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Robustness analysis of the E.coli chemosensory system to perturbations in chemoattractant concentrations

机译:大肠杆菌化学感觉系统对化学引诱剂浓度扰动的鲁棒性分析

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Motivation: Cells of Escherichia coli sense and move toward chemical attractants. This is done through an intricate sensory system that eventually directs the movements of flagellae which regulate the 'runs' and 'tumbles' of the cells. Under realistic conditions, chemical stimuli often fluctuate due to noise from the environment. The effect of noise on the chemosensory system has been investigated here through the sensitivity coefficients of the concentrations of four key proteins-the phosphorylated forms of CheA, CheB and CheY, and the FliM-CheY similar to P complex-that govern chemotactic motility. The letter P denotes phosphorylation. Results: All sensitivities increased with time and then stabilized. However, the four sets of sensitivities differed in their magnitudes and the durations of their transient phases before stabilization. CheA similar to P was the least sensitive and CheY similar to P the most sensitive. Moreover, while the sensitivities of CheA similar to P, CheB similar to P and CheY similar to P increased with chemoattractant concentration, that of the FliM complex decreased. These differences have been interpreted in terms of the mechanism of the chemosensory system and they have important implications for practical applications of chemotaxis.
机译:动机:大肠杆菌细胞感知并向化学引诱剂移动。这是通过复杂的感觉系统完成的,该系统最终指导鞭毛的运动,调节鞭毛的“游动”和“翻滚”。在现实条件下,化学刺激物经常由于环境噪声而波动。在这里,通过控制趋化运动性的四种关键蛋白(CheA,CheB和CheY的磷酸化形式以及类似于P复合物的FliM-CheY)浓度的敏感性系数,研究了噪声对化学感觉系统的影响。字母P表示磷酸化。结果:所有敏感性随时间增加,然后稳定。但是,这四组灵敏度在其大小和稳定之前的过渡阶段的持续时间方面有所不同。与P相似的CheA最不敏感,与P相似的CheY最敏感。此外,尽管化学趋化剂浓度增加了与P相似的CheA,与P相似的CheB和与P相似的CheY的敏感性,但FliM复合物的敏感性降低。这些差异已根据化学感应系统的机理进行了解释,它们对趋化性的实际应用具有重要意义。

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