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AMPK-mediated energy homeostasis and associated metabolic effects on cancer cell response and resistance to cetuximab

We previously reported that cetuximab, an EGFR-blocking antibody, inhibits cancer metabolism via downregulation of HIF-1α and reverses the Warburg effect in cancer cells. Here, we report that inhibition of HIF-1 transcriptional activity by cetuximab does not necessarily lead to successful inhibition...

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Autores principales: Li, Xinqun, Lu, Yang, Lu, Haiquan, Luo, Jingtao, Hong, Yun, Fan, Zhen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4484472/
https://www.ncbi.nlm.nih.gov/pubmed/25871473
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author Li, Xinqun
Lu, Yang
Lu, Haiquan
Luo, Jingtao
Hong, Yun
Fan, Zhen
author_facet Li, Xinqun
Lu, Yang
Lu, Haiquan
Luo, Jingtao
Hong, Yun
Fan, Zhen
author_sort Li, Xinqun
collection PubMed
description We previously reported that cetuximab, an EGFR-blocking antibody, inhibits cancer metabolism via downregulation of HIF-1α and reverses the Warburg effect in cancer cells. Here, we report that inhibition of HIF-1 transcriptional activity by cetuximab does not necessarily lead to successful inhibition of cell proliferation. In several head and neck squamous cell carcinoma (HNSCC) cell lines, we observed a pattern of oscillating decrease and increase of intracellular ATP level after cetuximab treatment, and the magnitude and kinetics of which varied by cell line and appeared to be linked to the extent of cellular response to cetuximab. In HNSCC cells with low basal level of AMPK activity and that responded to cetuximab-induced growth inhibition, there was a transient, LKB1-dependent activation of AMPK. In contrast, HNSCC cells that had a high basal level of AMPK activity were less sensitive to cetuximab-induced growth inhibition despite effective inhibition of EGFR downstream signaling by cetuximab. Knockdown or inhibition of AMPK markedly enhanced response to cetuximab via induction of apoptosis. These findings indicate that a transient activation of AMPK is an early metabolic marker of cellular response to cetuximab and that high and sustained AMPK activity is an important mechanism by which cancer cells survive cetuximab treatment.
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spelling pubmed-44844722015-07-10 AMPK-mediated energy homeostasis and associated metabolic effects on cancer cell response and resistance to cetuximab Li, Xinqun Lu, Yang Lu, Haiquan Luo, Jingtao Hong, Yun Fan, Zhen Oncotarget Research Paper We previously reported that cetuximab, an EGFR-blocking antibody, inhibits cancer metabolism via downregulation of HIF-1α and reverses the Warburg effect in cancer cells. Here, we report that inhibition of HIF-1 transcriptional activity by cetuximab does not necessarily lead to successful inhibition of cell proliferation. In several head and neck squamous cell carcinoma (HNSCC) cell lines, we observed a pattern of oscillating decrease and increase of intracellular ATP level after cetuximab treatment, and the magnitude and kinetics of which varied by cell line and appeared to be linked to the extent of cellular response to cetuximab. In HNSCC cells with low basal level of AMPK activity and that responded to cetuximab-induced growth inhibition, there was a transient, LKB1-dependent activation of AMPK. In contrast, HNSCC cells that had a high basal level of AMPK activity were less sensitive to cetuximab-induced growth inhibition despite effective inhibition of EGFR downstream signaling by cetuximab. Knockdown or inhibition of AMPK markedly enhanced response to cetuximab via induction of apoptosis. These findings indicate that a transient activation of AMPK is an early metabolic marker of cellular response to cetuximab and that high and sustained AMPK activity is an important mechanism by which cancer cells survive cetuximab treatment. Impact Journals LLC 2015-03-20 /pmc/articles/PMC4484472/ /pubmed/25871473 Text en Copyright: © 2015 Li et al. http://creativecommons.org/licenses/by/2.5/ 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 credited.
spellingShingle Research Paper
Li, Xinqun
Lu, Yang
Lu, Haiquan
Luo, Jingtao
Hong, Yun
Fan, Zhen
AMPK-mediated energy homeostasis and associated metabolic effects on cancer cell response and resistance to cetuximab
title AMPK-mediated energy homeostasis and associated metabolic effects on cancer cell response and resistance to cetuximab
title_full AMPK-mediated energy homeostasis and associated metabolic effects on cancer cell response and resistance to cetuximab
title_fullStr AMPK-mediated energy homeostasis and associated metabolic effects on cancer cell response and resistance to cetuximab
title_full_unstemmed AMPK-mediated energy homeostasis and associated metabolic effects on cancer cell response and resistance to cetuximab
title_short AMPK-mediated energy homeostasis and associated metabolic effects on cancer cell response and resistance to cetuximab
title_sort ampk-mediated energy homeostasis and associated metabolic effects on cancer cell response and resistance to cetuximab
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4484472/
https://www.ncbi.nlm.nih.gov/pubmed/25871473
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