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Molecular Recognition within the Cavity of a Foldamer Helix Bundle: Encapsulation of Primary Alcohols in Aqueous Conditions

机译:Foldamer螺旋束腔内的分子识别:在水性条件下包封伯醇。

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摘要

Artificial synthetic molecules able to adopt well-defined stable secondary structures comparable to those found in nature ("foldamers") have considerable potential for use in a range of applications such as biomaterials, biorecognition, nanomachines and as therapeutic agents. The development of foldamers with the ability to bind and encapsulate "guest" molecules is of particular interest; as such an ability is a key step toward the development of artificial sensors, receptors and drug-delivery vectors. Although significant progress has been reported within this context, foldamer capsules reported thus far are largely restricted to organic solvent systems, and it is likely that the move to aqueous conditions will prove challenging. Toward this end, we report here structural studies into the ability of a recently reported water-soluble self-assembled foldamer helix bundle to encapsulate simple guest molecules within an internal cavity. Seven high-resolution aqueous crystal structures are reported, accompanied by molecular dynamics and high-field NMR solution data, showing for the first time that encapsulation of guests by a complex self-assembled foldamer in aqueous conditions is possible. The findings also provide ample insight for the future functional development of this system.
机译:能够采用与自然界中发现的类似的定义明确的稳定二级结构的人工合成分子(“折叠剂”),在生物材料,生物识别,纳米机械和治疗剂等一系列应用中具有巨大的潜力。具有结合和包封“来宾”分子能力的折叠剂的开发特别令人关注。因此,这种能力是开发人工传感器,受体和药物传递载体的关键一步。尽管在这种情况下已经报告了重大进展,但是迄今为止报道的折叠式胶囊在很大程度上限于有机溶剂系统,并且转向水性条件可能证明具有挑战性。为此,我们在此报告结构研究,该结构是最近报道的水溶性自组装折叠夹螺旋束将简单客体分子封装在内腔中的能力。报告了七个高分辨率的水晶体结构,并伴随着分子动力学和高场NMR溶液数据,这首次表明在水性条件下客体被复杂的自组装折叠剂包裹是可能的。这些发现还为该系统的未来功能开发提供了足够的见识。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2017年第17期|6128-6137|共10页
  • 作者单位

    Univ. Bordeaux, CNRS, CBMN, UMR 5248, Institut Européen de Chimie et Biologie, 2 rue Robert Escarpit, 33607 Pessac, France;

    Univ. Bordeaux, CNRS, CBMN, UMR 5248, All. Geoffroy Saint-Hilaire, 33600 Pessac, France;

    Univ. Bordeaux, CNRS, CBMN, UMR 5248, Institut Européen de Chimie et Biologie, 2 rue Robert Escarpit, 33607 Pessac, France;

    Univ. Bordeaux, CNRS, CBMN, UMR 5248, Institut Européen de Chimie et Biologie, 2 rue Robert Escarpit, 33607 Pessac, France;

    Univ. Bordeaux, CNRS, CBMN, UMR 5248, Institut Européen de Chimie et Biologie, 2 rue Robert Escarpit, 33607 Pessac, France ,UREkA, Sarl, 2 rue Robert Escarpit, 33607 Pessac, France;

    Univ. Bordeaux, CNRS, CBMN, UMR 5248, All. Geoffroy Saint-Hilaire, 33600 Pessac, France;

    Univ. Bordeaux, CNRS, CBMN, UMR 5248, All. Geoffroy Saint-Hilaire, 33600 Pessac, France;

    Univ. Bordeaux, Inserm, CNRS, ARNA Laboratory, U1212, UMR 5320, Institut Européen de Chimie et Biologie, 2 rue Robert Escarpit, 33076 Pessac, France;

    Univ. Bordeaux, CNRS, CBMN, UMR 5248, Institut Européen de Chimie et Biologie, 2 rue Robert Escarpit, 33607 Pessac, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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  • 入库时间 2022-08-18 03:07:57

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