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首页> 外文期刊>Organic & biomolecular chemistry >Control of conformation in α-helix mimicking aromatic oligoamide foldamers through interactions between adjacent side-chains
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Control of conformation in α-helix mimicking aromatic oligoamide foldamers through interactions between adjacent side-chains

机译:通过相邻侧链之间的相互作用控制模仿芳香族低酰胺折叠剂的α-螺旋中的构象

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摘要

The design, synthesis and structural characterization of non-natural oligomers that adopt well-defined conformations, so called foldamers, is a key objective in developing biomimetic 3D functional architectures. For the aromatic oligoamide foldamer family, use of interactions between side-chains to control conformation is underexplored. The current manuscript addresses this objective through the design, synthesis and conformational analyses of model dimers derived from 3-O-alkylated para-aminobenzoic acid monomers. The O-alkyl groups on these foldamers are capable of adopting syn- or anti-conformers through rotation around the Ar-CO/NH axes. In the syn-conformation this allows the foldamer to act as a topographical mimic of the alpha-helix whereby the O-alkyl groups mimic the spatial orientation of the i and i + 4 side-chains from the alpha-helix. Using molecular modelling and 2D NMR analyses, this work illustrates that covalent links and hydrogen-bonding interactions between side-chains can bias the conformation in favour of the alpha-helix mimicking syn-conformer, offering insight that may be more widely applied to control secondary structure in foldamers.
机译:采用仿生构型的非天然低聚物的设计,合成和结构表征是开发仿生3D功能体系结构的关键目标。对于芳香族低酰胺折叠剂家族,尚未充分利用侧链之间的相互作用来控制构象。当前的手稿通过衍生自3-O-烷基化对氨基苯甲酸单体的模型二聚体的设计,合成和构象分析来解决此目标。这些折叠架上的O-烷基可通过围绕Ar-CO / NH轴旋转而采用顺式或反式构象异构体。在顺式构象中,这允许折叠剂充当α-螺旋的形貌模拟,由此O-烷基基团模拟来自α-螺旋的i和i + 4侧链的空间取向。使用分子建模和2D NMR分析,这项工作表明,侧链之间的共价键和氢键相互作用可以使构象发生偏向,从而有利于模仿α-螺旋的顺式构象异构体,从而提供了可能被更广泛地用于控制次级构象的见解。折叠器中的结构。

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  • 来源
    《Organic & biomolecular chemistry》 |2019年第15期|3861-3867|共7页
  • 作者单位

    Univ Leeds, Sch Chem, Woodhouse Lane, Leeds LS2 9JT, W Yorkshire, England|Univ Leeds, Astbury Ctr Struct Mol Biol, Woodhouse Lane, Leeds LS2 9JT, W Yorkshire, England;

    Univ Leeds, Sch Chem, Woodhouse Lane, Leeds LS2 9JT, W Yorkshire, England|Univ Leeds, Astbury Ctr Struct Mol Biol, Woodhouse Lane, Leeds LS2 9JT, W Yorkshire, England;

    Univ Leeds, Sch Chem, Woodhouse Lane, Leeds LS2 9JT, W Yorkshire, England|Univ Leeds, Astbury Ctr Struct Mol Biol, Woodhouse Lane, Leeds LS2 9JT, W Yorkshire, England;

    Univ Leeds, Sch Chem, Woodhouse Lane, Leeds LS2 9JT, W Yorkshire, England|Univ Leeds, Astbury Ctr Struct Mol Biol, Woodhouse Lane, Leeds LS2 9JT, W Yorkshire, England;

    Univ Leeds, Sch Chem, Woodhouse Lane, Leeds LS2 9JT, W Yorkshire, England;

    Univ Leeds, Astbury Ctr Struct Mol Biol, Woodhouse Lane, Leeds LS2 9JT, W Yorkshire, England|Univ Leeds, Fac Biol Sci, Sch Mol & Cellular Biol, Woodhouse Lane, Leeds LS2 9JT, W Yorkshire, England;

    Univ Leeds, Sch Chem, Woodhouse Lane, Leeds LS2 9JT, W Yorkshire, England|Univ Leeds, Astbury Ctr Struct Mol Biol, Woodhouse Lane, Leeds LS2 9JT, W Yorkshire, England;

    Univ Leeds, Sch Chem, Woodhouse Lane, Leeds LS2 9JT, W Yorkshire, England|Univ Leeds, Astbury Ctr Struct Mol Biol, Woodhouse Lane, Leeds LS2 9JT, W Yorkshire, England;

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