Cargando…

CHAC1 degradation of glutathione enhances cystine-starvation-induced necroptosis and ferroptosis in human triple negative breast cancer cells via the GCN2-eIF2α-ATF4 pathway

Cancer cells exhibit an abnormal amino acid metabolism and a dependence on specific amino acids, which might provide potential targets for treating cancer patients. In this study, we demonstrated that human triple negative breast cancer (TNBC) cells were highly susceptible to cystine starvation. We...

Descripción completa

Detalles Bibliográficos
Autores principales: Chen, Meng-Shian, Wang, Sheng-Fan, Hsu, Chih-Yi, Yin, Pen-Hui, Yeh, Tien-Shun, Lee, Hsin-Chen, Tseng, Ling-Ming
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5777716/
https://www.ncbi.nlm.nih.gov/pubmed/29383104
http://dx.doi.org/10.18632/oncotarget.23055
_version_ 1783294231438163968
author Chen, Meng-Shian
Wang, Sheng-Fan
Hsu, Chih-Yi
Yin, Pen-Hui
Yeh, Tien-Shun
Lee, Hsin-Chen
Tseng, Ling-Ming
author_facet Chen, Meng-Shian
Wang, Sheng-Fan
Hsu, Chih-Yi
Yin, Pen-Hui
Yeh, Tien-Shun
Lee, Hsin-Chen
Tseng, Ling-Ming
author_sort Chen, Meng-Shian
collection PubMed
description Cancer cells exhibit an abnormal amino acid metabolism and a dependence on specific amino acids, which might provide potential targets for treating cancer patients. In this study, we demonstrated that human triple negative breast cancer (TNBC) cells were highly susceptible to cystine starvation. We found that necrostatin-1 (Nec-1, a RIP1 inhibitor), necrosulfonamide (an MLKL inhibitor), deferoxamine (an ion chelator), ferrostatin-1 (a ferroptosis inhibitor) and RIP1 knockdown can prevent cystine-starvation-induced cell death, suggesting that cystine starvation induces necroptosis and ferroptosis in TNBC cells. Moreover, cystine starvation induced mitochondrial fragmentation, dysfunction, and ROS production. A mitochondrial ROS scavenger, Necrox-5, can prevent cystine-starvation-induced cell death. In addition, cystine starvation was found to activate GCN2, but not PERK, to increase the phosphorylation of eIF2α at serine 51, the protein expression of ATF4, and the expression of ATF4 target genes such as CHAC1, which might be downstream of the RIP1/RIP3-MLKL pathway and contribute to cystine-starvation-induced cell death. Knockdown of CHAC1 rescued the cystine-starvation-induced reduction in glutathione (GSH) levels and cell death. Furthermore, N-acetyl-cysteine (NAC), Trolox, and Nec-1 significantly prevented the cystine-starvation-induced increase in intracellular ROS levels, mitochondrial fragmentation and cell death. In summary, these results suggest that CHAC1 degradation of GSH enhances cystine-starvation-induced necroptosis and ferroptosis through the activated GCN2-eIF2α-ATF4 pathway in TNBC cells. Our findings improve our understanding of the mechanism underlying cystine-starvation-induced TNBC cell death.
format Online
Article
Text
id pubmed-5777716
institution National Center for Biotechnology Information
language English
publishDate 2017
publisher Impact Journals LLC
record_format MEDLINE/PubMed
spelling pubmed-57777162018-01-30 CHAC1 degradation of glutathione enhances cystine-starvation-induced necroptosis and ferroptosis in human triple negative breast cancer cells via the GCN2-eIF2α-ATF4 pathway Chen, Meng-Shian Wang, Sheng-Fan Hsu, Chih-Yi Yin, Pen-Hui Yeh, Tien-Shun Lee, Hsin-Chen Tseng, Ling-Ming Oncotarget Research Paper Cancer cells exhibit an abnormal amino acid metabolism and a dependence on specific amino acids, which might provide potential targets for treating cancer patients. In this study, we demonstrated that human triple negative breast cancer (TNBC) cells were highly susceptible to cystine starvation. We found that necrostatin-1 (Nec-1, a RIP1 inhibitor), necrosulfonamide (an MLKL inhibitor), deferoxamine (an ion chelator), ferrostatin-1 (a ferroptosis inhibitor) and RIP1 knockdown can prevent cystine-starvation-induced cell death, suggesting that cystine starvation induces necroptosis and ferroptosis in TNBC cells. Moreover, cystine starvation induced mitochondrial fragmentation, dysfunction, and ROS production. A mitochondrial ROS