合成生物学
计算机科学
重组酶
时序逻辑
逻辑门
编码(内存)
数字电子学
布尔电路
国家(计算机科学)
电子线路
逻辑族
计算机体系结构
逻辑综合
生物
计算生物学
程序设计语言
算法
工程类
人工智能
基因
遗传学
电气工程
重组
作者
Piro Siuti,John Yazbek,Timothy K. Lu
摘要
Logic and memory are essential functions of circuits that generate complex, state-dependent responses. Here we describe a strategy for efficiently assembling synthetic genetic circuits that use recombinases to implement Boolean logic functions with stable DNA-encoded memory of events. Application of this strategy allowed us to create all 16 two-input Boolean logic functions in living Escherichia coli cells without requiring cascades comprising multiple logic gates. We demonstrate long-term maintenance of memory for at least 90 cell generations and the ability to interrogate the states of these synthetic devices with fluorescent reporters and PCR. Using this approach we created two-bit digital-to-analog converters, which should be useful in biotechnology applications for encoding multiple stable gene expression outputs using transient inputs of inducers. We envision that this integrated logic and memory system will enable the implementation of complex cellular state machines, behaviors and pathways for therapeutic, diagnostic and basic science applications.
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