Isaac C, Yang Y, Meier U T
Department of Anatomy and Structural Biology, Albert Einstein College of Medicine, Bronx, NY 10461, USA.
J Cell Biol. 1998 Jul 27;142(2):319-29. doi: 10.1083/jcb.142.2.319.
Coiled bodies are small nuclear organelles that are highly enriched in small nuclear RNAs, and that have long been thought to be associated with the nucleolus. Here we use mutational analysis, transient transfections, and the yeast two-hybrid system to show that the nucleolar phosphoprotein Nopp140 functions as a molecular link between the two prominent nuclear organelles. Exogenous Nopp140 accumulated in the nucleolus rapidly, but only after a lag phase in coiled bodies, suggesting a pathway between the two organelles. The expression of partial Nopp140 constructs exerted dominant negative effects on the endogenous Nopp140 by chasing it and other antigens that were common to both organelles out of the nucleolus. The alternating positively and negatively charged repeat domain of Nopp140 was required for targeting to both organelles. In addition, partial Nopp140 constructs caused formation of novel structures in the nucleoplasm and, in the case of the conserved carboxy terminus, led to the dispersal of coiled bodies. As a final link, we identified the coiled body-specific protein p80 coilin in a yeast two-hybrid screen with Nopp140. The interaction of the two proteins was confirmed by coimmunoprecipitation. Taken together, Nopp140 appeared to shuttle between the nucleolus and the coiled bodies, and to chaperone the transport of other molecules.
卷曲小体是富含小核RNA的小型核细胞器,长期以来一直被认为与核仁有关。在此,我们运用突变分析、瞬时转染和酵母双杂交系统,证明核仁磷蛋白Nopp140作为这两种主要核细胞器之间的分子连接物发挥作用。外源性Nopp140迅速在核仁中积累,但在卷曲小体中存在一个延迟期后才开始积累,这表明了两种细胞器之间的一条通路。部分Nopp140构建体的表达通过将内源性Nopp140以及两种细胞器共有的其他抗原从核仁中驱逐出去,对其产生显性负效应。Nopp140的正负电荷交替重复结构域是靶向两种细胞器所必需的。此外,部分Nopp140构建体在核质中导致形成新结构,而就保守的羧基末端而言,会导致卷曲小体的分散。作为最后一个联系,我们在与Nopp140的酵母双杂交筛选中鉴定出卷曲小体特异性蛋白p80卷曲螺旋蛋白。两种蛋白质的相互作用通过共免疫沉淀得以证实。综上所述,Nopp140似乎在核仁和卷曲小体之间穿梭,并介导其他分子的运输。