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Employing a Mechanistic Model for the Mapk Pathway to Examine the Impact of Cellular all or None Behavior on Overall Tissue Response

机译:对Mapk通路采用机械模型来检查细胞全有或全无行为对整体组织反应的影响

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The mitogen activated protein kinase (MAPK) cascade is a three-tiered phosphorylation cascade that is ubiquitously expressed among eukaryotic cells. Its primary function is to propagate signals from cell surface receptors to various cytosolic and nuclear targets. Recent studies have demonstrated that the MAPK cascade exhibits an all-or-none response to graded stimuli. This study quantitatively investigates MAPK activation in Xenopus oocytes using both empirical and biologically-based mechanistic models. Empirical models can represent overall tissue MAPK activation in the oocytes. However, these models lack description of key biological processes and therefore give no insight into whether the cellular response occurs in a graded or all-or-none fashion. To examine the propagation of cellular MAPK all-or-none activation to overall tissue response, mechanistic models in conjunction with Monte Carlo simulations are employed. An adequate description of the dose response relationship of MAPK activation in Xenopus oocytes is achieved. Furthermore, application of these mechanistic models revealed that the initial receptor-ligand binding rate contributes to the cells' ability to exhibit an all-or-none MAPK activation response, while downstream activation parameters contribute more to the magnitude of activation. These mechanistic models enable us to identify key biological events which quantitatively impact the shape of the dose response curve, especially at low environmentally relevant doses.
机译:有丝分裂原激活的蛋白激酶(MAPK)级联是一个三层磷酸化级联,在真核细胞中普遍表达。它的主要功能是将信号从细胞表面受体传播到各种胞质和核靶标。最近的研究表明,MAPK级联反应显示出对分级刺激的全无反应。这项研究定量使用经验和基于生物学的机制模型调查非洲爪蟾卵母细胞中的MAPK激活。经验模型可以代表卵母细胞中总体组织MAPK活化。但是,这些模型缺乏关键生物学过程的描述,因此无法深入了解细胞反应是以分级还是全无的方式发生。为了检查细胞MAPK全激活或全激活激活对整个组织反应的传播,采用了结合蒙特卡罗模拟的力学模型。对非洲爪蟾卵母细胞中MAPK激活的剂量反应关系的充分描述得以实现。此外,这些机制模型的应用表明,初始受体-配体结合率有助于细胞表现出全无的MAPK活化反应的能力,而下游活化参数则对活化程度的贡献更大。这些机制模型使我们能够识别关键的生物学事件,这些事件定量地影响剂量反应曲线的形状,尤其是在低环境相关剂量下。

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