Cargando…

The glucose-deprivation network counteracts lapatinib-induced toxicity in resistant ErbB2-positive breast cancer cells

Dynamic interactions between intracellular networks regulate cellular homeostasis and responses to perturbations. Targeted therapy is aimed at perturbing oncogene addiction pathways in cancer, however, development of acquired resistance to these drugs is a significant clinical problem. A network-bas...

Descripción completa

Detalles Bibliográficos
Autores principales: Komurov, Kakajan, Tseng, Jen-Te, Muller, Melissa, Seviour, Elena G, Moss, Tyler J, Yang, Lifeng, Nagrath, Deepak, Ram, Prahlad T
Formato: Online Artículo Texto
Lenguaje:English
Publicado: European Molecular Biology Organization 2012
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3421441/
https://www.ncbi.nlm.nih.gov/pubmed/22864381
http://dx.doi.org/10.1038/msb.2012.25
_version_ 1782240961506574336
author Komurov, Kakajan
Tseng, Jen-Te
Muller, Melissa
Seviour, Elena G
Moss, Tyler J
Yang, Lifeng
Nagrath, Deepak
Ram, Prahlad T
author_facet Komurov, Kakajan
Tseng, Jen-Te
Muller, Melissa
Seviour, Elena G
Moss, Tyler J
Yang, Lifeng
Nagrath, Deepak
Ram, Prahlad T
author_sort Komurov, Kakajan
collection PubMed
description Dynamic interactions between intracellular networks regulate cellular homeostasis and responses to perturbations. Targeted therapy is aimed at perturbing oncogene addiction pathways in cancer, however, development of acquired resistance to these drugs is a significant clinical problem. A network-based computational analysis of global gene expression data from matched sensitive and acquired drug-resistant cells to lapatinib, an EGFR/ErbB2 inhibitor, revealed an increased expression of the glucose deprivation response network, including glucagon signaling, glucose uptake, gluconeogenesis and unfolded protein response in the resistant cells. Importantly, the glucose deprivation response markers correlated significantly with high clinical relapse rates in ErbB2-positive breast cancer patients. Further, forcing drug-sensitive cells into glucose deprivation rendered them more resistant to lapatinib. Using a chemical genomics bioinformatics mining of the CMAP database, we identified drugs that specifically target the glucose deprivation response networks to overcome the resistant phenotype and reduced survival of resistant cells. This study implicates the chronic activation of cellular compensatory networks in response to targeted therapy and suggests novel combinations targeting signaling and metabolic networks in tumors with acquired resistance.
format Online
Article
Text
id pubmed-3421441
institution National Center for Biotechnology Information
language English
publishDate 2012
publisher European Molecular Biology Organization
record_format MEDLINE/PubMed
spelling pubmed-34214412012-08-17 The glucose-deprivation network counteracts lapatinib-induced toxicity in resistant ErbB2-positive breast cancer cells Komurov, Kakajan Tseng, Jen-Te Muller, Melissa Seviour, Elena G Moss, Tyler J Yang, Lifeng Nagrath, Deepak Ram, Prahlad T Mol Syst Biol Article Dynamic interactions between intracellular networks regulate cellular homeostasis and responses to perturbations. Targeted therapy is aimed at perturbing oncogene addiction pathways in cancer, however, development of acquired resistance to these drugs is a significant clinical problem. A network-based computational analysis of global gene expression data from matched sensitive and acquired drug-resistant cells to lapatinib, an EGFR/ErbB2 inhibitor, revealed an increased expression of the glucose deprivation response network, including glucagon signaling, glucose uptake, gluconeogenesis and unfolded protein response in the resistant cells. Importantly, the glucose deprivation response markers correlated significantly with high clinical relapse rates in ErbB2-positive breast cancer patients. Further, forcing drug-sensitive cells into glucose deprivation rendered them more resistant to lapatinib. Using a chemical genomics bioinformatics mining of the CMAP database, we identified drugs that specifically