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Light Controlled Modulation of Gene Expression by Chemical Optoepigenetic Probes

Epigenetic gene regulation is a dynamic process orchestrated by chromatin-modifying enzymes. Many of these master regulators exert their function through covalent modification of DNA and histone proteins. Aberrant epigenetic processes have been implicated in the pathophysiology of multiple human dis...

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Autores principales: Reis, Surya A., Ghosh, Balaram, Hendricks, J. Adam, Szantai-Kis, D. Miklos, Törk, Lisa, Ross, Kenneth N., Lamb, Justin, Read-Button, Willis, Zheng, Baixue, Wang, Hongtao, Salthouse, Christopher, Haggarty, Stephen J., Mazitschek, Ralph
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4836974/
https://www.ncbi.nlm.nih.gov/pubmed/26974814
http://dx.doi.org/10.1038/nchembio.2042
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author Reis, Surya A.
Ghosh, Balaram
Hendricks, J. Adam
Szantai-Kis, D. Miklos
Törk, Lisa
Ross, Kenneth N.
Lamb, Justin
Read-Button, Willis
Zheng, Baixue
Wang, Hongtao
Salthouse, Christopher
Haggarty, Stephen J.
Mazitschek, Ralph
author_facet Reis, Surya A.
Ghosh, Balaram
Hendricks, J. Adam
Szantai-Kis, D. Miklos
Törk, Lisa
Ross, Kenneth N.
Lamb, Justin
Read-Button, Willis
Zheng, Baixue
Wang, Hongtao
Salthouse, Christopher
Haggarty, Stephen J.
Mazitschek, Ralph
author_sort Reis, Surya A.
collection PubMed
description Epigenetic gene regulation is a dynamic process orchestrated by chromatin-modifying enzymes. Many of these master regulators exert their function through covalent modification of DNA and histone proteins. Aberrant epigenetic processes have been implicated in the pathophysiology of multiple human diseases. Small-molecule inhibitors have been essential to advancing our understanding of the underlying molecular mechanisms of epigenetic processes. However, the resolution offered by small molecules is often insufficient to manipulate epigenetic processes with high spatio-temporal control. Here, we present a novel and generalizable approach, referred to as ‘Chemo-Optical Modulation of Epigenetically-regulated Transcription’ (COMET), enabling high-resolution, optical control of epigenetic mechanisms based on photochromic inhibitors of human histone deacetylases using visible light. COMET probes may translate into novel therapeutic strategies for diseases where conditional and selective epigenome modulation is required.
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spelling pubmed-48369742016-09-14 Light Controlled Modulation of Gene Expression by Chemical Optoepigenetic Probes Reis, Surya A. Ghosh, Balaram Hendricks, J. Adam Szantai-Kis, D. Miklos Törk, Lisa Ross, Kenneth N. Lamb, Justin Read-Button, Willis Zheng, Baixue Wang, Hongtao Salthouse, Christopher Haggarty, Stephen J. Mazitschek, Ralph Nat Chem Biol Article Epigenetic gene regulation is a dynamic process orchestrated by chromatin-modifying enzymes. Many of these master regulators exert their function through covalent modification of DNA and histone proteins. Aberrant epigenetic processes have been implicated in the pathophysiology of multiple human diseases. Small-molecule inhibitors have been essential to advancing our understanding of the underlying molecular mechanisms of epigenetic processes. However, the resolution offered by small molecules is often insufficient to manipulate epigenetic processes with high spatio-temporal control. Here, we present a novel and generalizable approach, referred to as ‘Chemo-Optical Modulation of Epigenetically-regulated Transcription’ (COMET), enabling high-resolution, optical control of epigenetic mechanisms based on photochromic inhibitors of human histone deacetylases using visible light. COMET probes may translate into novel therapeutic strategies for diseases where conditional and selective epigenome modulation is required. 2016-03-14 2016-05 /pmc/articles/PMC4836974/ /pubmed/26974814 http://dx.doi.org/10.1038/nchembio.2042 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use: http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Reis, Surya A.
Ghosh, Balaram
Hendricks, J. Adam
Szantai-Kis, D. Miklos
Törk, Lisa
Ross, Kenneth N.
Lamb, Justin
Read-Button, Willis
Zheng, Baixue
Wang, Hongtao
Salthouse, Christopher
Haggarty, Stephen J.
Mazitschek, Ralph
Light Controlled Modulation of Gene Expression by Chemical Optoepigenetic Probes
title Light Controlled Modulation of Gene Expression by Chemical Optoepigenetic Probes
title_full Light Controlled Modulation of Gene Expression by Chemical Optoepigenetic Probes
title_fullStr Light Controlled Modulation of Gene Expression by Chemical Optoepigenetic Probes
title_full_unstemmed Light Controlled Modulation of Gene Expression by Chemical Optoepigenetic Probes
title_short Light Controlled Modulation of Gene Expression by Chemical Optoepigenetic Probes
title_sort light controlled modulation of gene expression by chemical optoepigenetic probes
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4836974/
https://www.ncbi.nlm.nih.gov/pubmed/26974814
http://dx.doi.org/10.1038/nchembio.2042
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