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Visualising ribosome profiling and using it for reading frame detection and exploration of eukaryotic translation initiation

机译:可视化核糖体谱并将其用于阅读框检测和真核翻译起始探索

摘要

Ribosome profiling (ribo-seq) is a recently developed technique that provides genomewide information on protein synthesis (GWIPS) in vivo. The high resolution of ribo-seq is one of the exciting properties of this technique. In Chapter 2, I present a computational method that utilises the sub-codon precision and triplet periodicity of ribosome profiling data to detect transitions in the translated reading frame. Application of this method to ribosome profiling data generated for human HeLa cells allowed us to detect several human genes where the same genomic segment is translated in more than one reading frame. Since the initial publication of the ribosome profiling technique in 2009, there has been a proliferation of studies that have used the technique to explore various questions with respect to translation. A review of the many uses and adaptations of the technique is provided in Chapter 1. Indeed, owing to the increasing popularity of the technique and the growing number of published ribosome profiling datasets, we have developed GWIPS-viz (http://gwips.ucc.ie), a ribo-seq dedicated genome browser. Details on the development of the browser and its usage are provided in Chapter 3. One of the surprising findings of ribosome profiling of initiating ribosomes carried out in 3 independent studies, was the widespread use of non-AUG codons as translation initiation start sites in mammals. Although initiation at non-AUG codons in mammals has been documented for some time, the extent of non-AUG initiation reported by these ribo-seq studies was unexpected. In Chapter 4, I present an approach for estimating the strength of initiating codons based on the leaky scanning model of translation initiation. Application of this approach to ribo-seq data illustrates that initiation at non-AUG codons is inefficient compared to initiation at AUG codons. In addition, our approach provides a probability of initiation score for each start site that allows its strength of initiation to be evaluated.
机译:核糖体谱分析(ribo-seq)是一项最近开发的技术,可提供有关体内蛋白质合成(GWIPS)的全基因组信息。 ribo-seq的高分辨率是该技术的令人兴奋的特性之一。在第二章中,我提出了一种计算方法,该方法利用核糖体图谱数据的亚密码子精度和三重态周期性来检测翻译的阅读框中的跃迁。将此方法应用于为人类HeLa细胞生成的核糖体图谱数据,使我们能够检测多个人类基因,其中同一基因组片段在一个以上阅读框中被翻译。自从2009年首次发布核糖体特征分析技术以来,已有大量研究使用该技术探索有关翻译的各种问题。第1章提供了对该技术的许多用途和适应性的综述。的确,由于该技术的日益普及以及已公开的核糖体图谱数据集的不断增长,我们开发了GWIPS-viz(http:// gwips。 ucc.ie),一个核糖核酸序列专用的基因组浏览器。在第3章中提供了有关浏览器开发及其使用方法的详细信息。在3项独立研究中对起始核糖体进行核糖体谱分析的令人惊讶的发现之一是,非AUG密码子广泛用作哺乳动物的翻译起始起点。尽管已经有一段时间记录了哺乳动物非AUG密码子的起始,但是这些核糖序列研究报道的非AUG起始的程度是出乎意料的。在第4章中,我提出了一种基于翻译起始的泄漏扫描模型来估计起始密码子强度的方法。该方法在核糖序列数据中的应用表明,与在AUG密码子处起始相比,在非AUG密码子处起始效率低下。另外,我们的方法为每个起始位点提供了一个起始分数的概率,从而可以评估其起始强度。

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    Mannion Michel Audrey;

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  • 年度 2014
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