Transcriptional Activation Domains of Human Heat Shock Factor 1 Recruit Human SWI/SNF

Author:

Sullivan E. Kelly12,Weirich Christine S.12,Guyon Jeffrey R.12,Sif Saı̈d12,Kingston Robert E.12

Affiliation:

1. Department of Molecular Biology, Massachusetts General Hospital, Boston, Massachusetts 02114, 1 and

2. Department of Genetics, Harvard Medical School, Boston, Massachusetts 021152

Abstract

ABSTRACT Chromatin remodeling complexes such as SWI/SNF use the energy of ATP hydrolysis to remodel nucleosomal DNA and increase transcription of nucleosomal templates. Human heat shock factor one (hHSF1) is a tightly regulated activator that stimulates transcriptional initiation and elongation using different portions of its activation domains. Here we demonstrate that hHSF1 associates with BRG1, the ATPase subunit of human SWI/SNF (hSWI/SNF) at endogenous protein concentrations. We also show that hHSF1 activation domains recruit hSWI/SNF to a chromatin template in a purified system. Mutation of hHSF1 residues responsible for activation of transcriptional elongation has the most severe effect on recruitment of SWI/SNF and association of hHSF1 with BRG1, suggesting that recruitment of chromatin remodeling activity might play a role in stimulation of elongation.

Publisher

American Society for Microbiology

Subject

Cell Biology,Molecular Biology

Reference58 articles.

1. Ausubel F. M. Brent R. Kingston R. E. Moore D. D. Seidman J. G. Smith J. A. Struhl K. Current protocols in molecular biology. 1996 John Wiley and Sons New York N.Y

2. Global transcription regulators of eukaryotes;Bjorklund S.;Cell,1999

3. Activator-dependent regulation of transcriptional pausing on nucleosomal templates;Brown S. A.;Genes Dev.,1996

4. Disruption of downstream chromatin directed by a transcriptional activator;Brown S. A.;Genes Dev.,1997

5. Transcriptional activation domains stimulate initiation and elongation at different times and via different residues;Brown S. A.;EMBO J.,1998

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