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Design and Synthesis of Efficient Fluorescent Dyes for Incorporation into DNA Backbone and Biomolecule Detection

机译:用于DNA骨架和生物分子检测的高效荧光染料的设计与合成

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We report here the design and synthesis of a series of pi-conjugated fluorescent dyes with D-A-D(D,donor;A,acceptor),D-pi-D,A-pi-A,and D-pi-A for applications as the signaling motif in biological-synthetic hybrid foldamers for DNA detection.The Horner-Wadsworth-Emmons(HWE)reaction and Knoevenagel condensation were demonstrated as the optimum ways for construction of long pi-conjugated systems.Such rodlike chromophores have distinct advantages,as their fluorescence properties are not quenched by the presence of DNA.To be incorporated into the backbone of DNA,the chromophores need to be reasonably soluble in organic solvent for solid-phase synthesis,and therefore a strategy of using flexible tetraethylene glycol(TEG)linkers at either end of these rodlike dyes was developed.The presence of TEG facilitates the protection of the chain-growing hydroxyl group with DMTrCl(dimethoxytrityl chloride)as well as the activation of the coupling step with phosphoramidite chemistry on an automated DNA synmesizer.To form fluorescence resonance energy transfer(FRET)pairs,six synthetic chromophores with blue to red fluorescence have been developed,and those with orthogonal fluorescent emission were chosen for incorporation into DNA-chromophore hybrid foldamers.
机译:我们在这里报告的设计和合成的一系列pi共轭荧光染料与DAD(D,donor; A,acceptor),D-pi-D,A-pi-A和D-pi-A的应用作为生物合成的混合折叠夹用于DNA检测的信号转导基序。霍纳-沃兹沃斯-埃蒙(HWE)反应和Knoevenagel缩合被证明是构建长π偶联系统的最佳方法。此类杆状发色团具有独特的优势,因为它们的荧光要被引入DNA的骨架中,发色团需要合理地溶于有机溶剂中以进行固相合成,因此在任何一种情况下都应使用柔性的四甘醇(TEG)接头作为策略TEG的存在促进了用DMTrCl(二甲氧基三苯甲基氯)保护链增长的羟基以及在自动化DNA上用亚磷酰胺化学激活偶联步骤为了形成荧光共振能量转移(FRET)对,已经开发了六个具有蓝色至红色荧光的合成生色团,并选择了具有正交荧光发射的合成生色团并入DNA-生色团杂合折叠剂。

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