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Drug-tolerant persister cancer cells are vulnerable to GPX4 inhibition
by
Eaton, John K.
, Matov, Alexandre
, Bole, Dhruv
, Galeas, Jacqueline
, Viswanathan, Vasanthi S.
, Ryan, Matthew J.
, Hangauer, Matthew J.
, Berens, Michael E.
, McCormick, Frank
, Schreiber, Stuart L.
, McManus, Michael T.
, Dhruv, Harshil D.
in
13/106
/ 38/91
/ 631/67/1059/2326
/ 631/80/82
/ 64/60
/ Analysis
/ Animals
/ Antioxidants
/ Antioxidants - metabolism
/ Apoptosis
/ Apoptosis - drug effects
/ Cancer
/ Cancer cells
/ Cancer therapies
/ Cell death
/ Cytotoxicity
/ Drug Evaluation, Preclinical
/ Drug resistance
/ Drug Resistance, Neoplasm - drug effects
/ Female
/ Genes
/ Glutathione Peroxidase - antagonists & inhibitors
/ Humanities and Social Sciences
/ Humans
/ Hydroperoxidase
/ Identification and classification
/ Iron - metabolism
/ Kinases
/ letter
/ Lipid peroxidation
/ Lipids
/ Male
/ Melanoma
/ Mesenchyme
/ Mesoderm - drug effects
/ Mesoderm - enzymology
/ Mesoderm - pathology
/ Mice
/ Molecular Targeted Therapy
/ multidisciplinary
/ Neoplasms - drug therapy
/ Neoplasms - enzymology
/ Neoplasms - pathology
/ Peroxidase
/ Phospholipid Hydroperoxide Glutathione Peroxidase
/ Phospholipids
/ Physiological aspects
/ Recurrence
/ Science
/ Survival
/ Tumors
/ Xenograft Model Antitumor Assays
2017
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Drug-tolerant persister cancer cells are vulnerable to GPX4 inhibition
by
Eaton, John K.
, Matov, Alexandre
, Bole, Dhruv
, Galeas, Jacqueline
, Viswanathan, Vasanthi S.
, Ryan, Matthew J.
, Hangauer, Matthew J.
, Berens, Michael E.
, McCormick, Frank
, Schreiber, Stuart L.
, McManus, Michael T.
, Dhruv, Harshil D.
in
13/106
/ 38/91
/ 631/67/1059/2326
/ 631/80/82
/ 64/60
/ Analysis
/ Animals
/ Antioxidants
/ Antioxidants - metabolism
/ Apoptosis
/ Apoptosis - drug effects
/ Cancer
/ Cancer cells
/ Cancer therapies
/ Cell death
/ Cytotoxicity
/ Drug Evaluation, Preclinical
/ Drug resistance
/ Drug Resistance, Neoplasm - drug effects
/ Female
/ Genes
/ Glutathione Peroxidase - antagonists & inhibitors
/ Humanities and Social Sciences
/ Humans
/ Hydroperoxidase
/ Identification and classification
/ Iron - metabolism
/ Kinases
/ letter
/ Lipid peroxidation
/ Lipids
/ Male
/ Melanoma
/ Mesenchyme
/ Mesoderm - drug effects
/ Mesoderm - enzymology
/ Mesoderm - pathology
/ Mice
/ Molecular Targeted Therapy
/ multidisciplinary
/ Neoplasms - drug therapy
/ Neoplasms - enzymology
/ Neoplasms - pathology
/ Peroxidase
/ Phospholipid Hydroperoxide Glutathione Peroxidase
/ Phospholipids
/ Physiological aspects
/ Recurrence
/ Science
/ Survival
/ Tumors
/ Xenograft Model Antitumor Assays
2017
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Drug-tolerant persister cancer cells are vulnerable to GPX4 inhibition
by
Eaton, John K.
, Matov, Alexandre
, Bole, Dhruv
, Galeas, Jacqueline
, Viswanathan, Vasanthi S.
, Ryan, Matthew J.
