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人类60S前体组装因子将rRNA转录与前体rRNA加工联系起来。

Human pre-60S assembly factors link rRNA transcription to pre-rRNA processing.

作者信息

McCool Mason A, Buhagiar Amber F, Bryant Carson J, Ogawa Lisa M, Abriola Laura, Surovtseva Yulia V, Baserga Susan J

机构信息

Yale University.

Yale University School of Medicine

出版信息

RNA. 2022 Nov 2;29(1):82-96. doi: 10.1261/rna.079149.122.

Abstract

In eukaryotes, the nucleolus is the site of ribosome biosynthesis, an essential process in all cells. While human ribosome assembly is largely evolutionarily conserved, many of the regulatory details underlying its control and function have not yet been well-defined. The nucleolar protein RSL24D1 was originally identified as a factor important for 60S ribosomal subunit biogenesis. In addition, the PeBoW (BOP1-PES1-WDR12) complex has been well-defined as required for pre-28S rRNA processing and cell proliferation. In this study, we show that RSL24D1 depletion impairs both pre-ribosomal RNA (pre-rRNA) transcription and mature 28S rRNA production, leading to decreased protein synthesis and p53 stabilization in human cells. Surprisingly, each of the PeBoW complex members is also required for pre-rRNA transcription. We demonstrate that RSL24D1 and WDR12 co-immunoprecipitate with the RNA polymerase I subunit, RPA194, and regulate its steady state levels. These results uncover the dual role of RSL24D1 and the PeBoW complex in multiple steps of ribosome biogenesis, and provide evidence implicating large ribosomal subunit biogenesis factors in pre-rRNA transcription control.

摘要

在真核生物中,核仁是核糖体生物合成的场所,这是所有细胞中的一个基本过程。虽然人类核糖体组装在很大程度上是进化保守的,但其控制和功能背后的许多调控细节尚未得到明确界定。核仁蛋白RSL24D1最初被鉴定为对60S核糖体亚基生物合成很重要的一个因子。此外,PeBoW(BOP1-PES1-WDR12)复合物已被明确为前28S rRNA加工和细胞增殖所必需。在本研究中,我们表明RSL24D1的缺失会损害核糖体前体RNA(pre-rRNA)转录和成熟28S rRNA的产生,导致人类细胞中蛋白质合成减少和p53稳定。令人惊讶的是,PeBoW复合物的每个成员对于pre-rRNA转录也是必需的。我们证明RSL24D1和WDR12与RNA聚合酶I亚基RPA194共同免疫沉淀,并调节其稳态水平。这些结果揭示了RSL24D1和PeBoW复合物在核糖体生物合成多个步骤中的双重作用,并提供了证据表明大核糖体亚基生物合成因子参与pre-rRNA转录控制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6d01/9808572/3c43565c8a8e/82f01.jpg

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