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ACLY and ACC1 Regulate Hypoxia-Induced Apoptosis by Modulating ETV4 via α-ketoglutarate

In order to propagate a solid tumor, cancer cells must adapt to and survive under various tumor microenvironment (TME) stresses, such as hypoxia or lactic acidosis. To systematically identify genes that modulate cancer cell survival under stresses, we performed genome-wide shRNA screens under hypoxi...

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Autores principales: Keenan, Melissa M., Liu, Beiyu, Tang, Xiaohu, Wu, Jianli, Cyr, Derek, Stevens, Robert D., Ilkayeva, Olga, Huang, Zhiqing, Tollini, Laura A., Murphy, Susan K., Lucas, Joseph, Muoio, Deborah M., Kim, So Young, Chi, Jen-Tsan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4599891/
https://www.ncbi.nlm.nih.gov/pubmed/26452058
http://dx.doi.org/10.1371/journal.pgen.1005599
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author Keenan, Melissa M.
Liu, Beiyu
Tang, Xiaohu
Wu, Jianli
Cyr, Derek
Stevens, Robert D.
Ilkayeva, Olga
Huang, Zhiqing
Tollini, Laura A.
Murphy, Susan K.
Lucas, Joseph
Muoio, Deborah M.
Kim, So Young
Chi, Jen-Tsan
author_facet Keenan, Melissa M.
Liu, Beiyu
Tang, Xiaohu
Wu, Jianli
Cyr, Derek
Stevens, Robert D.
Ilkayeva, Olga
Huang, Zhiqing
Tollini, Laura A.
Murphy, Susan K.
Lucas, Joseph
Muoio, Deborah M.
Kim, So Young
Chi, Jen-Tsan
author_sort Keenan, Melissa M.
collection PubMed
description In order to propagate a solid tumor, cancer cells must adapt to and survive under various tumor microenvironment (TME) stresses, such as hypoxia or lactic acidosis. To systematically identify genes that modulate cancer cell survival under stresses, we performed genome-wide shRNA screens under hypoxia or lactic acidosis. We discovered that genetic depletion of acetyl-CoA carboxylase (ACACA or ACC1) or ATP citrate lyase (ACLY) protected cancer cells from hypoxia-induced apoptosis. Additionally, the loss of ACLY or ACC1 reduced levels and activities of the oncogenic transcription factor ETV4. Silencing ETV4 also protected cells from hypoxia-induced apoptosis and led to remarkably similar transcriptional responses as with silenced ACLY or ACC1, including an anti-apoptotic program. Metabolomic analysis found that while α-ketoglutarate levels decrease under hypoxia in control cells, α-ketoglutarate is paradoxically increased under hypoxia when ACC1 or ACLY are depleted. Supplementation with α-ketoglutarate rescued the hypoxia-induced apoptosis and recapitulated the decreased expression and activity of ETV4, likely via an epigenetic mechanism. Therefore, ACC1 and ACLY regulate the levels of ETV4 under hypoxia via increased α-ketoglutarate. These results reveal that the ACC1/ACLY-α-ketoglutarate-ETV4 axis is a novel means by which metabolic states regulate transcriptional output for life vs. death decisions under hypoxia. Since many lipogenic inhibitors are under investigation as cancer therapeutics, our findings suggest that the use of these inhibitors will need to be carefully considered with respect to oncogenic drivers, tumor hypoxia, progression and dormancy. More broadly, our screen provides a framework for studying additional tumor cell stress-adaption mechanisms in the future.
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spelling pubmed-45998912015-10-20 ACLY and ACC1 Regulate Hypoxia-Induced Apoptosis by Modulating ETV4 via α-ketoglutarate Keenan, Melissa M. Liu, Beiyu Tang, Xiaohu Wu, Jianli Cyr, Derek Stevens, Robert D. Ilkayeva, Olga Huang, Zhiqing Tollini, Laura A. Murphy, Susan K. Lucas, Joseph Muoio, Deborah M. Kim, So Young Chi, Jen-Tsan PLoS Genet Research Article In order to propagate a solid tumor, cancer cells must adapt to and survive under various tumor microenvironment (TME) stresses, such as hypoxia or lactic acidosis. To systematically identify genes that modulate cancer cell survival under stresses, we performed genome-wide shRNA screens under hypoxia or lactic acidosis. We discovered that genetic depletion of acetyl-CoA carboxylase (ACACA or ACC1) or ATP citrate lyase (ACLY) protected cancer cells from hypoxia-induced apoptosis. Additionally, the loss of ACLY or ACC1 reduced levels and activities of the oncogenic transcription factor ETV4. Silencing ETV4 also protected cells from hypoxia-induced apoptosis and led to remarkably similar transcriptional responses as with silenced ACLY or ACC1, including an anti-apoptotic program. Metabolomic analysis found that while α-ketoglutarate levels decrease under hypoxia in control cells, α-ketoglutarate is paradoxically increased under hypoxia when ACC1 or ACLY are depleted. Supplementation with α-ketoglutarate rescued the hypoxia-induced apoptosis and recapitulated the decreased expression and activity of ETV4, likely via an epigenetic mechanism. Therefore, ACC1 and ACLY regulate the levels of ETV4 under hypoxia via increased α-ketoglutarate. These results reveal that the ACC1/ACLY-α-ketoglutarate-ETV4 axis is a novel means by which metabolic states regulate transcriptional output for life vs. death decisions under hypoxia. Since many lipogenic inhibitors are under investigation as cancer therapeutics, our findings suggest that the use of these inhibitors will need to be carefully considered with respect to oncogenic drivers, tumor hypoxia, progression and dormancy. More broadly, our screen provides a framework for studying additional tumor cell stress-adaption mechanisms in the future. Public Library of Science 2015-10-09 /pmc/articles/PMC4599891/ /pubmed/26452058 http://dx.doi.org/10.1371/journal.pgen.1005599 Text en © 2015 Keenan et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Keenan, Melissa M.
Liu, Beiyu
Tang, Xiaohu
Wu, Jianli
Cyr, Derek
Stevens, Robert D.
Ilkayeva, Olga
Huang, Zhiqing
Tollini, Laura A.
Murphy, Susan K.
Lucas, Joseph
Muoio, Deborah M.
Kim, So Young
Chi, Jen-Tsan
ACLY and ACC1 Regulate Hypoxia-Induced Apoptosis by Modulating ETV4 via α-ketoglutarate
title ACLY and ACC1 Regulate Hypoxia-Induced Apoptosis by Modulating ETV4 via α-ketoglutarate
title_full ACLY and ACC1 Regulate Hypoxia-Induced Apoptosis by Modulating ETV4 via α-ketoglutarate
title_fullStr ACLY and ACC1 Regulate Hypoxia-Induced Apoptosis by Modulating ETV4 via α-ketoglutarate
title_full_unstemmed ACLY and ACC1 Regulate Hypoxia-Induced Apoptosis by Modulating ETV4 via α-ketoglutarate
title_short ACLY and ACC1 Regulate Hypoxia-Induced Apoptosis by Modulating ETV4 via α-ketoglutarate
title_sort acly and acc1 regulate hypoxia-induced apoptosis by modulating etv4 via α-ketoglutarate
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4599891/
https://www.ncbi.nlm.nih.gov/pubmed/26452058
http://dx.doi.org/10.1371/journal.pgen.1005599
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