Bortolin M L, Ganot P, Kiss T
Laboratoire de Biologie Moléculaire Eucaryote du CNRS, 118 route de Narbonne, 31062 Toulouse, France.
EMBO J. 1999 Jan 15;18(2):457-69. doi: 10.1093/emboj/18.2.457.
During site-specific pseudouridylation of eukaryotic rRNAs, selection of correct substrate uridines for isomerization into pseudouridine is directed by small nucleolar RNAs (snoRNAs). The pseudouridylation guide snoRNAs share a common 'hairpin-hinge- hairpin-tail' secondary structure and two conserved sequence motifs, the H and ACA boxes, located in the single-stranded hinge and tail regions, respectively. In the 5'- and/or 3'-terminal hairpin, an internal loop structure, the pseudouridylation pocket, selects the target uridine through formation of base-pairing interactions with rRNAs. Here, essential elements for accumulation and function of rRNA pseudouridylation guide snoRNAs have been analysed by expressing various mutant yeast snR5, snR36 and human U65 snoRNAs in yeast cells. We demonstrate that the H and ACA boxes that are required for formation of the correct 5' and 3' ends of the snoRNA, respectively, are also essential for the pseudouridylation reaction directed by both the 5'- and 3'-terminal pseudouridylation pockets. Similarly, RNA helices flanking the two pseudouridylation pockets are equally essential for pseudouridylation reactions mediated by either the 5' or 3' hairpin structure, indicating that the two hairpin domains function in a highly co-operative manner. Finally, we demonstrate that by manipulating the rRNA recognition motifs of pseudouridylation guide snoRNAs, novel pseudouridylation sites can be generated in yeast rRNAs.
在真核生物核糖体RNA(rRNA)的位点特异性假尿苷化过程中,小核仁RNA(snoRNA)指导将正确的底物尿苷异构化为假尿苷。假尿苷化引导snoRNA具有共同的“发夹-铰链-发夹-尾”二级结构以及两个保守的序列基序,即H盒和ACA盒,分别位于单链铰链区和尾区。在5'-和/或3'-末端发夹中,一个内部环结构,即假尿苷化口袋,通过与rRNA形成碱基配对相互作用来选择靶标尿苷。在此,通过在酵母细胞中表达各种突变的酵母snR5、snR36和人U65 snoRNA,分析了rRNA假尿苷化引导snoRNA积累和功能的必需元件。我们证明,分别用于形成snoRNA正确5'和3'末端所需的H盒和ACA盒,对于由5'-和3'-末端假尿苷化口袋介导的假尿苷化反应也是必不可少的。同样,两个假尿苷化口袋侧翼的RNA螺旋对于由5'或3'发夹结构介导的假尿苷化反应同样至关重要,这表明两个发夹结构域以高度协同的方式发挥作用。最后,我们证明,通过操纵假尿苷化引导snoRNA的rRNA识别基序,可以在酵母rRNA中产生新的假尿苷化位点。