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A comprehensive catalog of predicted functional upstream open reading frames in humans

机译:人体中预测功能上游开放阅读框架的全面目录

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摘要

Upstream open reading frames (uORFs) latent in mRNA transcripts are thought to modify translation of coding sequences by altering ribosome activity. Not all uORFs are thought to be active in such a process. To estimate the impact of uORFs on the regulation of translation in humans, we first circumscribed the universe of all possible uORFs based on coding gene sequence motifs and identified 1.3 million unique uORFs. To determine which of these are likely to be biologically relevant, we built a simple Bayesian classifier using 89 attributes of uORFs labeled as active in ribosome profiling experim ents. This allowed us to extrapolate to a comprehensive catalog of likely functional uORFs. We validated our predictions using in vivo protein levels and ribosome occupancy from 46 individuals. This is a substantially larger catalog of functional uORFs than has previously been reported. Our ranked list of likely active uORFs allows researchers to test their hypotheses regarding the role of uORFs in health and disease. We demonstrate several examples of biological interest through the application of our catalog to somatic mutations in cancer and disease-associated germline variants in humans.
机译:通过改变核糖体活性来修复mRNA转录物中的上游开放阅读帧(UORF)潜伏的MRNA转录物。并非所有UORF都被认为是处于活跃的过程中。为了估算UORF对人类翻译调控的影响,我们首先基于编码基因序列图案来围绕所有可能的UORF的宇宙,并确定了130万个独特的UORF。为了确定其中哪一个可能在生物学相关性相关,我们使用了一个简单的贝叶斯分类器,使用89个属性标记为有效的核糖体分析实验entes。这允许我们推断到可能的功能UORF的全面目录。我们通过46人验证了使用体内蛋白质水平和核糖体占用的预测。这是比先前报告的功能性UORF的基本更大的目录。我们排名最有效的UORF列表允许研究人员测试他们的假设,了解uorfs在健康和疾病中的作用。我们通过在人类的癌症和疾病相关的种系变体中的躯体突变中的应用,展示了生物学兴趣的几个例子。

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