Jarrous N, Wolenski J S, Wesolowski D, Lee C, Altman S
Department of Molecular, Cellular and Developmental Biology, Yale University, New Haven, Connecticut 06520, USA.
J Cell Biol. 1999 Aug 9;146(3):559-72. doi: 10.1083/jcb.146.3.559.
The precise location of the tRNA processing ribonucleoprotein ribonuclease P (RNase P) and the mechanism of its intranuclear distribution have not been completely delineated. We show that three protein subunits of human RNase P (Rpp), Rpp14, Rpp29 and Rpp38, are found in the nucleolus and that each can localize a reporter protein to nucleoli of cells in tissue culture. In contrast to Rpp38, which is uniformly distributed in nucleoli, Rpp14 and Rpp29 are confined to the dense fibrillar component. Rpp29 and Rpp38 possess functional, yet distinct domains required for subnucleolar localization. The subunit Rpp14 lacks such a domain and appears to be dependent on a piggyback process to reach the nucleolus. Biochemical analysis suggests that catalytically active RNase P exists in the nucleolus. We also provide evidence that Rpp29 and Rpp38 reside in coiled bodies, organelles that are implicated in the biogenesis of several other small nuclear ribonucleoproteins required for processing of precursor mRNA. Because some protein subunits of RNase P are shared by the ribosomal RNA processing ribonucleoprotein RNase MRP, these two evolutionary related holoenzymes may share common intranuclear localization and assembly pathways to coordinate the processing of tRNA and rRNA precursors.
转运RNA(tRNA)加工核糖核蛋白核糖核酸酶P(RNase P)的精确位置及其在细胞核内分布的机制尚未完全阐明。我们发现,人RNase P的三个蛋白质亚基(Rpp),即Rpp14、Rpp29和Rpp38,存在于核仁中,并且每个亚基都能将一种报告蛋白定位于组织培养细胞的核仁中。与均匀分布在核仁中的Rpp38不同,Rpp14和Rpp29局限于致密纤维成分中。Rpp29和Rpp38拥有亚核仁定位所需的功能性但不同的结构域。亚基Rpp14缺乏这样的结构域,似乎依赖于一种“搭便车”过程才能到达核仁。生化分析表明,具有催化活性的RNase P存在于核仁中。我们还提供证据表明,Rpp29和Rpp38存在于卷曲小体中,卷曲小体是参与前体mRNA加工所需的其他几种小核核糖核蛋白生物合成的细胞器。由于核糖体RNA加工核糖核蛋白RNase MRP与RNase P共享一些蛋白质亚基,这两种进化相关的全酶可能共享共同的核内定位和组装途径,以协调tRNA和rRNA前体的加工。