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Generalized Fourier series solution of equations governing molecular-motor-assisted transport of adenoviral vectors in a spherical cell

机译:球形细胞中腺病毒载体分子运动辅助转运方程的广义傅里叶级数解

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摘要

This paper presents an analytical solution of one-dimensional transient molecular-motor-assisted transport equations that describe transport of adenoviruses in a spherical cell. The model of intracellular trafficking of adenoviruses is based on molecular-motor-assisted transport equations suggested by Smith and Simmons [D.A. Smith, R.M. Simmons, Models of motor-assisted transport of intracellular particles, Biophysical Journal 80 (2001) 45-68.]. These equations are presented in spherical coordinates and extended by accounting for the random component of motion of viral particles bound to filaments. This random component is associated with the stochastic nature of molecular motors responsible for the locomotion of viral particles bound to filaments. Utilizing the method of separation of variables, a generalized Fourier series solution for this problem is obtained. The solution uses two different orthogonal sets of eigenfunctions to represent the concentration of free viral particles transported by diffusion and the concentration of microtubule-bound viral particles transported by kinesin-family molecular motors away from the cell nucleus. Binding/detachment kinetic processes between the viral particles and microtubules are specified by first rate reaction constants; these lead to coupling between the two viral concentrations. The obtained solution simulates viral transport between the cell membrane and cell nucleus during initial stages of viral infection.
机译:本文提出了一维瞬态分子马达辅助运输方程的解析解,该方程描述了腺病毒在球形细胞中的运输。腺病毒的细胞内运输模型基于Smith和Simmons提出的分子运动辅助运输方程。史密斯(R.M. Simmons,运动辅助细胞内颗粒运输模型,Biophysical Journal 80(2001)45-68。]。这些方程式以球坐标表示,并通过考虑与细丝结合的病毒颗粒运动的随机分量进行扩展。这种随机成分与负责与细丝结合的病毒颗粒运动的分子马达的随机性有关。利用变量分离的方法,获得了针对该问题的广义傅里叶级数解。该解决方案使用两个不同的本征函数正交集来表示通过扩散转运的游离病毒颗粒的浓度和通过驱动蛋白家族分子马达转运远离细胞核的与微管结合的病毒颗粒的浓度。病毒颗粒与微管之间的结合/分离动力学过程由一流的反应常数确定。这些导致两个病毒浓度之间的耦合。所获得的溶液在病毒感染的初始阶段模拟了病毒在细胞膜和细胞核之间的运输。

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