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Adapt locally and act globally: strategy to maintain high chemoreceptor sensitivity in complex environments

机译:本地适应和全球行动:在复杂环境中维持高化学感受器敏感性的策略

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摘要

In bacterial chemotaxis, several types of ligand-specific receptors form mixed clusters, wherein receptor–receptor interactions lead to signal amplification and integration. However, it remains unclear how a mixed receptor cluster adapts to individual stimuli and whether it can differentiate between different types of ligands. Here, we combine theoretical modeling with experiments to reveal the adaptation dynamics of the mixed chemoreceptor cluster in Escherichia coli. We show that adaptation occurs locally and is ligand-specific: only the receptor that binds the external ligand changes its methylation level when the system adapts, whereas other types of receptors change methylation levels transiently. Permanent methylation crosstalk occurs when the system fails to adapt accurately. This local adaptation mechanism enables cells to differentiate individual stimuli by encoding them into the methylation levels of corresponding types of chemoreceptors. It tunes each receptor to its most responsive state to maintain high sensitivity in complex environments and prevents saturation of the cluster by one signal.
机译:在细菌趋化性中,几种类型的配体特异性受体形成混合簇,其中受体与受体的相互作用导致信号放大和整合。但是,尚不清楚混合受体簇如何适应个体刺激以及它是否可以区分不同类型的配体。在这里,我们将理论建模与实验相结合,以揭示混合化学感受器簇在大肠杆菌中的适应动力学。我们表明适应发生在局部并且是配体特异性的:只有当系统适应时,与外部配体结合的受体才会改变其甲基化水平,而其他类型的受体会瞬间改变甲基化水平。当系统无法准确适应时,就会发生永久性甲基化串扰。这种局部适应机制使细胞能够通过将其编码为相应类型化学感受器的甲基化水平来区分单个刺激。它可以将每个受体调节到最敏感的状态,以在复杂的环境中保持高灵敏度,并防止一个信号使簇饱和。

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