Estrogen receptor α drives pro-resilient transcription in mouse models of depression
Stress resilience is accompanied by broad changes in gene expression. This study shows that estrogen receptor α (ERα) is a key upstream regulator of these changes in the nucleus accumbens, and that overexpression of ERα increases behavioral resilience via a sex-specific transcriptional mechanism.
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Nature Portfolio
2018
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oai:doaj.org-article:ece077944a9741a483557c3a2aad83ec2021-12-02T14:40:44ZEstrogen receptor α drives pro-resilient transcription in mouse models of depression10.1038/s41467-018-03567-42041-1723https://doaj.org/article/ece077944a9741a483557c3a2aad83ec2018-03-01T00:00:00Zhttps://doi.org/10.1038/s41467-018-03567-4https://doaj.org/toc/2041-1723Stress resilience is accompanied by broad changes in gene expression. This study shows that estrogen receptor α (ERα) is a key upstream regulator of these changes in the nucleus accumbens, and that overexpression of ERα increases behavioral resilience via a sex-specific transcriptional mechanism.Zachary S. LorschYong-Hwee Eddie LohImmanuel PurushothamanDeena M. WalkerEric M. PariseMarine SaleryMichael E. CahillGeorgia E. HodesMadeline L. PfauHope KronmanPeter J. HamiltonOrna IsslerBenoit LabontéAnn E. SymondsMatthew ZuckerTie Yuan ZhangMichael J. MeaneyScott J. RussoLi ShenRosemary C. BagotEric J. NestlerNature PortfolioarticleScienceQENNature Communications, Vol 9, Iss 1, Pp 1-11 (2018) |
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Science Q |
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Science Q Zachary S. Lorsch Yong-Hwee Eddie Loh Immanuel Purushothaman Deena M. Walker Eric M. Parise Marine Salery Michael E. Cahill Georgia E. Hodes Madeline L. Pfau Hope Kronman Peter J. Hamilton Orna Issler Benoit Labonté Ann E. Symonds Matthew Zucker Tie Yuan Zhang Michael J. Meaney Scott J. Russo Li Shen Rosemary C. Bagot Eric J. Nestler Estrogen receptor α drives pro-resilient transcription in mouse models of depression |
description |
Stress resilience is accompanied by broad changes in gene expression. This study shows that estrogen receptor α (ERα) is a key upstream regulator of these changes in the nucleus accumbens, and that overexpression of ERα increases behavioral resilience via a sex-specific transcriptional mechanism. |
format |
article |
author |
Zachary S. Lorsch Yong-Hwee Eddie Loh Immanuel Purushothaman Deena M. Walker Eric M. Parise Marine Salery Michael E. Cahill Georgia E. Hodes Madeline L. Pfau Hope Kronman Peter J. Hamilton Orna Issler Benoit Labonté Ann E. Symonds Matthew Zucker Tie Yuan Zhang Michael J. Meaney Scott J. Russo Li Shen Rosemary C. Bagot Eric J. Nestler |
author_facet |
Zachary S. Lorsch Yong-Hwee Eddie Loh Immanuel Purushothaman Deena M. Walker Eric M. Parise Marine Salery Michael E. Cahill Georgia E. Hodes Madeline L. Pfau Hope Kronman Peter J. Hamilton Orna Issler Benoit Labonté Ann E. Symonds Matthew Zucker Tie Yuan Zhang Michael J. Meaney Scott J. Russo Li Shen Rosemary C. Bagot Eric J. Nestler |
author_sort |
Zachary S. Lorsch |
title |
Estrogen receptor α drives pro-resilient transcription in mouse models of depression |
title_short |
Estrogen receptor α drives pro-resilient transcription in mouse models of depression |
title_full |
Estrogen receptor α drives pro-resilient transcription in mouse models of depression |
title_fullStr |
Estrogen receptor α drives pro-resilient transcription in mouse models of depression |
title_full_unstemmed |
Estrogen receptor α drives pro-resilient transcription in mouse models of depression |
title_sort |
estrogen receptor α drives pro-resilient transcription in mouse models of depression |
publisher |
Nature Portfolio |
publishDate |
2018 |
url |
https://doaj.org/article/ece077944a9741a483557c3a2aad83ec |
work_keys_str_mv |
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