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首页> 外文期刊>BMC Genomics >Integrative analysis of the Trypanosoma brucei gene expression cascade predicts differential regulation of mRNA processing and unusual control of ribosomal protein expression
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Integrative analysis of the Trypanosoma brucei gene expression cascade predicts differential regulation of mRNA processing and unusual control of ribosomal protein expression

机译:布鲁氏锥虫基因表达级联的综合分析预测mRNA加工的差异调节和核糖体蛋白表达的异常控制

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Background Trypanosoma brucei is a unicellular parasite which multiplies in mammals (bloodstream form) and Tsetse flies (procyclic form). Trypanosome RNA polymerase II transcription is polycistronic, individual mRNAs being excised by trans splicing and polyadenylation. We previously made detailed measurements of mRNA half-lives in bloodstream and procyclic forms, and developed a mathematical model of gene expression for bloodstream forms. At the whole transcriptome level, many bloodstream-form mRNAs were less abundant than was predicted by the model. Results We refined the published mathematical model and extended it to the procyclic form. We used the model, together with known mRNA half-lives, to predict the abundances of individual mRNAs, assuming rapid, unregulated mRNA processing; then we compared the results with measured mRNA abundances. Remarkably, the abundances of most mRNAs in procyclic forms are predicted quite well by the model, being largely explained by variations in mRNA decay rates and length. In bloodstream forms substantially more mRNAs are less abundant than predicted. We list mRNAs that are likely to show particularly slow or inefficient processing, either in both forms or with developmental regulation. We also measured ribosome occupancies of all mRNAs in trypanosomes grown in the same conditions as were used to measure mRNA turnover. In procyclic forms there was a weak positive correlation between ribosome density and mRNA half-life, suggesting cross-talk between translation and mRNA decay; ribosome density was related to the proportion of the mRNA on polysomes, indicating control of translation initiation. Ribosomal protein mRNAs in procyclics appeared to be exceptionally rapidly processed but poorly translated. Conclusions Levels of mRNAs in procyclic form trypanosomes are determined mainly by length and mRNA decay, with some control of precursor processing. In bloodstream forms variations in nuclear events play a larger role in transcriptome regulation, suggesting aquisition of new control mechanisms during adaptation to mammalian parasitism.
机译:背景布鲁氏锥虫是一种单细胞寄生虫,在哺乳动物(血流形式)和采采蝇(蝇圈形式)中繁殖。锥虫RNA聚合酶II转录是多顺反子,通过反式剪接和聚腺苷酸化作用切除单个mRNA。我们之前对血流和前环形式的mRNA半衰期进行了详细的测量,并开发了血流形式的基因表达的数学模型。在整个转录组水平上,许多血流形式的mRNA均比模型所预测的丰富。结果我们完善了已发表的数学模型并将其扩展为前循环形式。我们使用该模型以及已知的mRNA半衰期来预测单个mRNA的丰度(假设快速,不受控制的mRNA处理);然后将结果与测得的mRNA丰度进行比较。值得注意的是,该模型可以很好地预测前环形式的大多数mRNA的丰度,这在很大程度上由mRNA衰减率和长度的变化来解释。在血流形式中,比预期的要多得多的mRNA含量要少得多。我们列出了可能以两种形式或在发育调控下显示出特别缓慢或低效加工的mRNA。我们还测量了在与用于测量mRNA营业额相同的条件下生长的锥虫中所有mRNA的核糖体占有率。在前环形式中,核糖体密度与mRNA半衰期之间存在弱的正相关,表明翻译与mRNA衰减之间存在串扰。核糖体密度与多核糖体上mRNA的比例有关,表明翻译起始受到控制。脯氨酸中的核糖体蛋白mRNA似乎被异常迅速地加工,但是翻译却很差。结论前环形式锥虫中mRNA的水平主要由长度和mRNA衰减决定,并有一定程度的前体加工控制。在血流形式中,核事件的变化在转录组调控中起着更大的作用,表明在适应哺乳动物寄生虫过程中获得了新的控制机制。

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