Codon usage between genomes is constrained by genome-wide mutational processes
Open Access
- 27 February 2004
- journal article
- research article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 101 (10) , 3480-3485
- https://doi.org/10.1073/pnas.0307827100
Abstract
Analysis of genome-wide codon bias shows that only two parameters effectively differentiate the genome-wide codon bias of 100 eubacterial and archaeal organisms. The first parameter correlates with genome GC content, and the second parameter correlates with context-dependent nucleotide bias. Both of these parameters may be calculated from intergenic sequences. Therefore, genome-wide codon bias in eubacteria and archaea may be predicted from intergenic sequences that are not translated. When these two parameters are calculated for genes from nonmammalian eukaryotic organisms, genes from the same organism again have similar values, and genome-wide codon bias may also be predicted from intergenic sequences. In mammals, genes from the same organism are similar only in the second parameter, because GC content varies widely among isochores. Our results suggest that, in general, genome-wide codon bias is determined primarily by mutational processes that act throughout the genome, and only secondarily by selective forces acting on translated sequences.Keywords
This publication has 47 references indexed in Scilit:
- Noise in eukaryotic gene expressionNature, 2003
- Hyperthermophilic Enzymes: Sources, Uses, and Molecular Mechanisms for ThermostabilityMicrobiology and Molecular Biology Reviews, 2001
- COMPARATIVE DNA ANALYSIS ACROSS DIVERSE GENOMESAnnual Review of Genetics, 1998
- Instability and decay of the primary structure of DNANature, 1993
- Equal G and C contents in histone genes indicate selection pressures on mRNA secondary structureJournal of Molecular Evolution, 1992
- Correlations between the compositional properties of human genes, codon usage, and amino acid composition of proteinsJournal of Molecular Evolution, 1991
- The compositional distribution of coding sequences and DNA molecules in humans and muridsJournal of Molecular Evolution, 1988
- Coevolution of codon usage and transfer RNA abundanceNature, 1987
- Codon usage in bacteria: correlation with gene expressivityNucleic Acids Research, 1982
- Working of the genetic codeTrends in Biochemical Sciences, 1980