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Poly(A)-specific ribonuclease is a nuclear ribosome biogenesis factor involved in human 18S rRNA maturation

机译:聚(a) - 特异性核糖核酸酶是涉及人18s rRNA成熟的核核糖体生物发生因子

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The poly-A specific ribonuclease (PARN), initially characterized for its role in mRNA catabolism, supports the processing of different types of non-coding RNAs including telomerase RNA. Mutations in PARN are linked to dyskeratosis congenita and pulmonary fibrosis. Here, we show that PARN is part of the enzymatic machinery that matures the human 18S ribosomal RNA (rRNA). Consistent with its nucleolar steady-state localization, PARN is required for 40S ribosomal subunit production and co-purifies with 40S subunit precursors. Depletion of PARN or expression of a catalytically-compromised PARN mutant results in accumulation of 3' extended 18S rRNA precursors. Analysis of these processing intermediates reveals a defect in 3' to 5' trimming of the internal transcribed spacer 1 (ITS1) region, subsequent to endonucleolytic cleavage at site E. Consistent with a function of PARN in exonucleolytic trimming of 18S-E pre-rRNA, recombinant PARN can process the corresponding ITS1 RNA fragment in vitro. Trimming of 18S-E prer-RNA by PARN occurs in the nucleus, upstream of the final endonucleolytic cleavage by the endonuclease NOB1 in the cytoplasm. These results identify PARN as a new component of the ribosome biogenesis machinery in human cells. Defects in ribosome biogenesis could therefore underlie the pathologies linked to mutations in PARN.
机译:聚-A特异性核糖核酸(PARN),其特征在于最初对其的mRNA分解代谢的作用,支持不同类型的非编码RNA,包括端粒酶RNA的的处理。在PARN突变与先天性角化不良和肺纤维化。在这里,我们表明,PARN是酶学机制是成熟人18S核糖体RNA(rRNA基因)的一部分。其核仁稳态定位相一致,需要40S核糖体亚基制作和共同净化与40S亚基前体PARN。的在3' 累积催化受损PARN突变体的结果PARN或表达的耗尽扩展18S rRNA的前体。这些加工中间体的分析揭示了在3' 至5' 位点处E.修整所述内转录间隔区的1(ITS1)区域,以核酸内切裂解随后符合PARN在18S-E的外切核酸微调的函数预先rRNA基因中的缺陷重组PARN可以处理在体外相应ITS1 RNA片段。通过PARN的18S-E PRER-RNA修整发生在细胞核中,通过在细胞质中的核酸内切NOB1最终核酸内裂解的上游。这些结果确定PARN如在人细胞中的核糖体合成机械的新组件。因此在核糖体合成缺陷可能背后链接到PARN突变病症。

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