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首页> 外文期刊>The Journal of Chemical Physics >Two-site versus continuum diffusion model of blocker dynamics in a membrane channel: Comparative analysis of escape kinetics
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Two-site versus continuum diffusion model of blocker dynamics in a membrane channel: Comparative analysis of escape kinetics

机译:薄膜通道中阻滞动力学的双站点与连续体扩散模型:逃生动力学的比较分析

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This paper deals with the escape of a charged blocker molecule from a voltage-biased membrane channel with a constriction zone which the molecule cannot pass through. Recently, we developed a two-site model of the blocker dynamics in such a system and applied it to analyze the escape kinetics. Here, we compare the decay of the blocker survival probability predicted by the two-site model with that for the survival probability given by a more accurate model which assumes continuum diffusion of the blocker molecule inside the channel. The main finding of the present work is that both models predict the same decay of the survival probability at long times. This result is of practical importance since only the long-time tail of the survival probability can be studied in single-channel experiments in which, due to a limited time resolution, only long-lasting individual events of channel blockades can be measured.
机译:本文涉及从电压偏置膜通道的带电阻滞分子的逸出,其中分子不能通过该收缩区域。 最近,我们在这种系统中开发了一个双网站的阻塞动力学模型,并应用了它来分析逃生动力学。 在这里,我们将两位站点模型预测的阻塞存活概率的衰减比较,其具有由更准确的模型给出的存活概率,该模型假设阻塞分子在通道内的连续扩散。 目前工作的主要发现是,两种模型长时间都预测了生存概率的相同衰减。 该结果具有实际重要性,因为可以在单通道实验中仅研究生存概率的长时间尾,因此由于有限的时间分辨率,只能测量频道封锁的长期各个事件。

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