Glucocorticoid stimulation induces regionalized gene responses within topologically associating domains.

coregulators glucocorticoid receptor position effects topologically associating domains transcription

Journal

Frontiers in genetics
ISSN: 1664-8021
Titre abrégé: Front Genet
Pays: Switzerland
ID NLM: 101560621

Informations de publication

Date de publication:
2023
Historique:
received: 08 06 2023
accepted: 07 07 2023
medline: 14 8 2023
pubmed: 14 8 2023
entrez: 14 8 2023
Statut: epublish

Résumé

Transcription-factor binding to cis-regulatory regions regulates the gene expression program of a cell, but occupancy is often a poor predictor of the gene response. Here, we show that glucocorticoid stimulation led to the reorganization of transcriptional coregulators MED1 and BRD4 within topologically associating domains (TADs), resulting in active or repressive gene environments. Indeed, we observed a bias toward the activation or repression of a TAD when their activities were defined by the number of regions gaining and losing MED1 and BRD4 following dexamethasone (Dex) stimulation. Variations in Dex-responsive genes at the RNA levels were consistent with the redistribution of MED1 and BRD4 at the associated cis-regulatory regions. Interestingly, Dex-responsive genes without the differential recruitment of MED1 and BRD4 or binding by the glucocorticoid receptor were found within TADs, which gained or lost MED1 and BRD4, suggesting a role of the surrounding environment in gene regulation. However, the amplitude of the response of Dex-regulated genes was higher when the differential recruitment of the glucocorticoid receptor and transcriptional coregulators was observed, reaffirming the role of transcription factor-driven gene regulation and attributing a lesser role to the TAD environment. These results support a model where a signal-induced transcription factor induces a regionalized effect throughout the TAD, redefining the notion of direct and indirect effects of transcription factors on target genes.

Identifiants

pubmed: 37576549
doi: 10.3389/fgene.2023.1237092
pii: 1237092
pmc: PMC10413275
doi:

Types de publication

Journal Article

Langues

eng

Pagination

1237092

Informations de copyright

Copyright © 2023 Tav, Fournier, Fournier, Khadangi, Baguette, Côté, Silveira, Bérubé-Simard, Bourque, Droit and Bilodeau.

Déclaration de conflit d'intérêts

The authors declare that the research was conducted in the absence of any commercial or financial relationships that could be construed as a potential conflict of interest.

