RCC1 and nuclear organization

Huang, S., Mayeda, A., Krainer, A. R., Spector, D. L. (1997) RCC1 and nuclear organization. Molecular Biology of the Cell, 8 (6). pp. 1143-1157. ISSN 1059-1524

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URL: http://www.ncbi.nlm.nih.gov/pubmed/9201722


We have examined the effect of RCC1 function on the nuclear organization of pre-mRNA splicing factors and poly(A)+ RNA in the tsBN2 cells, a RCC1 temperature-sensitive mutant cell line. We have found that at 4-6 h after shifting cells from the permissive temperature (32.5 degrees C) to the restrictive temperature (39.5 degrees C), both small nuclear ribonucleoprotein particles and a general splicing factor SC35 reorganized into 4-10 large round clusters in the nucleus, as compared with the typical speckled distribution seen in cells at the permissive temperature. In situ hybridization to poly(A)+ RNA resulted in a similar pattern. Examination by double labeling demonstrated that the redistribution of splicing factors coincides with that of poly(A)+ RNA. Such changes in the nuclear organization of splicing factors and poly(A)+ RNA were not the result of the temperature shift or of chromatin condensation. Cellular transcription was not significantly altered in these cells and extracts made from both the permissive and restrictive temperature were splicing competent. Electron microscopic examination demonstrated that the large clusters containing both splicing factors and poly(A)+ RNA were fused interchromatin granule clusters. In addition, small electron-dense dot-like structures measuring approximately 80 nm in diameter were also observed, most of which are accumulated in enlarged interchromatin granule clusters in the nucleoplasm of RCC1- cells. In spite of the significant changes observed in the nucleoplasm, relatively little alteration was observed in nucleolar structure by both light and electron microscopic examination. The above observations suggest that the RCC1 protein directly or indirectly regulates the organization of splicing components and poly(A)+ RNA in the cell nucleus and that RCC1 may play a role in nuclear organization.

Item Type: Paper
Uncontrolled Keywords: Animals Cell Compartmentation Cell Cycle Proteins Cell Line Cell Nucleus Cricetinae DNA-Binding Proteins Guanine Nucleotide Exchange Factors Mutation Nuclear Proteins RNA Splicing RNA, Messenger Ribonucleoproteins, Small Nuclear Temperature Transcription, Genetic
Subjects: bioinformatics > genomics and proteomics > genetics & nucleic acid processing > DNA, RNA structure, function, modification
bioinformatics > genomics and proteomics > genetics & nucleic acid processing
organs, tissues, organelles, cell types and functions > cell types and functions > cell functions > cell organization
bioinformatics > genomics and proteomics > genetics & nucleic acid processing > DNA, RNA structure, function, modification > pre-mRNA
CSHL Authors:
Communities: CSHL labs > Krainer lab
CSHL labs > Spector lab
Depositing User: Matt Covey
Date: 1997
Date Deposited: 10 Dec 2012 19:56
Last Modified: 29 Jan 2015 17:53
PMCID: PMC305720
Related URLs:
URI: https://repository.cshl.edu/id/eprint/26335

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