Evidence that Swi/Snf directly represses transcription in S. cerevisiae
Open Access
- 1 September 2002
- journal article
- Published by Cold Spring Harbor Laboratory in Genes & Development
- Vol. 16 (17), 2231-2236
- https://doi.org/10.1101/gad.1009902
Abstract
Many studies have established that the Swi/Snf family of chromatin-remodeling complexes activate transcription. Recent reports have suggested the possibility that these complexes can also repress transcription. We now present chromatin immunoprecipitation evidence that the Swi/Snf complex of Saccharomyces cerevisiae directly represses transcription of the SER3 gene. Consistent with its role in nucleosome remodeling, Swi/Snf controls the chromatin structure of the SER3 promoter. However, in striking contrast to activation by Swi/Snf, which requires most Swi/Snf subunits, repression by Swi/Snf at SER3 is dependent primarily on one Swi/Snf component, Snf2. These results show distinct differences in the requirements for Swi/Snf components in transcriptional activation and repression.Keywords
This publication has 37 references indexed in Scilit:
- Genome-wide location and regulated recruitment of the RSC nucleosome-remodeling complexGenes & Development, 2002
- Essential Roles of Snf5p in Snf-Swi Chromatin Remodeling In VivoMolecular and Cellular Biology, 2001
- Chromatin remodeling and transcriptional activation: the cast (in order of appearance)Oncogene, 2001
- In vivo chromatin remodeling by yeast ISWI homologs Isw1p and Isw2pGenes & Development, 2001
- Activated RSC–Nucleosome Complex and Persistently Altered Form of the NucleosomeCell, 1998
- Gene disruption with PCR products in Saccharomyces cerevisiaeGene, 1995
- BRG1 contains a conserved domain of the SWI2/SNF2 family necessary for normal mitotic growth and transcriptionNature, 1993
- Yeast SNF/SWI transcriptional activators and the SPT/SIN chromatin connectionTrends in Genetics, 1992
- Characterization of the yeast SWI1, SWI2, and SWI3 genes, which encode a global activator of transcriptionCell, 1992
- Multifunctional yeast high-copy-number shuttle vectorsGene, 1992