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Computer-assisted design for scaling up systems based on DNA reaction networks

机译:基于DNA反应网络的计算机辅助设计以扩大系统规模

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摘要

In the past few years, there have been many exciting advances in the field of molecular programming, reaching a point where implementation of non-trivial systems, such as neural networks or switchable bistable networks, is a reality. Such systems require nonlinearity, be it through signal amplification, digitalization or the generation of autonomous dynamics such as oscillations. The biochemistry of DNA systems provides such mechanisms, but assembling them in a constructive manner is still a difficult and sometimes counterintuitive process. Moreover, realistic prediction of the actual evolution of concentrations over time requires a number of side reactions, such as leaks, cross-talks or competitive interactions, to be taken into account. In this case, the design of a system targeting a given function takes much trial and error before the correct architecture can be found. To speed up this process, we have created DNA Artificial Circuits Computer-Assisted Design (DACCAD), a computer-assisted design software that supports the construction of systems for the DNA toolbox. DACCAD is ultimately aimed to design actual in vitro implementations, which is made possible by building on the experimental knowledge available on the DNA toolbox. We illustrate its effectiveness by designing various systems, from Montagne et al.'s Oligator or Padirac et al.'s bistable system to new and complex networks, including a two-bit counter or a frequency divider as well as an example of very large system encoding the game Mastermind. In the process, we highlight a variety of behaviours, such as enzymatic saturation and load effect, which would be hard to handle or even predict with a simpler model. We also show that those mechanisms, while generally seen as detrimental, can be used in a positive way, as functional part of a design. Additionally, the number of parameters included in these simulations can be large, especially in the case of complex systems. For this reason, we included the possibility to use CMA-ES, a state-of-the-art optimization algorithm that will automatically evolve parameters chosen by the user to try to match a specified behaviour. Finally, because all possible functionality cannot be captured by a single software, DACCAD includes the possibility to export a system in the synthetic biology markup language, a widely used language for describing biological reaction systems. DACCAD can be downloaded online at .
机译:在过去的几年中,分子编程领域取得了令人兴奋的进步,达到了实现诸如神经网络或可切换双稳态网络之类的非平凡系统的现实。这样的系统需要非线性,无论是通过信号放大,数字化还是产生自发动力学(例如振荡)。 DNA系统的生物化学提供了这样的机制,但是以建设性的方式组装它们仍然是困难的,有时甚至违反直觉。此外,要对浓度随时间的实际变化进行现实的预测,需要考虑许多副反应,例如泄漏,串扰或竞争性相互作用。在这种情况下,在找到正确的体系结构之前,针对给定功能的系统设计需要经过反复试验。为了加快这一过程,我们创建了DNA人工电路计算机辅助设计(DACCAD),这是一种计算机辅助设计软件,支持DNA工具箱系统的构建。 DACCAD的最终目的是设计实际的体外实施方案,这可以通过利用DNA工具箱上提供的实验知识来实现​​。我们通过设计各种系统来说明其有效性,从Montagne等人的Oligator或Padirac等人的双稳态系统到新的复杂网络,包括两位计数器或分频器,以及一个非常大的示例系统编码游戏Mastermind。在此过程中,我们重点介绍了各种行为,例如酶饱和和负载效应,而用简单的模型很难处理甚至无法预测。我们还表明,这些机制虽然通常被认为是有害的,但可以以积极的方式用作设计的功能部分。此外,这些模拟中包含的参数数量可能很大,尤其是在复杂系统的情况下。因此,我们提供了使用CMA-ES的可能性,CMA-ES是一种最新的优化算法,它将自动演化用户选择的参数以尝试匹配指定的行为。最后,由于所有可能的功能都无法通过单个软件捕获,因此DACCAD可以使用合成生物学标记语言(一种广泛用于描述生物学反应系统的语言)导出系统。 DACCAD可以在线下载。

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