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Integrated experimental and model-based analysis reveals the spatial aspects of EGFR activation dynamics

机译:基于综合的实验和模型的分析揭示了EGFR激活动力学的空间方面

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摘要

The epidermal growth factor receptor (EGFR) belongs to the ErbB family of receptor tyrosine kinases, and controls a diverse set of cellular responses relevant to development and tumorigenesis. ErbB activation is a complex process involving receptor-ligand binding, receptor dimerization, phosphorylation, and trafficking (internalization, recycling and degradation), which together dictate the spatio-temporal distribution of active receptors within the cell. The ability to predict this distribution, and elucidation of the factors regulating it, would help to establish a mechanistic link between ErbB expression levels and the cellular response. Towards this end, we constructed mathematical models to determine the contributions of receptor dimerization and phosphorylation to EGFR activation, and to examine the dependence of these processes on sub-cellular location. We collected experimental datasets for EGFR activation dynamics in human mammary epithelial cells, with the specific goal of model parameterization, and used the data to estimate parameters for several alternate models. Model-based analysis indicated that: 1) signal termination via receptor dephosphorylation in late endosomes, prior to degradation, is an important component of the response, 2) less than 40% of the receptors in the cell are phosphorylated at any given time, even at saturating ligand doses, and 3) receptor phosphorylation kinetics at the cell surface and early endosomes are comparable. We validated the last finding by measuring the EGFR dephosphorylation rates at various times following ligand addition both in whole cells and in endosomes using ELISAs and fluorescent imaging. Overall, our results provide important information on how EGFR phosphorylation levels are regulated within cells. This study demonstrates that an iterative cycle of experiments and modeling can be used to gain mechanistic insight regarding complex cell signaling networks.
机译:表皮生长因子受体(EGFR)属于受体酪氨酸激酶的ErbB家族,可控制与发育和肿瘤发生有关的多种细胞反应。 ErbB激活是一个复杂的过程,涉及受体-配体结合,受体二聚化,磷酸化和运输(内在化,再循环和降解),共同决定了细胞内活性受体的时空分布。预测这种分布的能力以及阐明调节其的因素,将有助于在ErbB表达水平与细胞反应之间建立机制联系。为此,我们构建了数学模型来确定受体二聚化和磷酸化对EGFR激活的贡献,并检查这些过程对亚细胞定位的依赖性。我们收集了人类乳腺上皮细胞中EGFR激活动力学的实验数据集,并以模型参数化为特定目标,并使用该数据估算了几种替代模型的参数。基于模型的分析表明:1)在降解之前,晚期内体通过受体去磷酸化终止信号是反应的重要组成部分; 2)在任何给定时间,甚至不到40%的细胞中的受体都会被磷酸化,即使在饱和配体剂量下,和3)在细胞表面和早期内体的受体磷酸化动力学是可比的。我们通过使用ELISA和荧光成像技术在全细胞和内体中添加配体后,在不同时间测量EGFR的去磷酸化率来验证最后的发现。总体而言,我们的结果提供了有关细胞内EGFR磷酸化水平如何调控的重要信息。这项研究表明,实验和建模的迭代循环可用于获取有关复杂细胞信号网络的机械原理。

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