论文标题

通用化学松弛振荡器的设计以控制分子计算

Design of universal chemical relaxation oscillator to control molecular computation

论文作者

Shi, Xiaopeng, Gao, Chuanhou

论文摘要

将有效的命令操作嵌入生化系统一直是合成生物学的研究重点。关键问题之一是如何对充当计算单位的化学反应进行测序。答案是设计化学振荡器,该化学振荡器充当时钟信号,可以打开或关闭相应的反应。以前的一些工作提到了化学振荡的使用。但是,使用的模型要么缺乏对振荡的机制和特性的系统分析,要么太复杂了,无法在实践中解决。我们的工作总结了设计化学振荡器的通用过程,包括生成健壮的振荡物种,从这些物种中构建时钟信号,并设置终止成分以最终结束整个反应模块的环。我们在普通微分方程的背景下分析了所提出的振荡器模型的动态特性,并讨论了如何确定我们想要的效果的参数。我们的模型对应于基于质量运动动力学的抽象化学反应,这些反应预计将在DNA链位移级联反应中实施到化学中。我们对订购化学反应模块的考虑有助于将更复杂的计算嵌入到生化环境中。

Embedding efficient command operation into biochemical system has always been a research focus in synthetic biology. One of the key problems is how to sequence the chemical reactions that act as units of computation. The answer is to design chemical oscillator, a component that acts as a clock signal to turn corresponding reaction on or off. Some previous work mentioned the use of chemical oscillations. However, the models used either lack a systematic analysis of the mechanism and properties of oscillation, or are too complex to be tackled with in practice. Our work summarizes the universal process for designing chemical oscillators, including generating robust oscillatory species, constructing clock signals from these species, and setting up termination component to eventually end the loop of whole reaction modules. We analyze the dynamic properties of the proposed oscillator model in the context of ordinary differential equations, and discuss how to determine parameters for the effect we want in detail. Our model corresponds to abstract chemical reactions based on mass-action kinetics which are expected to be implemented into chemistry with the help of DNA strand displacement cascades. Our consideration of ordering chemical reaction modules helps advance the embedding of more complex calculations into biochemical environments.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源