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首页> 外文期刊>Bulletin of Mathematical Biology >A “Trimer of Dimers”—Based Model for the Chemotactic Signal Transduction Network in Bacterial Chemotaxis
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A “Trimer of Dimers”—Based Model for the Chemotactic Signal Transduction Network in Bacterial Chemotaxis

机译:基于“二聚体三聚体”的细菌趋化性趋化信号转导网络模型

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The network that controls chemotaxis in Escherichia coli is one of the most completely characterized signal transduction systems to date. Receptor clustering accounts for characteristics such as high sensitivity, precise adaptation over a wide dynamic range of ligand concentrations, and robustness to variations in the amounts of intracellular proteins. To gain insights into the structure-function relationship of receptor clusters and understand the mechanism behind the high-performance signaling, we develop and analyze a model for a single trimer of dimers. This new model extends an earlier model (Spiro et al. in Proc. Natl. Acad. Sci. 94:7263–7268, 1997) to incorporate the recent experimental findings that the core structure of receptor clusters is the trimer of receptor dimers. We show that the model can reproduce most of the experimentally-observed behaviors, including excitation, adaptation, high sensitivity, and robustness to parameter variations. In addition, the model makes a number of new predictions as to how the adaptation time varies with the expression level of various proteins involved in signal transduction. Our results provide a more mechanistically-based description of the structure-function relationship for the signaling system, and show the key role of the interaction among dimer members of the trimer in the chemotactic response of cells.
机译:控制大肠杆菌趋化性的网络是迄今为止最完整的信号转导系统之一。受体聚类说明了诸如高灵敏度,在广泛的配体浓度动态范围内精确适应以及对细胞内蛋白质量变化的鲁棒性等特征。为了深入了解受体簇的结构-功能关系并了解高性能信号转导的机制,我们开发和分析了单个二聚体三聚体的模型。该新模型扩展了先前的模型(Spiro等人,Proc。Natl。Acad。Sci。94:7263-7268,1997),纳入了最近的实验发现,即受体簇的核心结构是受体二聚体的三聚体。我们表明,该模型可以重现大多数实验观察到的行为,包括激励,自适应,高灵敏度和对参数变化的鲁棒性。此外,该模型对适应时间如何随信号转导中涉及的各种蛋白质的表达水平变化做出了许多新的预测。我们的结果为信号系统的结构-功能关系提供了更为机械化的描述,并显示了三聚体二聚体成员之间相互作用在细胞趋化反应中的关键作用。

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