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基于肌动蛋白的转录抑制诱导的转录活性核亚结构建模。

Actin-based modeling of a transcriptionally competent nuclear substructure induced by transcription inhibition.

作者信息

Wang I-Fan, Chang Hsiang-Yu, Shen C-K James

机构信息

Institute of Molecular Biology, Academia Sinica, Taipei, Taiwan, R.O.C.

出版信息

Exp Cell Res. 2006 Nov 15;312(19):3796-807. doi: 10.1016/j.yexcr.2006.07.028. Epub 2006 Aug 30.

Abstract

During transcription inactivation, the nuclear bodies in the mammalian cells often undergo reorganization. In particular, the interchromatin granule clusters, or IGCs, become colocalized with RNA polymerase II (RNAP II) upon treatment with transcription inhibitors. This colocalization has also been observed in untreated but transcriptionally inactive cells. We report here that the reorganized IGC domains are unique substructure consisting of outer shells made of SC35, ERK2, SF2/ASF, and actin. The apparently hollow holes of these domains contain clusters of RNAP II, mostly phosphorylated, and the splicing regulator SMN. This class of complexes are also the sites where prominent transcription activities are detected once the inhibitors are removed. Furthermore, actin polymerization is required for reorganization of the IGCs. In connection with this, immunoprecipitation and immunostaining experiments showed that nuclear actin is associated with IGCs and the reorganized IGC domains. The study thus provides further evidence for the existence of an actin-based nuclear skeleton structure in association with the dynamic reorganization processes in the nucleus. Overall, our data suggest that mammalian cells have adapted to utilize the reorganized, uniquely shaped IGC domains as the temporary storage sites of RNAP II transcription machineries in response to certain transient states of transcription inactivation.

摘要

在转录失活期间,哺乳动物细胞中的核体常常会发生重组。特别是,染色质间颗粒簇(IGCs)在用转录抑制剂处理后会与RNA聚合酶II(RNAP II)共定位。在未经处理但转录无活性的细胞中也观察到了这种共定位现象。我们在此报告,重组后的IGC结构域是独特的亚结构,由SC35、ERK2、SF2/ASF和肌动蛋白构成的外壳组成。这些结构域表面明显的空洞中包含大量主要为磷酸化形式的RNAP II簇以及剪接调节因子SMN。一旦去除抑制剂,这类复合物也是检测到显著转录活性的位点。此外,肌动蛋白聚合对于IGCs的重组是必需的。与此相关的是,免疫沉淀和免疫染色实验表明,核肌动蛋白与IGCs及重组后的IGC结构域相关联。因此,该研究进一步证明了存在一种与细胞核动态重组过程相关的基于肌动蛋白的核骨架结构。总体而言,我们的数据表明,哺乳动物细胞已经适应利用重组后的、形状独特的IGC结构域作为RNAP II转录机制的临时储存位点,以应对转录失活的某些短暂状态。

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