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首页> 外文期刊>Nucleic acids research >Human nucleolar protein Nop52 (RRP1/NNP-1) is involved in site 2 cleavage in internal transcribed spacer 1 of pre-rRNAs at early stages of ribosome biogenesis
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Human nucleolar protein Nop52 (RRP1/NNP-1) is involved in site 2 cleavage in internal transcribed spacer 1 of pre-rRNAs at early stages of ribosome biogenesis

机译:人类核仁蛋白Nop52(RRP1 / NNP-1)在核糖体生物发生的早期阶段参与pre-rRNA的内部转录间隔区1的位点2切割

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摘要

During the early steps of ribosome biogenesis in mammals, the two ribosomal subunits 40S and 60S are produced via splitting of the large 90S pre-ribosomal particle (90S) into pre-40S and pre-60S pre-ribosomal particles (pre-40S and pre-60S). We previously proposed that replacement of fibrillarin by Nop52 (RRP1/NNP-1) for the binding to p32 (C1QBP) is a key event that drives this splitting process. However, how the replacement by RRP1 is coupled with the endo- and/or exo-ribonucleolytic cleavage of pre-rRNA remains unknown. In this study, we demonstrate that RRP1 deficiency suppressed site 2 cleavage on ITS1 of 47S/45S, 41S and 36S pre-rRNAs in human cells. RRP1 was also present in 90S and was localized in the dense fibrillar component of the nucleolus dependently on active RNA polymerase I transcription. In addition, double knockdown of XRN2 and RRP1 revealed that RRP1 accelerated the site 2 cleavage of 47S, 45S and 41S pre-rRNAs. These data suggest that RRP1 is involved not only in competitive binding with fibrillarin to C1QBP on 90S but also in site 2 cleavage in ITS1 of pre-rRNAs at early stages of human ribosome biogenesis; thus, it is likely that RRP1 integrates the cleavage of site 2 with the physical split of 90S into pre-40S and pre-60S.
机译:在哺乳动物核糖体生物发生的早期阶段,两个核糖体亚基40S和60S是通过将大的90S核糖体前颗粒(90S)分成40S和60S之前的核糖体前颗粒(40S和pre -60S)。我们先前提出,用Nop52(RRP1 / NNP-1)取代原纤维蛋白以结合到p32(C1QBP)是驱动该分裂过程的关键事件。然而,如何用RRP1替代与pre-rRNA的内核糖核糖核酸裂解和/或核糖核酸外核糖核酸裂解是如何结合的仍然未知。在这项研究中,我们证明RRP1缺乏抑制人细胞中47S / 45S,41S和36S pre-rRNA的ITS1上的位点2切割。 RRP1也存在于90年代,并且依赖于活性RNA聚合酶I转录而位于核仁的致密纤维状成分中。此外,XRN2和RRP1的双重敲低表明RRP1加速了47S,45S和41S pre-rRNA的位点2切割。这些数据表明,RRP1不仅与原纤维蛋白在90年代与C1QBP竞争性结合有关,而且还参与人核糖体生物发生早期阶段pre-rRNA的ITS1中的位点2裂解。因此,RRP1可能会将位点2的切割与90S的物理分裂整合为40S之前和60S之前的部分。

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