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利用与绿色荧光蛋白融合的snRNP蛋白揭示剪接snRNP、卷曲小体和核仁之间的动态相互作用。

Dynamic interactions between splicing snRNPs, coiled bodies and nucleoli revealed using snRNP protein fusions to the green fluorescent protein.

作者信息

Sleeman J, Lyon C E, Platani M, Kreivi J P, Lamond A I

机构信息

Department of Biochemistry, University of Dundee, Wellcome Trust Building, Dundee, DD1 4HN, United Kingdom.

出版信息

Exp Cell Res. 1998 Sep 15;243(2):290-304. doi: 10.1006/excr.1998.4135.

Abstract

The U1, U2, U4/U6, and U5 small nuclear ribonucleoproteins (snRNPs) are subunits of splicing complexes that remove introns from mRNA precursors. snRNPs show a complex, transcription-dependent localization pattern in the nucleoplasm of mammalian cells that results from their association with several distinct subnuclear structures, including interchromatin granule clusters, perichromatin fibrils, and coiled bodies. Here we report the analysis of snRNP localization and interaction with the coiled body in live human cells using fusions of snRNP proteins and p80 coilin to the Green Fluorescent Protein (GFP). Despite the large size of the GFP tag, GFP fusions to both the core snRNP SmE and U1 specific U1A proteins assemble into snRNP particles and give an identical nuclear localization pattern to their endogenous counterparts. GFP-coilin localizes specifically to coiled bodies in a transcription-dependent fashion and provides an accurate marker for coiled bodies in a variety of human cell lines. Treatment of cells with the selective ser/thr-protein phosphatase inhibitor, okadaic acid, causes both GFP-snRNP and GFP-coilin proteins to accumulate within nucleoli, but does not result in nucleolar accumulation of the GFP-fused non-snRNP protein splicing factor ASF/SF2. In all four human cell lines tested, expression of a GFP-fused p80 coilin mutant with a single serine to aspartate substitution also caused nucleolar accumulation of splicing snRNPs and coilin, but not ASF/SF2, in structures resembling coiled bodies when viewed by electron microscopy. This work establishes an experimental system for analyzing snRNP trafficking in living cells and provides evidence that a reversible protein phosphorylation mechanism is involved in regulating interaction of snRNPs and coiled bodies with the nucleolus.

摘要

U1、U2、U4/U6和U5小核核糖核蛋白(snRNP)是剪接复合物的亚基,可从mRNA前体中去除内含子。snRNP在哺乳动物细胞核质中呈现出复杂的、依赖转录的定位模式,这是由于它们与几种不同的亚核结构相关联,包括染色质间颗粒簇、染色质周边纤维和卷曲小体。在这里,我们报告了利用snRNP蛋白和p80卷曲螺旋蛋白与绿色荧光蛋白(GFP)的融合体,对活的人类细胞中snRNP定位及其与卷曲小体相互作用的分析。尽管GFP标签较大,但与核心snRNP SmE和U1特异性U1A蛋白的GFP融合体仍组装成snRNP颗粒,并呈现出与内源性对应物相同的核定位模式。GFP-卷曲螺旋蛋白以依赖转录的方式特异性定位于卷曲小体,并为多种人类细胞系中的卷曲小体提供了准确的标记。用选择性丝氨酸/苏氨酸蛋白磷酸酶抑制剂冈田酸处理细胞,会导致GFP-snRNP和GFP-卷曲螺旋蛋白在核仁内积累,但不会导致GFP融合的非snRNP蛋白剪接因子ASF/SF2在核仁内积累。在所有测试的四种人类细胞系中,表达一种具有单个丝氨酸到天冬氨酸替代的GFP融合p80卷曲螺旋蛋白突变体,也会导致剪接snRNP和卷曲螺旋蛋白在核仁内积累,但不会导致ASF/SF2在核仁内积累,在电子显微镜下观察时,这些结构类似于卷曲小体。这项工作建立了一个用于分析活细胞中snRNP运输的实验系统,并提供了证据表明可逆的蛋白质磷酸化机制参与调节snRNP和卷曲小体与核仁的相互作用。

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