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首页> 外文期刊>Biophysical Journal >Diffusional channeling in the sulfate-activating complex: combined continuum modeling and coarse-grained brownian dynamics studies.
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Diffusional channeling in the sulfate-activating complex: combined continuum modeling and coarse-grained brownian dynamics studies.

机译:硫酸盐活化复合物中的扩散通道:结合的连续谱模型和粗粒度布朗动力学研究。

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摘要

Enzymes required for sulfur metabolism have been suggested to gain efficiency by restricted diffusion (i.e., channeling) of an intermediate APS(2-) between active sites. This article describes modeling of the whole channeling process by numerical solution of the Smoluchowski diffusion equation, as well as by coarse-grained Brownian dynamics. The results suggest that electrostatics plays an essential role in the APS(2-) channeling. Furthermore, with coarse-grained Brownian dynamics, the substrate channeling process has been studied with reactions in multiple active sites. Our simulations provide a bridge for numerical modeling with Brownian dynamics to simulate the complicated reaction and diffusion and raise important questions relating to the electrostatically mediated substrate channeling in vitro, in situ, and in vivo.
机译:已建议硫代谢所需的酶通过活性位点之间的中间APS(2-)的受限扩散(即通道化)来提高效率。本文介绍了通过Smoluchowski扩散方程的数值解以及粗粒度布朗动力学对整个通道过程的建模。结果表明,静电在APS(2-)通道中起着至关重要的作用。此外,利用粗粒度布朗动力学,已经研究了在多个活性位点反应的底物通道化过程。我们的模拟为布朗动力学的数值建模提供了桥梁,以模拟复杂的反应和扩散,并提出了与静电介导的底物在体外,原位和体内通道有关的重要问题。

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