Références

Bioessays. 2016 Jul;38(7):618-26
pubmed: 27273739
Nat Rev Genet. 2016 Oct 14;17(11):661-678
pubmed: 27739532
Nucleic Acids Res. 2018 Apr 6;46(6):2868-2882
pubmed: 29385519
BMC Biol. 2020 Jun 2;18(1):59
pubmed: 32487073
Nature. 2012 Apr 11;485(7398):376-80
pubmed: 22495300
Nat Genet. 2019 Aug;51(8):1263-1271
pubmed: 31358994
Nat Rev Genet. 2008 Aug;9(8):583-93
pubmed: 18591982
Mol Cell. 2020 May 7;78(3):539-553.e8
pubmed: 32213323
Elife. 2019 May 24;8:
pubmed: 31124784
Nucleic Acids Res. 2007;35(18):6161-9
pubmed: 17827210
Bioinformatics. 2009 Jul 15;25(14):1754-60
pubmed: 19451168
Science. 2009 Oct 9;326(5950):289-93
pubmed: 19815776
Nucleic Acids Res. 2012 Sep 1;40(17):e128
pubmed: 22610855
Trends Endocrinol Metab. 2011 Aug;22(8):295-310
pubmed: 21549614
Bioinformatics. 2014 Apr 1;30(7):923-30
pubmed: 24227677
BMC Genomics. 2015 Nov 17;16:963
pubmed: 26576536
Nucleic Acids Res. 2016 Jul 8;44(W1):W160-5
pubmed: 27079975
Cold Spring Harb Perspect Biol. 2013 Aug 01;5(8):a017780
pubmed: 23906716
Algorithms Mol Biol. 2014 May 03;9:14
pubmed: 24868242
Nucleic Acids Res. 2002 Jan 1;30(1):207-10
pubmed: 11752295
Nature. 2012 Jan 04;481(7381):389-93
pubmed: 22217937
Science. 2018 Jul 27;361(6400):
pubmed: 29930091
Cell. 2014 Dec 18;159(7):1665-80
pubmed: 25497547
Cell Syst. 2018 Aug 22;7(2):146-160.e7
pubmed: 30031775
Trends Genet. 2023 Feb;39(2):140-153
pubmed: 36549923
Mol Cell. 2019 Oct 17;76(2):306-319
pubmed: 31521504
Nature. 2010 Sep 23;467(7314):430-5
pubmed: 20720539
Sci Rep. 2019 Jul 2;9(1):9526
pubmed: 31266973
Bioinformatics. 2014 Aug 1;30(15):2114-20
pubmed: 24695404
Genome Biol. 2014;15(12):550
pubmed: 25516281
Genome Res. 2018 Sep;28(9):1272-1284
pubmed: 30097539
Nat Protoc. 2020 Mar;15(3):991-1012
pubmed: 31980751
Genes Dev. 2015 Oct 1;29(19):1992-7
pubmed: 26443845
Int J Mol Sci. 2018 Jan 23;19(2):
pubmed: 29360755
Cell. 2018 Dec 13;175(7):1842-1855.e16
pubmed: 30449618
Gigascience. 2019 Jun 1;8(6):
pubmed: 31185495
Nat Genet. 2018 Sep;50(9):1296-1303
pubmed: 30038397
Cell. 2012 Jun 8;149(6):1233-44
pubmed: 22682246
J Cell Biol. 2018 Apr 2;217(4):1181-1191
pubmed: 29378780
Nat Genet. 2004 Oct;36(10):1065-71
pubmed: 15361872
Science. 2018 Jul 27;361(6400):412-415
pubmed: 29930094
Nucleic Acids Res. 2018 Jan 4;46(D1):D794-D801
pubmed: 29126249
J Biol Chem. 2016 Jan 1;291(1):342-54
pubmed: 26504077
Science. 2016 Aug 5;353(6299):598-602
pubmed: 27445307
PLoS Comput Biol. 2017 Sep 13;13(9):e1005708
pubmed: 28902867
Cell. 2013 Mar 14;152(6):1237-51
pubmed: 23498934
Cell. 2014 Oct 9;159(2):374-387
pubmed: 25303531
Cell. 2013 Aug 15;154(4):914-27
pubmed: 23953119
Genetics. 2017 Sep;207(1):139-151
pubmed: 28679547
Nucleic Acids Res. 2022 Jul 8;50(12):6702-6714
pubmed: 35713523
Genes Dev. 2014 Oct 1;28(19):2151-62
pubmed: 25274727
Nature. 2012 Apr 11;485(7398):381-5
pubmed: 22495304
Proc Natl Acad Sci U S A. 2021 Jul 27;118(30):
pubmed: 34285072
Mol Cell. 2019 Dec 5;76(5):753-766.e6
pubmed: 31563432
Science. 2018 Jul 27;361(6400):
pubmed: 29930090
Nat Methods. 2012 Mar 04;9(4):357-9
pubmed: 22388286
Genes Dev. 2009 Nov 1;23(21):2484-9
pubmed: 19884255
Genome Biol. 2008;9(9):R137
pubmed: 18798982
Nat Rev Genet. 2012 Sep;13(9):613-26
pubmed: 22868264
Genome Res. 2002 Jun;12(6):996-1006
pubmed: 12045153
Mol Cell. 2019 Nov 7;76(3):473-484.e7
pubmed: 31494034
Life Sci Alliance. 2021 Aug 26;4(10):
pubmed: 34446533
Nat Methods. 2012 Feb 28;9(3):215-6
pubmed: 22373907
Nat Rev Genet. 2018 Dec;19(12):789-800
pubmed: 30367165
Cell. 2020 Oct 1;183(1):28-45
pubmed: 32976797
Bioinformatics. 2013 Jan 1;29(1):15-21
pubmed: 23104886
Sci Rep. 2019 Jun 27;9(1):9354
pubmed: 31249361
Nat Biotechnol. 2010 May;28(5):495-501
pubmed: 20436461
Bioinformatics. 2023 Jan 1;39(1):
pubmed: 36394265
Cell. 2014 Aug 14;158(4):849-860
pubmed: 25126789
Sci Rep. 2016 Oct 14;6:34962
pubmed: 27739523
Genome Res. 2009 Dec;19(12):2163-71
pubmed: 19801529
Mol Cell. 2017 Sep 7;67(5):837-852.e7
pubmed: 28826674
Genome Biol. 2015 Dec 01;16:259
pubmed: 26619908
Cell. 2016 Aug 25;166(5):1269-1281.e19
pubmed: 27565349
Mol Cell. 2018 Dec 20;72(6):920-924
pubmed: 30576654
Mol Cell. 2020 May 7;78(3):554-565.e7
pubmed: 32213324
Nat Rev Genet. 2014 Feb;15(2):69-81
pubmed: 24342920
Cell. 2018 Feb 8;172(4):650-665
pubmed: 29425488
Nat Rev Genet. 2019 Aug;20(8):437-455
pubmed: 31086298
Nucleic Acids Res. 2022 Jan 7;50(D1):D165-D173
pubmed: 34850907
Cell. 2013 Oct 24;155(3):606-20
pubmed: 24243018
Cell. 2017 Mar 23;169(1):13-23
pubmed: 28340338

