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首页> 外文期刊>Gene: An International Journal Focusing on Gene Cloning and Gene Structure and Function >Amino acid and codon usage profiles: adaptive changes in the frequency of amino acids and codons.
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Amino acid and codon usage profiles: adaptive changes in the frequency of amino acids and codons.

机译:氨基酸和密码子使用情况:氨基酸和密码子频率的适应性变化。

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In the work presented, the changes in codon and amino acid contents have been studied as a function of environmental conditions by comparing pairs of homologs in a group of extremophilicon-extremophilic genomes. Our results obtained based on such analysis highlights a number of notable observations: (i) the overall preference of amino acid usages in the proteins of a given organism is significantly affected by major environmental factors. The changes in amino acid preferences (amino acid usage profiles) in an extremophile compared to its non-extremophile relative recurs in the organisms of similar extreme habitats. (ii) On the other hand, changes in codon usage preferences in these extremophilicon-extremophilic pairs, lack such persistency not only in different genome-pairs but also in the individual genes of a specific pair. (iii) We have noted a correlation between cellular function and codon usage profiles of the genes in the studied pairs. (iv) Based on this correlation, we could obtain a decent prediction of cellular functions solely based on codon usage profile data. (v) Comparisons made between two sets of randomly generated genomes suggest that different patterns of codon usage changes in genes of different functional categories result in a partial resistance towards the changes in the concentration of a given amino acid. This buffering capacity might explain the observed differences in codon usage trends in genes of different functions. In the end, we suggest codon usage and amino acid profiles as powerful tools that can be utilized to improve function predictions and genome-environment mappings.
机译:在提出的工作中,通过比较一组极端/非极端基因组中的同系物对,研究了密码子和氨基酸含量随环境条件的变化。我们基于这样的分析获得的结果突出了许多值得注意的观察结果:(i)给定生物体蛋白质中氨基酸使用的总体偏好受到主要环境因素的显着影响。与极端微生物相比,极端微生物与非极端微生物相对的氨基酸偏爱(氨基酸使用情况)变化在相似的极端栖息地的生物中反复出现。 (ii)另一方面,在这些极端/非极端对中,密码子使用偏好的变化不仅在不同的基因组对中而且在特定对的单个基因中都缺乏这种持久性。 (iii)我们注意到研究的基因对中细胞功能与基因密码子使用情况之间的相关性。 (iv)基于这种相关性,我们可以仅基于密码子使用情况数据获得对细胞功能的体面预测。 (v)在两组随机产生的基因组之间进行的比较表明,不同功能类别的基因中密码子使用变化的不同模式导致对给定氨基酸浓度变化的部分抵抗。这种缓冲能力可能解释了在具有不同功能的基因中密码子使用趋势中观察到的差异。最后,我们建议密码子使用和氨基酸概况作为可用于改善功能预测和基因组环境定位的强大工具。

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