The Design of a Genetic Muller C-Element

Nam-Phuong D. Nguyen, Hiroyuki Kuwahara, C. Myers, J. Keener
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引用次数: 24

Abstract

Synthetic biology uses engineering principles to design circuits out of genetic materials that are inserted into bacteria to perform various tasks. While synthetic combinational Boolean logic gates have been constructed, there are many open issues in the design of sequential logic gates. One such gate common in most asynchronous circuits is the Muller C-element, which is used to synchronize multiple independent processes. This paper proposes a novel design for a genetic Muller C-element using transcriptional regulatory elements. The design of a genetic Muller C-element enables the construction of virtually any asynchronous circuit from genetic material. There are, however, many issues that complicate designs with genetic materials. These complications result in modifications being required to the normal digital design procedure. This paper presents two designs that are logically equivalent to a Muller C-element. Mathematical analysis and stochastic simulation, however, show that only one functions reliably.
遗传Muller c -元的设计
合成生物学利用工程原理设计遗传物质的电路,将其插入细菌中以执行各种任务。虽然合成组合布尔逻辑门已经被构造出来,但是顺序逻辑门的设计还存在许多问题。在大多数异步电路中常见的一种门是Muller c元件,用于同步多个独立进程。本文提出了一种利用转录调控元件设计遗传Muller c元件的新方法。遗传穆勒c元件的设计使几乎任何异步电路的遗传物质的建设。然而,有许多问题使遗传材料的设计复杂化。这些复杂性导致需要对正常的数字设计过程进行修改。本文提出了两种逻辑上等价于Muller c元的设计。然而,数学分析和随机模拟表明,只有一个函数是可靠的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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