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分子系统中有意义信息的产生。

The generation of meaningful information in molecular systems.

作者信息

Wills Peter R

机构信息

Department of Physics, University of Auckland, PB 92019, Auckland 1142, Aotearoa, New Zealand

出版信息

Philos Trans A Math Phys Eng Sci. 2016 Mar 13;374(2063). doi: 10.1098/rsta.2015.0066.

Abstract

The physico-chemical processes occurring inside cells are under the computational control of genetic (DNA) and epigenetic (internal structural) programming. The origin and evolution of genetic information (nucleic acid sequences) is reasonably well understood, but scant attention has been paid to the origin and evolution of the molecular biological interpreters that give phenotypic meaning to the sequence information that is quite faithfully replicated during cellular reproduction. The near universality and age of the mapping from nucleotide triplets to amino acids embedded in the functionality of the protein synthetic machinery speaks to the early development of a system of coding which is still extant in every living organism. We take the origin of genetic coding as a paradigm of the emergence of computation in natural systems, focusing on the requirement that the molecular components of an interpreter be synthesized autocatalytically. Within this context, it is seen that interpreters of increasing complexity are generated by series of transitions through stepped dynamic instabilities (non-equilibrium phase transitions). The early phylogeny of the amino acyl-tRNA synthetase enzymes is discussed in such terms, leading to the conclusion that the observed optimality of the genetic code is a natural outcome of the processes of self-organization that produced it.

摘要

细胞内发生的物理化学过程受遗传(DNA)和表观遗传(内部结构)编程的计算控制。遗传信息(核酸序列)的起源和进化已得到较好的理解,但对于赋予序列信息表型意义的分子生物学解释器的起源和进化却很少有人关注,这些序列信息在细胞繁殖过程中被相当忠实地复制。从核苷酸三联体到嵌入蛋白质合成机制功能中的氨基酸的映射具有近乎普遍性和悠久历史,这表明编码系统在早期就已发展起来,并且在每个生物体中仍然存在。我们将遗传编码的起源视为自然系统中计算出现的一个范例,重点关注解释器的分子成分需通过自催化合成这一要求。在这种背景下,可以看到通过一系列阶梯状动态不稳定性(非平衡相变)的转变产生了越来越复杂的解释器。本文将以这种方式讨论氨酰 - tRNA合成酶的早期系统发育,得出的结论是,遗传密码所观察到的最优性是产生它的自组织过程的自然结果。

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