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Acetyl-CoA promotes glioblastoma cell adhesion and migration through Ca(2+)–NFAT signaling

The metabolite acetyl-coenzyme A (acetyl-CoA) is the required acetyl donor for lysine acetylation and thereby links metabolism, signaling, and epigenetics. Nutrient availability alters acetyl-CoA levels in cancer cells, correlating with changes in global histone acetylation and gene expression. Howe...

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Autores principales: Lee, Joyce V., Berry, Corbett T., Kim, Karla, Sen, Payel, Kim, Taehyong, Carrer, Alessandro, Trefely, Sophie, Zhao, Steven, Fernandez, Sully, Barney, Lauren E., Schwartz, Alyssa D., Peyton, Shelly R., Snyder, Nathaniel W., Berger, Shelley L., Freedman, Bruce D., Wellen, Kathryn E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cold Spring Harbor Laboratory Press 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5959234/
https://www.ncbi.nlm.nih.gov/pubmed/29674394
http://dx.doi.org/10.1101/gad.311027.117
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author Lee, Joyce V.
Berry, Corbett T.
Kim, Karla
Sen, Payel
Kim, Taehyong
Carrer, Alessandro
Trefely, Sophie
Zhao, Steven
Fernandez, Sully
Barney, Lauren E.
Schwartz, Alyssa D.
Peyton, Shelly R.
Snyder, Nathaniel W.
Berger, Shelley L.
Freedman, Bruce D.
Wellen, Kathryn E.
author_facet Lee, Joyce V.
Berry, Corbett T.
Kim, Karla
Sen, Payel
Kim, Taehyong
Carrer, Alessandro
Trefely, Sophie
Zhao, Steven
Fernandez, Sully
Barney, Lauren E.
Schwartz, Alyssa D.
Peyton, Shelly R.
Snyder, Nathaniel W.
Berger, Shelley L.
Freedman, Bruce D.
Wellen, Kathryn E.
author_sort Lee, Joyce V.
collection PubMed
description The metabolite acetyl-coenzyme A (acetyl-CoA) is the required acetyl donor for lysine acetylation and thereby links metabolism, signaling, and epigenetics. Nutrient availability alters acetyl-CoA levels in cancer cells, correlating with changes in global histone acetylation and gene expression. However, the specific molecular mechanisms through which acetyl-CoA production impacts gene expression and its functional roles in promoting malignant phenotypes are poorly understood. Here, using histone H3 Lys27 acetylation (H3K27ac) ChIP-seq (chromatin immunoprecipitation [ChIP] coupled with next-generation sequencing) with normalization to an exogenous reference genome (ChIP-Rx), we found that changes in acetyl-CoA abundance trigger site-specific regulation of H3K27ac, correlating with gene expression as opposed to uniformly modulating this mark at all genes. Genes involved in integrin signaling and cell adhesion were identified as acetyl-CoA-responsive in glioblastoma cells, and we demonstrate that ATP citrate lyase (ACLY)-dependent acetyl-CoA production promotes cell migration and adhesion to the extracellular matrix. Mechanistically, the transcription factor NFAT1 (nuclear factor of activated T cells 1) was found to mediate acetyl-CoA-dependent gene regulation and cell adhesion. This occurs through modulation of Ca(2+) signals, triggering NFAT1 nuclear translocation when acetyl-CoA is abundant. The findings of this study thus establish that acetyl-CoA impacts H3K27ac at specific loci, correlating with gene expression, and that expression of cell adhesion genes are driven by acetyl-CoA in part through activation of Ca(2+)–NFAT signaling.
