Sgro Allyson E, Schwab David J, Noorbakhsh Javad, Mestler Troy, Mehta Pankaj, Gregor Thomas
Joseph Henry Laboratories of Physics, Princeton University, Princeton, NJ, USA Lewis-Sigler Institute for Integrative Genomics, Princeton University, Princeton, NJ, USA
Joseph Henry Laboratories of Physics, Princeton University, Princeton, NJ, USA Lewis-Sigler Institute for Integrative Genomics, Princeton University, Princeton, NJ, USA.
Mol Syst Biol. 2015 Jan 23;11(1):779. doi: 10.15252/msb.20145352.
Collective behavior in cellular populations is coordinated by biochemical signaling networks within individual cells. Connecting the dynamics of these intracellular networks to the population phenomena they control poses a considerable challenge because of network complexity and our limited knowledge of kinetic parameters. However, from physical systems, we know that behavioral changes in the individual constituents of a collectively behaving system occur in a limited number of well-defined classes, and these can be described using simple models. Here, we apply such an approach to the emergence of collective oscillations in cellular populations of the social amoeba Dictyostelium discoideum. Through direct tests of our model with quantitative in vivo measurements of single-cell and population signaling dynamics, we show how a simple model can effectively describe a complex molecular signaling network at multiple size and temporal scales. The model predicts novel noise-driven single-cell and population-level signaling phenomena that we then experimentally observe. Our results suggest that like physical systems, collective behavior in biology may be universal and described using simple mathematical models.
细胞群体中的集体行为是由单个细胞内的生化信号网络协调的。由于网络的复杂性以及我们对动力学参数的有限了解,将这些细胞内网络的动态与它们所控制的群体现象联系起来是一项相当大的挑战。然而,从物理系统中我们知道,集体行为系统中个体成分的行为变化发生在有限数量的明确定义的类别中,并且可以使用简单模型来描述。在这里,我们将这种方法应用于社会变形虫盘基网柄菌细胞群体中集体振荡的出现。通过用单细胞和群体信号动态的定量体内测量对我们的模型进行直接测试,我们展示了一个简单模型如何能够在多个大小和时间尺度上有效地描述一个复杂的分子信号网络。该模型预测了我们随后通过实验观察到的新型噪声驱动的单细胞和群体水平的信号现象。我们的结果表明,与物理系统一样,生物学中的集体行为可能是普遍的,并且可以用简单的数学模型来描述。