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Columnar Self-Assemblies of Triarylamines as Scaffolds for Artificial Biomimetic Channels for Ion and for Water Transport

机译:三芳基胺的柱状自组装体作为用于离子和水传输的人工仿生通道的支架

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摘要

Triarylamine molecules appended with crown-ethers or carboxylic moieties form self-assembled supramolecular channels within lipid bilayers. Fluorescence assays and voltage clamp studies reveal that the self-assemblies incorporating the crown ethers work as single channels for the selective transport of K~+ or Rb~+. The X-ray crystallographic structures confirm the mutual columnar self-assembly of triarylamines and crown-ethers. The dimensional fit of K~+ cations within the 18-crown-6 leads to a partial dehydration and to the formation of alternating K~+ cation-water wires within the channel. This original type of organization may be regarded as a biomimetic alternative of columnar K~+-water wires observed for the natural KcsA channel. Supramolecular columnar arrangement was also shown for the txiaryiamine-carboxylic acid conjugate. In this latter case, stopped-flow light scattering analysis reveals the transport of water across lipid bilayer membranes with a relative water permeability as high as 17 µm s~(-1).
机译:附加有冠醚或羧基部分的三芳基胺分子在脂质双层中形成自组装的超分子通道。荧光分析和电压钳研究表明,结合冠醚的自组装体作为单个通道选择性转运K〜+或Rb〜+。 X射线晶体学结构证实了三芳基胺和冠醚的相互柱状自组装。 18冠6内K〜+阳离子的尺寸匹配导致部分脱水,并在通道内形成交替的K〜+阳离子-水线。这种原始类型的组织可以看作是对天然KcsA通道观察到的柱状K〜-水丝的仿生替代品。还显示了三乙胺-羧酸共轭物的超分子柱状排列。在后一种情况下,停止流光散射分析揭示了水穿过脂质双层膜的传输,相对透水性高达17 µm s〜(-1)。

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  • 来源
    《Journal of the American Chemical Society》 |2017年第10期|3721-3727|共7页
  • 作者单位

    ISIS, Institut de Science et d'Ingenierie Supramoleculaires, 8 allee Gaspard Monge, 67000 Strasbourg, France, SAMS Research Group, University of Strasbourg, Institut Charles Sadron, CNRS, 23 rue du Loess, BP 84047, 67034 Strasbourg Cedex 2, France;

    Adaptive Supramolecular Nanosystems Group, Institut Europèen des Membranes, ENSCM-UMII-CNRS UMR-5635, Place Eugene Bataillon, CC 047, F-34095 Montpellier, France;

    Adaptive Supramolecular Nanosystems Group, Institut Europèen des Membranes, ENSCM-UMII-CNRS UMR-5635, Place Eugene Bataillon, CC 047, F-34095 Montpellier, France;

    Adaptive Supramolecular Nanosystems Group, Institut Europèen des Membranes, ENSCM-UMII-CNRS UMR-5635, Place Eugene Bataillon, CC 047, F-34095 Montpellier, France;

    Adaptive Supramolecular Nanosystems Group, Institut Europèen des Membranes, ENSCM-UMII-CNRS UMR-5635, Place Eugene Bataillon, CC 047, F-34095 Montpellier, France;

    SAMS Research Group, University of Strasbourg, Institut Charles Sadron, CNRS, 23 rue du Loess, BP 84047, 67034 Strasbourg Cedex 2, France;

    SAMS Research Group, University of Strasbourg, Institut Charles Sadron, CNRS, 23 rue du Loess, BP 84047, 67034 Strasbourg Cedex 2, France;

    ISIS, Institut de Science et d'Ingenierie Supramoleculaires, 8 allee Gaspard Monge, 67000 Strasbourg, France;

    SAMS Research Group, University of Strasbourg, Institut Charles Sadron, CNRS, 23 rue du Loess, BP 84047, 67034 Strasbourg Cedex 2, France;

    Adaptive Supramolecular Nanosystems Group, Institut Europèen des Membranes, ENSCM-UMII-CNRS UMR-5635, Place Eugene Bataillon, CC 047, F-34095 Montpellier, France;

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