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首页> 外文期刊>RNA biology >Genome-wide analysis of small nucleolar RNAs of Leishmania major reveals a rich repertoire of RNAs involved in modification and processing of rRNA
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Genome-wide analysis of small nucleolar RNAs of Leishmania major reveals a rich repertoire of RNAs involved in modification and processing of rRNA

机译:对利什曼原虫主要小核仁RNA的全基因组分析显示,参与rRNA修饰和加工的RNA丰富。

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Trypanosomatids are protozoan parasites and the causative agent of infamous infectious diseases. These organisms regulate their gene expression mainly at the post-transcriptional level and possess characteristic RNA processing mechanisms. In this study, we analyzed the complete repertoire of Leishmania major small nucleolar (snoRNA) RNAs by performing RNA-seq analysis on RNAs that were affinity-purified using the C/D snoRNA core protein, SNU13, and the H/ACA core protein, NHP2. This study revealed a large collection of C/D and H/ACA snoRNAs, organized in gene clusters generally containing both snoRNA types. Abundant snoRNAs were identified and predicted to guide trypanosome-specific rRNA cleavages. The repertoire of snoRNAs was compared to that of the closely related Trypanosoma brucei, and 80% of both C/D and H/ACA molecules were found to have functional homologues. The comparative analyses elucidated how snoRNAs evolved to generate molecules with analogous functions in both species. Interestingly, H/ACA RNAs have great flexibility in their ability to guide modifications, and several of the RNA species can guide more than one modification, compensating for the presence of single hairpin H/ACA snoRNA in these organisms. Placing the predicted modifications on the rRNA secondary structure revealed hypermodification regions mostly in domains which are modified in other eukaryotes, in addition to trypanosome-specific modifications.
机译:锥虫是原生动物的寄生虫,是臭名昭著的传染病的病原体。这些生物主要在转录后水平调节其基因表达,并具有特征性的RNA加工机制。在这项研究中,我们通过对使用C / D snoRNA核心蛋白SNU13和H / ACA核心蛋白进行亲和纯化的RNA进行RNA-seq分析,分析了利什曼原虫主要小核仁(snoRNA)RNA的完整组成, NHP2。这项研究揭示了大量的C / D和H / ACA snoRNA,它们被组织成通常包含两种snoRNA类型的基因簇。鉴定出丰富的snoRNA,并预测它们可指导锥虫特异性rRNA裂解。将snoRNA的组成与紧密相关的布鲁氏锥虫进行了比较,发现80%的C / D和H / ACA分子具有功能同源性。对比分析阐明了snoRNAs如何进化以产生在两个物种中具有类似功能的分子。有趣的是,H / ACA RNA在指导修饰的能力方面具有很大的灵活性,并且几种RNA物种可以指导一种以上的修饰,从而弥补了这些生物中单个发夹型H / ACA snoRNA的存在。将预测的修饰置于rRNA二级结构上,除了锥虫特异性修饰外,还显示了大部分在其他真核生物中修饰的结构域中的超修饰区域。

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