A key role for stress-induced satellite III transcripts in the relocalization of splicing factors into nuclear stress granules
Open Access
- 1 September 2004
- journal article
- Published by The Company of Biologists in Journal of Cell Science
- Vol. 117 (19) , 4551-4558
- https://doi.org/10.1242/jcs.01329
Abstract
Exposure of cells to stressful conditions results in the rapid synthesis of a subset of specialized proteins termed heat shock proteins (HSPs) which function in protecting the cell against damage. The stress-induced activation of hsp genes is controlled by the heat shock transcription factor 1 (HSF1). At the cellular level, one of the most striking effects of stress is the rapid and reversible redistribution of HSF1 into a few nuclear structures termed nuclear stress granules which form primarily on the 9q12 locus in humans. Within these structures, HSF1 binds to satellite III repeated elements and drives the RNA polymerase II-dependent transcription of these sequences into stable RNAs which remain associated with the 9q12 locus for a certain time after synthesis. Other proteins, in particular splicing factors, were also shown to relocalize to the granules upon stress. Here, we investigated the role of stress-induced satellite III transcripts in the relocalization of splicing factors to the granules. We show that the recruitment of the two serine/arginine-rich (SR) proteins SF2/ASF and SRp30c requires the presence of stress-induced satellite III transcripts. In agreement with these findings, we identified the second RNA-recognition motif (RRM2) of hSF2/ASF as the motif required for the targeting to the granules, and we showed by immunoprecipitation that the endogenous hSF2/ASF protein is present in a complex with satellite III transcripts in stressed cells in vivo. Interestingly, satellite III transcripts also immunoprecipitate together with small nuclear ribonucleoproteins (snRNPs) in vivo whereas the intronless hsp70 transcripts do not, supporting the proposal that these transcripts are subject to splicing. Altogether, these data highlight the central role for satellite III transcripts in the targeting and/or retention of splicing factors into the granules upon stress.Keywords
This publication has 47 references indexed in Scilit:
- The second RNA-binding domain of the human splicing factor ASF/SF2 is the critical domain controlling adenovirus E1A alternative 5′-splice site selectionBiochemical Journal, 2004
- A Conserved DrosophilaTransportin-Serine/Arginine-rich (SR) Protein Permits Nuclear Import ofDrosophila SR Protein Splicing Factors and Their Antagonist Repressor Splicing Factor 1Molecular Biology of the Cell, 2002
- Stress-induced Nuclear Bodies Are Sites of Accumulation of Pre-mRNA Processing FactorsMolecular Biology of the Cell, 2001
- Distinctive Features of Drosophila Alternative Splicing Factor RS Domain: Implication for Specific Phosphorylation, Shuttling, and Splicing ActivationMolecular and Cellular Biology, 2001
- Structure and dynamics of hnRNP-labelled nuclear bodies induced by stress treatmentsJournal of Cell Science, 2000
- Role of the Modular Domains of SR Proteins in Subnuclear Localization and Alternative Splicing SpecificityThe Journal of cell biology, 1997
- RNA splicing specificity determined by the coordinated action of RNA recognition motifs in SR proteinsProceedings of the National Academy of Sciences, 1997
- The role of specific protein-RNA and protein-protein interactions in positive and negative control of pre-mRNA splicing by Transformer 2Cell, 1994
- Determination of the functional domains involved in nucleolar targeting of nucleolin.Molecular Biology of the Cell, 1993
- Analysis of the RNA-recognition motif and RS and RGG domains: conservation in metazoan pre-mRNA splicing factorsNucleic Acids Research, 1993