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From the Cover: Directing macromolecular conformation through halogen bonds

机译:从封面开始:通过卤素键指导大分子构象

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摘要

The halogen bond, a noncovalent interaction involving polarizable chlorine, bromine, or iodine molecular substituents, is now being exploited to control the assembly of small molecules in the design of supramolecular complexes and new materials. We demonstrate that a halogen bond formed between a brominated uracil and phosphate oxygen can be engineered to direct the conformation of a biological molecule, in this case to define the conformational isomer of a four-stranded DNA junction when placed in direct competition against a classic hydrogen bond. As a result, this bromine interaction is estimated to be ≈2–5 kcal/mol stronger than the analogous hydrogen bond in this environment, depending on the geometry of the halogen bond. This study helps to establish halogen bonding as a potential tool for the rational design and construction of molecular materials with DNA and other biological macromolecules.
机译:卤素键是涉及可极化的氯,溴或碘分子取代基的非共价相互作用,目前正用于控制超分子配合物和新材料设计中的小分子组装。我们证明溴化尿嘧啶和磷酸氧之间形成的卤素键可以被工程化,以指导生物分子的构象,在这种情况下,当与经典氢直接竞争时,它可以定义四链DNA结的构象异构体键。结果,根据卤素键的几何形状,这种溴相互作用据估计比该环境中的类似氢键强约2–5 kcal / mol。这项研究有助于建立卤素键合作为合理设计和构建具有DNA和其他生物大分子的分子材料的潜在工具。

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