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Key role of the 3' untranslated region in the cell cycle regulated expression of the Leishmania infantum histone H2A genes: minor synergistic effect of the 5' untranslated region

机译:3'非翻译区在婴儿周期利什曼原虫组蛋白H2A基因表达的细胞周期调节表达中的关键作用:5'非翻译区的较小协同作用

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Background Histone synthesis in Leishmania is tightly coupled to DNA replication by a post-transcriptional mechanism operating at the level of translation. Results In this work we have analyzed the implication of the 5' and 3' untranslated regions (UTR) in the cell cycle regulated expression of the histone H2A in Leishmania infantum. For that purpose, L. infantum promastigotes were stably transfected with different plasmid constructs in which the CAT coding region used as a reporter was flanked by the 5' and 3' UTR regions of the different H2A genes. We report that in spite of their sequence differences, histone H2A 5' and 3' UTRs conferred a cell cycle dependent pattern of expression on the CAT reporter since de novo synthesis of CAT increased when parasites enter the S phase. Using one established L. infantum cell line we showed that CAT expression is controlled by the same regulatory events that control the endogenous histone gene expression. Thus, although we did not detect changes in the level of CAT mRNAs during cell cycle progression, a drastic change in the polysome profiles of CAT mRNAs was observed during the progression from G1 to S phase. In the S phase CAT mRNAs were on polyribosomal fractions, but in the G1 phase the association of CAT transcripts with ribosomes was impaired. Furthermore, it was determined that the addition of just the H2A 3' UTR to the CAT reporter gene is sufficient to achieve a similar pattern of post-transcriptional regulation indicating that this region contains the major regulatory sequences involved in the cell cycle dependent expression of the H2A genes. On the other hand, although CAT transcripts bearing the H2A 5' alone were translated both in the G1 and S phase, higher percentages of transcripts were detected on polyribosomes in the S phase correlating with an increase in the de novo synthesis of CAT. Thus, it can be concluded that this region also contributes, although to a minor extent than the 3' UTR, in the enhancement of translation in the S phase relative to the G1 phase. Conclusion Our findings indicate that both, the 5' and the 3' UTRs contain sequence elements that contribute to the cell cycle expression of L. infantum H2A. The 3' UTR region is essential for cell cycle dependent translation of the L. infantum H2A transcripts whereas the 5' UTR has a minor contribution in their S phase dependent translation.
机译:背景利什曼原虫中的组蛋白合成通过在翻译水平上运行的转录后机制与DNA复制紧密结合。结果在这项工作中,我们分析了5'和3'非翻译区(UTR)对婴儿利什曼原虫中组蛋白H2A表达的细胞周期调控表达的影响。为此,用不同的质粒构建体稳定地转染了婴儿L. babyum前鞭毛体,其中用作报告基因的CAT编码区两侧是不同H2A基因的5'和3'UTR区。我们报道,尽管它们的序列差异,组蛋白H2A 5'和3'UTR赋予CAT报告基因细胞周期依赖性表达模式,因为当寄生虫进入S期时CAT的从头合成增加。使用一种已建立的婴儿乳杆菌细胞系,我们表明CAT表达受与控制内源性组蛋白基因表达相同的调控事件控制。因此,尽管我们在细胞周期进程中未检测到CAT mRNA的水平变化,但在从G1期到S期的过程中,却观察到了CAT mRNA的多核糖体谱的急剧变化。在S期,CAT mRNA在多核糖体部分上,而在G1期,CAT转录物与核糖体的结合受到损害。此外,已确定仅向CAT报告基因中添加H2A 3'UTR就足以实现类似的转录后调控模式,这表明该区域包含参与细胞周期依赖性表达的主要调控序列。 H2A基因。另一方面,尽管仅携带H2A 5'的CAT转录物在G1和S期均被翻译,但在S期的多核糖体上检测到更高百分比的转录物,与CAT从头合成的增加有关。因此,可以得出结论,尽管相对于3'UTR而言,该区域也有助于S相相对于G1相的翻译增强。结论我们的发现表明5'和3'UTR均包含有助于婴儿乳杆菌H2A细胞周期表达的序列元件。 3'UTR区对于婴儿乳杆菌H2A转录本的细胞周期依赖性翻译至关重要,而5'UTR区域在其S期依赖性翻译中贡献较小。

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