Coordinate regulation of stress signaling and epigenetic events by Acss2 and HIF-2 in cancer cells.

Survival of cancer cells in the harsh tumor microenvironment, characterized by oxygen and glucose deprivation, requires rapid initiation of cytoprotective measures. Metabolites whose levels change during stress are ideal signaling cues, particularly if used in post-translational modifications of str...

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Main Authors: Rui Chen, Min Xu, Jason Nagati, Joseph A Garcia
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2017-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC5744998?pdf=render
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spelling doaj-84215411838b4a50b2309fb66c41d12f2020-11-25T01:45:45ZengPublic Library of Science (PLoS)PLoS ONE1932-62032017-01-011212e019024110.1371/journal.pone.0190241Coordinate regulation of stress signaling and epigenetic events by Acss2 and HIF-2 in cancer cells.Rui ChenMin XuJason NagatiJoseph A GarciaSurvival of cancer cells in the harsh tumor microenvironment, characterized by oxygen and glucose deprivation, requires rapid initiation of cytoprotective measures. Metabolites whose levels change during stress are ideal signaling cues, particularly if used in post-translational modifications of stress-responsive signal transducers. In cancer cells exposed to oxygen or glucose deprivation, there is an increase in cellular levels of acetate, a substrate for acetate-dependent acetyl CoA synthetase 2 (Acss2) that also stimulates translocation of Acss2 from the cytosol to the nucleus. Nuclear, but not cytosolic, Acss2 promotes acetylation of the stress-responsive Hypoxia Inducible Factor 2α (HIF-2α) subunit by the acetyltransferase/coactivator Creb binding protein (Cbp), a process that facilitates stable Cbp/HIF-2α complex formation. In addition to promoting de novo transcription, Cbp and HIF-2α act in concert to regulate local histone 3 epigenetic marks. Exogenous acetate augments Acss2/HIF-2 dependent cancer growth and metastasis in cell culture and mouse models. Thus, an acetate switch in mammals links nutrient intake and stress signaling with tumor growth and metastasis.http://europepmc.org/articles/PMC5744998?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Rui Chen
Min Xu
Jason Nagati
Joseph A Garcia
spellingShingle Rui Chen
Min Xu
Jason Nagati
Joseph A Garcia
Coordinate regulation of stress signaling and epigenetic events by Acss2 and HIF-2 in cancer cells.
PLoS ONE
author_facet Rui Chen
Min Xu
Jason Nagati
Joseph A Garcia
author_sort Rui Chen
title Coordinate regulation of stress signaling and epigenetic events by Acss2 and HIF-2 in cancer cells.
title_short Coordinate regulation of stress signaling and epigenetic events by Acss2 and HIF-2 in cancer cells.
title_full Coordinate regulation of stress signaling and epigenetic events by Acss2 and HIF-2 in cancer cells.
title_fullStr Coordinate regulation of stress signaling and epigenetic events by Acss2 and HIF-2 in cancer cells.
title_full_unstemmed Coordinate regulation of stress signaling and epigenetic events by Acss2 and HIF-2 in cancer cells.
title_sort coordinate regulation of stress signaling and epigenetic events by acss2 and hif-2 in cancer cells.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2017-01-01
description Survival of cancer cells in the harsh tumor microenvironment, characterized by oxygen and glucose deprivation, requires rapid initiation of cytoprotective measures. Metabolites whose levels change during stress are ideal signaling cues, particularly if used in post-translational modifications of stress-responsive signal transducers. In cancer cells exposed to oxygen or glucose deprivation, there is an increase in cellular levels of acetate, a substrate for acetate-dependent acetyl CoA synthetase 2 (Acss2) that also stimulates translocation of Acss2 from the cytosol to the nucleus. Nuclear, but not cytosolic, Acss2 promotes acetylation of the stress-responsive Hypoxia Inducible Factor 2α (HIF-2α) subunit by the acetyltransferase/coactivator Creb binding protein (Cbp), a process that facilitates stable Cbp/HIF-2α complex formation. In addition to promoting de novo transcription, Cbp and HIF-2α act in concert to regulate local histone 3 epigenetic marks. Exogenous acetate augments Acss2/HIF-2 dependent cancer growth and metastasis in cell culture and mouse models. Thus, an acetate switch in mammals links nutrient intake and stress signaling with tumor growth and metastasis.
url http://europepmc.org/articles/PMC5744998?pdf=render
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AT jasonnagati coordinateregulationofstresssignalingandepigeneticeventsbyacss2andhif2incancercells
AT josephagarcia coordinateregulationofstresssignalingandepigeneticeventsbyacss2andhif2incancercells
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