Sleeman J E, Ajuh P, Lamond A I
School of Life Sciences, University of Dundee, MSI/WTB Complex, Dow Street, Dundee, DD1 5EH, UK.
J Cell Sci. 2001 Dec;114(Pt 24):4407-19. doi: 10.1242/jcs.114.24.4407.
Splicing snRNPs (small nuclear ribonucleoproteins) are essential sub-units of the spliceosome. Here we report the establishment of stable cell lines expressing fluorescently tagged SmB, a core snRNP protein. Analysis of these stable cell lines has allowed us to characterize the nuclear pathway that leads to snRNP accumulation in nuclear speckles and has identified a limiting nucleolar step in the pathway that can be saturated by overexpression of Sm proteins. After nuclear import, newly assembled snRNPs accumulate first in a subset of Cajal bodies that contain both p80-coilin and the survival of motor neurons protein (SMN) and not in bodies that contain p80-coilin but lack SMN. Treatment of cells with leptomycin B (LMB) inhibits both the accumulation of snRNPs in nuclear bodies and their subsequent accumulation in speckles. The formation of Cajal bodies is enhanced by Sm protein expression and the assembly of new snRNPs. Formation of heterokaryons between HeLa cell lines expressing Sm proteins and primary cells that usually lack Cajal bodies results in the detection of Cajal bodies in primary cell nuclei. Transient over-expression of exogenous SmB alone is sufficient to induce correspondingly transient Cajal body formation in primary cells. These data indicate that the level of snRNP protein expression and snRNP assembly, rather than the expression levels of p80-coilin or SMN, may be a key trigger for Cajal body formation.
剪接小核核糖核蛋白(snRNPs)是剪接体的重要亚基。在此,我们报告了表达荧光标记的SmB(一种核心snRNP蛋白)的稳定细胞系的建立。对这些稳定细胞系的分析使我们能够描述导致snRNP在核斑点中积累的核途径,并确定了该途径中一个可被Sm蛋白过表达饱和的限制性核仁步骤。核输入后,新组装的snRNPs首先在一部分同时含有p80-卷曲螺旋蛋白和运动神经元存活蛋白(SMN)的卡哈尔体中积累,而不在含有p80-卷曲螺旋蛋白但缺乏SMN的小体中积累。用放线菌素B(LMB)处理细胞会抑制snRNPs在核小体中的积累及其随后在斑点中的积累。Sm蛋白的表达和新snRNPs的组装增强了卡哈尔体的形成。在表达Sm蛋白的HeLa细胞系与通常缺乏卡哈尔体的原代细胞之间形成异核体,导致在原代细胞核中检测到卡哈尔体。单独瞬时过表达外源SmB足以在原代细胞中诱导相应的瞬时卡哈尔体形成。这些数据表明,snRNP蛋白表达水平和snRNP组装,而非p80-卷曲螺旋蛋白或SMN的表达水平,可能是卡哈尔体形成的关键触发因素。