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首页> 外文期刊>The Journal of Chemical Physics >Relating kinetic rates and local energetic roughness by accelerated molecular-dynamics simulations - art. no. 2411003
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Relating kinetic rates and local energetic roughness by accelerated molecular-dynamics simulations - art. no. 2411003

机译:通过加速的分子动力学模拟来关联动力学速率和局部高能粗糙度-艺术。没有。 2411003

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We show that our accelerated molecular-dynamics (MD) approach can extend the time scale in all-atom MD simulations of biopolymers. We also show that this technique allows for the kinetic rate information to be recaptured. In deducing the kinetic rates, the relationship between the local energetic roughness of the potential-energy landscape and the effective diffusion coefficient is established. These are demonstrated on a very slow but important biomolecular process: the dynamics of cis-trans-isomerization of Ser-Pro motifs. We do not only recapture the slow kinetic rates, which is difficult in traditional MD, but also obtain the underlying roughness of the energy landscape of proteins at atomistic resolution. (c) 2005 American Institute of Physics.
机译:我们表明,我们的加速分子动力学(MD)方法可以延长生物聚合物全原子MD模拟的时间尺度。我们还表明,该技术允许重新捕获动力学速率信息。在推导动力学速率时,建立了势能景观的局部能量粗糙度与有效扩散系数之间的关系。这些在非常缓慢但重要的生物分子过程中得到证实:Ser-Pro基序的顺反异构化动力学。我们不仅重新捕获了慢速动力学速率(这在传统的MD中很难做到),而且还获得了原子分辨率下蛋白质能量构图的潜在粗糙度。 (c)2005年美国物理研究所。

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