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Conserved non-AUG uORFs revealed by a novel regression analysis of ribosome profiling data

机译:通过核糖体图谱数据的新型回归分析揭示保守的非AUG uORF

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摘要

Upstream open reading frames (uORFs), located in transcript leaders (5′ UTRs), are potent cis-acting regulators of translation and mRNA turnover. Recent genome-wide ribosome profiling studies suggest that thousands of uORFs initiate with non-AUG start codons. Although intriguing, these non-AUG uORF predictions have been made without statistical control or validation; thus, the importance of these elements remains to be demonstrated. To address this, we took a comparative genomics approach to study AUG and non-AUG uORFs. We mapped transcription leaders in multiple Saccharomyces yeast species and applied a novel machine learning algorithm (uORF-seqr) to ribosome profiling data to identify statistically significant uORFs. We found that AUG and non-AUG uORFs are both frequently found in Saccharomyces yeasts. Although most non-AUG uORFs are found in only one species, hundreds have either conserved sequence or position within Saccharomyces. uORFs initiating with UUG are particularly common and are shared between species at rates similar to that of AUG uORFs. However, non-AUG uORFs are translated less efficiently than AUG-uORFs and are less subject to removal via alternative transcription initiation under normal growth conditions. These results suggest that a subset of non-AUG uORFs may play important roles in regulating gene expression.
机译:上游开放阅读框(uORF)位于转录前导序列(5'UTR)中,是翻译和mRNA转化的有效顺式调节因子。最近的全基因组核糖体谱研究表明,成千上万的uORF以非AUG起始密码子起始。尽管很有趣,但这些非AUG uORF的预测是在没有统计控制或验证的情况下进行的。因此,这些要素的重要性仍有待证明。为了解决这个问题,我们采取了比较基因组学的方法来研究AUG和非AUG uORF。我们绘制了多种酵母物种中的转录前导图,并将一种新型的机器学习算法(uORF-seqr)应用于核糖体图谱数据,以鉴定具有统计学意义的uORF。我们发现在酵母菌中经常发现AUG和非AUG uORF。尽管大多数非AUG uORF仅在一个物种中发现,但数百个在酵母菌中具有保守的序列或位置。由UUG引发的uORF特别常见,并且在物种之间以与AUG uORF相似的速率共享。但是,非AUG uORF的翻译效率不如AUG-uORF,并且在正常生长条件下较少通过替代转录起始去除。这些结果表明,非AUG uORF的子集可能在调节基因表达中起重要作用。

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