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Nestin Modulates Glucocorticoid Receptor Function by Cytoplasmic Anchoring

Nestin is the characteristic intermediate filament (IF) protein of rapidly proliferating progenitor cells and regenerating tissue. Nestin copolymerizes with class III IF-proteins, mostly vimentin, into heteromeric filaments. Its expression is downregulated with differentiation. Here we show that a s...

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Autores principales: Reimer, Rudolph, Helmbold, Heike, Szalay, Beata, Hagel, Christian, Hohenberg, Heinrich, Deppert, Wolfgang, Bohn, Wolfgang
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2698154/
https://www.ncbi.nlm.nih.gov/pubmed/19562035
http://dx.doi.org/10.1371/journal.pone.0006084
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author Reimer, Rudolph
Helmbold, Heike
Szalay, Beata
Hagel, Christian
Hohenberg, Heinrich
Deppert, Wolfgang
Bohn, Wolfgang
author_facet Reimer, Rudolph
Helmbold, Heike
Szalay, Beata
Hagel, Christian
Hohenberg, Heinrich
Deppert, Wolfgang
Bohn, Wolfgang
author_sort Reimer, Rudolph
collection PubMed
description Nestin is the characteristic intermediate filament (IF) protein of rapidly proliferating progenitor cells and regenerating tissue. Nestin copolymerizes with class III IF-proteins, mostly vimentin, into heteromeric filaments. Its expression is downregulated with differentiation. Here we show that a strong nestin expression in mouse embryo tissue coincides with a strong accumulation of the glucocorticoid receptor (GR), a key regulator of growth and differentiation in embryonic development. Microscopic studies on cultured cells show an association of GR with IFs composed of vimentin and nestin. Cells lacking nestin, but expressing vimentin, or cells expressing vimentin, but lacking nestin accumulate GR in the nucleus. Completing these networks with an exogenous nestin, respectively an exogenous vimentin restores cytoplasmic anchoring of GR to the IF system. Thus, heteromeric filaments provide the basis for anchoring of GR. The reaction pattern with phospho-GR specific antibodies and the presence of the chaperone HSC70 suggest that specifically the unliganded receptor is anchored to the IF system. Ligand addition releases GR from IFs and shifts the receptor into the nucleus. Suppression of nestin by specific shRNA abolishes anchoring of GR, induces its accumulation in the nucleus and provokes an irreversible G1/S cell cycle arrest. Suppression of GR prior to that of nestin prevents entry into the arrest. The data give evidence that nestin/vimentin specific anchoring modulates growth suppression by GR. We hypothesize that expression of nestin is a major determinant in suppression of anti-proliferative activity of GR in undifferentiated tissue and facilitates activation of this growth control in a precise tissue and differentiation dependent manner.
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spelling pubmed-26981542009-06-29 Nestin Modulates Glucocorticoid Receptor Function by Cytoplasmic Anchoring Reimer, Rudolph Helmbold, Heike Szalay, Beata Hagel, Christian Hohenberg, Heinrich Deppert, Wolfgang Bohn, Wolfgang PLoS One Research Article Nestin is the characteristic intermediate filament (IF) protein of rapidly proliferating progenitor cells and regenerating tissue. Nestin copolymerizes with class III IF-proteins, mostly vimentin, into heteromeric filaments. Its expression is downregulated with differentiation. Here we show that a strong nestin expression in mouse embryo tissue coincides with a strong accumulation of the glucocorticoid receptor (GR), a key regulator of growth and differentiation in embryonic development. Microscopic studies on cultured cells show an association of GR with IFs composed of vimentin and nestin. Cells lacking nestin, but expressing vimentin, or cells expressing vimentin, but lacking nestin accumulate GR in the nucleus. Completing these networks with an exogenous nestin, respectively an exogenous vimentin restores cytoplasmic anchoring of GR to the IF system. Thus, heteromeric filaments provide the basis for anchoring of GR. The reaction pattern with phospho-GR specific antibodies and the presence of the chaperone HSC70 suggest that specifically the unliganded receptor is anchored to the IF system. Ligand addition releases GR from IFs and shifts the receptor into the nucleus. Suppression of nestin by specific shRNA abolishes anchoring of GR, induces its accumulation in the nucleus and provokes an irreversible G1/S cell cycle arrest. Suppression of GR prior to that of nestin prevents entry into the arrest. The data give evidence that nestin/vimentin specific anchoring modulates growth suppression by GR. We hypothesize that expression of nestin is a major determinant in suppression of anti-proliferative activity of GR in undifferentiated tissue and facilitates activation of this growth control in a precise tissue and differentiation dependent manner. Public Library of Science 2009-06-29 /pmc/articles/PMC2698154/ /pubmed/19562035 http://dx.doi.org/10.1371/journal.pone.0006084 Text en Reimer et al. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Reimer, Rudolph
Helmbold, Heike
Szalay, Beata
Hagel, Christian
Hohenberg, Heinrich
Deppert, Wolfgang
Bohn, Wolfgang
Nestin Modulates Glucocorticoid Receptor Function by Cytoplasmic Anchoring
title Nestin Modulates Glucocorticoid Receptor Function by Cytoplasmic Anchoring
title_full Nestin Modulates Glucocorticoid Receptor Function by Cytoplasmic Anchoring
title_fullStr Nestin Modulates Glucocorticoid Receptor Function by Cytoplasmic Anchoring
title_full_unstemmed Nestin Modulates Glucocorticoid Receptor Function by Cytoplasmic Anchoring
title_short Nestin Modulates Glucocorticoid Receptor Function by Cytoplasmic Anchoring
title_sort nestin modulates glucocorticoid receptor function by cytoplasmic anchoring
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2698154/
https://www.ncbi.nlm.nih.gov/pubmed/19562035
http://dx.doi.org/10.1371/journal.pone.0006084
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