Owen M R, Sherratt J A
Department of Mathematics, University of Utah, Salt Lake City 84112, USA.
Math Biosci. 1998 Nov;153(2):125-50. doi: 10.1016/s0025-5564(98)10034-2.
Juxtacrine signalling is emerging as an important means of cellular communication, in which signalling molecules anchored in the cell membrane bind to and activate receptors on the surface of immediately neighbouring cells. We develop a mathematical model to describe this process, consisting of a coupled system of ordinary differential equations, with one identical set of equations for each cell. We use a generic representation of ligand-receptor binding, and assume that binding exerts a positive feedback on the secretion of new receptors and ligand. By linearising the model equations about a homogeneous equilibrium, we categorize the range and extent of signal patterns as a function of parameters. We show in particular that the signal decay rate depends crucially on the form of the feedback functions, and can be made arbitrarily small by appropriate choice of feedback, for any set of kinetic parameters. As a specific example, we consider the application of our model to juxtacrine signalling by TGF alpha in response to epidermal wounding. We demonstrate that all the predictions of our linear analysis are confirmed in numerical simulations of the non-linear system, and discuss the implications for the healing response.
旁分泌信号传导正逐渐成为细胞通讯的一种重要方式,在这种方式中,锚定在细胞膜上的信号分子与紧邻细胞表面的受体结合并激活受体。我们开发了一个数学模型来描述这一过程,该模型由常微分方程的耦合系统组成,每个细胞都有一组相同的方程。我们使用配体-受体结合的通用表示,并假设结合对新受体和配体的分泌产生正反馈。通过在均匀平衡附近对模型方程进行线性化,我们将信号模式的范围和程度作为参数的函数进行分类。我们特别表明,信号衰减率关键取决于反馈函数的形式,并且对于任何一组动力学参数,通过适当选择反馈可以使其任意小。作为一个具体例子,我们考虑将我们的模型应用于TGFα对表皮损伤的旁分泌信号传导。我们证明,我们线性分析的所有预测在非线性系统的数值模拟中都得到了证实,并讨论了其对愈合反应 的影响。