Département des sciences biologiques and Centre de recherche BioMed, Université du Québec à Montréal, Montréal, Québec, H3C 3P8, Canada.
Nucleic Acids Res. 2011 Dec;39(22):9659-70. doi: 10.1093/nar/gkr659. Epub 2011 Sep 5.
H/ACA small nucleolar RNPs (snoRNPs) that guide pseudouridylation reactions are comprised of one small nucleolar RNA (snoRNA) and four common proteins (Cbf5, Gar1, Nhp2 and Nop10). Unlike other H/ACA snoRNPs, snR30 is essential for the early processing reactions that lead to the production of 18S ribosomal RNA in the yeast Saccharomyces cerevisiae. To determine whether snR30 RNP contains specific proteins that contribute to its unique functional properties, we devised an affinity purification strategy using TAP-tagged Gar1 and an RNA aptamer inserted in snR30 snoRNA to selectively purify the RNP. Northern blotting and pCp labeling experiments showed that S1-tagged snR30 snoRNA can be selectively purified with streptavidin beads. Protein analysis revealed that aptamer-tagged snR30 RNA was associated with the four H/ACA proteins and a number of additional proteins: Nop6, ribosomal proteins S9 and S18 and histones H2B and H4. Using antibodies raised against Nop6 we show that endogenous Nop6 localizes to the nucleolus and that it cosediments with snR30 snoRNA in sucrose density gradients. We demonstrate through primer extension experiments that snR30 snoRNA is required for cleavages at site A0, A1 and A2, and that the absence of Nop6 decreases the efficiency of cleavage at site A2. Finally, electron microscopy analyses of chromatin spreads from cells depleted of snR30 snoRNA show that it is required for SSU processome assembly.
H/ACA 小核仁 RNA 颗粒(snoRNP)可指导假尿嘧啶化反应,由一个小核仁 RNA(snoRNA)和四个常见蛋白(Cbf5、Gar1、Nhp2 和 Nop10)组成。与其他 H/ACA snoRNP 不同,snR30 是酵母酿酒酵母中导致 18S 核糖体 RNA 早期加工反应所必需的。为了确定 snR30 RNP 是否含有特定的蛋白质,这些蛋白质有助于其独特的功能特性,我们设计了一种使用 TAP 标记的 Gar1 和插入 snR30 snoRNA 中的 RNA 适体的亲和纯化策略,以选择性地纯化 RNP。Northern 印迹和 pCp 标记实验表明,S1 标记的 snR30 snoRNA 可以用链霉亲和素珠选择性纯化。蛋白质分析表明,适体标记的 snR30 RNA 与四个 H/ACA 蛋白和许多其他蛋白相关:Nop6、核糖体蛋白 S9 和 S18 以及组蛋白 H2B 和 H4。我们使用针对 Nop6 产生的抗体表明,内源性 Nop6 定位于核仁,并且它在蔗糖密度梯度中与 snR30 snoRNA 共沉降。我们通过引物延伸实验证明,snR30 snoRNA 是 A0、A1 和 A2 位点切割所必需的,并且 Nop6 的缺失降低了 A2 位点切割的效率。最后,从耗尽 snR30 snoRNA 的细胞的染色质铺片中进行的电子显微镜分析表明,它是 SSU 加工体组装所必需的。