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Chromatin profiling reveals relocalization of lysine-specific demethylase 1 by an oncogenic fusion protein

Paediatric cancers commonly harbour quiet mutational landscapes and are instead characterized by single driver events such as the mutation of critical chromatin regulators, expression of oncohistones, or expression of oncogenic fusion proteins. These events ultimately promote malignancy through disr...

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Autores principales: Theisen, Emily R., Selich-Anderson, Julia, Miller, Kyle R., Tanner, Jason M., Taslim, Cenny, Pishas, Kathleen I., Sharma, Sunil, Lessnick, Stephen L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Taylor & Francis 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7993145/
https://www.ncbi.nlm.nih.gov/pubmed/32842875
http://dx.doi.org/10.1080/15592294.2020.1805678
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author Theisen, Emily R.
Selich-Anderson, Julia
Miller, Kyle R.
Tanner, Jason M.
Taslim, Cenny
Pishas, Kathleen I.
Sharma, Sunil
Lessnick, Stephen L.
author_facet Theisen, Emily R.
Selich-Anderson, Julia
Miller, Kyle R.
Tanner, Jason M.
Taslim, Cenny
Pishas, Kathleen I.
Sharma, Sunil
Lessnick, Stephen L.
author_sort Theisen, Emily R.
collection PubMed
description Paediatric cancers commonly harbour quiet mutational landscapes and are instead characterized by single driver events such as the mutation of critical chromatin regulators, expression of oncohistones, or expression of oncogenic fusion proteins. These events ultimately promote malignancy through disruption of normal gene regulation and development. The driver protein in Ewing sarcoma, EWS/FLI, is an oncogenic fusion and transcription factor that reshapes the enhancer landscape, resulting in widespread transcriptional dysregulation. Lysine-specific demethylase 1 (LSD1) is a critical functional partner for EWS/FLI as inhibition of LSD1 reverses the transcriptional activity of EWS/FLI. However, how LSD1 participates in fusion-directed epigenomic regulation and aberrant gene activation is unknown. We now show EWS/FLI causes dynamic rearrangement of LSD1 and we uncover a role for LSD1 in gene activation through colocalization at EWS/FLI binding sites throughout the genome. LSD1 is integral to the establishment of Ewing sarcoma super-enhancers at GGAA-microsatellites, which ubiquitously overlap non-microsatellite loci bound by EWS/FLI. Together, we show that EWS/FLI induces widespread changes to LSD1 distribution in a process that impacts the enhancer landscape throughout the genome.
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spelling pubmed-79931452021-03-31 Chromatin profiling reveals relocalization of lysine-specific demethylase 1 by an oncogenic fusion protein Theisen, Emily R. Selich-Anderson, Julia Miller, Kyle R. Tanner, Jason M. Taslim, Cenny Pishas, Kathleen I. Sharma, Sunil Lessnick, Stephen L. Epigenetics Research Paper Paediatric cancers commonly harbour quiet mutational landscapes and are instead characterized by single driver events such as the mutation of critical chromatin regulators, expression of oncohistones, or expression of oncogenic fusion proteins. These events ultimately promote malignancy through disruption of normal gene regulation and development. The driver protein in Ewing sarcoma, EWS/FLI, is an oncogenic fusion and transcription factor that reshapes the enhancer landscape, resulting in widespread transcriptional dysregulation. Lysine-specific demethylase 1 (LSD1) is a critical functional partner for EWS/FLI as inhibition of LSD1 reverses the transcriptional activity of EWS/FLI. However, how LSD1 participates in fusion-directed epigenomic regulation and aberrant gene activation is unknown. We now show EWS/FLI causes dynamic rearrangement of LSD1 and we uncover a role for LSD1 in gene activation through colocalization at EWS/FLI binding sites throughout the genome. LSD1 is integral to the establishment of Ewing sarcoma super-enhancers at GGAA-microsatellites, which ubiquitously overlap non-microsatellite loci bound by EWS/FLI. Together, we show that EWS/FLI induces widespread changes to LSD1 distribution in a process that impacts the enhancer landscape throughout the genome. Taylor & Francis 2020-08-25 /pmc/articles/PMC7993145/ /pubmed/32842875 http://dx.doi.org/10.1080/15592294.2020.1805678 Text en © 2020 The Author(s). Published by Informa UK Limited, trading as Taylor & Francis Group. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an Open Access article distributed under the terms of the Creative Commons Attribution-NonCommercial-NoDerivatives License (http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) ), which permits non-commercial re-use, distribution, and reproduction in any medium, provided the original work is properly cited, and is not altered, transformed, or built upon in any way.
spellingShingle Research Paper
Theisen, Emily R.
Selich-Anderson, Julia
Miller, Kyle R.
Tanner, Jason M.
Taslim, Cenny
Pishas, Kathleen I.
Sharma, Sunil
Lessnick, Stephen L.
Chromatin profiling reveals relocalization of lysine-specific demethylase 1 by an oncogenic fusion protein
title Chromatin profiling reveals relocalization of lysine-specific demethylase 1 by an oncogenic fusion protein
title_full Chromatin profiling reveals relocalization of lysine-specific demethylase 1 by an oncogenic fusion protein
title_fullStr Chromatin profiling reveals relocalization of lysine-specific demethylase 1 by an oncogenic fusion protein
title_full_unstemmed Chromatin profiling reveals relocalization of lysine-specific demethylase 1 by an oncogenic fusion protein
title_short Chromatin profiling reveals relocalization of lysine-specific demethylase 1 by an oncogenic fusion protein
title_sort chromatin profiling reveals relocalization of lysine-specific demethylase 1 by an oncogenic fusion protein
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7993145/
https://www.ncbi.nlm.nih.gov/pubmed/32842875
http://dx.doi.org/10.1080/15592294.2020.1805678
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