双分子反应的稳态网络中标记分子动力学的样本量依赖性:光驱动泵的循环时间。

Daniele Asnicar, Emanuele Penocchio, D. Frezzato
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引用次数: 3

摘要

在这里,稳态反应网络是从单个标记分子在发生反应事件时在其化学状态之间跳跃的观点来检查的。这种基于主体的观点对于选择性地表征功能分子的行为是有用的,特别是在存在双分子过程的情况下。我们提出了在宏观极限和小体积样品中模拟跳跃动力学的工具,其中反应分子的数量是具有固有随机动力学的几个单位的顺序。重点是理想的空间“区隔化”如何影响标记分子的动力学特征。我们的一般方法应用于合成光驱动超分子泵,该超分子泵由环状和轴状分子组成,这些分子动态地组装和拆卸,在恒定照射下产生平均环状穿过轴的定向运动。在这个例子中,感兴趣的动力学特征是标记环和轴的正/逆循环的完成时间。我们发现,相对于系统的大小,平均周期时间具有惊人的强鲁棒性。这可以用速率决定的单分子过程来解释,因此,单分子过程可能在稳定小化学系统的行为以抵抗分子数量的强烈波动方面起着至关重要的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Sample size dependence of tagged molecule dynamics in steady-state networks with bimolecular reactions: Cycle times of a light-driven pump.
Here, steady-state reaction networks are inspected from the viewpoint of individual tagged molecules jumping among their chemical states upon the occurrence of reactive events. Such an agent-based viewpoint is useful for selectively characterizing the behavior of functional molecules, especially in the presence of bimolecular processes. We present the tools for simulating the jump dynamics both in the macroscopic limit and in the small-volume sample where the numbers of reactive molecules are of the order of few units with an inherently stochastic kinetics. The focus is on how an ideal spatial "compartmentalization" may affect the dynamical features of the tagged molecule. Our general approach is applied to a synthetic light-driven supramolecular pump composed of ring-like and axle-like molecules that dynamically assemble and disassemble, originating an average ring-through-axle directed motion under constant irradiation. In such an example, the dynamical feature of interest is the completion time of direct/inverse cycles of tagged rings and axles. We find a surprisingly strong robustness of the average cycle times with respect to the system's size. This is explained in the presence of rate-determining unimolecular processes, which may, therefore, play a crucial role in stabilizing the behavior of small chemical systems against strong fluctuations in the number of molecules.
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