target the glucose deprivation response networks to overcome the resistant phenotype and reduced survival of resistant cells. This study implicates the chronic activation of cellular compensatory networks in response to targeted therapy and suggests novel combinations targeting signaling and metabolic networks in tumors with acquired resistance. European Molecular Biology Organization 2012-07-31 /pmc/articles/PMC3421441/ /pubmed/22864381 http://dx.doi.org/10.1038/msb.2012.25 Text en Copyright © 2012, EMBO and Macmillan Publishers Limited https://creativecommons.org/licenses/by-nc-sa/3.0/This is an open-access article distributed under the terms of the Creative Commons Attribution Noncommercial Share Alike 3.0 Unported License, which allows readers to alter, transform, or build upon the article and then distribute the resulting work under the same or similar license to this one. The work must be attributed back to the original author and commercial use is not permitted without specific permission.
spellingShingle Article
Komurov, Kakajan
Tseng, Jen-Te
Muller, Melissa
Seviour, Elena G
Moss, Tyler J
Yang, Lifeng
Nagrath, Deepak
Ram, Prahlad T
The glucose-deprivation network counteracts lapatinib-induced toxicity in resistant ErbB2-positive breast cancer cells
title The glucose-deprivation network counteracts lapatinib-induced toxicity in resistant ErbB2-positive breast cancer cells
title_full The glucose-deprivation network counteracts lapatinib-induced toxicity in resistant ErbB2-positive breast cancer cells
title_fullStr The glucose-deprivation network counteracts lapatinib-induced toxicity in resistant ErbB2-positive breast cancer cells
title_full_unstemmed The glucose-deprivation network counteracts lapatinib-induced toxicity in resistant ErbB2-positive breast cancer cells
title_short The glucose-deprivation network counteracts lapatinib-induced toxicity in resistant ErbB2-positive breast cancer cells
title_sort glucose-deprivation network counteracts lapatinib-induced toxicity in resistant erbb2-positive breast cancer cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3421441/
https://www.ncbi.nlm.nih.gov/pubmed/22864381
http://dx.doi.org/10.1038/msb.2012.25
work_keys_str_mv AT komurovkakajan theglucosedeprivationnetworkcounteractslapatinibinducedtoxicityinresistanterbb2positivebreastcancercells
AT tsengjente theglucosedeprivationnetworkcounteractslapatinibinducedtoxicityinresistanterbb2positivebreastcancercells
AT mullermelissa theglucosedeprivationnetworkcounteractslapatinibinducedtoxicityinresistanterbb2positivebreastcancercells
AT seviourelenag theglucosedeprivationnetworkcounteractslapatinibinducedtoxicityinresistanterbb2positivebreastcancercells
AT mosstylerj theglucosedeprivationnetworkcounteractslapatinibinducedtoxicityinresistanterbb2positivebreastcancercells
AT yanglifeng theglucosedeprivationnetworkcounteractslapatinibinducedtoxicityinresistanterbb2positivebreastcancercells
AT nagrathdeepak theglucosedeprivationnetworkcounteractslapatinibinducedtoxicityinresistanterbb2positivebreastcancercells
AT ramprahladt theglucosedeprivationnetworkcounteractslapatinibinducedtoxicityinresistanterbb2positivebreastcancercells
AT komurovkakajan glucosedeprivationnetworkcounteractslapatinibinducedtoxicityinresistanterbb2positivebreastcancercells
AT tsengjente glucosedeprivationnetworkcounteractslapatinibinducedtoxicityinresistanterbb2positivebreastcancercells
AT mullermelissa glucosedeprivationnetworkcounteractslapatinibinducedtoxicityinresistanterbb2positivebreastcancercells
AT seviourelenag glucosedeprivationnetworkcounteractslapatinibinducedtoxicityinresistanterbb2positivebreastcancercells
AT mosstylerj glucosedeprivationnetworkcounteractslapatinibinducedtoxicityinresistanterbb2positivebreastcancercells
AT yanglifeng glucosedeprivationnetworkcounteractslapatinibinducedtoxicityinresistanterbb2positivebreastcancercells
AT nagrathdeepak glucosedeprivationnetworkcounteractslapatinibinducedtoxicityinresistanterbb2positivebreastcancercells
AT ramprahladt glucosedeprivationnetworkcounteractslapatinibinducedtoxicityinresistanterbb2positivebreastcancercells