Département des sciences biologiques and Centre de recherche BioMed, Université du Québec à Montréal, Montréal, Québec, Canada.
Nucleic Acids Res. 2014 Mar;42(5):3194-206. doi: 10.1093/nar/gkt1293. Epub 2013 Dec 18.
Different pre-ribosomal complexes are formed during ribosome biogenesis, and the composition of these complexes is highly dynamic. Dbp4, a conserved DEAD-box RNA helicase implicated in ribosome biogenesis, interacts with nucleolar proteins Bfr2 and Enp2. We show that, like Dbp4, Bfr2 and Enp2 are required for the early processing steps leading to the production of 18S ribosomal RNA. We also found that Bfr2 and Enp2 associate with the U3 small nucleolar RNA (snoRNA), the U3-specific protein Mpp10 and various pre-18S ribosomal RNA species. Thus, we propose that Bfr2, Dbp4 and Enp2 are components of the small subunit (SSU) processome, a large complex of ∼80S. Sucrose gradient sedimentation analyses indicated that Dbp4, Bfr2 and Enp2 sediment in a peak of ∼50S and in a peak of ∼80S. Bfr2, Dbp4 and Enp2 associate together in the 50S complex, which does not include the U3 snoRNA; however, they associate with U3 snoRNA in the 80S complex (SSU processome). Immunoprecipitation experiments revealed that U14 snoRNA associates with Dbp4 in the 50S complex, but not with Bfr2 or Enp2. The assembly factor Tsr1 is not part of the '50S' complex, indicating this complex is not a pre-40S ribosome. A combination of experiments leads us to propose that Bfr2, Enp2 and Dbp4 are recruited at late steps during assembly of the SSU processome.
在核糖体生物发生过程中形成不同的前核糖体复合物,这些复合物的组成具有高度动态性。Dbp4 是一种参与核糖体生物发生的保守 DEAD-box RNA 解旋酶,与核仁蛋白 Bfr2 和 Enp2 相互作用。我们表明,与 Dbp4 一样,Bfr2 和 Enp2 是导致产生 18S 核糖体 RNA 的早期加工步骤所必需的。我们还发现 Bfr2 和 Enp2 与 U3 小核仁 RNA(snoRNA)、U3 特异性蛋白 Mpp10 和各种前 18S 核糖体 RNA 种类结合。因此,我们提出 Bfr2、Dbp4 和 Enp2 是小亚基(SSU)加工体的组成部分,这是一个约 80S 的大型复合物。蔗糖梯度沉降分析表明,Dbp4、Bfr2 和 Enp2 在约 50S 和约 80S 的峰中沉降。Bfr2、Dbp4 和 Enp2 一起在 50S 复合物中结合,该复合物不包含 U3 snoRNA;然而,它们在 80S 复合物(SSU 加工体)中与 U3 snoRNA 结合。免疫沉淀实验表明,U14 snoRNA 与 Dbp4 在 50S 复合物中结合,但与 Bfr2 或 Enp2 不结合。组装因子 Tsr1 不是“50S”复合物的一部分,表明该复合物不是前 40S 核糖体。一系列实验使我们提出 Bfr2、Enp2 和 Dbp4 是在 SSU 加工体组装的晚期步骤中被招募的。