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Sequence analysis suggests that tetra-nucleotides signal the termination of protein synthesis in eukaryotes.

机译:序列分析表明,四核苷酸指示真核生物中蛋白质合成的终止。

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摘要

An increasing number of cases where tri-nucleotide stop codons do not signal the termination of protein synthesis are being reported. In order to identify what constitutes an efficient stop signal, we analysed the region around natural stop codons in genes from a wide variety of eukaryotic species and gene families. Certain stop codons and nucleotides following stop codons are over-represented, and this pattern is accentuated in highly expressed genes. For example, the preferred signal for Saccharomyces cerevisiae and Drosophila melanogaster highly expressed genes is UAAG, and generally the signals UAA(A/G) and UGA(A/G) are preferred in eukaryotes. The GC% of the organism or DNA region can affect whether there is A or G in the second or fourth positions. We suggest therefore, that the stop codon and the nucleotide following it comprise a tetra-nucleotide stop signal. A model is proposed in which the polypeptide chain release factor, a protein, recognises this sequence, but will tolerate some substitution, particularly A to G in the second or third positions.
机译:据报道,越来越多的三核苷酸终止密码子不表示蛋白质合成终止的情况。为了确定什么构成有效的终止信号,我们分析了来自各种真核物种和基因家族的基因中自然终止密码子周围的区域。某些终止密码子和终止密码子后的核苷酸被过度代表,这种模式在高度表达的基因中更加突出。例如,酿酒酵母和果蝇果蝇高表达基因的优选信号是UAAG,而在真核生物中通常优选UAA(A / G)和UGA(A / G)信号。生物体或DNA区域的GC%会影响第二或第四位是否存在A或G。因此,我们建议终止密码子及其后的核苷酸包含四核苷酸终止信号。提出了一种模型,其中多肽链释放因子蛋白质识别该序列,但是在第二或第三位置将容许某些取代,特别是A到G的取代。

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