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首页> 外文期刊>Systems and Control Letters >Positive feedback may cause the biphasic response observed in the chemoattractant-induced response of Dictyostelium cells
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Positive feedback may cause the biphasic response observed in the chemoattractant-induced response of Dictyostelium cells

机译:阳性反馈可能会导致双歧杆菌在化学吸引剂诱导的反应中观察到双相反应

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After stimulation by chemoattractant, Dictyostelium cells exhibit a rapid response. The concentrations of several intracellular proteins rise rapidly reaching their maximum levels approximately 5-10 s, after which they return to prestimulus levels. This response, which is found in many other chemotaxing cells, is an example of a step disturbance rejection, a process known to biologists as perfect adaptation. Unlike other cells, however, the initial first peak observed in the chemoattractant-induced response of Dictyostelium cells is then followed by a slower, smaller phase peaking approximately 1-2 min after the stimulus. Until recently, the nature of this biphasic response has been poorly understood. Moreover, the origin for the second phase is unknown. In this paper we conjecture the existence of a feedback path between the response and stimulus. Using a mathematical model of the chemoattractant-induced response in cells, and standard tools from control engineering, we show that positive feedback may elicit this second peak. (c) 2005 Elsevier B.V. All rights reserved.
机译:经趋化因子刺激后,盘基网状细胞表现出快速反应。几种细胞内蛋白质的浓度迅速升高,达到最高水平约5-10 s,此后它们又恢复到刺激前水平。在其他许多趋化细胞中发现的这种反应是阶跃干扰抑制的一个例子,生物学家将其称为完美适应。但是,与其他细胞不同的是,在诱变剂介导的Dictyostelium细胞中观察到的最初的第一个峰值随后是一个较慢的较小相位,在刺激后约1-2分钟达到峰值。直到最近,人们对这种双相反应的性质还知之甚少。此外,第二阶段的起源是未知的。在本文中,我们推测响应和刺激之间存在反馈路径。使用化学趋化剂诱导的细胞反应的数学模型,以及来自控制工程的标准工具,我们显示出正反馈可能会引发第二个高峰。 (c)2005 Elsevier B.V.保留所有权利。

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