Beijing National Laboratory for Molecular Sciences, CAS Key Laboratory of Molecular Recognition and Function , Institute of Chemistry, Chinese Academy of Sciences , Beijing 100190 , China.
University of Chinese Academy of Sciences , Beijing 100049 , China.
J Org Chem. 2019 Jul 19;84(14):8859-8869. doi: 10.1021/acs.joc.9b00561. Epub 2019 Jun 27.
Anion transmembrane transport mediated by novel noncovalent interactions is of central interest in supramolecular chemistry. In this work, a series of oxacalix[2]arene[2]triazine-derived transporters and bearing anion-π-, hydrogen-, and halogen-bonding sites in rational proximity were designed and synthesized by a one-pot strategy starting from gallic acid ester derivatives and mono- or di-halogen-substituted triazines. H NMR titrations demonstrated efficient binding of and toward Cl and Br in solution, giving association constants in the range of 10-10 M. Cooperation of anion-π, hydrogen, and halogen bonding was revealed as a driving force for anion binding by single-crystal structures of two complexes and density functional theory calculations. Fluorescence assays indicated that compounds are efficient chloride transporters with effective concentrations (EC) falling in the range of 3.1-7.4 μM and following an order of > > > . The contribution of halogen bonding and cooperative noncovalent bonds to ion transport was then discussed. Significantly, transporters exhibit high anticancer activity. In the presence of and KCl (60 mM), the cell survival of HCT116 reduces to 11.9-24.9% with IC values in the range of 52.3-66.4 μM.
新型非共价相互作用介导的阴离子跨膜转运在超分子化学中具有核心意义。在这项工作中,通过从没食子酸酯衍生物和单卤代或二卤代三嗪出发的一锅法策略,设计并合成了一系列具有阴离子-π、氢键和卤键作用位点的新型杯[2]芳烃[2]三嗪衍生载体和。H NMR 滴定实验证明,在溶液中,和对 Cl 和 Br 具有高效的结合能力,其结合常数在 10-10 M 范围内。通过两个配合物的单晶结构和密度泛函理论计算揭示了阴离子结合的驱动力是阴离子-π、氢键和卤键的协同作用。荧光实验表明,化合物是有效的氯离子转运体,有效浓度(EC)在 3.1-7.4 μM 范围内,其顺序为> > > > 。然后讨论了卤键和协同非共价键对离子转运的贡献。值得注意的是,载体表现出高的抗癌活性。在存在和 KCl(60 mM)的情况下,HCT116 细胞的存活率降低至 11.9-24.9%,IC 值在 52.3-66.4 μM 范围内。