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首页> 外文期刊>European Journal of Control >Engineering Principles in Bio-molecular Systems: From Retroactivity to Modularity
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Engineering Principles in Bio-molecular Systems: From Retroactivity to Modularity

机译:生物分子系统中的工程原理:从追溯性到模块化

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Modularity plays a fundamental role in the prediction of the behavior of a system from the behavior of its components, guaranteeing that the properties of individual components do not change upon interconnection. Just as electrical, hydraulic, and other physical systems often do not display modularity, nor do many biochemical systems, and specifically, genetic, and signaling networks. Here, we study the effect of interconnections on the input/output dynamic characteristics of tran-scriptional components, focusing on a concept, which we call "retroactivity" that plays a role similar to impedance in electrical circuits. In order to attenuate the effect of retroactivity on a system dynamics, we propose to design insulation devices based on a feedback mechanism inspired by the design of amplifiers in electronics. In particular, we introduce a bio-molecular realization of an insulation device based on phosphorylation.
机译:模块化在根据系统组件的行为来预测系统行为方面起着基本作用,从而确保了各个组件的属性在互连时不会发生变化。正如电气,液压和其他物理系统通常不显示模块性,许多生化系统(尤其是遗传和信号网络)也不显示模块性。在这里,我们研究互连对转录成分的输入/输出动态特性的影响,重点是一个概念,我们称之为“追溯性”,其作用类似于电路中的阻抗。为了减弱追溯性对系统动力学的影响,我们建议基于受电子设备放大器设计启发的反馈机制来设计绝缘设备。特别地,我们介绍了基于磷酸化的绝缘装置的生物分子实现。

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