...
【24h】

Fine-Tuning Ligand-Receptor Design for Selective Molecular Recognition of Dicarboxylic Acids

机译:用于二元羧酸选择性分子识别的微调配体受体设计

获取原文
获取原文并翻译 | 示例

摘要

The host-guest interaction between the hexaaza macrocyclic ligand 3,7,11,18,22,26-hexaazatricyclo[26.2.2.2~(13'16)]-tetratriaconta-1(31),13(34),14,16(33),28(32),29-hexaene (P3) and three rigid dicarboxylic acids (isophthalic acid,H2is;phthtalic acid,H2ph;and terephthalic acid,H2te) has been investigated using potentiometric equilibrium methods and NMR spectroscopy including the measurement of intermolecular nuclear Overhauser effects (NOEs) and self-diffusion coefficients (D).Ternary complexes are formed in aqueous solution as a result of hydrogen bond formation and Coulombic interactions between the host and the guest.In the [(H6P3)(is)]~(4+) complex,those bonding interactions reach a maximum yielding a log K_6~R of 4.74.Competitive distribution diagrams and total species distribution diagrams are used to illustrate the main features of these systems.In particular,a selectivity of over 89% at p[H]=5.0 is obtained for the complexation of the is versus the te substrates.The recognition capacity of P3 over dicarboxylic acids (da) is compared to the related hexaaza macrocycle Me2P3 (7,22-dimethyl-3,7,11,18,22,26-hexaazatricyclo-[26.2.2.2~(13'16)]tetratriaconta-1(30),13,15,28,31,33-hexaene) that binds da with a lesser strength,and it is not selective.Theoretical calculations performed at molecular dynamics level have also been carried out and point out that the origin of selectivity is mainly due to the capacity of the P3 ligand receptor to adapt to the geometry of the dicarboxylic acid to form relatively strong hydrogen bonds.
机译:六氮杂大环配体3,7,11,18,22,26-六氮杂三环[26.2.2.2〜(13'16)]-tetratriaconta-1(31),13(34),14,16之间的宿主-客体相互作用(33),28(32),29-己烯(P3)和三种刚性二元羧酸(间苯二甲酸,H2is;邻苯二甲酸,H2ph;对苯二甲酸,H2te)已通过电位平衡法和NMR光谱法进行了研究分子间核奥勒豪斯效应(NOEs)和自扩散系数(D)的关系。水溶液中由于氢键的形成和主体与客体之间的库仑相互作用而形成三元络合物。[(H6P3)(is) ]〜(4+)络合物,这些键的相互作用达到最大值,对数K_6〜R为4.74。竞争分布图和总物种分布图用于说明这些系统的主要特征。特别是,选择性超过89对于is与te底物的络合,在p [H] = 5.0处获得%。比较P3相对于二羧酸(da)的容量与相关的hexaaza大环Me2P3(7,22-二甲基-3,7,11,18,22,26-六氮杂三环-[26.2.2.2〜(13'16)] tetratriaconta -1(30),13,15,28,31,33-己烯)结合da的强度较小,并且不是选择性的。还进行了分子动力学水平的理论计算,并指出了起源选择性的主要原因是P3配体受体适应二羧酸的几何结构以形成相对强的氢键的能力。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号