Kiss T, Fayet E, Jády B E, Richard P, Weber M
Laboratoire de Biologie Moléculaire Eucaryote du CNRS, UMR5099, IFR109, Toulouse, France.
Cold Spring Harb Symp Quant Biol. 2006;71:407-17. doi: 10.1101/sqb.2006.71.025.
Box C/D and H/ACA snoRNAs represent two abundant groups of small noncoding RNAs. The majority of box C/D and H/ACA snoRNAs function as guide RNAs in the site-specific 2'-O-methylation and pseudouridylation of rRNAs, respectively. The box C/D snoRNAs associate with fibrillarin, Nop56, Nop58, and 15.5K/NHPX proteins to form functional snoRNP particles, whereas all box H/ACA snoRNAs form complexes with the dyskerin, Nop10, Nhp2, and Gar1 snoRNP proteins. Recent studies demonstrate that the biogenesis of mammalian snoRNPs is a complex process that requires numerous trans-acting factors. Most vertebrate snoRNAs are posttranscriptionally processed from pre-mRNA introns, and the early steps of snoRNP assembly are physically and functionally coupled with the synthesis or splicing of the host pre-mRNA. The maturing snoRNPs follow a complicated intranuclear trafficking process that is directed by transport factors also involved in nucleocytoplasmic RNA transport. The human telomerase RNA (hTR) carries a box H/ACA RNA domain that shares a common Cajal-body-specific localization element with a subclass of box H/ACA RNAs, which direct pseudouridylation of spliceosomal snRNAs in the Cajal body. However, besides concentrating in Cajal bodies, hTR also accumulates at a small, structurally distinct subset of telomeres during S phase. This suggests that a cell-cycle-dependent, dynamic localization of hTR to telomeres may play an important regulatory role in human telomere synthesis.
C/D盒和H/ACA盒小核仁RNA(snoRNA)是两类丰富的小非编码RNA。大多数C/D盒和H/ACA盒snoRNA分别作为指导RNA,参与核糖体RNA(rRNA)位点特异性的2'-O-甲基化和假尿苷化修饰。C/D盒snoRNA与纤维蛋白、Nop56、Nop58和15.5K/NHPX蛋白结合,形成功能性的小核仁核糖核蛋白(snoRNP)颗粒,而所有H/ACA盒snoRNA都与盘状结构域结合蛋白、Nop10、Nhp2和Gar1 snoRNP蛋白形成复合物。最近的研究表明,哺乳动物snoRNP的生物合成是一个复杂的过程,需要众多反式作用因子。大多数脊椎动物的snoRNA是从前体mRNA内含子转录后加工而来的,snoRNP组装的早期步骤在物理和功能上与宿主前体mRNA的合成或剪接相关联。成熟的snoRNP遵循一个复杂的核内运输过程,该过程由参与核质RNA运输的转运因子引导。人端粒酶RNA(hTR)带有一个H/ACA盒RNA结构域,它与一类H/ACA盒RNA共享一个共同的卡哈尔体特异性定位元件,该元件指导卡哈尔体内剪接体snRNA的假尿苷化修饰。然而,除了聚集在卡哈尔体外,hTR在S期还会在一小部分结构独特的端粒上积累。这表明hTR在细胞周期依赖性的动态定位到端粒可能在人类端粒合成中发挥重要的调节作用。