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Gradual processing of the ITS1 from the nucleolus to the cytoplasm during synthesis of the human 18S rRNA

机译:人18S rRNA合成过程中ITS1从核仁到细胞质的逐步加工

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摘要

Defects in ribosome biogenesis trigger stress response pathways, which perturb cell proliferation and differentiation in several genetic diseases. In Diamond-Blackfan anemia (DBA), a congenital erythroblastopenia, mutations in ribosomal protein genes often interfere with the processing of the internal transcribed spacer 1 (ITS1), the mechanism of which remains elusive in human cells. Using loss-of-function experiments and extensive RNA analysis, we have defined the precise position of the endonucleolytic cleavage E in the ITS1, which generates the 18S-E intermediate, the last precursor to the 18S rRNA. Unexpectedly, this cleavage is followed by 3'-5' exonucleolytic trimming of the 18S-E precursor during nuclear export of the pre-40S particle, which sets a new mechanism for 18S rRNA formation clearly different from that established in yeast. In addition, cleavage at site E is also followed by 5'-3' exonucleolytic trimming of the ITS1 by exonuclease XRN2. Perturbation of this step on knockdown of the large subunit ribosomal protein RPL26, which was recently associated to DBA, reveals the putative role of a highly conserved cis-acting sequence in ITS1 processing. These data cast new light on the original mechanism of ITS1 elimination in human cells and provide a mechanistic framework to further study the interplay of DBA-linked ribosomal proteins in this process.
机译:核糖体生物发生中的缺陷触发了应激反应途径,该途径扰乱了几种遗传疾病中的细胞增殖和分化。在先天性成红细胞减少症的Diamond-Blackfan贫血(DBA)中,核糖体蛋白基因的突变通常会干扰内部转录间隔区1(ITS1)的加工,而该间隔区的机制在人类细胞中仍然难以捉摸。使用功能丧失实验和广泛的RNA分析,我们定义了ITS1中内切核酸酶E的精确位置,该酶产生了18S-E中间体,即18S rRNA的最后一个前体。出乎意料的是,这种切割之后是在18S-E前体的核输出过程中18S-E前体的3'-5'核酸外切修整,这为18S rRNA形成树立了与酵母中所建立的机制明显不同的新机制。另外,在位点E的切割之后,还通过核酸外切酶XRN2对ITS1进行5'-3'外切核酸修饰。该步骤对敲除大亚基核糖体蛋白RPL26(最近与DBA相关)的干扰,揭示了在ITS1加工中高度保守的顺式作用序列的推定作用。这些数据为人类细胞中ITS1消除的原始机制提供了新的思路,并为进一步研究DBA连接的核糖体蛋白在此过程中的相互作用提供了机制框架。

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