Selection on Codon Usage for Error Minimization at the Protein Level

被引:0
作者
Marco Archetti
机构
[1] Université de Fribourg,Département de Biologie, Section Ecologie et Evolution
来源
Journal of Molecular Evolution | 2004年 / 59卷
关键词
Genetic code; Error minimization; Codon usage; Nucleotide substitution; Rodents; Amino acid similarity;
D O I
暂无
中图分类号
学科分类号
摘要
Given the structure of the genetic code, synonymous codons differ in their capacity to minimize the effects of errors due to mutation or mistranslation. I suggest that this may lead, in protein-coding genes, to a preference for codons that minimize the impact of errors at the protein level. I develop a theoretical measure of error minimization for each codon, based on amino acid similarity. This measure is used to calculate the degree of error minimization for 82 genes of Drosophila melanogaster and 432 rodent genes and to study its relationship with CG content, the degree of codon usage bias, and the rate of nucleotide substitution. I show that (i) Drosophila and rodent genes tend to prefer codons that minimize errors; (ii) this cannot be merely the effect of mutation bias; (iii) the degree of error minimization is correlated with the degree of codon usage bias; (iv) the amino acids that contribute more to codon usage bias are the ones for which synonymous codons differ more in the capacity to minimize errors; and (v) the degree of error minimization is correlated with the rate of nonsynonymous substitution. These results suggest that natural selection for error minimization at the protein level plays a role in the evolution of coding sequences in Drosophila and rodents.
引用
收藏
页码:400 / 415
页数:15
相关论文
共 92 条
  • [1] Akashi H(1994)Synonymous codon usage in Genetics 136 927-935
  • [2] Archetti M(2004) Natural selection and translational accuracy J Mol Evol 59 258-1332
  • [3] Benner SA(1994)Codon usage bias and mutation constraints reduce the level of error minimization of the genetic code Protein Eng 7 1323-958
  • [4] Cohen MA(1985)Amino acid substitution during functionally constrained divergent evolution of protein sequences Science 228 953-1308
  • [5] Gonnet GH(2000)The mosaic genome of warm-blooded vertebrates Genetics 156 1299-661
  • [6] Bernardi G(2000a)Rates of nucleotide substitution and mammalian nuclear gene evolution: approximate and maximum-likelihood methods lead to different conclusions J Theor Biol 205 659-144
  • [7] Olofsson B(2000b)Genetic code origin and the strength of natural selection Trends Biochem Sci 25 44-649
  • [8] Filipski J(2001)The origin of the genetic code J Theor Biol 208 141-28
  • [9] Zerial M(2002)The origin of the genetic code cannot be studied using measurements based on the PAM matrix because this matrix reflects the code itself, making any such analyses tautologous Curr Opin Gen Dev 12 640-248
  • [10] Salinas J(1966)Evolution of synonymous codon usage in metazoans Nature 210 25-45