Neves Susana R, Tsokas Panayiotis, Sarkar Anamika, Grace Elizabeth A, Rangamani Padmini, Taubenfeld Stephen M, Alberini Cristina M, Schaff James C, Blitzer Robert D, Moraru Ion I, Iyengar Ravi
Department of Pharmacology and Systems Therapeutics, Mount Sinai School of Medicine, One Gustave L. Levy Place, Box 1215, New York, NY 10029, USA.
Cell. 2008 May 16;133(4):666-80. doi: 10.1016/j.cell.2008.04.025.
The role of cell size and shape in controlling local intracellular signaling reactions, and how this spatial information originates and is propagated, is not well understood. We have used partial differential equations to model the flow of spatial information from the beta-adrenergic receptor to MAPK1,2 through the cAMP/PKA/B-Raf/MAPK1,2 network in neurons using real geometries. The numerical simulations indicated that cell shape controls the dynamics of local biochemical activity of signal-modulated negative regulators, such as phosphodiesterases and protein phosphatases within regulatory loops to determine the size of microdomains of activated signaling components. The model prediction that negative regulators control the flow of spatial information to downstream components was verified experimentally in rat hippocampal slices. These results suggest a mechanism by which cellular geometry, the presence of regulatory loops with negative regulators, and key reaction rates all together control spatial information transfer and microdomain characteristics within cells.
细胞大小和形状在控制局部细胞内信号反应中的作用,以及这种空间信息如何产生和传播,目前还不太清楚。我们使用偏微分方程,通过真实的几何形状,对神经元中从β-肾上腺素能受体经cAMP/PKA/B-Raf/MAPK1,2网络到MAPK1,2的空间信息流进行建模。数值模拟表明,细胞形状控制信号调节负调控因子(如调节环内的磷酸二酯酶和蛋白磷酸酶)的局部生化活性动态,以确定激活信号成分微结构域的大小。负调控因子控制空间信息向下游成分流动的模型预测在大鼠海马切片中得到了实验验证。这些结果提示了一种机制,通过该机制,细胞几何形状、带有负调控因子的调节环的存在以及关键反应速率共同控制细胞内的空间信息传递和微结构域特征。