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Selective binding of choline by a phosphate-coordination-based triple helicate featuring an aromatic box

机译:胆碱通过具有芳香族盒的磷酸配位的三螺旋选择性结合胆碱

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摘要

In nature, proteins have evolved sophisticated cavities tailored for capturing target guests selectively among competitors of similar size, shape, and charge. The fundamental principles guiding the molecular recognition, such as self-assembly and complementarity, have inspired the development of biomimetic receptors. In the current work, we report a self-assembled triple anion helicate (host >2) featuring a cavity resembling that of the choline-binding protein ChoX, as revealed by crystal and density functional theory (DFT)-optimized structures, which binds choline in a unique dual-site-binding mode. This similarity in structure leads to a similarly high selectivity of host >2 for choline over its derivatives, as demonstrated by the NMR and fluorescence competition experiments. Furthermore, host >2 is able to act as a fluorescence displacement sensor for discriminating choline, acetylcholine, l-carnitine, and glycine betaine effectively.
机译:在自然界中,蛋白质进化出了复杂的空腔,这些空腔专门为在大小,形状和电荷相似的竞争者中有选择地捕获目标客人而设计。指导分子识别的基本原理,例如自组装和互补性,激发了仿生受体的发展。在当前的工作中,我们报告了一种自组装的三阴离子螺旋结构(宿主> 2 ),其空腔类似于胆碱结合蛋白ChoX的空腔,如晶体和密度泛函理论(DFT)所揭示的那样-优化的结构,以独特的双位点结合模式结合胆碱。 NMR和荧光竞争实验证明,这种结构上的相似性导致宿主> 2 对胆碱具有比其衍生物更高的选择性。此外,宿主> 2 能够用作荧光位移传感器,以有效地区分胆碱,乙酰胆碱,左旋肉碱和甘氨酸甜菜碱。

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