Sestrin2 modulates AMPK subunit expression and its response to ionizing radiation in breast cancer cells.

The sestrin family of stress-responsive genes (SESN1-3) are suggested to be involved in regulation of metabolism and aging through modulation of the AMPK-mTOR pathway. AMP-activated protein kinase (AMPK) is an effector of the tumour suppressor LKB1, which regulates energy homeostasis, cell polarity,...

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Main Authors: Toran Sanli, Katja Linher-Melville, Theodoros Tsakiridis, Gurmit Singh
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2012-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC3282792?pdf=render
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author Toran Sanli
Katja Linher-Melville
Theodoros Tsakiridis
Gurmit Singh
author_facet Toran Sanli
Katja Linher-Melville
Theodoros Tsakiridis
Gurmit Singh
author_sort Toran Sanli
collection DOAJ
description The sestrin family of stress-responsive genes (SESN1-3) are suggested to be involved in regulation of metabolism and aging through modulation of the AMPK-mTOR pathway. AMP-activated protein kinase (AMPK) is an effector of the tumour suppressor LKB1, which regulates energy homeostasis, cell polarity, and the cell cycle. SESN1/2 can interact directly with AMPK in response to stress to maintain genomic integrity and suppress tumorigenesis. Ionizing radiation (IR), a widely used cancer therapy, is known to increase sestrin expression, and acutely activate AMPK. However, the regulation of AMPK expression by sestrins in response to IR has not been studied in depth.Through immunoprecipitation we observed that SESN2 directly interacted with the AMPKα1β1γ1 trimer and its upstream regulator LKB1 in MCF7 breast cancer cells. SESN2 overexpression was achieved using a Flag-tagged SESN2 expression vector or a stably-integrated tetracycline-inducible system, which also increased AMPKα1 and AMPKβ1 subunit phosphorylation, and co-localized with phosphorylated AMPKα-Thr127 in the cytoplasm. Furthermore, enhanced SESN2 expression increased protein levels of LKB1 and AMPKα1β1γ1, as well as mRNA levels of LKB1, AMPKα1, and AMPKβ1. Treatment of MCF7 cells with IR elevated AMPK expression and activity, but this effect was attenuated in the presence of SESN2 siRNA. In addition, elevated SESN2 inhibited IR-induced mTOR signalling and sensitized MCF7 cells to IR through an AMPK-dependent mechanism.Our results suggest that in breast cancer cells SESN2 is associated with AMPK, it is involved in regulation of basal and IR-induced expression and activation of this enzyme, and it mediates sensitization of cancer cells to IR.
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spelling doaj.art-38a6f103800a416aa3580b2d068dce342022-12-21T21:51:51ZengPublic Library of Science (PLoS)PLoS ONE1932-62032012-01-0172e3203510.1371/journal.pone.0032035Sestrin2 modulates AMPK subunit expression and its response to ionizing radiation in breast cancer cells.Toran SanliKatja Linher-MelvilleTheodoros TsakiridisGurmit SinghThe sestrin family of stress-responsive genes (SESN1-3) are suggested to be involved in regulation of metabolism and aging through modulation of the AMPK-mTOR pathway. AMP-activated protein kinase (AMPK) is an effector of the tumour suppressor LKB1, which regulates energy homeostasis, cell polarity, and the cell cycle. SESN1/2 can interact directly with AMPK in response to stress to maintain genomic integrity and suppress tumorigenesis. Ionizing radiation (IR), a widely used cancer therapy, is known to increase sestrin expression, and acutely activate AMPK. However, the regulation of AMPK expression by sestrins in response to IR has not been studied in depth.Through immunoprecipitation we observed that SESN2 directly interacted with the AMPKα1β1γ1 trimer and its upstream regulator LKB1 in MCF7 breast cancer cells. SESN2 overexpression was achieved using a Flag-tagged SESN2 expression vector or a stably-integrated tetracycline-inducible system, which also increased AMPKα1 and AMPKβ1 subunit phosphorylation, and co-localized with phosphorylated AMPKα-Thr127 in the cytoplasm. Furthermore, enhanced SESN2 expression increased protein levels of LKB1 and AMPKα1β1γ1, as well as mRNA levels of LKB1, AMPKα1, and AMPKβ1. Treatment of MCF7 cells with IR elevated AMPK expression and activity, but this effect was attenuated in the presence of SESN2 siRNA. In addition, elevated SESN2 inhibited IR-induced mTOR signalling and sensitized MCF7 cells to IR through an AMPK-dependent mechanism.Our results suggest that in breast cancer cells SESN2 is associated with AMPK, it is involved in regulation of basal and IR-induced expression and activation of this enzyme, and it mediates sensitization of cancer cells to IR.http://europepmc.org/articles/PMC3282792?pdf=render
spellingShingle Toran Sanli
Katja Linher-Melville
Theodoros Tsakiridis
Gurmit Singh
Sestrin2 modulates AMPK subunit expression and its response to ionizing radiation in breast cancer cells.
PLoS ONE
title Sestrin2 modulates AMPK subunit expression and its response to ionizing radiation in breast cancer cells.
title_full Sestrin2 modulates AMPK subunit expression and its response to ionizing radiation in breast cancer cells.
title_fullStr Sestrin2 modulates AMPK subunit expression and its response to ionizing radiation in breast cancer cells.
title_full_unstemmed Sestrin2 modulates AMPK subunit expression and its response to ionizing radiation in breast cancer cells.
title_short Sestrin2 modulates AMPK subunit expression and its response to ionizing radiation in breast cancer cells.
title_sort sestrin2 modulates ampk subunit expression and its response to ionizing radiation in breast cancer cells
url http://europepmc.org/articles/PMC3282792?pdf=render
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AT theodorostsakiridis sestrin2modulatesampksubunitexpressionanditsresponsetoionizingradiationinbreastcancercells
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