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PMID: 11117532 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, Non-P.H.S. Research Support, U.S. Gov't, P.H.S.

Temporally distinct and ligand-specific recruitment of nuclear receptor-interacting peptides and cofactors to subnuclear domains containing the estrogen receptor.

Molecular endocrinology (Baltimore, Md.) ·Vol. 14 ·No. 12 ·2000-12-00 ·Pages 2024-39

Schaufele F, Chang CY, Liu W, Baxter JD, Nordeen SK, Wan Y, Day RN, McDonnell DP

Abstract

Ligand binding to estrogen receptor (ER) is presumed to regulate the type and timing of ER interactions with different cofactors. Using fluorescence microscopy in living cells, we characterized the recruitment of five different green fluorescent protein (GFP)-labeled ER-interacting peptides to the distinct subnuclear compartment occupied by blue fluorescent protein (BFP)-labeled ER alpha. Different ligands promoted the recruitment of different peptides. One peptide was recruited in response to estradiol (E2), tamoxifen, raloxifene, or ICI 182,780 incubation whereas other peptides were recruited specifically by E2 or tamoxifen. Peptides containing different sequences surrounding the ER-interacting motif LXXLL were recruited with different time courses after E2 addition. Complex temporal kinetics also were observed for recruitment of the full-length, ER cofactor glucocorticoid receptor-interacting protein 1 (GRIP1); rapid, E2-dependent recruitment of GRIP1 was blocked by mutation of the GRIP1 LXXLL motifs to LXXAA whereas slower E2 recruitment persisted for the GRIP1 LXXAA mutant. This suggested the presence of multiple, temporally distinct GRIP 1 recruitment mechanisms. E2 recruitment of GRIP1 and LXXLL peptides was blocked by coincubation with excess ICI 182,780. In contrast, preformed E2/ER/GRIP1 and E2/ER/LXXLL complexes were resistant to subsequent ICI 182,780 addition whereas ICI 182,780 dispersed preformed complexes containing the GRIP1 LXXAA mutant. This suggested that E2-induced LXXLL binding altered subsequent ligand/ER interactions. Thus, alternative, ligand-selective recruitment and dissociation mechanisms with distinct temporal sequences are available for ER alpha action in vivo.

MeSH Terms
Active Transport, Cell Nucleus Amino Acid Sequence Animals Cell Compartmentation Cell Line Cell Nucleus/metabolism Estradiol/analogs & derivatives,pharmacology Estrogen Antagonists/pharmacology Estrogen Receptor alpha Fulvestrant Green Fluorescent Proteins Indicators and Reagents/metabolism Kinetics Ligands Luminescent Proteins/genetics,metabolism Macromolecular Substances Molecular Sequence Data Nuclear Receptor Coactivator 2 Peptides/metabolism Protein Structure, Tertiary Receptors, Estrogen/agonists,genetics,metabolism Recombinant Fusion Proteins/metabolism Selective Estrogen Receptor Modulators/pharmacology Tamoxifen/pharmacology Transcription Factors/metabolism
Chemicals
Estrogen Antagonists Estrogen Receptor alpha Indicators and Reagents Ligands Luminescent Proteins Macromolecular Substances Nuclear Receptor Coactivator 2 Peptides Receptors, Estrogen Recombinant Fusion Proteins Selective Estrogen Receptor Modulators Transcription Factors blue fluorescent protein, Aequorea victoria Tamoxifen Green Fluorescent Proteins Fulvestrant Estradiol
Authors & Affiliations
8 authors, click to expand affiliations / ORCID
Schaufele F
Department of Medicine, University of California San Francisco, 94143, USA.
Chang C Y
Liu W
Baxter J D
Nordeen S K
Wan Y
Day R N
McDonnell D P
Article Info
Journal
Molecular endocrinology (Baltimore, Md.)
Abbr.
Mol Endocrinol
ISSN
0888-8809
Published
2000-12-00
Pages
2024-39
Language
English
Region
United States
NLM ID
8801431
Subset
IM
Grants
NIDDK NIH HHS · DK-48807 · United States
NIDDK NIH HHS · DK-54345 · United States
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