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Programmable chemical reaction networks: emulating regulatory functions in living cells using a bottom-up approach

机译:可编程的化学反应网络:使用自下而上的方法模拟活细胞中的调节功能

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Living cells are able to produce a wide variety of biological responses when subjected to biochemical stimuli. It has become apparent that these biological responses are regulated by complex chemical reaction networks (CRNs). Unravelling the function of these circuits is a key topic of both systems biology and synthetic biology. Recent progress at the interface of chemistry and biology together with the realisation that current experimental tools are insufficient to quantitatively understand the molecular logic of pathways inside living cells has triggered renewed interest in the bottom-up development of CRNs. This builds upon earlier work of physical chemists who extensively studied inorganic CRNs and showed how a system of chemical reactions can give rise to complex spatiotemporal responses such as oscillations and pattern formation. Using purified biochemical components, in vitro synthetic biologists have started to engineer simplified model systems with the goal of mimicking biological responses of intracellular circuits. Emulation and reconstruction of system-level properties of intracellular networks using simplified circuits are able to reveal key design principles and molecular programs that underlie the biological function of interest. In this Tutorial Review, we present an accessible overview of this emerging field starting with key studies on inorganic CRNs followed by a discussion of recent work involving purified biochemical components. Finally, we review recent work showing the versatility of programmable biochemical reaction networks (BRNs) in analytical and diagnostic applications.
机译:当受到生化刺激时,活细胞能够产生各种各样的生物学反应。显而易见,这些生物学反应受复杂的化学反应网络(CRN)调控。弄清这些电路的功能是系统生物学和合成生物学的关键主题。化学和生物学界的最新进展以及对当前实验工具不足以定量地了解活细胞内部途径的分子逻辑的认识,引发了人们对CRNs自下而上发展的新兴趣。这建立在物理化学家早期研究的基础上,他们对无机CRN进行了广泛研究,并显示出化学反应系统如何引起复杂的时空响应,例如振荡和图案形成。使用纯化的生化成分,体外合成生物学家已开始设计简化的模型系统,以模拟细胞内回路的生物反应。使用简化的电路对细胞内网络的系统级特性进行仿真和重构,可以揭示出关键的设计原理和分子程序,这些原理和分子程序是所关注的生物学功能的基础。在本教程审查中,我们将从无机CRN的关键研究入手,然后是对涉及纯化的生化成分的最新研究的讨论,开始对这一新兴领域进行概述。最后,我们回顾了最近的工作,这些工作表明了可编程生化反应网络(BRN)在分析和诊断应用中的多功能性。

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