scavenger, Necrox-5, can prevent cystine-starvation-induced cell death. In addition, cystine starvation was found to activate GCN2, but not PERK, to increase the phosphorylation of eIF2α at serine 51, the protein expression of ATF4, and the expression of ATF4 target genes such as CHAC1, which might be downstream of the RIP1/RIP3-MLKL pathway and contribute to cystine-starvation-induced cell death. Knockdown of CHAC1 rescued the cystine-starvation-induced reduction in glutathione (GSH) levels and cell death. Furthermore, N-acetyl-cysteine (NAC), Trolox, and Nec-1 significantly prevented the cystine-starvation-induced increase in intracellular ROS levels, mitochondrial fragmentation and cell death. In summary, these results suggest that CHAC1 degradation of GSH enhances cystine-starvation-induced necroptosis and ferroptosis through the activated GCN2-eIF2α-ATF4 pathway in TNBC cells. Our findings improve our understanding of the mechanism underlying cystine-starvation-induced TNBC cell death. Impact Journals LLC 2017-12-09 /pmc/articles/PMC5777716/ /pubmed/29383104 http://dx.doi.org/10.18632/oncotarget.23055 Text en Copyright: © 2017 Chen et al. http://creativecommons.org/licenses/by/3.0/ This article is distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/3.0/) (CC-BY), which permits unrestricted use and redistribution provided that the original author and source are credited.
spellingShingle Research Paper
Chen, Meng-Shian
Wang, Sheng-Fan
Hsu, Chih-Yi
Yin, Pen-Hui
Yeh, Tien-Shun
Lee, Hsin-Chen
Tseng, Ling-Ming
CHAC1 degradation of glutathione enhances cystine-starvation-induced necroptosis and ferroptosis in human triple negative breast cancer cells via the GCN2-eIF2α-ATF4 pathway
title CHAC1 degradation of glutathione enhances cystine-starvation-induced necroptosis and ferroptosis in human triple negative breast cancer cells via the GCN2-eIF2α-ATF4 pathway
title_full CHAC1 degradation of glutathione enhances cystine-starvation-induced necroptosis and ferroptosis in human triple negative breast cancer cells via the GCN2-eIF2α-ATF4 pathway
title_fullStr CHAC1 degradation of glutathione enhances cystine-starvation-induced necroptosis and ferroptosis in human triple negative breast cancer cells via the GCN2-eIF2α-ATF4 pathway
title_full_unstemmed CHAC1 degradation of glutathione enhances cystine-starvation-induced necroptosis and ferroptosis in human triple negative breast cancer cells via the GCN2-eIF2α-ATF4 pathway
title_short CHAC1 degradation of glutathione enhances cystine-starvation-induced necroptosis and ferroptosis in human triple negative breast cancer cells via the GCN2-eIF2α-ATF4 pathway
title_sort chac1 degradation of glutathione enhances cystine-starvation-induced necroptosis and ferroptosis in human triple negative breast cancer cells via the gcn2-eif2α-atf4 pathway
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5777716/
https://www.ncbi.nlm.nih.gov/pubmed/29383104
http://dx.doi.org/10.18632/oncotarget.23055
work_keys_str_mv AT chenmengshian chac1degradationofglutathioneenhancescystinestarvationinducednecroptosisandferroptosisinhumantriplenegativebreastcancercellsviathegcn2eif2aatf4pathway
AT wangshengfan chac1degradationofglutathioneenhancescystinestarvationinducednecroptosisandferroptosisinhumantriplenegativebreastcancercellsviathegcn2eif2aatf4pathway
AT hsuchihyi chac1degradationofglutathioneenhancescystinestarvationinducednecroptosisandferroptosisinhumantriplenegativebreastcancercellsviathegcn2eif2aatf4pathway
AT yinpenhui chac1degradationofglutathioneenhancescystinestarvationinducednecroptosisandferroptosisinhumantriplenegativebreastcancercellsviathegcn2eif2aatf4pathway
AT yehtienshun chac1degradationofglutathioneenhancescystinestarvationinducednecroptosisandferroptosisinhumantriplenegativebreastcancercellsviathegcn2eif2aatf4pathway
AT leehsinchen chac1degradationofglutathioneenhancescystinestarvationinducednecroptosisandferroptosisinhumantriplenegativebreastcancercellsviathegcn2eif2aatf4pathway
AT tsenglingming chac1degradationofglutathioneenhancescystinestarvationinducednecroptosisandferroptosisinhumantriplenegativebreastcancercellsviathegcn2eif2aatf4pathway