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首页> 外文期刊>Angewandte Chemie >Transition-Metal-Functionalized DNA Double-Crossover Tiles: Enhanced Stability and Chirality Transfer to Metal Centers
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Transition-Metal-Functionalized DNA Double-Crossover Tiles: Enhanced Stability and Chirality Transfer to Metal Centers

机译:过渡金属官能化DNA双交叉瓦片:增强稳定性和手性转移到金属中心

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摘要

The double crossover junction (DX) is a fundamental building block for generating complex and varied structures from DNA. However, its implementation in functional devices is limited to the inherent properties of DNA itself. Here, we developed design strategies to generate the first metal-DX DNA tiles (DXM) by site-specifically functionalizing the tile crossovers with tetrahedral binding pockets that coordinate Cu-I. These DX junctions bind two Cu-I ions independently at distinct sites, display greater thermal stability than native DX tiles upon metalation, and melt in a cooperative fashion. In addition, the right-handed helical chirality of DNA is transferred to the metal centers. Our tiles display high metal ion selectivity, such that Cu-II is spontaneously reduced to Cu-I in situ. By modifying our design over three generations of tiles, we elucidated the thermodynamic and geometric requirements for the successful assembly of DXM tiles, which have direct applicability in developing robust, stable DNA-based materials with electroactive, photoactive, and catalytic properties.
机译:双交叉结(DX)是一种基本构建块,用于产生来自DNA的复合物和变化的结构。然而,其在功能装置中的实现仅限于DNA本身的固有特性。在这里,我们开发了设计策略,以通过现场产生第一金属-DX DNA瓦片(DXM) - 具体官能化瓷砖交叉,其具有坐标CU-1的四面体绑定口袋。这些DX结在不同的位点独立地结合两个Cu-I离子,在金属化物质上显示比天然DX瓦片更大的热稳定性,并以合作方式熔化。此外,DNA的右手螺旋手感转移到金属中心。我们的瓷砖显示高金属离子选择性,使得Cu-II自发地降低到Cu-1原位。通过修改我们三代瓷砖的设计,我们阐明了DXM瓦片成功组装的热力学和几何要求,该瓦片具有可直接适用于开发具有电活性,光活性和催化性能的稳健性,稳定的DNA基材料。

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