Hoang Tran, Peng Wen-Tao, Vanrobays Emmanuel, Krogan Nevan, Hiley Shawna, Beyer Ann L, Osheim Yvonne N, Greenblatt Jack, Hughes Timothy R, Lafontaine Denis L J
Fonds National de la Recherche Scientifique, Université Libre de Bruxelles, Institut de Biologie et de Médecine Moléculaires, Charleroi-Gosselies, Belgium.
Mol Cell Biol. 2005 Jul;25(13):5523-34. doi: 10.1128/MCB.25.13.5523-5534.2005.
Esf2p is the Saccharomyces cerevisiae homolog of mouse ABT1, a protein previously identified as a putative partner of the TATA-element binding protein. However, large-scale studies have indicated that Esf2p is primarily localized to the nucleolus and that it physically associates with pre-rRNA processing factors. Here, we show that Esf2p-depleted cells are defective for pre-rRNA processing at the early nucleolar cleavage sites A0 through A2 and consequently are inhibited for 18S rRNA synthesis. Esf2p was stably associated with the 5' external transcribed spacer (ETS) and the box C+D snoRNA U3, as well as additional box C+D snoRNAs and proteins enriched within the small-subunit (SSU) processome/90S preribosomes. Esf2p colocalized on glycerol gradients with 90S preribosomes and slower migrating particles containing 5' ETS fragments. Strikingly, upon Esf2p depletion, chromatin spreads revealed that SSU processome assembly and compaction are inhibited and glycerol gradient analysis showed that U3 remains associated within 90S preribosomes. This suggests that in the absence of proper SSU processome assembly, early pre-rRNA processing is inhibited and U3 is not properly released from the 35S pre-rRNAs. The identification of ABT1 in a large-scale analysis of the human nucleolar proteome indicates that its role may also be conserved in mammals.
Esf2p是小鼠ABT1在酿酒酵母中的同源物,ABT1蛋白先前被鉴定为TATA元件结合蛋白的假定伴侣。然而,大规模研究表明,Esf2p主要定位于核仁,并且它与前体rRNA加工因子存在物理关联。在此,我们表明,Esf2p缺失的细胞在核仁早期切割位点A0至A2处的前体rRNA加工存在缺陷,因此18S rRNA合成受到抑制。Esf2p与5'外部转录间隔区(ETS)、盒C + D小核仁RNA U3以及小亚基(SSU)加工体/90S前核糖体中富集的其他盒C + D小核仁RNA和蛋白质稳定相关。Esf2p在甘油梯度上与90S前核糖体以及含有5' ETS片段的迁移较慢的颗粒共定位。引人注目的是,在Esf2p缺失后,染色质铺展显示SSU加工体的组装和压实受到抑制,甘油梯度分析表明U3仍与90S前核糖体相关联。这表明在缺乏适当的SSU加工体组装的情况下,早期前体rRNA加工受到抑制,并且U3不能从35S前体rRNA中正确释放。在对人类核仁蛋白质组的大规模分析中鉴定出ABT1,这表明其作用在哺乳动物中可能也具有保守性。