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Ion-Selective Formation of a Guanine Quadruplex on DNA Origami Structures

机译:DNA折纸结构上鸟嘌呤四链体的离子选择性形成

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摘要

DNA origami nanostructures are a versatile tool that can be used to arrange functionalities with high local control to study molecular processes at a single-molecule level. Here, we demonstrate that DNA origami substrates can be used to suppress the formation of specific guanine (G) quadruplex structures from telomeric DNA. The folding of telomeres into G-quadruplex structures in the presence of monovalent cations (e.g. Na+ and K+) is currently used for the detection of K+ ions, however, with insufficient selectivity towards Na+. By means of FRET between two suitable dyes attached to the 3- and 5-ends of telomeric DNA we demonstrate that the formation of G-quadruplexes on DNA origami templates in the presence of sodium ions is suppressed due to steric hindrance. Hence, telomeric DNA attached to DNA origami structures represents a highly sensitive and selective detection tool for potassium ions even in the presence of high concentrations of sodium ions.
机译:DNA折纸纳米结构是一种多功能工具,可用于安排具有高度局部控制的功能,以研究单分子水平的分子过程。在这里,我们证明了DNA折纸底物可用于抑制端粒DNA特异性鸟嘌呤(G)四链体结构的形成。目前,在单价阳离子(例如Na +和K +)存在下,端粒折叠成G-四链体结构用于检测K +离子,但是对Na +的选择性不足。通过在端粒DNA的3和5端连接的两种合适的染料之间进行FRET,我们证明了在存在钠离子的情况下,DNA折纸模板上G四联体的形成由于位阻而受到抑制。因此,即使在存在高浓度钠离子的情况下,附着在DNA折纸结构上的端粒DNA也代表了一种高灵敏度和选择性的钾离子检测工具。

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