Aquino Gerald Ryan R, Krogh Nicolai, Hackert Philipp, Martin Roman, Gallesio Jimena Davila, van Nues Robert W, Schneider Claudia, Watkins Nicholas J, Nielsen Henrik, Bohnsack Katherine E, Bohnsack Markus T
Department of Molecular Biology, University Medical Centre Göttingen, Humboldtallee 23, 37073 Göttingen, Germany.
Department of Cellular and Molecular Medicine, University of Copenhagen, 3B Blegdamsvej, 2200N Copenhagen, Denmark.
Nucleic Acids Res. 2021 Apr 19;49(7):4066-4084. doi: 10.1093/nar/gkab159.
RNA helicases play important roles in diverse aspects of RNA metabolism through their functions in remodelling ribonucleoprotein complexes (RNPs), such as pre-ribosomes. Here, we show that the DEAD box helicase Dbp3 is required for efficient processing of the U18 and U24 intron-encoded snoRNAs and 2'-O-methylation of various sites within the 25S ribosomal RNA (rRNA) sequence. Furthermore, numerous box C/D snoRNPs accumulate on pre-ribosomes in the absence of Dbp3. Many snoRNAs guiding Dbp3-dependent rRNA modifications have overlapping pre-rRNA basepairing sites and therefore form mutually exclusive interactions with pre-ribosomes. Analysis of the distribution of these snoRNAs between pre-ribosome-associated and 'free' pools demonstrated that many are almost exclusively associated with pre-ribosomal complexes. Our data suggest that retention of such snoRNPs on pre-ribosomes when Dbp3 is lacking may impede rRNA 2'-O-methylation by reducing the recycling efficiency of snoRNPs and by inhibiting snoRNP access to proximal target sites. The observation of substoichiometric rRNA modification at adjacent sites suggests that the snoRNPs guiding such modifications likely interact stochastically rather than hierarchically with their pre-rRNA target sites. Together, our data provide new insights into the dynamics of snoRNPs on pre-ribosomal complexes and the remodelling events occurring during the early stages of ribosome assembly.
RNA解旋酶通过重塑核糖核蛋白复合物(RNP),如前核糖体,在RNA代谢的各个方面发挥重要作用。在这里,我们表明DEAD盒解旋酶Dbp3是U18和U24内含子编码的snoRNA高效加工以及25S核糖体RNA(rRNA)序列内各个位点2'-O-甲基化所必需的。此外,在没有Dbp3的情况下,许多盒C/D snoRNP会在前核糖体上积累。许多指导依赖Dbp3的rRNA修饰的snoRNA具有重叠的前体rRNA碱基配对位点,因此与前核糖体形成相互排斥的相互作用。对这些snoRNA在前核糖体相关池和“游离”池之间分布的分析表明,许多snoRNA几乎只与前核糖体复合物相关。我们的数据表明,当缺乏Dbp3时,此类snoRNP在前核糖体上的保留可能会通过降低snoRNP的循环效率和抑制snoRNP接近近端靶位点来阻碍rRNA的2'-O-甲基化。相邻位点亚化学计量rRNA修饰的观察结果表明,指导此类修饰的snoRNP可能与其前体rRNA靶位点随机而非分层相互作用。总之,我们的数据为前核糖体复合物上snoRNP的动态变化以及核糖体组装早期发生的重塑事件提供了新的见解。