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NMR Relaxation Dispersion Reveals Macrocycle Breathing Dynamics in a Cyclodextrin-based Rotaxane

机译:核磁共振弛豫分散显示在基于环糊精的轮烷中大环呼吸动力学。

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摘要

A distinctive feature of mechanically interlocked molecules (MIMs) is the relative motion between the mechanically bonded components, and often it is the functional basis for artificial molecular machines and new functional materials. Optimization of machine or materials performance requires knowledge of the underlying atomic-level mechanisms that control the motion. The field of biomolecular NMR spectroscopy has developed a diverse set of pulse schemes that can characterize molecular dynamics over a broad time scale, but these techniques have not yet been used to characterize the motion within MIMs. This study reports the first observation of NMR relaxation dispersion related to MIM motion. The rotary (pirouette) motion of a-cyclodextrin (aCD) wheels was characterized in a complementary pair of rotaxanes with pirouetting switched ON or OFF. ~(13)C and ~1H NMR relaxation dispersion measurements reveal previously unknown exchange dynamics for the aCD wheels in the pirouette-ON rotaxane with a rate constant of 2200 s~(-1) at 298 K and an activation barrier of ΔF = 43 ± 3 kJ/mol. The exchange dynamics disappear in the pirouette-OFF rotaxane, demonstrating their switchable nature. The ~(13)C and ~1H sites exhibiting relaxation dispersion suggest that the exchange involves "macrocycle breathing", in which the aCD wheel fluctuates between a contracted or expanded state, the latter enabling diffusive rotary motion about the axle. The substantial insight from these NMR relaxation dispersion methods suggests similar dynamic NMR methods can illuminate the fast time scale (microsecond to millisecond) mechanisms of intercomponent motion in a wide range of MIMs.
机译:机械互锁分子(MIM)的一个显着特征是机械键合的组件之间的相对运动,并且通常是人造分子机器和新功能材料的功能基础。机器或材料性能的优化需要了解控制运动的基本原子级机制。生物分子NMR光谱学领域已经开发了多种脉冲方案,可以在较宽的时间范围内表征分子动力学,但是这些技术尚未用于表征MIM内部的运动。这项研究报告了与MIM运动有关的NMR弛豫色散的首次观察。 a-环糊精(aCD)轮的旋转(旋转)运动的特征在于互补的一对轮烷,其中开环或开环进行了脱脂。 〜(13)C和〜1H NMR弛豫弥散度测量揭示了pirouette-ON轮烷中aCD轮先前未知的交换动力学,在298 K时的速率常数为2200 s〜(-1),激活势垒为ΔF= 43 ±3 kJ / mol。交换动力学在旋转子叶轮烷中消失,表明它们具有可切换的特性。表现出松弛分散的〜(13)C和〜1H位点表明交换涉及“大循环呼吸”,其中aCD轮在收缩或扩张状态之间波动,后者使绕轴的扩散旋转运动成为可能。从这些NMR弛豫分散方法获得的大量见解表明,类似的动态NMR方法可以阐明各种MIM中组分间运动的快速时标(微秒至毫秒)机制。

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  • 来源
    《Journal of the American Chemical Society》 |2020年第16期|7413-7424|共12页
  • 作者单位

    Department of Chemistry & Biochemistry University of Notre Dame Notre Dame Indiana 46556 United States;

    School of Chemistry and Molecular Engineering East China Normal University Shanghai 200241 China;

    Department of Chemistry & Biochemistry and Department of Physics University of Notre Dame Notre Dame Indiana 46556 United States;

  • 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);
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  • 正文语种 eng
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