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Intrinsic Hydrophobicity versus Intraguest Interactions in Hydrophobically Driven Molecular Recognition in Water

机译:内在疏水性与水中疏水驱动的分子识别中的Intractuest相互作用相反

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摘要

Molecular recognition of water-soluble molecules is challenging but can be achieved if the receptor possesses a hydrophobic binding interface complementary to the guest. When the guest molecule contains more than one hydrophobic group, intrahost interactions between the hydrophobes could strongly influence the binding of the guest by its host. In a series of ornithine derivatives functionalized with aromatic hydrophobes, the most electron-rich compound displayed the strongest binding, despite its lowest intrinsic hydrophobicity.
机译:水溶性分子的分子识别是具有挑战性的,但如果受体具有与客人互补的疏水结合界面,可以实现。 当客户分子含有多于一个疏水基团时,水中之间的胎动性相互作用可能会强烈影响客人的宿主。 在用芳族水化合物官能化的一系列鸟氨酸衍生物中,尽管其内在疏水性最低,但最富含电子的化合物显示出最强的结合。

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