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分配催化剂在遗传密码起源中的可能作用。

The possible role of assignment catalysts in the origin of the genetic code.

作者信息

Bedian V

出版信息

Orig Life. 1982 Jun;12(2):181-204. doi: 10.1007/BF00927144.

Abstract

A model is presented for the emergence of a primitive genetic code through the selection of a family of proteins capable of executing the code and catalyzing their own formation from polynucleotide templates. These proteins are assignment catalysts capable of modulating the rate of incorporation of different amino acids at the position of different codons. The starting point of the model is a polynucleotide based polypeptide construction process which maintains colinearity between template and product, but may not maintain a coded relationship between amino acids and codons. Among the primitive proteins made are assumed to be assignment catalysts characterized by structural and functional parameters which are used to formulate the production kinetics of these catalysts from available templates. Application of the model to the simple case of two letter codon and amino acid alphabets has been analyzed in detail. As the structural, functional, and kinetic parameters are varied, the dynamics undergoes many bifurcations, allowing an initially ambiguous system of catalysts to evolve to a coded, self-reproductive system. The proposed selective pressure of this evolution is the efficiency of utilization of monomers and energy. The model also simulates the qualitative features of suppression, in which a deleterious mutation is partly corrected by the introduction of translation error.

摘要

本文提出了一个关于原始遗传密码出现的模型,该模型通过选择一类能够执行密码并催化自身从多核苷酸模板形成的蛋白质来实现。这些蛋白质是分配催化剂,能够调节不同氨基酸在不同密码子位置的掺入速率。该模型的起点是一个基于多核苷酸的多肽构建过程,该过程保持模板与产物之间的共线性,但可能不保持氨基酸与密码子之间的编码关系。在产生的原始蛋白质中,假定存在以结构和功能参数为特征的分配催化剂,这些参数用于根据可用模板制定这些催化剂的生产动力学。该模型在两个字母的密码子和氨基酸字母表的简单情况下的应用已得到详细分析。随着结构、功能和动力学参数的变化,动力学经历许多分岔,使最初模糊的催化剂系统演化为一个编码的、自我复制的系统。这种进化所提出的选择压力是单体和能量利用的效率。该模型还模拟了抑制的定性特征,其中有害突变通过引入翻译错误得到部分纠正。

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