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揭示主客体化学中利用氯结合折叠体及其溶剂依赖性隐藏成本的组织。

Revealing the Hidden Costs of Organization in Host-Guest Chemistry Using Chloride-Binding Foldamers and Their Solvent Dependence.

机构信息

Department of Chemistry, Indiana University, 800 East Kirkwood Avenue, Bloomington, Indiana 47405, United States.

出版信息

J Am Chem Soc. 2022 Jan 26;144(3):1274-1287. doi: 10.1021/jacs.1c10758. Epub 2022 Jan 11.

Abstract

Preorganization is a key concept in supramolecular chemistry. Preorganized receptors enhance binding by minimizing the organization costs associated with adopting the conformation needed to orient the binding sites toward the guest. Conversely, poorly organized receptors show affinities below what is possible based on the potential of their specific binding interactions. Despite the fact that the organization energy is paid each time like a tax, its value has never been measured directly, though many compounds have been developed to measure its effects. We present a method to quantify the hidden costs of receptor organization by independently measuring the contribution it makes to chloride complexation by a flexible foldameric receptor. This method uses folding energy to approximate organization energy and relies on measurement of the coil-helix equilibrium as a function of solvent. We also rely on the finding, established with rigid receptors, that affinity is inversely related to the solvent dielectric and expect the same for the foldamer's helically organized state. Increasing solvent polarity across nine dichloromethane-acetonitrile mixtures we see an unusual V-shape in affinity (decrease then increase). Quantitatively, this shape arises from weakened hydrogen-bonding interactions with solvent polarity followed by solvent-driven folding into an organized helix. We confirm that dielectric screening impacts the stability of host-guest complexes of flexible foldamers just like rigid receptors. These results experimentally verify the canonical model of binding (affinity depends on the sum of organization and noncovalent interactions). The picture of how solvent impacts complex stability and conformational organization thereby helps lay the groundwork for de novo receptor design.

摘要

预组织是超分子化学的一个关键概念。预组织受体通过最小化与采用将结合位点定向于客体所需的构象相关的组织成本来增强结合。相反,组织不良的受体显示出低于基于其特定结合相互作用的潜力的亲和力。尽管组织能是每次都像税款一样支付,但从未直接测量过其值,尽管已经开发了许多化合物来测量其影响。我们提出了一种通过独立测量柔性折叠体受体对氯化物络合的贡献来量化受体组织的隐藏成本的方法。该方法使用折叠能来近似组织能,并依赖于作为溶剂函数的螺旋平衡的测量。我们还依赖于刚性受体建立的亲和力与溶剂介电常数成反比的发现,并期望折叠体的螺旋组织状态也是如此。在 9 种二氯甲烷-乙腈混合物中增加溶剂极性,我们看到亲和力呈现出不寻常的 V 形(先下降后上升)。从定量上看,这种形状是由于与溶剂极性的氢键相互作用减弱,随后溶剂驱动折叠成有序的螺旋。我们证实介电屏蔽对柔性折叠体的主体-客体配合物的稳定性有影响,就像刚性受体一样。这些结果从实验上验证了经典的结合模型(亲和力取决于组织和非共价相互作用的总和)。溶剂如何影响配合物稳定性和构象组织的情况有助于为从头设计受体奠定基础。

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