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首页> 外文期刊>Journal of Biomolecular Structure and Dynamics >Interrelations between the nucleotide context of human start AUG codon, N-end amino acids of the encoded protein and initiation of translation.
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Interrelations between the nucleotide context of human start AUG codon, N-end amino acids of the encoded protein and initiation of translation.

机译:人类起始AUG密码子的核苷酸背景,编码蛋白的N端氨基酸与翻译起始之间的相互关系。

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摘要

It is known that the recognition of AUG triplet by eukaryotic ribosomes as a translation start site strongly depends on its nucleotide context. However, the relative significance of different context positions is not fully clear. In particular, it concerns the role of 3'-end part of the context located at the beginning of the protein-coding sequence. The significant bias observed in nucleotide frequencies in positions +4, +5, +6 (corresponding to the second codon of CDS) could result from different reasons and their contribution to start codon recognition and initiation of translation is under discussion. In this study, we conducted a comparative computational analysis of the human mRNA samples containing different nucleotides (adenine, guanine or pyrimidine) in the essential context position -3. It was found that the presence of G in position +4 could be important for the context variant GnnAUG but not for AnnAUG. Interestingly, the second position of proteins encoded by mRNAs with AnnAUG context variant was specifically and significantly enriched with serine whereas the presence of GnnAUG context also correlated with a higher occurrence of alanine and glycine. It is likely that the efficiency of translation initiation process can depend on the interplay between 5'-context part, 3'-context part and the type of amino acid in the second position of the encoded protein.
机译:已知真核核糖体将AUG三联体识别为翻译起始位点很大程度上取决于其核苷酸背景。但是,不同上下文位置的相对重要性尚不完全清楚。特别地,它涉及位于蛋白质编码序列开头的上下文的3'-末端部分的作用。在+ 4,+ 5,+ 6位(对应于CDS的第二个密码子)的核苷酸频率中观察到的显着偏差可能是由于不同的原因造成的,并且它们对启动密码子识别和翻译起始的贡献正在讨论中。在这项研究中,我们对人mRNA样本的基本上下文位置-3进行了比较计算分析,该样本包含不同的核苷酸(腺嘌呤,鸟嘌呤或嘧啶)。发现在位置+4中存在G对于上下文变体GnnAUG可能很重要,但对于AnnAUG则不重要。有趣的是,具有AnnAUG上下文变体的mRNA编码的蛋白质的第二个位置特别丰富地富含丝氨酸,而GnnAUG上下文的存在还与丙氨酸和甘氨酸的更高发生率相关。翻译起始过程的效率可能取决于5'-context部分,3'-context部分与编码蛋白质第二个位置的氨基酸类型之间的相互作用。

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