Cowan Ann E, Moraru Ion I, Schaff James C, Slepchenko Boris M, Loew Leslie M
R D Berlin Center for Cell Analysis and Modeling, University of Connecticut Heath Center, Farmington, CT, USA.
Methods Cell Biol. 2012;110:195-221. doi: 10.1016/B978-0-12-388403-9.00008-4.
The shape of a cell, the sizes of subcellular compartments, and the spatial distribution of molecules within the cytoplasm can all control how molecules interact to produce a cellular behavior. This chapter describes how these spatial features can be included in mechanistic mathematical models of cell signaling. The Virtual Cell computational modeling and simulation software is used to illustrate the considerations required to build a spatial model. An explanation of how to appropriately choose between physical formulations that implicitly or explicitly account for cell geometry and between deterministic versus stochastic formulations for molecular dynamics is provided, along with a discussion of their respective strengths and weaknesses. As a first step toward constructing a spatial model, the geometry needs to be specified and associated with the molecules, reactions, and membrane flux processes of the network. Initial conditions, diffusion coefficients, velocities, and boundary conditions complete the specifications required to define the mathematics of the model. The numerical methods used to solve reaction-diffusion problems both deterministically and stochastically are then described and some guidance is provided in how to set up and run simulations. A study of cAMP signaling in neurons ends the chapter, providing an example of the insights that can be gained in interpreting experimental results through the application of spatial modeling.
细胞的形状、亚细胞区室的大小以及细胞质内分子的空间分布,都能够控制分子间如何相互作用以产生细胞行为。本章描述了如何将这些空间特征纳入细胞信号传导的机械数学模型。使用虚拟细胞计算建模与仿真软件来说明构建空间模型所需考虑的因素。文中解释了如何在隐式或显式考虑细胞几何形状的物理公式之间,以及在分子动力学的确定性与随机性公式之间进行恰当选择,并讨论了它们各自的优缺点。作为构建空间模型的第一步,需要指定几何形状,并将其与网络中的分子、反应及膜通量过程相关联。初始条件、扩散系数、速度和边界条件完善了定义模型数学所需的规范。接着描述了用于确定性和随机性求解反应扩散问题的数值方法,并提供了一些关于如何设置和运行模拟的指导。本章最后对神经元中的cAMP信号传导进行了研究,给出了一个通过应用空间建模来解释实验结果可获得的见解的示例。