Literature DB >> 11971959

ATP-dependent mobilization of the glucocorticoid receptor during chromatin remodeling.

Terace M Fletcher1, Nianqing Xiao, Gisele Mautino, Christopher T Baumann, Ronald Wolford, Barbour S Warren, Gordon L Hager.   

Abstract

Chromatin remodeling by the glucocorticoid receptor (GR) is associated with activation of transcription at the mouse mammary tumor virus (MMTV) promoter. We reconstituted this nucleoprotein transition with chromatin assembled on MMTV DNA. The remodeling event was ATP dependent and required either a nuclear extract from HeLa cells or purified human Swi/Snf. Through the use of a direct interaction assay (magnetic bead pull-down), we demonstrated recruitment of human Swi/Snf to MMTV chromatin by GR. Unexpectedly, we found that GR is actively displaced from the chromatin template during the remodeling process. ATP-dependent GR displacement was reversed by the addition of apyrase and was specific to chromatin templates. The disengagement reaction could also be induced with purified human Swi/Snf. Although GR apparently dissociated during chromatin remodeling by Swi/Snf, it participated in binding of the secondary transcription factor, nuclear factor 1. These results are paralleled by a recent discovery that the hormone-occupied receptor undergoes rapid exchange between chromatin and the nucleoplasmic compartment in living cells. Both the in vitro and in vivo results are consistent with a dynamic model (hit and run) in which GR first binds to chromatin after ligand activation, recruits a remodeling activity, facilitates transcription factor binding, and is simultaneously lost from the template.

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Year:  2002        PMID: 11971959      PMCID: PMC133787          DOI: 10.1128/MCB.22.10.3255-3263.2002

Source DB:  PubMed          Journal:  Mol Cell Biol        ISSN: 0270-7306            Impact factor:   4.272


  57 in total

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  53 in total

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Review 3.  Impact of chromatin structure on PR signaling: transition from local to global analysis.

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6.  p21 transcription is regulated by differential localization of histone H2A.Z.

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