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atBRX1-1 and atBRX1-2 are involved in an alternative rRNA processing pathway in Arabidopsis thaliana

机译:atBRX1-1和atBRX1-2参与拟南芥中的另一种rRNA加工途径

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Ribosome biogenesis is an essential process in all organisms. In eukaryotes, multiple ribosome biogenesis factors (RBFs) act in the processing of ribosomal (r)RNAs, assembly of ribosomal subunits and their export to the cytoplasm. We characterized two genes in Arabidopsis thaliana coding for orthologs of yeast BRX1, a protein involved in maturation of the large ribosomal subunit. Both atBRX1 proteins, encoded by AT3G15460 and AT1G52930, respectively, are mainly localized in the nucleolus and are ubiquitously expressed throughout plant development and in various tissues. Mutant plant lines for both factors show a delay in development and pointed leaves can be observed in the brx1-2 mutant, implying a link between ribosome biogenesis and plant development. In addition, the pre-rRNA processing is affected in both mutants. Analysis of the pre-rRNA intermediates revealed that early processing steps can occur either in the 5' external transcribed spacer (ETS) or internal transcribed spacer 1 (ITS1). Interestingly, we also find that in xrn2 mutants, early processing events can be bypassed and removal of the 5' ETS is initiated by cleavage at the P' processing site. While the pathways of pre-rRNA processing are comparable to those of yeast and mammalian cells, the balance between the two processing pathways is different in plants. Furthermore, plant-specific steps such as an additional processing site in the 5' ETS, likely post-transcriptional processing of the early cleavage sites and accumulation of a 5' extended 5.8S rRNA not observed in other eukaryotes can be detected.
机译:核糖体生物发生是所有生物体中必不可少的过程。在真核生物中,多种核糖体生物发生因子(RBF)在核糖体(r)RNA的加工,核糖体亚基的组装以及其向细胞质的输出中起作用。我们在拟南芥中编码酵母BRX1的直系同源物,参与大核糖体亚基成熟的蛋白质的两个基因的特征。分别由AT3G15460和AT1G52930编码的两个atBRX1蛋白主要位于核仁中,并在整个植物发育和各种组织中普遍表达。两种因子的突变植物株系均显示发育延迟,在brx1-2突变体中可观察到尖叶,这表明核糖体生物发生与植物发育之间存在联系。另外,在两个突变体中,前rRNA的加工都受到影响。对前rRNA中间体的分析表明,早期加工步骤可以在5'外部转录间隔区(ETS)或内部转录间隔区1(ITS1)中发生。有趣的是,我们还发现在xrn2突变体中,可以绕过早期加工事件,并且通过在P'加工位点进行切割来启动5'ETS的去除。尽管rRNA前加工的途径与酵母和哺乳动物细胞的途径相当,但植物中两种加工途径之间的平衡却不同。此外,可以检测到植物特异性步骤,例如5'ETS中的其他加工位点,可能的转录后加工的早期切割位点以及在其他真核生物中未观察到的5'延伸的5.8S rRNA的积累。

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