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首页> 外文期刊>Journal of Theoretical Biology >The neutral emergence of error minimized genetic codes superior to the standard genetic code
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The neutral emergence of error minimized genetic codes superior to the standard genetic code

机译:中性出现的误差最小化遗传码优于标准遗传密码

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摘要

The standard genetic code (SGC) assigns amino acids to codons in such a way that the impact of point mutations is reduced, this is termed 'error minimization' (EM). The occurrence of EM has been attributed to the direct action of selection, however it is difficult to explain how the searching of alternative codes for an error minimized code can occur via codon reassignments, given that these are likely to be disruptive to the proteome. An alternative scenario is that EM has arisen via the process of genetic code expansion, facilitated by the duplication of genes encoding charging enzymes and adaptor molecules. This is likely to have led to similar amino acids being assigned to similar codons. Strikingly, we show that if during code expansion the most similar amino acid to the parent amino acid, out of the set of unassigned amino acids, is assigned to codons related to those of the parent amino acid, then genetic codes with EM superior to the SGC easily arise. This scheme mimics code expansion via the gene duplication of charging enzymes and adaptors. The result is obtained for a variety of different schemes of genetic code expansion and provides a mechanistically realistic manner in which EM has arisen in the SGC. These observations might be taken as evidence for self-organization in the earliest stages of life. (C) 2016 Elsevier Ltd. All rights reserved.
机译:标准遗传密码(SGC)将氨基酸分配给密码子,使得点突变的影响降低,这被称为“误差最小化”(EM)。 EM的发生已经归因于选择的直接动作,然而,难以解释如何通过密码子重新分配来解释用于误差最小化代码的替代代码的搜索,因为这些可能对蛋白质组有破坏性。替代方案是通过遗传码扩展的过程出现,通过编码充电酶和衔接子分子的重复来促进。这可能导致与类似密码子分配的类似氨基酸。令人惊讶的是,如果在代码扩张期间,在母体氨基酸中最相似的氨基酸,从该组的未分配的氨基酸中分配给与母氨基酸的密码子,然后优于EM优于em的遗传码SGC很容易出现。该方案通过对充电酶和适配器的基因重复模拟代码扩张。结果是针对各种不同的遗传码扩展方案获得,并提供了一种机械上的现实方式,其中EM在SGC中出现。这些观察可能被视为自我组织中最早生命阶段的证据。 (c)2016 Elsevier Ltd.保留所有权利。

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