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The role of multivalency in the association kinetics of patchy particle complexes

机译:多价在斑块颗粒复合物结合动力学中的作用

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Association and dissociation of particles are elementary steps in many natural and technological relevant processes. For many such processes, the presence of multiple binding sites is essential. For instance, protein complexes and regular structures such as virus shells are formed from elementary building blocks with multiple binding sites. Here we address a fundamental question concerning the role of multivalency of binding sites in the association kinetics of such complexes. Using single replica transition interface sampling simulations, we investigate the influence of the multivalency on the binding kinetics and the association mechanism of patchy particles that form polyhedral clusters. When the individual bond strength is fixed, the kinetics naturally is very dependent on the multivalency, with dissociation rate constants exponentially decreasing with the number of bonds. In contrast, we find that when the total bond energy per particle is kept constant, association and dissociation rate constants turn out rather independent of multivalency, although of course still very dependent on the total energy. The association and dissociation mechanisms, however, depend on the presence and nature of the intermediate states. For instance, pathways that visit intermediate states are less prevalent for particles with five binding sites compared to the case of particles with only three bonds. The presence of intermediate states can lead to kinetic trapping and malformed aggregates. We discuss implications for natural forming complexes such as virus shells and for the design of artificial colloidal patchy particles. Published by AIP Publishing.
机译:颗粒的关联和解离是许多自然和技术相关过程中的基本步骤。对于许多这样的过程,多个结合位点的存在是必不可少的。例如,蛋白质复合物和常规结构如病毒壳由具有多个结合位点的基本建筑物形成。在这里,我们解决了关于这些复合物的关联动力学中结合位点的多价作用的基本问题。使用单副产转变界面采样模拟,研究了多价对结合动力学的影响以及形成多面体簇的斑块颗粒的缔蛋白的关联机制。当各个粘合强度是固定的时,动力学自然是非常依赖于多价的,并且解离率常数与键的数量指数递减。相反,我们发现,当每次粒子的总键能保持恒定时,关联和解离速率常数变得相当独立于多价,但当然仍然非常依赖于总能量。然而,关联和解离机制取决于中间状态的存在和性质。例如,与仅具有三个键的颗粒的情况相比,访问中间状态的术语对具有五个结合位点的颗粒的途径不太普遍。中间状态的存在可导致动力学捕获和畸形聚集体。我们讨论对自然形成复合物的影响,如病毒壳和人工胶体斑块颗粒的设计。通过AIP发布发布。

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