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Peroxiredoxin 3 maintains the survival of endometrial cancer stem cells by regulating oxidative stress

Cancer stem cell (CSC)-targeted therapy could reduce tumor growth, recurrence, and metastasis in endometrial cancer (EC). The mitochondria of CSCs have been recently found to be an important target for cancer treatment, but the mitochondrial features of CSCs and their regulators, which maintain mito...

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Autores principales: Song, In-Sung, Jeong, Yu Jeong, Seo, Young Jin, Byun, Jung Mi, Kim, Young Nanm, Jeong, Dae Hoon, Han, Jin, Kim, Ki Tae, Jang, Sung-Wuk
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals LLC 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5696222/
https://www.ncbi.nlm.nih.gov/pubmed/29190956
http://dx.doi.org/10.18632/oncotarget.21580
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author Song, In-Sung
Jeong, Yu Jeong
Seo, Young Jin
Byun, Jung Mi
Kim, Young Nanm
Jeong, Dae Hoon
Han, Jin
Kim, Ki Tae
Jang, Sung-Wuk
author_facet Song, In-Sung
Jeong, Yu Jeong
Seo, Young Jin
Byun, Jung Mi
Kim, Young Nanm
Jeong, Dae Hoon
Han, Jin
Kim, Ki Tae
Jang, Sung-Wuk
author_sort Song, In-Sung
collection PubMed
description Cancer stem cell (CSC)-targeted therapy could reduce tumor growth, recurrence, and metastasis in endometrial cancer (EC). The mitochondria of CSCs have been recently found to be an important target for cancer treatment, but the mitochondrial features of CSCs and their regulators, which maintain mitochondrial function, remain unclear. Here, we investigated the mitochondrial properties of CSCs, and identified specific targets for eliminating CSCs in EC. We found that endometrial CSCs displayed higher mitochondrial membrane potential, Ca(2+), reactive oxygen species, ATP levels, and oxygen consumption rates than non-CSCs. Further, we also verified that mitochondrial peroxiredoxin 3 (Prx3) was upregulated, and that it contributed to the survival of CSCs in EC. The knockdown of the Prx3 gene resulted not only in decreased sphere formation, but also reduced the viability of endometrial CSCs, by causing mitochondrial dysfunction. Furthermore, we found that the forkhead box protein M1 (FoxM1), an important transcriptional factor, is overexpressed in patients with EC. FoxM1 expression correlates with elevated Prx3 expression levels, in agreement with the tumorigenic ability of Prx3 in endometrial CSCs. Taken together, our findings indicate that human endometrial CSCs have enhanced mitochondrial function compared to that of endometrial tumor cells. Endometrial CSCs show increased expression of the mitochondrial Prx3, which is required for the maintenance of mitochondrial function and survival, and is induced by FoxM1. Based on our findings, we believe that these proteins might represent valuable therapeutic targets and could provide new insights into the development of new therapeutic strategies for patients with endometrial cancer.
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spelling pubmed-56962222017-11-29 Peroxiredoxin 3 maintains the survival of endometrial cancer stem cells by regulating oxidative stress Song, In-Sung Jeong, Yu Jeong Seo, Young Jin Byun, Jung Mi Kim, Young Nanm Jeong, Dae Hoon Han, Jin Kim, Ki Tae Jang, Sung-Wuk Oncotarget Research Paper Cancer stem cell (CSC)-targeted therapy could reduce tumor growth, recurrence, and metastasis in endometrial cancer (EC). The mitochondria of CSCs have been recently found to be an important target for cancer treatment, but the mitochondrial features of CSCs and their regulators, which maintain mitochondrial function, remain unclear. Here, we investigated the mitochondrial properties of CSCs, and identified specific targets for eliminating CSCs in EC. We found that endometrial CSCs displayed higher mitochondrial membrane potential, Ca(2+), reactive oxygen species, ATP levels, and oxygen consumption rates than non-CSCs. Further, we also verified that mitochondrial peroxiredoxin 3 (Prx3) was upregulated, and that it contributed to the survival of CSCs in EC. The knockdown of the Prx3 gene resulted not only in decreased sphere formation, but also reduced the viability of endometrial CSCs, by causing mitochondrial dysfunction. Furthermore, we found that the forkhead box protein M1 (FoxM1), an important transcriptional factor, is overexpressed in patients with EC. FoxM1 expression correlates with elevated Prx3 expression levels, in agreement with the tumorigenic ability of Prx3 in endometrial CSCs. Taken together, our findings indicate that human endometrial CSCs have enhanced mitochondrial function compared to that of endometrial tumor cells. Endometrial CSCs show increased expression of the mitochondrial Prx3, which is required for the maintenance of mitochondrial function and survival, and is induced by FoxM1. Based on our findings, we believe that these proteins might represent valuable therapeutic targets and could provide new insights into the development of new therapeutic strategies for patients with endometrial cancer. Impact Journals LLC 2017-10-06 /pmc/articles/PMC5696222/ /pubmed/29190956 http://dx.doi.org/10.18632/oncotarget.21580 Text en Copyright: © 2017 Song 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
Song, In-Sung
Jeong, Yu Jeong
Seo, Young Jin
Byun, Jung Mi
Kim, Young Nanm
Jeong, Dae Hoon
Han, Jin
Kim, Ki Tae
Jang, Sung-Wuk
Peroxiredoxin 3 maintains the survival of endometrial cancer stem cells by regulating oxidative stress
title Peroxiredoxin 3 maintains the survival of endometrial cancer stem cells by regulating oxidative stress
title_full Peroxiredoxin 3 maintains the survival of endometrial cancer stem cells by regulating oxidative stress
title_fullStr Peroxiredoxin 3 maintains the survival of endometrial cancer stem cells by regulating oxidative stress
title_full_unstemmed Peroxiredoxin 3 maintains the survival of endometrial cancer stem cells by regulating oxidative stress
title_short Peroxiredoxin 3 maintains the survival of endometrial cancer stem cells by regulating oxidative stress
title_sort peroxiredoxin 3 maintains the survival of endometrial cancer stem cells by regulating oxidative stress
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5696222/
https://www.ncbi.nlm.nih.gov/pubmed/29190956
http://dx.doi.org/10.18632/oncotarget.21580
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