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通过多价 C-H 氢键进行阴离子识别:阴离子诱导的折叠体形成和跨磷脂膜的运输。

Anion Recognition through Multivalent C-H Hydrogen Bonds: Anion-Induced Foldamer Formation and Transport across Phospholipid Membranes.

机构信息

Department of Chemistry, Indian Institute of Science Education and Research Pune, Dr. Homi Bhabha Road, Pashan, Pune 411008, Maharashtra, India.

出版信息

J Org Chem. 2022 Jan 7;87(1):10-17. doi: 10.1021/acs.joc.1c01408. Epub 2021 Dec 15.

Abstract

A series of triazole-cyanostilbene receptors were designed and synthesized. The receptor binds with the anions through various CH···anion hydrogen bonding interactions, where strong binding was observed for SO anions followed by Cl, Br, NO, and I, calculated from the H NMR titration experiment. The NOESY NMR experiment of the receptor confirmed the formation of anion-induced folded conformation. The CH···anion hydrogen bonding interaction-mediated anion recognition and foldamer formation were further confirmed from geometry optimization studies of the anion-bound complex. The receptor transports Cl anions efficiently compared to SO anions across the lipid bilayer membrane via a mobile carrier mechanism.

摘要

设计并合成了一系列三唑-氰基联苯受体。受体通过各种 CH···阴离子氢键相互作用与阴离子结合,其中对 SO42-阴离子的结合最强,其次是 Cl-、Br-、NO3-和 I-,这是通过 NMR 滴定实验计算得出的。受体的 NOESY NMR 实验证实了阴离子诱导折叠构象的形成。阴离子识别和折叠体形成是通过对阴离子结合复合物的几何优化研究进一步证实的。与 SO42-阴离子相比,该受体通过可移动载体机制有效地将 Cl-阴离子跨脂质双层膜运输。

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