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A biomolecular proportional integral controller based on feedback regulations of protein level and activity

机译:基于蛋白质水平和活性反馈规律的生物分子比例积分控制器

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Homeostasis is the capacity of living organisms to keep internal conditions regulated at a constant level, despite environmental fluctuations. Integral feedback control is known to play a key role in this behaviour. Here, I show that a feedback system involving transcriptional and post-translational regulations of the same executor protein acts as a proportional integral (PI) controller, leading to enhanced transient performances in comparison with a classical integral loop. Such a biomolecular controller—which I call a level and activity-PI controller (LA-PI)—is involved in the regulation of ammonium uptake by Escherichia coli through the transporter AmtB. The P II molecules, which reflect the nitrogen status of the cell, inhibit both the production of AmtB and its activity (via the NtrB-NtrC system and the formation of a complex with GlnK, respectively). Other examples of LA-PI controller include copper and zinc transporters, and the redox regulation in photosynthesis. This scheme has thus emerged through evolution in many biological systems, surely because of the benefits it offers in terms of performances (rapid and perfect adaptation) and economy (protein production according to needs).
机译:稳态是指尽管环境波动,生物仍能将内部条件保持在恒定水平的能力。众所周知,积分反馈控制在这种行为中起着关键作用。在这里,我表明涉及同一执行蛋白的转录和翻译后调控的反馈系统可作为比例积分(PI)控制器,与经典积分环相比,可增强瞬态性能。这种生物分子控制器(我称为水平和活性PI控制器(LA-PI))参与了大肠杆菌通过转运蛋白AmtB吸收铵的调控。反映细胞氮状态的P II 分子抑制AmtB的产生及其活性(分别通过NtrB-NtrC系统和与GlnK形成复合物)。 LA-PI控制器的其他示例包括铜和锌转运蛋白,以及光合作用中的氧化还原调节。因此,该方案已经通过许多生物系统的进化而出现,这肯定是因为它在性能(快速和完美的适应性)和经济(根据需求生产蛋白质)方面提供了好处。

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