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首页> 外文期刊>Chemphyschem: A European journal of chemical physics and physical chemistry >Boolean Logic Gates Realized with Enzyme-catalyzed Reactions - Unusual Look at Usual Chemical Reactions
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Boolean Logic Gates Realized with Enzyme-catalyzed Reactions - Unusual Look at Usual Chemical Reactions

机译:布尔逻辑栅极实现酶催化反应 - 不寻常看通常的化学反应

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摘要

Research in the area of molecular computing systems, in the general framework of unconventional computing, has received high attention and resulted in rapid progress in formulating signal-controlled switchable molecules capable to perform Boolean logic operations and basic arithmetic functions. Extension of this research to biomolecular systems allowed sophisticated computational functions much easier than using synthetic molecular and supramolecular species. The advantage of biomolecular systems comparing with synthetic molecular systems is in their complementarity and compatibility allowing easy assembling multi-component systems from various biomolecules, thus increasing their functional complexity. While DNA-based computing systems are promising faster computing than Si-based electronics, at least for solving some combinatorial problems, due to massive parallel operation, enzyme-based logic systems are less promising for computational applications in their narrow definition. However, they offer novel biosensing and bioactuation features operating in binary Yes/No format. The present review article overviews different kinds of enzyme logic gates exemplified with specific enzymatic reactions/cascades. Motivation for this research and its possible applications are discussed. The review will be helpful to researchers working in this specific area to see the comprehensive collection of logic operations performed by the enzyme reactions. The newcomers to the reviewed area will benefit from the example systems representing various logic functions systematically.
机译:在非传统计算的一般框架中,分子计算系统领域的研究已经接受了高度重视,并导致制定能够执行布尔逻辑操作和基本算术功能的信号控制可切换分子的快速进展。将该研究扩展生物分子系统允许复杂的计算功能比使用合成分子和超分子物种更容易。与合成分子系统相比的生物分子系统的优点是它们的互补性和相容性,允许易于组装来自各种生物分子的多组分系统,从而提高其功能复杂性。虽然基于DNA的计算系统具有比Si的电子设备更快的计算,但至少为了解决一些组合问题,由于巨大的并行操作,基于酶的逻辑系统对于其狭窄的定义中的计算应用较小。但是,它们提供以二元/无格式运行的新型生物腐蚀和生物辅助功能。本综述文章概述了不同种类的酶逻辑栅极,其具有特异性酶促反应/级联。讨论了该研究的动机及其可能的应用。审查将有助于研究该特定领域的研究人员,以便看到酶反应所表演的逻辑操作的全面集合。审查区域的新人将受益于系统地代表各种逻辑函数的示例系统。

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