Auteurs

Christophe Tav (C)

Centre de Recherche du CHU de Québec-Université Laval, Axe Oncologie, Québec, QC, Canada.
Centre de Recherche sur le Cancer de l'Université Laval, Québec, QC, Canada.
Centre de Recherche en Données Massives de l'Université Laval, Québec, QC, Canada.

Éric Fournier (É)

Centre de Recherche du CHU de Québec-Université Laval, Axe Oncologie, Québec, QC, Canada.
Centre de Recherche sur le Cancer de l'Université Laval, Québec, QC, Canada.
Centre de Recherche en Données Massives de l'Université Laval, Québec, QC, Canada.

Michèle Fournier (M)

Centre de Recherche du CHU de Québec-Université Laval, Axe Oncologie, Québec, QC, Canada.
Centre de Recherche sur le Cancer de l'Université Laval, Québec, QC, Canada.

Fatemeh Khadangi (F)

Centre de Recherche du CHU de Québec-Université Laval, Axe Oncologie, Québec, QC, Canada.
Centre de Recherche sur le Cancer de l'Université Laval, Québec, QC, Canada.

Audrey Baguette (A)

Department of Human Genetics, Faculty of Medicine, McGill University, Montréal, QC, Canada.

Maxime C Côté (MC)

Centre de Recherche du CHU de Québec-Université Laval, Axe Oncologie, Québec, QC, Canada.
Centre de Recherche sur le Cancer de l'Université Laval, Québec, QC, Canada.

Maruhen A D Silveira (MAD)

Centre de Recherche du CHU de Québec-Université Laval, Axe Oncologie, Québec, QC, Canada.
Centre de Recherche sur le Cancer de l'Université Laval, Québec, QC, Canada.

Félix-Antoine Bérubé-Simard (FA)

Centre de Recherche du CHU de Québec-Université Laval, Axe Oncologie, Québec, QC, Canada.
Centre de Recherche sur le Cancer de l'Université Laval, Québec, QC, Canada.

Guillaume Bourque (G)

Department of Human Genetics, Faculty of Medicine, McGill University, Montréal, QC, Canada.
Canadian Center for Computational Genomics, McGill University, Montréal, QC, Canada.

Arnaud Droit (A)

Centre de Recherche sur le Cancer de l'Université Laval, Québec, QC, Canada.
Centre de Recherche en Données Massives de l'Université Laval, Québec, QC, Canada.
Centre de Recherche du CHU de Québec-Université Laval, Axe Endocrinologie et Néphrologie, Québec, QC, Canada.
Département de Médecine Moléculaire, Faculté de Médecine, Université Laval, Québec, QC, Canada.

Steve Bilodeau (S)

Centre de Recherche du CHU de Québec-Université Laval, Axe Oncologie, Québec, QC, Canada.
Centre de Recherche sur le Cancer de l'Université Laval, Québec, QC, Canada.
Centre de Recherche en Données Massives de l'Université Laval, Québec, QC, Canada.
Département de Biologie Moléculaire, Biochimie Médicale et Pathologie, Faculté de Médecine, Université Laval, Québec, QC, Canada.

Classifications MeSH