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首页> 外文期刊>Molecules >Disassembly of Dimeric Cyanine Dye Supramolecular Assembly by Tetramolecular G-quadruplex Dependence on Linker Length and Layers of G-quartet
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Disassembly of Dimeric Cyanine Dye Supramolecular Assembly by Tetramolecular G-quadruplex Dependence on Linker Length and Layers of G-quartet

机译:四聚体G-四链体对接头长度和G-四元体层的依赖,可拆卸二聚氰胺染料超分子组装。

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Cyanine dyes have been widely applied in various biological systems owing to their specific photochemical properties. Assembly and disassembly process of cyanine dyes were constructed and regulated by special biomolecules. In this paper, dimeric cyanine dyes with different repeat units (oligo-oxyethylene) in linker (TC-Pn) (n = 3–6) were found to form H-aggregates or mixture aggregates in PBS. These aggregates could be disassembled into dimer and/or monomer by (TGnT) tetramolecular G-quadruplexes (n = 3–6, 8), which were affected by the linker length of dimeric cyanine dyes and layers of G-quartets. The 1H-NMR titration results suggest that the binding mode of dimeric cyanine dye with TGnT might be on both ends—stacking like a clip. This binding mode could clearly explain that matching structures between dimeric cyanine dyes and TGnT quadruplexes could regulate the disassembly properties of aggregates. These results could provide clues for the development of highly specific G-quadruplex probes.
机译:由于花青染料具有特定的光化学特性,它们已被广泛应用于各种生物系统中。花青染料的组装和拆卸过程由特殊的生物分子构建和调控。在本文中,发现在连接子(TC-Pn)(n = 3–6)中具有不同重复单元的二聚花青染料(低聚氧化乙烯)在PBS中形成H聚集体或混合聚集体。这些聚集体可通过(TGnT)四分子G-四链体(n = 3–6,8)分解为二聚体和/或单体,这受二聚体花青染料和G四联体层的连接体长度影响。 1H-NMR滴定结果表明,二聚花青染料与TGnT的结合方式可能在两端,就像夹子一样。这种结合模式可以清楚地说明,二聚体花青染料和TGnT四链体之间的匹配结构可以调节聚集体的分解特性。这些结果可为开发高特异性G-四链体探针提供线索。

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