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对表皮生长因子受体(ErbB)家族磷酸化动力学响应转化生长因子α和神经调节蛋白的计算建模表明了磷酸酶活性的空间区室化。

Computational modelling of ErbB family phosphorylation dynamics in response to transforming growth factor alpha and heregulin indicates spatial compartmentation of phosphatase activity.

作者信息

Hendriks B S, Cook J, Burke J M, Beusmans J M, Lauffenburger D A, de Graaf D

机构信息

Pathways Capability, AstraZenica R&D Boston, Waltham, MA 02451, USA.

出版信息

Syst Biol (Stevenage). 2006 Jan;153(1):22-33. doi: 10.1049/ip-syb:20050057.

Abstract

Members of the ErbB receptor family are associated with several cancers and appear to be providing useful targets for pharmacological therapeutics for tumours of the lung and breast. Further improvements of these therapies may be guided by a quantitative, dynamic integrative systems understanding of the complexities of ErbB dimerisation, trafficking and activation, for it is these complexities that render difficult intuiting how perturbations such as drug intervention will affect ErbB signalling activities. Towards this goal, we have developed a computational model implementing commonly accepted principles governing ErbB receptor interaction, trafficking, phosphorylation and dephosphorylation. Using this model, we are able to investigate several hypotheses regarding the compartmental localisation of dephosphorylation. Model results applied to experimental data on ErbB 1, ErbB2 and ErbB3 phosphorylation in H292 human lung carcinoma cells support a hypothesis that key dephosphorylation activity for these receptors occurs largely in an intracellular, endosomal compartment rather than at the cell surface plasma membrane. Thus, the endocytic trafficking-related compartmentalisation of dephosphorylation may define a critical aspect of the ErbB signalling response to ligand.

摘要

表皮生长因子受体(ErbB)家族成员与多种癌症相关,似乎为肺癌和乳腺癌的药物治疗提供了有用的靶点。对这些疗法的进一步改进可能需要对ErbB二聚化、转运和激活的复杂性有一个定量的、动态的综合系统理解,因为正是这些复杂性使得难以直观地了解诸如药物干预等扰动将如何影响ErbB信号传导活动。为了实现这一目标,我们开发了一个计算模型,该模型应用了关于ErbB受体相互作用、转运、磷酸化和去磷酸化的公认原则。使用这个模型,我们能够研究几个关于去磷酸化的区室定位的假设。将模型结果应用于H292人肺癌细胞中ErbB 1、ErbB2和ErbB3磷酸化的实验数据,支持了这样一个假设,即这些受体的关键去磷酸化活性主要发生在细胞内的内体区室,而不是在细胞表面的质膜上。因此,与内吞转运相关的去磷酸化区室化可能定义了ErbB信号对配体反应的一个关键方面。

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