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Comparative ribosome profiling reveals extensive translational complexity in different Trypanosoma brucei life cycle stages

机译:比较核糖体分析揭示了在不同的锥虫布鲁氏菌生命周期阶段广泛的翻译复杂性

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摘要

While gene expression is a fundamental and tightly controlled cellular process that is regulated at multiple steps, the exact contribution of each step remains unknown in any organism. The absence of transcription initiation regulation for RNA polymerase II in the protozoan parasite Trypanosoma brucei greatly simplifies the task of elucidating the contribution of translation to global gene expression. Therefore, we have sequenced ribosome-protected mRNA fragments in T. brucei, permitting the genome-wide analysis of RNA translation and translational efficiency. We find that the latter varies greatly between life cycle stages of the parasite and ∼100-fold between genes, thus contributing to gene expression to a similar extent as RNA stability. The ability to map ribosome positions at sub-codon resolution revealed extensive translation from upstream open reading frames located within 5′ UTRs and enabled the identification of hundreds of previously un-annotated putative coding sequences (CDSs). Evaluation of existing proteomics and genome-wide RNAi data confirmed the translation of previously un-annotated CDSs and suggested an important role for >200 of those CDSs in parasite survival, especially in the form that is infective to mammals. Overall our data show that translational control plays a prevalent and important role in different parasite life cycle stages of T. brucei.
机译:尽管基因表达是一个基本且受到严格控制的细胞过程,但该过程在多个步骤中受到调节,但在任何生物中,每个步骤的确切作用仍然未知。在原生动物寄生虫布鲁氏锥虫中没有RNA聚合酶II的转录起始调控,这大大简化了阐明翻译对整体基因表达的贡献的任务。因此,我们已经测序了布鲁氏杆菌中的核糖体保护的mRNA片段,从而可以对RNA翻译和翻译效率进行全基因组分析。我们发现后者在寄生虫的生命周期阶段之间和基因之间约有100倍的变化很大,从而以与RNA稳定相似的程度促进了基因表达。以亚密码子分辨率定位核糖体位置的能力揭示了来自位于5'UTR内的上游开放阅读框的广泛翻译,并能够鉴定数百个先前未注释的推定编码序列(CDS)。对现有蛋白质组学和全基因组RNAi数据的评估证实了以前未注释的CDS的翻译,并暗示了> 200的这些CDS在寄生虫存活中的重要作用,尤其是对哺乳动物具有感染性的形式。总体而言,我们的数据表明,翻译控制在布鲁氏杆菌的不同寄生虫生命周期阶段中起着普遍而重要的作用。

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