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Point mutation I634A in the glucocorticoid receptor causes embryonic lethality by reduced ligand binding

The glucocorticoid (GC) receptor (GR) is essential for normal development and in the initiation of inflammation. Healthy GR(dim/dim) mice with reduced dimerization propensity due to a point mutation (A465T) at the dimer interface of the GR DNA-binding domain (DBD) (here GR(D/D)) have previously help...

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Autores principales: Timmermans, Steven, Verhoog, Nicolette J.D., Van Looveren, Kelly, Dewaele, Sylviane, Hochepied, Tino, Eggermont, Melanie, Gilbert, Barbara, Boerema-de Munck, Anne, Vanderhaeghen, Tineke, Vanden Berghe, Joke, Garcia Gonzalez, Natalia, Vandewalle, Jolien, Bloch, Yehudi, Provost, Mathias, Savvides, Savvas N., De Bosscher, Karolien, Declercq, Wim, Rottier, Robbert J., Louw, Ann, Libert, Claude
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8808175/
https://www.ncbi.nlm.nih.gov/pubmed/35007536
http://dx.doi.org/10.1016/j.jbc.2022.101574
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author Timmermans, Steven
Verhoog, Nicolette J.D.
Van Looveren, Kelly
Dewaele, Sylviane
Hochepied, Tino
Eggermont, Melanie
Gilbert, Barbara
Boerema-de Munck, Anne
Vanderhaeghen, Tineke
Vanden Berghe, Joke
Garcia Gonzalez, Natalia
Vandewalle, Jolien
Bloch, Yehudi
Provost, Mathias
Savvides, Savvas N.
De Bosscher, Karolien
Declercq, Wim
Rottier, Robbert J.
Louw, Ann
Libert, Claude
author_facet Timmermans, Steven
Verhoog, Nicolette J.D.
Van Looveren, Kelly
Dewaele, Sylviane
Hochepied, Tino
Eggermont, Melanie
Gilbert, Barbara
Boerema-de Munck, Anne
Vanderhaeghen, Tineke
Vanden Berghe, Joke
Garcia Gonzalez, Natalia
Vandewalle, Jolien
Bloch, Yehudi
Provost, Mathias
Savvides, Savvas N.
De Bosscher, Karolien
Declercq, Wim
Rottier, Robbert J.
Louw, Ann
Libert, Claude
author_sort Timmermans, Steven
collection PubMed
description The glucocorticoid (GC) receptor (GR) is essential for normal development and in the initiation of inflammation. Healthy GR(dim/dim) mice with reduced dimerization propensity due to a point mutation (A465T) at the dimer interface of the GR DNA-binding domain (DBD) (here GR(D/D)) have previously helped to define the functions of GR monomers and dimers. Since GR(D/D) retains residual dimerization capacity, here we generated the dimer-nullifying double mutant GR(D+L/D+L) mice, featuring an additional mutation (I634A) in the ligand-binding domain (LBD) of GR. These mice are perinatally lethal, as are GR(L/L) mice (these mice have the I634A mutation but not the A465T mutation), displaying improper lung and skin formation. Using embryonic fibroblasts, high and low doses of dexamethasone (Dex), nuclear translocation assays, RNAseq, dimerization assays, and ligand-binding assays (and K(d) values), we found that the lethal phenotype in these mice is due to insufficient ligand binding. These data suggest there is some correlation between GR dimerization potential and ligand affinity. We conclude that even a mutation as subtle as I634A, at a position not directly involved in ligand interactions sensu stricto, can still influence ligand binding and have a lethal outcome.
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spelling pubmed-88081752022-02-08 Point mutation I634A in the glucocorticoid receptor causes embryonic lethality by reduced ligand binding Timmermans, Steven Verhoog, Nicolette J.D. Van Looveren, Kelly Dewaele, Sylviane Hochepied, Tino Eggermont, Melanie Gilbert, Barbara Boerema-de Munck, Anne Vanderhaeghen, Tineke Vanden Berghe, Joke Garcia Gonzalez, Natalia Vandewalle, Jolien Bloch, Yehudi Provost, Mathias Savvides, Savvas N. De Bosscher, Karolien Declercq, Wim Rottier, Robbert J. Louw, Ann Libert, Claude J Biol Chem Research Article The glucocorticoid (GC) receptor (GR) is essential for normal development and in the initiation of inflammation. Healthy GR(dim/dim) mice with reduced dimerization propensity due to a point mutation (A465T) at the dimer interface of the GR DNA-binding domain (DBD) (here GR(D/D)) have previously helped to define the functions of GR monomers and dimers. Since GR(D/D) retains residual dimerization capacity, here we generated the dimer-nullifying double mutant GR(D+L/D+L) mice, featuring an additional mutation (I634A) in the ligand-binding domain (LBD) of GR. These mice are perinatally lethal, as are GR(L/L) mice (these mice have the I634A mutation but not the A465T mutation), displaying improper lung and skin formation. Using embryonic fibroblasts, high and low doses of dexamethasone (Dex), nuclear translocation assays, RNAseq, dimerization assays, and ligand-binding assays (and K(d) values), we found that the lethal phenotype in these mice is due to insufficient ligand binding. These data suggest there is some correlation between GR dimerization potential and ligand affinity. We conclude that even a mutation as subtle as I634A, at a position not directly involved in ligand interactions sensu stricto, can still influence ligand binding and have a lethal outcome. American Society for Biochemistry and Molecular Biology 2022-01-08 /pmc/articles/PMC8808175/ /pubmed/35007536 http://dx.doi.org/10.1016/j.jbc.2022.101574 Text en © 2022 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Article
Timmermans, Steven
Verhoog, Nicolette J.D.
Van Looveren, Kelly
Dewaele, Sylviane
Hochepied, Tino
Eggermont, Melanie
Gilbert, Barbara
Boerema-de Munck, Anne
Vanderhaeghen, Tineke
Vanden Berghe, Joke
Garcia Gonzalez, Natalia
Vandewalle, Jolien
Bloch, Yehudi
Provost, Mathias
Savvides, Savvas N.
De Bosscher, Karolien
Declercq, Wim
Rottier, Robbert J.
Louw, Ann
Libert, Claude
Point mutation I634A in the glucocorticoid receptor causes embryonic lethality by reduced ligand binding
title Point mutation I634A in the glucocorticoid receptor causes embryonic lethality by reduced ligand binding
title_full Point mutation I634A in the glucocorticoid receptor causes embryonic lethality by reduced ligand binding
title_fullStr Point mutation I634A in the glucocorticoid receptor causes embryonic lethality by reduced ligand binding
title_full_unstemmed Point mutation I634A in the glucocorticoid receptor causes embryonic lethality by reduced ligand binding
title_short Point mutation I634A in the glucocorticoid receptor causes embryonic lethality by reduced ligand binding
title_sort point mutation i634a in the glucocorticoid receptor causes embryonic lethality by reduced ligand binding
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8808175/
https://www.ncbi.nlm.nih.gov/pubmed/35007536
http://dx.doi.org/10.1016/j.jbc.2022.101574
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