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Signal propagation of the MAPK cascade in Xenopus oocytes: Role of bistability and ultrasensitivity for a mixed problem

机译:MAPK级联在非洲爪蟾卵母细胞中的信号传播:双稳态和超敏感性在混合问题中的作用

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摘要

The MAPK signaling cascade is nowadays understood as a network module highly conserved across species. Its main function is to transfer a signal arriving at the plasma membrane to the cellular interior. Current understanding of 'how' this is achieved involves the notions of ultrasensitivity and bistability which relate to the nonlinear dynamics of the biochemical network, ignoring spatial aspects. Much less, indeed, is so far known about the propagation of the signal through the cytoplasm. In this work we formulate, starting from a Michaelis-Menten model for the MAPK cascade in Xenopus oocytes, a reaction-diffusion model of the cascade. We study this model in one space dimension. Basing ourselves on previous general results on reaction diffusion models, we particularly study for our model the conditions for signal propagation. We show that the existence of a propagating front depends sensitively on the initial and boundary conditions at the plasma membrane. Possible biological consequences of this finding are discussed.
机译:如今,MAPK信号级联被理解为跨物种高度保守的网络模块。它的主要功能是将到达质膜的信号传输到细胞内部。当前对“如何”实现的理解涉及超敏感性和双稳态的概念,这些概念与生化网络的非线性动力学有关,而忽略了空间方面。实际上,到目前为止,关于信号通过细胞质传播的了解还很少。在这项工作中,我们从非洲爪蟾卵母细胞中MAPK级联反应的Michaelis-Menten模型开始,建立了该级联反应扩散模型。我们在一个空间维度上研究此模型。基于先前在反应扩散模型上的一般结果,我们特别为模型研究信号传播的条件。我们表明,传播前沿的存在敏感地取决于质膜的初始和边界条件。讨论了这一发现可能的生物学后果。

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