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密码子偏好性作为人类基因组中通过翻译速率调控基因表达的一个因素。

Codon bias as a factor in regulating expression via translation rate in the human genome.

作者信息

Lavner Yizhar, Kotlar Daniel

机构信息

Department of Computer Science, Tel Hai Academic College, Upper Galilee 12210, Israel.

出版信息

Gene. 2005 Jan 17;345(1):127-38. doi: 10.1016/j.gene.2004.11.035. Epub 2004 Dec 24.

Abstract

We study the interrelations between tRNA gene copy numbers, gene expression levels and measures of codon bias in the human genome. First, we show that isoaccepting tRNA gene copy numbers correlate positively with expression-weighted frequencies of amino acids and codons. Using expression data of more than 14,000 human genes, we show a weak positive correlation between gene expression level and frequency of optimal codons (codons with highest tRNA gene copy number). Interestingly, contrary to non-mammalian eukaryotes, codon bias tends to be high in both highly expressed genes and lowly expressed genes. We suggest that selection may act on codon bias, not only to increase elongation rate by favoring optimal codons in highly expressed genes, but also to reduce elongation rate by favoring non-optimal codons in lowly expressed genes. We also show that the frequency of optimal codons is in positive correlation with estimates of protein biosynthetic cost, and suggest another possible action of selection on codon bias: preference of optimal codons as production cost rises, to reduce the rate of amino acid misincorporation. In the analyses of this work, we introduce a new measure of frequency of optimal codons (FOP'), which is unaffected by amino acid composition and is corrected for background nucleotide content; we also introduce a new method for computing expected codon frequencies, based on the dinucleotide composition of the introns and the non-coding regions surrounding a gene.

摘要

我们研究了人类基因组中tRNA基因拷贝数、基因表达水平与密码子偏好性度量之间的相互关系。首先,我们发现同功tRNA基因拷贝数与氨基酸和密码子的表达加权频率呈正相关。利用超过14000个人类基因的表达数据,我们发现基因表达水平与最优密码子(tRNA基因拷贝数最高的密码子)频率之间存在微弱的正相关。有趣的是,与非哺乳动物真核生物不同,在高表达基因和低表达基因中密码子偏好性往往都很高。我们认为,选择可能作用于密码子偏好性,不仅通过在高表达基因中偏爱最优密码子来提高延伸速率,还通过在低表达基因中偏爱非最优密码子来降低延伸速率。我们还表明,最优密码子的频率与蛋白质生物合成成本的估计值呈正相关,并提出选择对密码子偏好性的另一种可能作用:随着生产成本的增加,偏爱最优密码子以降低氨基酸错掺入率。在这项工作的分析中,我们引入了一种新的最优密码子频率度量(FOP'),它不受氨基酸组成的影响,并针对背景核苷酸含量进行了校正;我们还引入了一种基于基因内含子和基因周围非编码区的二核苷酸组成来计算预期密码子频率的新方法。

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