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Autocatalysis, information and coding

机译:自催化,信息和编码

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Autocatalytic self-construction in macromolecular systems requires the existence of a reflexive relationship between structural components and the functional operations they perform to synthesise themselves. The possibility of reflexivity depends on formal, semiotic features of the catalytic structure-function relationship, that is. the embedding of catalytic functions in the space of polymeric structures. Reflexivity is a semiotic property of some genetic sequences. Such sequences may serve as the basis for the evolution of coding as a result of autocatalytic self-organisation in a population of assignment catalysts. Autocatalytic selection is a mechanism whereby matter becomes differentiated in primitive biochemical systems. In the case of coding self-organisation, it corresponds to the creation of symbolic information. Prions are present-day entities M hose replication through autocatalysis reflects aspects of biological semiotics less obvious than genetic coding. (C) 2001 Elsevier Science Ireland Ltd. All rights reserved. [References: 17]
机译:大分子系统中的自催化自我构建要求结构组件与其执行的功能操作之间存在自反关系,以实现自身的合成。自反的可能性取决于催化结构-功能关系的形式,符号特征。将催化功能嵌入聚合物结构空间中。自反性是某些遗传序列的符号特性。这样的序列可以作为由于分配催化剂群体中的自催化自组织而导致的编码进化的基础。自动催化选择是一种机制,可以使物质在原始生化系统中分化。在编码自组织的情况下,它对应于符号信息的创建。 ions病毒是当今的实体,M软管通过自动催化复制反映了生物学符号学方面不如遗传编码明显的方面。 (C)2001 Elsevier Science Ireland Ltd.保留所有权利。 [参考:17]

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