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Cellular Signaling Circuits Interfaced with SyntheticPost-Translational Negating Boolean Logic Devices

机译:与合成器接口的蜂窝信号电路翻译后取反布尔逻辑设备

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摘要

A negating functionality is fundamental to information processing of logic circuits within cells and computers. Aiming to adapt unutilized electronic concepts to the interrogation of signaling circuits in cells, we first took a bottom-up strategy whereby we created protein-based devices that perform negating Boolean logic operations such as NOT, NOR, NAND, and N-IMPLY. These devices function in living cells within a minute by precisely commanding the localization of an activator molecule among three subcellular spaces. We networked these synthetic gates to an endogenous signaling circuit and devised a physiological output. In search of logic functions in signal transduction, we next took a top–down approach and computationally screened 108 signaling pathways to identify commonalities and differences between these biological pathways and electronic circuits. This combination of synthetic and systems approaches will guide us in developing foundations for deconstruction of intricate cell signaling, as well as construction of biomolecular computers.
机译:否定功能对于单元和计算机内逻辑电路的信息处理至关重要。为了使未利用的电子概念适应于查询细胞中的信号传导电路,我们首先采取了一种自下而上的策略,即我们创建了基于蛋白质的设备来执行否定布尔逻辑运算,例如NOT,NOR,NAND和N-IMPLY。这些设备通过精确命令活化剂分子在三个亚细胞空间之间的定位,在一分钟内在活细胞中发挥作用。我们将这些合成门连接到内源性信号回路,并设计出生理输出。为了寻找信号转导中的逻辑功能,我们接下来采用自上而下的方法,并通过计算筛选了108条信号通路,以识别这些生物学通路与电子电路之间的共性和差异。合成方法和系统方法的结合将指导我们开发复杂细胞信号解构的基础,以及生物分子计算机的构建。

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