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1号染色体与核仁共定位的交互式计算机辅助分析

Interactive computer-assisted analysis of chromosome 1 colocalization with nucleoli.

作者信息

Léger I, Guillaud M, Krief B, Brugal G

机构信息

Equipe de Reconnaissance des Formes et Microscopie Quantitative, Université Joseph Fourier, Grenoble, France.

出版信息

Cytometry. 1994 Aug 1;16(4):313-23. doi: 10.1002/cyto.990160405.

Abstract

The applications of DNA cloning and fluorescent in situ hybridization (FISH) techniques have strengthened the hypothesis of an ordered chromatin structure in interphase nuclei, strongly suspected to vary with functional state. The nonrandom distribution of the centromeres and their dynamic rearrangement during the cell cycle have been well documented. A close proximity of specific centromeres to nucleoli has also been reported, but the functional meaning of this association is still unknown. In order to investigate whether the chromosome 1 centromere region to nucleolus association depends on the cell cycle and chromosome status, we combined FISH of probes specific for the 1q12 region with Ki-67 nucleolar antigen fluorescent immunocytochemical (FICC) detection on the MCF-7 human breast cancer cell line and on the MRC-5 normal fibroblastic cell line. Both FISH and FICC signals were interactively localized in a one-step fluorescent microscopic observation and further analyzed using the Highly Optimized Microscope Environment (HOME) graphics microscope workstation, which provided computerized interactive marking of 1q12 to nucleolus associations (1q12-nu) at the individual nucleus and nucleolus levels. This study confirms that centromeric regions, other than those adjacent to the major ribosomal cistrons, contribute to the perinucleolar chromatin and demonstrate that, during the cell cycle, the heterochromatic band 1q12 is dynamically rearranged with regard to both the nuclear volume and the nucleoli. A relationship between the association of the chromosome 1 pericentromeric region with nucleoli and the nucleolar transcriptional activity is also strongly suggested.

摘要

DNA克隆和荧光原位杂交(FISH)技术的应用强化了间期细胞核中染色质结构有序的假说,人们强烈怀疑这种结构会随功能状态而变化。着丝粒的非随机分布及其在细胞周期中的动态重排已有充分记录。也有报道称特定着丝粒与核仁紧密相邻,但其这种关联的功能意义仍不清楚。为了研究1号染色体着丝粒区域与核仁的关联是否取决于细胞周期和染色体状态,我们将针对1q12区域的特异性探针FISH与Ki-67核仁抗原荧光免疫细胞化学(FICC)检测相结合,应用于MCF-7人乳腺癌细胞系和MRC-5正常成纤维细胞系。在一步荧光显微镜观察中对FISH和FICC信号进行交互式定位,并使用高度优化显微镜环境(HOME)图形显微镜工作站进行进一步分析,该工作站可在单个细胞核和核仁水平上对1q12与核仁的关联(1q12-nu)进行计算机化交互式标记。本研究证实,除了与主要核糖体顺反子相邻的着丝粒区域外,其他着丝粒区域也参与核仁周围染色质的形成,并表明在细胞周期中,异染色质带1q12在核体积和核仁方面都会发生动态重排。还强烈提示了1号染色体着丝粒周围区域与核仁的关联和核仁转录活性之间的关系。

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