Locus-specific epigenetic remodeling controls addiction- and depression-related behaviors

Chronic exposure to drugs of abuse or stress regulates transcription factors, chromatin-modifying enzymes and histone post-translational modifications in discrete brain regions. Given the promiscuity of the enzymes involved, it has not yet been possible to obtain direct causal evidence to implicate...

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প্রধান লেখক: Sun, Haosheng, Shao, Ningyi, Feng, Jian, Mazei-Robison, Michelle, Ferguson, Deveroux, Knight, Scott, Nievera, Christian, Han, Ming-Hu, Shen, Li, Zhang, H Steve, Zhang, Feng, Nestler, Eric J, Heller, Elizabeth A., Cates, Hannah M., Pena, Catherine J., Golden, Sam A., Herman, James P., Walsh, Jessica J., Gerber, Mark A., Russo, Scott J., Tamminga, Carol S., Neve, Rachael L.
অন্যান্য লেখক: Massachusetts Institute of Technology. Department of Brain and Cognitive Sciences
বিন্যাস: প্রবন্ধ
ভাষা:en_US
প্রকাশিত: Nature Publishing Group 2016
অনলাইন ব্যবহার করুন:http://hdl.handle.net/1721.1/102587
https://orcid.org/0000-0003-2782-2509
https://orcid.org/0000-0002-3854-5968
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author Sun, Haosheng
Shao, Ningyi
Feng, Jian
Mazei-Robison, Michelle
Ferguson, Deveroux
Knight, Scott
Nievera, Christian
Han, Ming-Hu
Shen, Li
Zhang, H Steve
Zhang, Feng
Nestler, Eric J
Heller, Elizabeth A.
Cates, Hannah M.
Pena, Catherine J.
Golden, Sam A.
Herman, James P.
Walsh, Jessica J.
Gerber, Mark A.
Russo, Scott J.
Tamminga, Carol S.
Neve, Rachael L.
author2 Massachusetts Institute of Technology. Department of Brain and Cognitive Sciences
author_facet Massachusetts Institute of Technology. Department of Brain and Cognitive Sciences
Sun, Haosheng
Shao, Ningyi
Feng, Jian
Mazei-Robison, Michelle
Ferguson, Deveroux
Knight, Scott
Nievera, Christian
Han, Ming-Hu
Shen, Li
Zhang, H Steve
Zhang, Feng
Nestler, Eric J
Heller, Elizabeth A.
Cates, Hannah M.
Pena, Catherine J.
Golden, Sam A.
Herman, James P.
Walsh, Jessica J.
Gerber, Mark A.
Russo, Scott J.
Tamminga, Carol S.
Neve, Rachael L.
author_sort Sun, Haosheng
collection MIT
description Chronic exposure to drugs of abuse or stress regulates transcription factors, chromatin-modifying enzymes and histone post-translational modifications in discrete brain regions. Given the promiscuity of the enzymes involved, it has not yet been possible to obtain direct causal evidence to implicate the regulation of transcription and consequent behavioral plasticity by chromatin remodeling that occurs at a single gene. We investigated the mechanism linking chromatin dynamics to neurobiological phenomena by applying engineered transcription factors to selectively modify chromatin at a specific mouse gene in vivo. We found that histone methylation or acetylation at the Fosb locus in nucleus accumbens, a brain reward region, was sufficient to control drug- and stress-evoked transcriptional and behavioral responses via interactions with the endogenous transcriptional machinery. This approach allowed us to relate the epigenetic landscape at a given gene directly to regulation of its expression and to its subsequent effects on reward behavior.
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spelling mit-1721.1/1025872022-09-27T23:14:38Z Locus-specific epigenetic remodeling controls addiction- and depression-related behaviors Sun, Haosheng Shao, Ningyi Feng, Jian Mazei-Robison, Michelle Ferguson, Deveroux Knight, Scott Nievera, Christian Han, Ming-Hu Shen, Li Zhang, H Steve Zhang, Feng Nestler, Eric J Heller, Elizabeth A. Cates, Hannah M. Pena, Catherine J. Golden, Sam A. Herman, James P. Walsh, Jessica J. Gerber, Mark A. Russo, Scott J. Tamminga, Carol S. Neve, Rachael L. Massachusetts Institute of Technology. Department of Brain and Cognitive Sciences McGovern Institute for Brain Research at MIT Neve, Rachael L. Zhang, Feng Chronic exposure to drugs of abuse or stress regulates transcription factors, chromatin-modifying enzymes and histone post-translational modifications in discrete brain regions. Given the promiscuity of the enzymes involved, it has not yet been possible to obtain direct causal evidence to implicate the regulation of transcription and consequent behavioral plasticity by chromatin remodeling that occurs at a single gene. We investigated the mechanism linking chromatin dynamics to neurobiological phenomena by applying engineered transcription factors to selectively modify chromatin at a specific mouse gene in vivo. We found that histone methylation or acetylation at the Fosb locus in nucleus accumbens, a brain reward region, was sufficient to control drug- and stress-evoked transcriptional and behavioral responses via interactions with the endogenous transcriptional machinery. This approach allowed us to relate the epigenetic landscape at a given gene directly to regulation of its expression and to its subsequent effects on reward behavior. 2016-05-23T00:29:39Z 2016-05-23T00:29:39Z 2014-10 2014-10 Article http://purl.org/eprint/type/JournalArticle 1097-6256 1546-1726 http://hdl.handle.net/1721.1/102587 Heller, Elizabeth A, Hannah M Cates, Catherine J Pena, Haosheng Sun, Ningyi Shao, Jian Feng, Sam A Golden, et al. “Locus-Specific Epigenetic Remodeling Controls Addiction- and Depression-Related Behaviors.” Nature Neuroscience 17, no. 12 (October 27, 2014): 1720–27. https://orcid.org/0000-0003-2782-2509 https://orcid.org/0000-0002-3854-5968 en_US http://dx.doi.org/10.1038/nn.3871 Nature Neuroscience Creative Commons Attribution-Noncommercial-Share Alike http://creativecommons.org/licenses/by-nc-sa/4.0/ application/pdf Nature Publishing Group PMC
spellingShingle Sun, Haosheng
Shao, Ningyi
Feng, Jian
Mazei-Robison, Michelle
Ferguson, Deveroux
Knight, Scott
Nievera, Christian
Han, Ming-Hu
Shen, Li
Zhang, H Steve
Zhang, Feng
Nestler, Eric J
Heller, Elizabeth A.
Cates, Hannah M.
Pena, Catherine J.
Golden, Sam A.
Herman, James P.
Walsh, Jessica J.
Gerber, Mark A.
Russo, Scott J.
Tamminga, Carol S.
Neve, Rachael L.
Locus-specific epigenetic remodeling controls addiction- and depression-related behaviors
title Locus-specific epigenetic remodeling controls addiction- and depression-related behaviors
title_full Locus-specific epigenetic remodeling controls addiction- and depression-related behaviors
title_fullStr Locus-specific epigenetic remodeling controls addiction- and depression-related behaviors
title_full_unstemmed Locus-specific epigenetic remodeling controls addiction- and depression-related behaviors
title_short Locus-specific epigenetic remodeling controls addiction- and depression-related behaviors
title_sort locus specific epigenetic remodeling controls addiction and depression related behaviors
url http://hdl.handle.net/1721.1/102587
https://orcid.org/0000-0003-2782-2509
https://orcid.org/0000-0002-3854-5968
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