利用相对密码子使用偏差预测基因表达水平:在大肠杆菌基因组中的应用

Uttam Roymondal, S. Das, S. Sahoo
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引用次数: 83

摘要

我们提出了一个基因的表达测量,旨在预测相对密码子偏倚(RCB)的基因表达水平。目前有许多方法可以量化基因中密码子的使用。基于基因表达性和密码子组成强相关的假设,RCB被定义为提供一种直观的有意义的基因密码子偏好程度的测量方法。我们概述了一种简单的方法来评估基因中RCB (RCBS)的强度,作为其可能表达水平的指导,并通过对大肠杆菌(E. coli)基因组的分析来说明这一点。我们在大肠杆菌中定量预测基因表达水平的努力取得了很高的成功。令人惊讶的是,我们观察到RCBS与蛋白质长度之间存在很强的相关性,这表明自然选择倾向于较短的基因在更高水平上表达。我们的结果与高蛋白丰度、微阵列数据和放射性数据的一致表明,我们的方法中可用的基因组表达谱可以以一种有意义的方式应用于细胞生理学研究,也可以用于更详细的特定基因研究。
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Predicting Gene Expression Level from Relative Codon Usage Bias: An Application to Escherichia coli Genome
We present an expression measure of a gene, devised to predict the level of gene expression from relative codon bias (RCB). There are a number of measures currently in use that quantify codon usage in genes. Based on the hypothesis that gene expressivity and codon composition is strongly correlated, RCB has been defined to provide an intuitively meaningful measure of an extent of the codon preference in a gene. We outline a simple approach to assess the strength of RCB (RCBS) in genes as a guide to their likely expression levels and illustrate this with an analysis of Escherichia coli (E. coli) genome. Our efforts to quantitatively predict gene expression levels in E. coli met with a high level of success. Surprisingly, we observe a strong correlation between RCBS and protein length indicating natural selection in favour of the shorter genes to be expressed at higher level. The agreement of our result with high protein abundances, microarray data and radioactive data demonstrates that the genomic expression profile available in our method can be applied in a meaningful way to the study of cell physiology and also for more detailed studies of particular genes of interest.
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