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Differential effects of energy stress on AMPK phosphorylation and apoptosis in experimental brain tumor and normal brain

BACKGROUND: AMP-activated protein kinase (AMPK) is a known physiological cellular energy sensor and becomes phosphorylated at Thr-172 in response to changes in cellular ATP levels. Activated AMPK acts as either an inducer or suppressor of apoptosis depending on the severity of energy stress and the...

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Autores principales: Mukherjee, Purna, Mulrooney, Tiernan J, Marsh, Jeremy, Blair, Derek, Chiles, Thomas C, Seyfried, Thomas N
Formato: Texto
Lenguaje:English
Publicado: BioMed Central 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2397440/
https://www.ncbi.nlm.nih.gov/pubmed/18474106
http://dx.doi.org/10.1186/1476-4598-7-37
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author Mukherjee, Purna
Mulrooney, Tiernan J
Marsh, Jeremy
Blair, Derek
Chiles, Thomas C
Seyfried, Thomas N
author_facet Mukherjee, Purna
Mulrooney, Tiernan J
Marsh, Jeremy
Blair, Derek
Chiles, Thomas C
Seyfried, Thomas N
author_sort Mukherjee, Purna
collection PubMed
description BACKGROUND: AMP-activated protein kinase (AMPK) is a known physiological cellular energy sensor and becomes phosphorylated at Thr-172 in response to changes in cellular ATP levels. Activated AMPK acts as either an inducer or suppressor of apoptosis depending on the severity of energy stress and the presence or absence of certain functional tumor suppressor genes. RESULTS: Here we show that energy stress differentially affects AMPK phosphorylation and cell-death in brain tumor tissue and in tissue from contra-lateral normal brain. We compared TSC2 deficient CT-2A mouse astrocytoma cells with syngeneic normal astrocytes that were grown under identical condition in vitro. Energy stress induced by glucose withdrawal or addition of 2-deoxyglucose caused more ATP depletion, AMPK phosphorylation and apoptosis in CT-2A cells than in the normal astrocytes. Under normal energy conditions pharmacological stimulation of AMPK caused apoptosis in CT-2A cells but not in astrocytes. TSC2 siRNA treated astrocytes are hypersensitive to apoptosis induced by energy stress compared to control cells. AMPK phosphorylation and apoptosis were also greater in the CT-2A tumor tissue than in the normal brain tissue following implementation of dietary energy restriction. Inefficient mTOR and TSC2 signaling, downstream of AMPK, is responsible for CT-2A cell-death, while functional LKB1 may protect normal brain cells under energy stress. CONCLUSION: Together these data demonstrates that AMPK phosphorylation induces apoptosis in mouse astrocytoma but may protect normal brain cells from apoptosis under similar energy stress condition. Therefore, using activator of AMPK along with glycolysis inhibitor could be a potential therapeutic approach for TSC2 deficient human malignant astrocytoma.
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spelling pubmed-23974402008-05-29 Differential effects of energy stress on AMPK phosphorylation and apoptosis in experimental brain tumor and normal brain Mukherjee, Purna Mulrooney, Tiernan J Marsh, Jeremy Blair, Derek Chiles, Thomas C Seyfried, Thomas N Mol Cancer Research BACKGROUND: AMP-activated protein kinase (AMPK) is a known physiological cellular energy sensor and becomes phosphorylated at Thr-172 in response to changes in cellular ATP levels. Activated AMPK acts as either an inducer or suppressor of apoptosis depending on the severity of energy stress and the presence or absence of certain functional tumor suppressor genes. RESULTS: Here we show that energy stress differentially affects AMPK phosphorylation and cell-death in brain tumor tissue and in tissue from contra-lateral normal brain. We compared TSC2 deficient CT-2A mouse astrocytoma cells with syngeneic normal astrocytes that were grown under identical condition in vitro. Energy stress induced by glucose withdrawal or addition of 2-deoxyglucose caused more ATP depletion, AMPK phosphorylation and apoptosis in CT-2A cells than in the normal astrocytes. Under normal energy conditions pharmacological stimulation of AMPK caused apoptosis in CT-2A cells but not in astrocytes. TSC2 siRNA treated astrocytes are hypersensitive to apoptosis induced by energy stress compared to control cells. AMPK phosphorylation and apoptosis were also greater in the CT-2A tumor tissue than in the normal brain tissue following implementation of dietary energy restriction. Inefficient mTOR and TSC2 signaling, downstream of AMPK, is responsible for CT-2A cell-death, while functional LKB1 may protect normal brain cells under energy stress. CONCLUSION: Together these data demonstrates that AMPK phosphorylation induces apoptosis in mouse astrocytoma but may protect normal brain cells from apoptosis under similar energy stress condition. Therefore, using activator of AMPK along with glycolysis inhibitor could be a potential therapeutic approach for TSC2 deficient human malignant astrocytoma. BioMed Central 2008-05-12 /pmc/articles/PMC2397440/ /pubmed/18474106 http://dx.doi.org/10.1186/1476-4598-7-37 Text en Copyright © 2008 Mukherjee et al; licensee BioMed Central Ltd. http://creativecommons.org/licenses/by/2.0 This is an Open Access article distributed under the terms of the Creative Commons Attribution License ( (http://creativecommons.org/licenses/by/2.0) ), which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research
Mukherjee, Purna
Mulrooney, Tiernan J
Marsh, Jeremy
Blair, Derek
Chiles, Thomas C
Seyfried, Thomas N
Differential effects of energy stress on AMPK phosphorylation and apoptosis in experimental brain tumor and normal brain
title Differential effects of energy stress on AMPK phosphorylation and apoptosis in experimental brain tumor and normal brain
title_full Differential effects of energy stress on AMPK phosphorylation and apoptosis in experimental brain tumor and normal brain
title_fullStr Differential effects of energy stress on AMPK phosphorylation and apoptosis in experimental brain tumor and normal brain
title_full_unstemmed Differential effects of energy stress on AMPK phosphorylation and apoptosis in experimental brain tumor and normal brain
title_short Differential effects of energy stress on AMPK phosphorylation and apoptosis in experimental brain tumor and normal brain
title_sort differential effects of energy stress on ampk phosphorylation and apoptosis in experimental brain tumor and normal brain
topic Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2397440/
https://www.ncbi.nlm.nih.gov/pubmed/18474106
http://dx.doi.org/10.1186/1476-4598-7-37
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