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首页> 外文期刊>BioSystems >Computational simulation of a gene regulatory network implementing an extendable synchronous single-input delay flip-flop
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Computational simulation of a gene regulatory network implementing an extendable synchronous single-input delay flip-flop

机译:实现可扩展同步单输入延迟触发器的基因调控网络的计算仿真

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摘要

We present a detailed and extendable design of the first synchronous single-input delay flip-flop implemented as a gene regulatory network in Escherichia coli (E. coli). The device, which we call the BioD, has one data input (transacting RNA), one clock input (far-red light) and an output that reports the state of the device using green fluorescent protein (GFP). The proposed design builds on Gardner's toggle switch, to provide a more sophisticated device that can be synchronized with other devices within the same cell, and which requires only one data input. We provide a mathematical model of the system and simulation results. The results show that the device behaves in line with desired functionality. Further, we discuss the constraints of the design, which pertain to ranges of parameter values. The BioD is extended via the addition of an update function and input and output interfaces. The result is the BioFSM, which constitutes a synchronous and modular finite state machine, which uses an update function to change its state, stored in the BioD. The BioFSM uses its input and output interfaces for inter-cellular communications. This opens the door to the design of a circular cellular automata (the BioCell), which is envisioned as a number of communicating E. coli colonies, each made of clones of one BioFSM.
机译:我们介绍了在大肠杆菌(E. coli)中作为基因调节网络实现的第一个同步单输入延迟触发器的详细和可扩展设计。该设备(我们称为BioD)具有一个数据输入(交易RNA),一个时钟输入(远红光)和使用绿色荧光蛋白(GFP)报告设备状态的输出。拟议的设计基于Gardner的拨动开关,以提供一种更复杂的设备,该设备可以与同一单元中的其他设备同步,并且仅需要一个数据输入。我们提供了系统的数学模型和仿真结果。结果表明该设备的行为符合所需的功能。此外,我们讨论了与参数值范围有关的设计约束。通过添加更新功能以及输入和输出接口来扩展BioD。结果就是BioFSM,它构成了一个同步的模块化有限状态机,它使用更新功能更改其状态,并存储在BioD中。 BioFSM使用其输入和输出接口进行细胞间通信。这为圆形细胞自动机(BioCell)的设计打开了大门,可以设想它是许多通信的大肠杆菌菌落,每个菌落均由一个BioFSM的克隆制成。

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