-quadruplex switch can be incorporated into more complex photonic networks, which is demonstrated for a three-color and a four-color FRET cascade from FAM over Cy3 and Cy5 to IRDye700 with G-quadruplex-Cy3 acting as a switchable transmitter.
机译:单链DNA端粒的成的折叠鸟嘌呤(G)四倍的构象在传感和变化中起着重要作用药物的目标。DNA折纸纳米结构折叠即使在过程非常有选择性的K +离子Na +浓度高的存在。表明,K +选择性G-quadruplex当使用穴状配体形成是可逆的删除从G-quadruplex K +。完全可逆转换的特征和单链DNA端粒之间G-quadruplex使用福斯特共振结构染料之间的能量转移(烦恼)荧光素(FAM)和cyanine3 (Cy3)。附加到DNA折纸平台G-quadruplex开关可以被纳入更多复杂的光子网络,这是证明三色和四色级联从FAM Cy3和Cy5 IRDye700G-quadruplex-Cy3作为可切换的发射机。

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