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首页> 外文期刊>Journal of biosciences >Synonymous codon usage in different protein secondary structural classes of human genes: Implication for increased non-randomness of GC3 rich genes towards protein stability
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Synonymous codon usage in different protein secondary structural classes of human genes: Implication for increased non-randomness of GC3 rich genes towards protein stability

机译:人类基因不同蛋白质二级结构类别中的同义词密码子使用:暗示富含GC3的基因对蛋白质稳定性的增加的非随机性

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The relationship between the synonymous codon usage and different protein secondary structural classes were investigated using 401 Homo sapiens proteins extracted from Protein Data Bank (PDB). A simple Chi-square test was used to assess the significance of deviation of the observed and expected frequencies of 59 codons at the level of individual synonymous families in the four different protein secondary structural classes. It was observed that synonymous codon families show non-randomness in codon usage in four different secondary structural classes. However, when the genes were classified according to their GC3 levels there was an increase in non-randomness in high GC3 group of genes. The non-randomness in codon usage was further tested among the same protein secondary structures belonging to four different protein folding classes of high GC3 group of genes. The results show that in each of the protein secondary structural unit there exist some synonymous family that shows class specific codonusage pattern. Moreover, there is an increased non-random behaviour of synonymous codons in sheet structure of all secondary structural classes in high GC3 group of genes. Biological implications of these results have been discussed.
机译:使用从蛋白质数据库(PDB)中提取的401智人蛋白质,研究了同义密码子使用与不同蛋白质二级结构类别之间的关系。一个简单的卡方检验用于评估四种不同蛋白质二级结构类别中各个同义家族水平上59个密码子的观察频率和预期频率的偏离的重要性。据观察,同义密码子家族在四个不同的二级结构类别中显示出密码子使用的非随机性。但是,当根据基因的GC3水平对其进行分类时,高GC3基因组的非随机性会增加。在属于高GC3基因组的四个不同蛋白质折叠类别的相同蛋白质二级结构中,进一步测试了密码子使用的非随机性。结果表明,在每个蛋白质二级结构单元中,存在一些同义的家族,它们显示了类特异性密码子模式。此外,在高GC3基因组的所有二级结构类别的表结构中,同义密码子的非随机行为都有所增加。已经讨论了这些结果的生物学意义。

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