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Dynamic DNA-toolbox reaction circuits: A walkthrough

机译:动态DNA工具箱反应回路:演练

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In living organisms, the integration of signals from the environment and the molecular computing leading to a cellular response are orchestrated by Gene Regulatory Networks (GRN). However, the molecular complexity of in vivo genetic regulation makes it next to impossible to describe in a quantitative manner. Reproducing, in vitro, reaction networks that could mimic the architecture and behavior of in vivo networks, yet lend themselves to mathematical modeling, represents a useful strategy to understand, and even predict, the function of GRN. In this paper, we define a set of in vitro, DNA-based molecular transformations that can be linked to each other in such a way that the product of one transformation can activate or inhibit the production of one or several other DNA compounds. Therefore, these reactions can be wired in arbitrary networks. This approach provides an experimental way to reproduce the dynamic features of genetic regulation in a test tube. We introduce the rules to design the necessary DNA species, a guide to implement the chemical reactions and ways to optimize the experimental conditions. We finally show how this framework, or "DNA toolbox", can be used to generate an inversion module, though many other behaviors, including oscillators and bistable switches, can be implemented.
机译:在生物体内,来自环境的信号和导致细胞反应的分子计算的整合是由基因调控网络(GRN)精心策划的。然而,体内遗传调控的分子复杂性使得几乎不可能以定量方式进行描述。可以模仿体内网络的结构和行为,但又适合进行数学建模的体外反应网络,代表了一种理解甚至预测GRN功能的有用策略。在本文中,我们定义了一组基于DNA的体外分子转化,它们可以以一种转化的产物可以激活或抑制一种或几种其他DNA化合物的产生的方式相互连接。因此,这些反应可以在任意网络中进行。这种方法提供了一种实验方法来重现试管中遗传调控的动态特征。我们介绍了设计必要的DNA种类的规则,实施化学反应的指南以及优化实验条件的方法。最后,我们将展示如何使用此框架或“ DNA工具箱”来生成一个反转模块,尽管可以实现许多其他行为,包括振荡器和双稳态开关。

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