Bagni C, Lapeyre B
Centre de Recherche de Biochimie Macromoléculaire and Institut de Génétique Moléculaire, 1919 Route de Mende, BP5051, 34293 Montpellier Cedex 01, France.
J Biol Chem. 1998 May 1;273(18):10868-73. doi: 10.1074/jbc.273.18.10868.
The nucleolar proteins Gar1p and fibrillarin possess a typical nucleolar glycine/arginine-rich domain and belong to ribonucleoprotein particles. Both proteins are essential for yeast cell growth and are required for pre-rRNA processing. In addition, Gar1p is involved in pre-rRNA pseudouridylation, whereas fibrillarin is required for pre-rRNA methylation. Gar1p and fibrillarin are each associated with a different subset of the small nucleolar RNAs (snoRNAs). Gar1p is co-immunoprecipitated with the H/ACA family of snoRNAs, whereas fibrillarin is co-immunoprecipitated with the C/D family. However, attempts to demonstrate direct interactions between fibrillarin and snoRNAs have failed, and such interactions between Gar1p and the H/ACA snoRNAs had not yet been reported. Among the H/ACA snoRNAs associated with Gar1p, one can distinguish a large group of snoRNAs that are not essential in yeast and serve as guides for pseudouridine synthesis onto the pre-rRNA molecule. In contrast, the two snoRNAs snR10 and snR30 are required for normal cell growth and for pre-rRNA cleavage. We show here that Gar1p interacts in vitro directly and specifically with these two snoRNAs. Deletion analysis of Gar1p indicates that a major RNA binding element, which is extremely well conserved throughout evolution, lies in the middle of the protein. However, this domain alone binds poorly to the target RNAs and an accessory domain is required to restore efficient binding. The accessory domain can be either one of the glycine/arginine-rich domains or a second element of the core of the protein that is highly conserved between different species.
核仁蛋白Gar1p和纤维蛋白原具有典型的富含甘氨酸/精氨酸的核仁结构域,属于核糖核蛋白颗粒。这两种蛋白质对酵母细胞生长至关重要,是前体rRNA加工所必需的。此外,Gar1p参与前体rRNA假尿苷化,而纤维蛋白原是前体rRNA甲基化所必需的。Gar1p和纤维蛋白原分别与不同的小核仁RNA(snoRNA)子集相关联。Gar1p与H/ACA家族的snoRNA共免疫沉淀,而纤维蛋白原与C/D家族共免疫沉淀。然而,证明纤维蛋白原与snoRNA之间直接相互作用的尝试失败了,Gar1p与H/ACA snoRNA之间的这种相互作用尚未见报道。在与Gar1p相关的H/ACA snoRNA中,可以区分出一大组在酵母中并非必需的snoRNA,它们作为前体rRNA分子上假尿苷合成的引导物。相比之下,两种snoRNA snR10和snR30是正常细胞生长和前体rRNA切割所必需的。我们在此表明,Gar1p在体外与这两种snoRNA直接且特异性地相互作用。对Gar1p的缺失分析表明,一个在整个进化过程中极其保守的主要RNA结合元件位于该蛋白质的中部。然而,仅这个结构域与靶RNA的结合较差,需要一个辅助结构域来恢复有效的结合。辅助结构域可以是富含甘氨酸/精氨酸的结构域之一,也可以是该蛋白质核心中在不同物种间高度保守的第二个元件。