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Continuous variables logic via coupled automata using a DNAzyme cascade with feedback

机译:使用耦合的DNAzyme级联通过耦合自动机的连续变量逻辑

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摘要

The concentration of molecules can be changed by chemical reactions and thereby offer a continuous readout. Yet computer architecture is cast in textbooks in terms of binary valued, Boolean variables. To enable reactive chemical systems to compute we show how, using the Cox interpretation of probability theory, one can transcribe the equations of chemical kinetics as a sequence of coupled logic gates operating on continuous variables. It is discussed how the distinct chemical identity of a molecule allows us to create a common language for chemical kinetics and Boolean logic. Specifically, the logic AND operation is shown to be equivalent to a bimolecular process. The logic XOR operation represents chemical processes that take place concurrently. The values of the rate constants enter the logic scheme as inputs. By designing a reaction scheme with a feedback we endow the logic gates with a built in memory because their output then depends on the input and also on the present state of the system. Technically such a logic machine is an automaton. We report an experimental realization of three such coupled automata using a DNAzyme multilayer signaling cascade. A simple model verifies analytically that our experimental scheme provides an integrator generating a power series that is third order in time. The model identifies two parameters that govern the kinetics and shows how the initial concentrations of the substrates are the coefficients in the power series.
机译:分子的浓度可以通过化学反应改变,从而提供连续的读数。然而,计算机体系结构是根据二进制值,布尔变量在教科书中进行转换的。为了使反应性化学系统能够进行计算,我们展示了如何使用概率论的Cox解释,将化学动力学方程式转录为对连续变量进行操作的一系列耦合逻辑门。讨论了分子的独特化学身份如何使我们能够创建化学动力学和布尔逻辑的通用语言。具体而言,逻辑“与”运算显示为等效于双分子过程。逻辑XOR运算表示同时发生的化学过程。速率常数的值作为输入输入逻辑方案。通过设计带有反馈的反应方案,我们使逻辑门具有内置存储器,因为逻辑门的输出然后取决于输入以及系统的当前状态。从技术上讲,这种逻辑机器是自动机。我们报告了使用DNAzyme多层信号传导级联的三个这样的耦合自动机的实验实现。一个简单的模型通过分析验证了我们的实验方案是否提供了一个积分器,该积分器生成的时间序列为三阶幂。该模型确定了控制动力学的两个参数,并显示了底物的初始浓度如何是幂级数中的系数。

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