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标准遗传密码有助于探索功能核苷酸序列的空间。

The Standard Genetic Code Facilitates Exploration of the Space of Functional Nucleotide Sequences.

机构信息

PhD Program in Systems, Synthetic, and Physical Biology, Rice University, Houston, TX, 77005, USA.

Center for Theoretical Biological Physics, Rice University, Houston, TX, 77005, USA.

出版信息

J Mol Evol. 2018 Jul;86(6):325-339. doi: 10.1007/s00239-018-9852-x. Epub 2018 Jun 29.

Abstract

The standard genetic code is well known to be optimized for minimizing the phenotypic effects of single-nucleotide substitutions, a property that was likely selected for during the emergence of a universal code. Given the fitness advantage afforded by high standing genetic diversity in a population in a dynamic environment, it is possible that selection to explore a large fraction of the space of functional proteins also occurred. To determine whether selection for such a property played a role during the emergence of the nearly universal standard genetic code, we investigated the number of functional variants of the Escherichia coli PhoQ protein explored at different time scales under translation using different genetic codes. We found that the standard genetic code is highly optimal for exploring a large fraction of the space of functional PhoQ variants at intermediate time scales as compared to random codes. Environmental changes, in response to which genetic diversity in a population provides a fitness advantage, are likely to have occurred at these intermediate time scales. Our results indicate that the ability of the standard code to explore a large fraction of the space of functional sequence variants arises from a balance between robustness and flexibility and is largely independent of the property of the standard code to minimize the phenotypic effects of mutations. We propose that selection to explore a large fraction of the functional sequence space while minimizing the phenotypic effects of mutations contributed toward the emergence of the standard code as the universal genetic code.

摘要

标准遗传密码众所周知是为了最小化单核苷酸替换的表型效应而优化的,这种特性很可能是在通用密码出现时被选择的。考虑到在动态环境中,高遗传多样性种群所带来的适应性优势,也有可能发生了对功能蛋白的大部分空间进行探索的选择。为了确定在几乎普遍存在的标准遗传密码出现期间,选择是否对这种特性起作用,我们研究了在不同遗传密码下,在翻译过程中不同时间尺度下 PhoQ 蛋白的功能变体的探索数量。我们发现,与随机密码相比,标准遗传密码在中间时间尺度上非常适合探索 PhoQ 功能变体的大部分空间。种群遗传多样性提供适应性优势的环境变化很可能发生在这些中间时间尺度上。我们的结果表明,标准密码能够探索大部分功能序列变体空间的能力来自于稳健性和灵活性之间的平衡,并且在很大程度上独立于最小化突变表型效应的标准密码的特性。我们提出,在最小化突变表型效应的同时探索大部分功能序列空间的选择有助于标准密码作为通用遗传密码的出现。

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