核糖体分析
密码子使用偏好性
翻译(生物学)
遗传密码
生物
转移RNA
蛋白质生物合成
信使核糖核酸
计算生物学
蛋白质组
核糖体
终止密码子
转录组
核糖核酸
同义替换
翻译效率
起始密码子
遗传学
基因
基因表达
基因组
作者
Gavin Hanson,Jeff Coller
摘要
The advent of ribosome profiling and other tools to probe mRNA translation has revealed that codon bias - the uneven use of synonymous codons in the transcriptome - serves as a secondary genetic code: a code that guides the efficiency of protein production, the fidelity of translation and the metabolism of mRNAs. Recent advancements in our understanding of mRNA decay have revealed a tight coupling between ribosome dynamics and the stability of mRNA transcripts; this coupling integrates codon bias into the concept of codon optimality, or the effects that specific codons and tRNA concentrations have on the efficiency and fidelity of the translation machinery. In this Review, we first discuss the evidence for codon-dependent effects on translation, beginning with the basic mechanisms through which translation perturbation can affect translation efficiency, protein folding and transcript stability. We then discuss how codon effects are leveraged by the cell to tailor the proteome to maintain homeostasis, execute specific gene expression programmes of growth or differentiation and optimize the efficiency of protein production.
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