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A Dynamic Combinatorial Approach for Identifying Side Groups that Stabilize DNA-Templated Supramolecular Self-Assemblies

机译:动态组合方法,用于识别稳定DNA模板化超分子自组装的侧基。

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DNA-templated self-assembly is an emerging strategy for generating functional supramolecular systems, which requires the identification of potent multi-point binding ligands. In this line, we recently showed that bis-functionalized guanidinium compounds can interact with ssDNA and generate a supramolecular complex through the recognition of the phosphodiester backbone of DNA. In order to probe the importance of secondary interactions and to identify side groups that stabilize these DNA-templated self-assemblies, we report herein the implementation of a dynamic combinatorial approach. We used an in situ fragment assembly process based on reductive amination and tested various side groups, including amino acids. The results reveal that aromatic and cationic side groups participate in secondary supramolecular interactions that stabilize the complexes formed with ssDNA.
机译:DNA模板自组装是产生功能性超分子系统的新兴策略,需要鉴定有效的多点结合配体。在这一方面,我们最近表明,双官能化胍盐化合物可以与ssDNA相互作用,并通过识别DNA的磷酸二酯主链产生超分子复合物。为了探究次要相互作用的重要性并确定稳定这些DNA模板化自组装的侧基,我们在此报告动态组合方法的实现。我们使用了基于还原胺化的原位片段组装方法,并测试了包括氨基酸在内的各种侧基。结果表明,芳香族和阳离子侧基参与二级超分子相互作用,从而稳定了与ssDNA形成的复合物。

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