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首页> 外文期刊>International Journal of Molecular Sciences >Excitation and Adaptation in Bacteria–a Model Signal Transduction System that Controls Taxis and Spatial Pattern Formation
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Excitation and Adaptation in Bacteria–a Model Signal Transduction System that Controls Taxis and Spatial Pattern Formation

机译:细菌的激发和适应-控制出租车和空间格局形成的模型信号转导系统

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摘要

The machinery for transduction of chemotactic stimuli in the bacterium E. coli is one of the most completely characterized signal transduction systems, and because of its relative simplicity, quantitative analysis of this system is possible. Here we discuss models which reproduce many of the important behaviors of the system. The important characteristics of the signal transduction system are excitation and adaptation, and the latter implies that the transduction system can function as a “derivative sensor” with respect to the ligand concentration in that the DC component of a signal is ultimately ignored if it is not too large. This temporal sensing mechanism provides the bacterium with a memory of its passage through spatially- or temporally-varying signal fields, and adaptation is essential for successful chemotaxis. We also discuss some of the spatial patterns observed in populations and indicate how cell-level behavior can be embedded in population-level descriptions.
机译:在细菌大肠杆菌中转导趋化性刺激的机制是最完整表征的信号转导系统之一,由于其相对简单,因此可以对该系统进行定量分析。在这里,我们讨论重现系统许多重要行为的模型。信号转导系统的重要特征是激发和适应,后者暗示着该转导系统可作为配体浓度的“导数传感器”,因为如果没有,信号的直流成分最终会被忽略。太大了。这种时间感应机制为细菌提供了通过空间或时间变化的信号场的通道的记忆,而适应对于成功的趋化性至关重要。我们还将讨论在种群中观察到的一些空间格局,并指出如何将细胞水平的行为嵌入种群水平的描述中。

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