, Hangauer, Matthew J.
, Berens, Michael E.
, McCormick, Frank
, Schreiber, Stuart L.
, McManus, Michael T.
, Dhruv, Harshil D.
in
13/106
/ 38/91
/ 631/67/1059/2326
/ 631/80/82
/ 64/60
/ Analysis
/ Animals
/ Antioxidants
/ Antioxidants - metabolism
/ Apoptosis
/ Apoptosis - drug effects
/ Cancer
/ Cancer cells
/ Cancer therapies
/ Cell death
/ Cytotoxicity
/ Drug Evaluation, Preclinical
/ Drug resistance
/ Drug Resistance, Neoplasm - drug effects
/ Female
/ Genes
/ Glutathione Peroxidase - antagonists & inhibitors
/ Humanities and Social Sciences
/ Humans
/ Hydroperoxidase
/ Identification and classification
/ Iron - metabolism
/ Kinases
/ letter
/ Lipid peroxidation
/ Lipids
/ Male
/ Melanoma
/ Mesenchyme
/ Mesoderm - drug effects
/ Mesoderm - enzymology
/ Mesoderm - pathology
/ Mice
/ Molecular Targeted Therapy
/ multidisciplinary
/ Neoplasms - drug therapy
/ Neoplasms - enzymology
/ Neoplasms - pathology
/ Peroxidase
/ Phospholipid Hydroperoxide Glutathione Peroxidase
/ Phospholipids
/ Physiological aspects
/ Recurrence
/ Science
/ Survival
/ Tumors
/ Xenograft Model Antitumor Assays
2017
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Drug-tolerant persister cancer cells are vulnerable to GPX4 inhibition
Journal Article
Drug-tolerant persister cancer cells are vulnerable to GPX4 inhibition
2017
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Overview
Cancer persister cells, which survive cytotoxic treatments, are shown to be sensitive to inhibition of the lipid hydroperoxidase GPX4.
Reservoir of resistance
During cancer treatment, tumours can become drug-resistant. In addition, so-called persister cells can emerge and form a reservoir from which resistant cancer cells can originate. Persister cells are no longer sensitive to some drugs, but Michael McManus and colleagues now report that they exist in a mesenchymal state in which they are selectively sensitive to the inhibition of the lipid hydroperoxidase GPX4. Targeting GPX4 could therefore represent a new therapeutic avenue to potentially prevent drug resistance.
Acquired drug resistance prevents cancer therapies from achieving stable and complete responses
1
. Emerging evidence implicates a key role for non-mutational drug resistance mechanisms underlying the survival of residual cancer ‘persister’ cells
2
,
3
,
4
. The persister cell pool constitutes a reservoir from which drug-resistant tumours may emerge. Targeting persister cells therefore presents a therapeutic opportunity to impede tumour relapse
5
. We previously found that cancer cells in a high mesenchymal therapy-resistant cell state are dependent on the lipid hydroperoxidase GPX4 for survival
6
. Here we show that a similar therapy-resistant cell state underlies the behaviour of persister cells derived from a wide range of cancers and drug treatments. Consequently, we demonstrate that persister cells acquire a dependency on GPX4. Loss of GPX4 function results in selective persister cell ferroptotic death
in vitro
and prevents tumour relapse in mice. These findings suggest that targeting of GPX4 may represent a therapeutic strategy to prevent acquired drug resistance.
Publisher
Nature Publishing Group UK,Nature Publishing Group
Subject
/ 38/91
/ 64/60
/ Analysis
/ Animals
/ Cancer
/ Drug Evaluation, Preclinical
/ Drug Resistance, Neoplasm - drug effects
/ Female
/ Genes
/ Glutathione Peroxidase - antagonists & inhibitors
/ Humanities and Social Sciences
/ Humans
/ Identification and classification
/ Kinases
/ letter
/ Lipids
/ Male
/ Melanoma
/ Mice
/ Phospholipid Hydroperoxide Glutathione Peroxidase
/ Science
/ Survival
/ Tumors
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