Codon bias has been implicated as one of the major factors contributing to mRNA stability in yeast. However, the effects of codon-bias on mRNA stability remain unclear in humans. Here we show that human cells possess a mechanism to modulate RNA stability through a unique codon bias different from that of yeast. Bioinformatics analysis showed that codons could be clustered into two distinct groups – codons with G or C at the third base position (GC3) and codons with either A or T at the third base position (AT3); the former stabilizing while the latter destabilizing mRNA. Quantification of codon bias showed that increased GC3 content entails proportionately higher GC content. Through bioinformatics, ribosome profiling and in vitro analysis, ...
Proper control of mRNA stability is key in the regulation of gene expression, with half-lives varyin...
Codon usage bias is a fundamental feature of all genomes and plays an important role in determining ...
The genetic code is redundant, with most amino acids coded by multiple codons. In many organisms, co...
Codon bias has been implicated as one of the major factors contributing to mRNA stability in several...
ヒト細胞のコドン(遺伝暗号)に隠された暗号を解明 --ヒトコドン最適化制御による治療戦略の開発へ--. 京都大学プレスリリース. 2019-09-18.Codon bias has been impl...
The central dogma of molecular biology entails that genetic information is transferred from nucleic ...
Codons that code for the same amino acid are often used with unequal frequencies. This phenomenon is...
Codon usage bias (CUB) and mRNA structural stability are important intrinsic features of mRNA that c...
Abstract Background Evidence in diverse organisms suggests that codon optimality is a major determin...
Codon usage bias exists in almost every organism and is reported to regulate protein translation eff...
SummarymRNA degradation represents a critical regulated step in gene expression. Although the major ...
Introduction: Connections between genetic variation and trait variation are complex and dynamic; the...
Messenger RNA (mRNA) degradation plays a critical role in regulating transcript levels in the cell a...
International audienceDifferences in codon frequency between genomes, genes, or positions along a ge...
International audienceDifferences in codon frequency between genomes, genes, or positions along a ge...
Proper control of mRNA stability is key in the regulation of gene expression, with half-lives varyin...
Codon usage bias is a fundamental feature of all genomes and plays an important role in determining ...
The genetic code is redundant, with most amino acids coded by multiple codons. In many organisms, co...
Codon bias has been implicated as one of the major factors contributing to mRNA stability in several...
ヒト細胞のコドン(遺伝暗号)に隠された暗号を解明 --ヒトコドン最適化制御による治療戦略の開発へ--. 京都大学プレスリリース. 2019-09-18.Codon bias has been impl...
The central dogma of molecular biology entails that genetic information is transferred from nucleic ...
Codons that code for the same amino acid are often used with unequal frequencies. This phenomenon is...
Codon usage bias (CUB) and mRNA structural stability are important intrinsic features of mRNA that c...
Abstract Background Evidence in diverse organisms suggests that codon optimality is a major determin...
Codon usage bias exists in almost every organism and is reported to regulate protein translation eff...
SummarymRNA degradation represents a critical regulated step in gene expression. Although the major ...
Introduction: Connections between genetic variation and trait variation are complex and dynamic; the...
Messenger RNA (mRNA) degradation plays a critical role in regulating transcript levels in the cell a...
International audienceDifferences in codon frequency between genomes, genes, or positions along a ge...
International audienceDifferences in codon frequency between genomes, genes, or positions along a ge...
Proper control of mRNA stability is key in the regulation of gene expression, with half-lives varyin...
Codon usage bias is a fundamental feature of all genomes and plays an important role in determining ...
The genetic code is redundant, with most amino acids coded by multiple codons. In many organisms, co...