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Modeling capsid kinetics assembly from the steady state distribution of multi-sizes aggregates

机译:从多尺寸骨料的稳态分布建模衣壳动力学装配

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摘要

The kinetics of aggregation for particles of various sizes depends on their diffusive arrival and fusion at a specific nucleation site. We present here a mean-field approximation and a stochastic jump model for aggregates at equilibrium. This approach is an alternative to the classical Smoluchowski equations that do not have a close form and are not solvable in general. We analyze these mean-field equations and obtain the kinetics of a cluster formation. Our approach provides a simplified theoretical framework to study the kinetics of viral capsid formation, such as HIV from the self-assembly of the structural proteins Gag.
机译:各种尺寸颗粒的聚集动力学取决于它们在特定成核位点的扩散到达和融合。在这里,我们提出了均值场逼近和聚集体处于平衡状态时的随机跳跃模型。这种方法是经典Smoluchowski方程的一种替代方法,该经典方程没有近似形式且通常无法求解。我们分析这些均场方程,并获得团簇形成的动力学。我们的方法提供了简化的理论框架来研究病毒衣壳形成的动力学,例如结构蛋白Gag自组装的HIV。

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