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首页> 外文期刊>Biotechnology Journal: Healthcare,Nutrition,Technology >Multiplexing and demultiplexing logic functions for computing signal processing tasks in synthetic biology
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Multiplexing and demultiplexing logic functions for computing signal processing tasks in synthetic biology

机译:用于合成生物学中信号处理任务计算的逻辑复用和解复用功能

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Building biological devices to perform computational and signal processing tasks is one of the main research issues in synthetic biology. Herein, two modular biological systems that could mimic multiplexing and demultiplexing logic functions are proposed and discussed. These devices, called multiplexer (mux) and demultiplexer (demux), respectively, have a remarkable importance in electronic, telecommunication, and signal processing systems and, similarly, they could play a crucial role if implemented in a living organism, such as Escherichia coll. BioBrick standard parts were used to design mux and demux and to construct two genetic circuits that could carry out the desired tasks. A modular approach, mimicking basic logic gates (AND, OR, and NOT) with pro-tein/autoinducer or protein/DNA interactions and interconnecting them to create the final circuits, was adopted. A mathematical model of the designed gene networks was defined and simulations performed to validate the expected behavior of the systems. In addition, circuit subparts were tested in vivo and the results used to determine some of the parameters of the mathematical model. According to both the experimental and simulated results, guidelines for future final-ization of mux and demux are provided.
机译:建立生物装置以执行计算和信号处理任务是合成生物学的主要研究问题之一。在此,提出并讨论了两个可以模拟复用和解复用逻辑功能的模块化生物系统。这些设备分别称为多路复用器(mux)和多路分解器(demux),在电子,电信和信号处理系统中具有显着重要性,并且类似地,如果在诸如埃希氏大肠杆菌(Escherichia coll)的活生物体中实施,它们可能会发挥关键作用。 BioBrick标准零件用于设计多路复用器和多路分配器,并构建两个可以执行所需任务的遗传回路。采用了一种模块化方法,该方法通过蛋白质/自动诱导物或蛋白质/ DNA相互作用模拟基本逻辑门(AND,OR和NOT),并将它们互连以创建最终电路。定义了设计基因网络的数学模型,并进行了仿真以验证系统的预期行为。此外,还对电路子部分进行了体内测试,并将结果用于确定数学模型的某些参数。根据实验和模拟结果,提供了将来对多路复用器和多路分配器进行最终确定的指南。

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