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Diversity of preferred nucleotide sequences around the translation initiation codon in eukaryote genomes

机译:真核生物基因组翻译起始密码子周围优选核苷酸序列的多样性

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摘要

Understanding regulatory mechanisms of protein synthesis in eukaryotes is essential for the accurate annotation of genome sequences. Kozak reported that the nucleotide sequence GCCGCC(A/G)CCAUGG (AUG is the initiation codon) was frequently observed in vertebrate genes and that this ‘consensus’ sequence enhanced translation initiation. However, later studies using invertebrate, fungal and plant genes reported different ‘consensus’ sequences. In this study, we conducted extensive comparative analyses of nucleotide sequences around the initiation codon by using genomic data from 47 eukaryote species including animals, fungi, plants and protists. The analyses revealed that preferred nucleotide sequences are quite diverse among different species, but differences between patterns of nucleotide bias roughly reflect the evolutionary relationships of the species. We also found strong biases of A/G at position −3, A/C at position −2 and C at position +5 that were commonly observed in all species examined. Genes with higher expression levels showed stronger signals, suggesting that these nucleotides are responsible for the regulation of translation initiation. The diversity of preferred nucleotide sequences around the initiation codon might be explained by differences in relative contributions from two distinct patterns, GCCGCCAUG and AAAAAAAUG, which implies the presence of multiple molecular mechanisms for controlling translation initiation.
机译:了解真核生物中蛋白质合成的调控机制对于准确注释基因组序列至关重要。 Kozak报告说,在脊椎动物基因中经常观察到核苷酸序列GCCGCC(A / G)CCAUGG(AUG是起始密码子),并且这种“共识”序列增强了翻译起始。但是,后来使用无脊椎动物,真菌和植物基因的研究报告了不同的“共识”序列。在这项研究中,我们使用来自47种真核生物物种(包括动物,真菌,植物和原生生物)的基因组数据,对起始密码子周围的核苷酸序列进行了广泛的比较分析。分析表明,优选的核苷酸序列在不同物种之间差异很大,但是核苷酸偏倚模式之间的差异大致反映了物种的进化关系。我们还发现在所有检查物种中普遍观察到在-3处的A / G,在-2处的A / C和在+5处的C的强烈偏差。表达水平较高的基因显示较强的信号,表明这些核苷酸负责翻译起始的调控。起始密码子周围优选核苷酸序列的多样性可以通过两种不同模式(GCCGCCAUG和AAAAAAAUG)的相对贡献差异来解释,这表明存在多种控制翻译起始的分子机制。

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