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The cell as the smallest DNA-based molecular computer.

机译:该细胞是最小的基于DNA的分子计算机。

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摘要

The pioneering work of Adleman (1994) demonstrated that DNA molecules in test tubes can be manipulated to perform a certain type of mathematical computation. This has stimulated a theoretical interest in the possibility of constructing DNA-based molecular computers. To gauge the practicality of realizing such microscopic computers, it was thought necessary to learn as much as possible from the biology of the living cell--presently the only known DNA-based molecular computer in existence. Here the recently developed theoretical model of the living cell (the Bhopalator) and its associated theories (e.g. cell language), principles, laws and concepts (e.g. conformons, IDS's) are briefly reviewed and summarized in the form of a set of five laws of 'molecular semiotics' (synonyms include 'microsemiotics', 'cellular semiotics', or 'cytosemiotics') the study of signs mediating measurement, computation, and communication on the cellular and molecular levels. Hopefully, these laws will find practical applications in designing DNA-based computing systems.
机译:Adleman(1994)的开创性工作证明,可以操纵试管中的DNA分子来执行某种类型的数学计算。这激发了人们对构建基于DNA的分子计算机的可能性的理论兴趣。为了评估实现这种微型计算机的实用性,人们认为有必要从活细胞的生物学中学习尽可能多的知识,活细胞是目前存在的唯一已知的基于DNA的分子计算机。在此,我们以五种定律的形式简要回顾和总结了最近开发的活细胞理论模型(Bhopalator)及其相关理论(例如细胞语言),原理,法律和概念(例如构象,IDS)。 “分子符号学”(同义词包括“ microsemiotics”,“细胞符号学”或“ cytosemiotics”)是在细胞和分子水平上介导测量,计算和交流的体征研究。希望这些法律将在设计基于DNA的计算系统中找到实际应用。

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