Lechertier Tanguy, Grob Alice, Hernandez-Verdun Danièle, Roussel Pascal
Institut Jacques Monod, UMR 7592 CNRS/Universités Paris 6 et 7, 2 Place Jussieu, 75251 Paris Cedex 05, France.
Exp Cell Res. 2009 Apr 1;315(6):928-42. doi: 10.1016/j.yexcr.2009.01.016. Epub 2009 Jan 30.
Small nucleolar RNAs play crucial roles in ribosome biogenesis. They guide folding, site-specific nucleotide modifications and participate in cleavage of precursor ribosomal RNAs. To better understand how the biogenesis of the box C/D small nucleolar RNPs (snoRNPs) occur in a cellular context, we used a new approach based on the possibility of relocalizing a given nuclear complex by adding an affinity tag for B23 to one component of this complex. We selectively delocalized each core box C/D protein, namely 15.5kD, Nop56, Nop58 and fibrillarin, and analyzed the effect of such changes on other components of the box C/D snoRNPs. We show that modifying the localization and the mobility of core box C/D proteins impairs their association with box C/D snoRNPs. In addition, we demonstrate that fibrillarin and Nop56 directly interact in vivo. This interaction, indispensable for the association of both proteins with the box C/D snoRNPs, does not involve the glycine- and arginine-rich domain or the RNA-binding domain but the alpha-helix domain of fibrillarin. In addition, no RNA seems required to maintain fibrillarin-Nop56 interaction.
小核仁RNA在核糖体生物合成中发挥着关键作用。它们指导折叠、位点特异性核苷酸修饰,并参与前体核糖体RNA的切割。为了更好地理解盒C/D小核仁核糖核蛋白颗粒(snoRNPs)的生物合成在细胞环境中是如何发生的,我们采用了一种新方法,该方法基于通过向该复合物的一个组分添加B23的亲和标签来重新定位给定核复合物的可能性。我们选择性地使每个核心盒C/D蛋白(即15.5kD、Nop56、Nop58和纤维蛋白原)发生异位,并分析这种变化对盒C/D snoRNPs其他组分的影响。我们发现,改变核心盒C/D蛋白的定位和流动性会损害它们与盒C/D snoRNPs的结合。此外,我们证明纤维蛋白原和Nop56在体内直接相互作用。这种相互作用对于这两种蛋白与盒C/D snoRNPs的结合是必不可少的,它不涉及富含甘氨酸和精氨酸的结构域或RNA结合结构域,而是涉及纤维蛋白原的α螺旋结构域。此外,似乎不需要RNA来维持纤维蛋白原-Nop56的相互作用。