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Processive enzyme mimic: Kinetics and thermodynamics of the threading and sliding process

机译:加工酶模拟物:穿线和滑动过程的动力学和热力学

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摘要

The kinetics and thermodynamics of the treading and dethreading process of polymers through the cavity of a synthetic toroidal host is investigated by studying its complexation with a series of end-functionalized polymers of different lengths containing an end group that is selectively recognized by the host. The system is designed in such a way that complexation is only observed if the host has traveled all of the way across the complete polymer. Detailed kinetic investigations using fluorescence spectroscopy have revealed that the barrier for this process is length dependent and most likely related to the stretching of the polymer. Moreover, the results indicate that our previously reported processive enzyme mimic most likely operates by randomly sliding along its macromolecular substrate.
机译:通过研究其与一系列不同长度的末端官能化聚合物的络合作用,研究了聚合物通过合成环形主体腔体的踩踏和脱线过程的动力学和热力学,该末端官能化聚合物包含被主体选择性识别的端基。该系统的设计方式是,只有当主体一直穿过整个聚合物时才观察到络合物。使用荧光光谱的详细动力学研究表明,该过程的障碍取决于长度,并且最有可能与聚合物的拉伸有关。而且,结果表明我们先前报道的过程性酶模拟物很可能通过沿其大分子底物随机滑动而起作用。

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