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Analyzing Gene Expression and Codon Usage Bias in Diverse Genomes Using a Variety of Models

机译:使用多种模型分析不同基因组中的基因表达和密码子使用偏好

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Synonymous codon usage has long been known as a factor that affects the average expression level of proteins in microorganisms. A systematic approach to study the role of codon usage bias underlying gene expression has been described. Facts and ideas presented in this short review are to derive biological information from genome sequences by means of various statistical analyses and appropriate design of algorithms. Using codon usage bias as a numerical estimator of gene expression, a comparative analysis of predicted highly expressed (PHE) genes was performed in bacteria, cyanobacteria, archaea, lower eukaryotes and higher eukaryotes. Here, it is suggested that both codon usage and as well as base compositions at three codon sites regulate the individual gene expression. Any correlation between gene length and expression level,however, remains unexplained. Relationship between gene expression levels and synonymous codon usage provides an important line of evidence for translational selection and suggests some general mechanism underlying protein evolution.
机译:长期以来,同义词密码子使用一直是影响微生物中蛋白质平均表达水平的因素。已经描述了研究密码子使用偏向在基因表达中的作用的系统方法。这篇简短评论中提出的事实和想法是通过各种统计分析和适当的算法设计,从基因组序列中获取生物学信息。使用密码子使用偏倚作为基因表达的数值估算器,在细菌,蓝细菌,古细菌,低等真核生物和高等真核生物中对预测的高表达(PHE)基因进行了比较分析。在此,建议密码子使用以及三个密码子位点的碱基组成均调节单个基因的表达。然而,基因长度和表达水平之间的任何相关性仍无法解释。基因表达水平和同义密码子使用之间的关系为翻译选择提供了重要的证据,并暗示了蛋白质进化的一些一般机制。

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