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spelling pubmed-59592342018-10-01 Acetyl-CoA promotes glioblastoma cell adhesion and migration through Ca(2+)–NFAT signaling Lee, Joyce V. Berry, Corbett T. Kim, Karla Sen, Payel Kim, Taehyong Carrer, Alessandro Trefely, Sophie Zhao, Steven Fernandez, Sully Barney, Lauren E. Schwartz, Alyssa D. Peyton, Shelly R. Snyder, Nathaniel W. Berger, Shelley L. Freedman, Bruce D. Wellen, Kathryn E. Genes Dev Research Paper The metabolite acetyl-coenzyme A (acetyl-CoA) is the required acetyl donor for lysine acetylation and thereby links metabolism, signaling, and epigenetics. Nutrient availability alters acetyl-CoA levels in cancer cells, correlating with changes in global histone acetylation and gene expression. However, the specific molecular mechanisms through which acetyl-CoA production impacts gene expression and its functional roles in promoting malignant phenotypes are poorly understood. Here, using histone H3 Lys27 acetylation (H3K27ac) ChIP-seq (chromatin immunoprecipitation [ChIP] coupled with next-generation sequencing) with normalization to an exogenous reference genome (ChIP-Rx), we found that changes in acetyl-CoA abundance trigger site-specific regulation of H3K27ac, correlating with gene expression as opposed to uniformly modulating this mark at all genes. Genes involved in integrin signaling and cell adhesion were identified as acetyl-CoA-responsive in glioblastoma cells, and we demonstrate that ATP citrate lyase (ACLY)-dependent acetyl-CoA production promotes cell migration and adhesion to the extracellular matrix. Mechanistically, the transcription factor NFAT1 (nuclear factor of activated T cells 1) was found to mediate acetyl-CoA-dependent gene regulation and cell adhesion. This occurs through modulation of Ca(2+) signals, triggering NFAT1 nuclear translocation when acetyl-CoA is abundant. The findings of this study thus establish that acetyl-CoA impacts H3K27ac at specific loci, correlating with gene expression, and that expression of cell adhesion genes are driven by acetyl-CoA in part through activation of Ca(2+)–NFAT signaling. Cold Spring Harbor Laboratory Press 2018-04-01 /pmc/articles/PMC5959234/ /pubmed/29674394 http://dx.doi.org/10.1101/gad.311027.117 Text en © 2018 Lee et al.; Published by Cold Spring Harbor Laboratory Press http://creativecommons.org/licenses/by-nc/4.0/ This article is distributed exclusively by Cold Spring Harbor Laboratory Press for the first six months after the full-issue publication date (see http://genesdev.cshlp.org/site/misc/terms.xhtml). After six months, it is available under a Creative Commons License (Attribution-NonCommercial 4.0 International), as described at http://creativecommons.org/licenses/by-nc/4.0/.
spellingShingle Research Paper
Lee, Joyce V.
Berry, Corbett T.
Kim, Karla
Sen, Payel
Kim, Taehyong
Carrer, Alessandro
Trefely, Sophie
Zhao, Steven
Fernandez, Sully
Barney, Lauren E.
Schwartz, Alyssa D.
Peyton, Shelly R.
Snyder, Nathaniel W.
Berger, Shelley L.
Freedman, Bruce D.
Wellen, Kathryn E.
Acetyl-CoA promotes glioblastoma cell adhesion and migration through Ca(2+)–NFAT signaling
title Acetyl-CoA promotes glioblastoma cell adhesion and migration through Ca(2+)–NFAT signaling
title_full Acetyl-CoA promotes glioblastoma cell adhesion and migration through Ca(2+)–NFAT signaling
title_fullStr Acetyl-CoA promotes glioblastoma cell adhesion and migration through Ca(2+)–NFAT signaling
title_full_unstemmed Acetyl-CoA promotes glioblastoma cell adhesion and migration through Ca(2+)–NFAT signaling
title_short Acetyl-CoA promotes glioblastoma cell adhesion and migration through Ca(2+)–NFAT signaling
title_sort acetyl-coa promotes glioblastoma cell adhesion and migration through ca(2+)–nfat signaling
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5959234/
https://www.ncbi.nlm.nih.gov/pubmed/29674394
http://dx.doi.org/10.1101/gad.311027.117
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