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MnTE-2-PyP Suppresses Prostate Cancer Cell Growth via H(2)O(2) Production

Prostate cancer patients are often treated with radiotherapy. MnTE-2-PyP, a superoxide dismutase (SOD) mimic, is a known radioprotector of normal tissues. Our recent work demonstrated that MnTE-2-PyP also inhibits prostate cancer progression with radiotherapy; however, the mechanisms remain unclear....

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Autores principales: Zhu, Yuxiang, Kosmacek, Elizabeth A., Chatterjee, Arpita, Oberley-Deegan, Rebecca E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7346125/
https://www.ncbi.nlm.nih.gov/pubmed/32512786
http://dx.doi.org/10.3390/antiox9060490
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author Zhu, Yuxiang
Kosmacek, Elizabeth A.
Chatterjee, Arpita
Oberley-Deegan, Rebecca E.
author_facet Zhu, Yuxiang
Kosmacek, Elizabeth A.
Chatterjee, Arpita
Oberley-Deegan, Rebecca E.
author_sort Zhu, Yuxiang
collection PubMed
description Prostate cancer patients are often treated with radiotherapy. MnTE-2-PyP, a superoxide dismutase (SOD) mimic, is a known radioprotector of normal tissues. Our recent work demonstrated that MnTE-2-PyP also inhibits prostate cancer progression with radiotherapy; however, the mechanisms remain unclear. In this study, we identified that MnTE-2-PyP-induced intracellular H(2)O(2) levels are critical in inhibiting the growth of PC3 and LNCaP cells, but the increased H(2)O(2) levels affected the two cancer cells differently. In PC3 cells, many proteins were thiol oxidized with MnTE-2-PyP treatment, including Ser/Thr protein phosphatase 1 beta catalytic subunit (PP1CB). This resulted in reduced PP1CB activity; however, overall cell cycle progression was not altered, so this is not the main mechanism of PC3 cell growth inhibition. High H(2)O(2) levels by MnTE-2-PyP treatment induced nuclear fragmentation, which could be synergistically enhanced with radiotherapy. In LNCaP cells, thiol oxidation by MnTE-2-PyP treatment was not observed previously and, similarly to PC3 cells, there was no effect of MnTE-2-PyP treatment on cell cycle progression. However, in LNCaP cells, MnTE-2-PyP caused an increase in low RNA population and sub-G(1) population of cells, which indicates that MnTE-2-PyP treatment may cause cellular quiescence or direct cancer cell death. The protein oxidative modifications and mitotic catastrophes caused by MnTE-2-PyP may be the major contributors to cell growth inhibition in PC3 cells, while in LNCaP cells, tumor cell quiescence or cell death appears to be major factors in MnTE-2-PyP-induced growth inhibition.
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spelling pubmed-73461252020-07-14 MnTE-2-PyP Suppresses Prostate Cancer Cell Growth via H(2)O(2) Production Zhu, Yuxiang Kosmacek, Elizabeth A. Chatterjee, Arpita Oberley-Deegan, Rebecca E. Antioxidants (Basel) Article Prostate cancer patients are often treated with radiotherapy. MnTE-2-PyP, a superoxide dismutase (SOD) mimic, is a known radioprotector of normal tissues. Our recent work demonstrated that MnTE-2-PyP also inhibits prostate cancer progression with radiotherapy; however, the mechanisms remain unclear. In this study, we identified that MnTE-2-PyP-induced intracellular H(2)O(2) levels are critical in inhibiting the growth of PC3 and LNCaP cells, but the increased H(2)O(2) levels affected the two cancer cells differently. In PC3 cells, many proteins were thiol oxidized with MnTE-2-PyP treatment, including Ser/Thr protein phosphatase 1 beta catalytic subunit (PP1CB). This resulted in reduced PP1CB activity; however, overall cell cycle progression was not altered, so this is not the main mechanism of PC3 cell growth inhibition. High H(2)O(2) levels by MnTE-2-PyP treatment induced nuclear fragmentation, which could be synergistically enhanced with radiotherapy. In LNCaP cells, thiol oxidation by MnTE-2-PyP treatment was not observed previously and, similarly to PC3 cells, there was no effect of MnTE-2-PyP treatment on cell cycle progression. However, in LNCaP cells, MnTE-2-PyP caused an increase in low RNA population and sub-G(1) population of cells, which indicates that MnTE-2-PyP treatment may cause cellular quiescence or direct cancer cell death. The protein oxidative modifications and mitotic catastrophes caused by MnTE-2-PyP may be the major contributors to cell growth inhibition in PC3 cells, while in LNCaP cells, tumor cell quiescence or cell death appears to be major factors in MnTE-2-PyP-induced growth inhibition. MDPI 2020-06-04 /pmc/articles/PMC7346125/ /pubmed/32512786 http://dx.doi.org/10.3390/antiox9060490 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Zhu, Yuxiang
Kosmacek, Elizabeth A.
Chatterjee, Arpita
Oberley-Deegan, Rebecca E.
MnTE-2-PyP Suppresses Prostate Cancer Cell Growth via H(2)O(2) Production
title MnTE-2-PyP Suppresses Prostate Cancer Cell Growth via H(2)O(2) Production
title_full MnTE-2-PyP Suppresses Prostate Cancer Cell Growth via H(2)O(2) Production
title_fullStr MnTE-2-PyP Suppresses Prostate Cancer Cell Growth via H(2)O(2) Production
title_full_unstemmed MnTE-2-PyP Suppresses Prostate Cancer Cell Growth via H(2)O(2) Production
title_short MnTE-2-PyP Suppresses Prostate Cancer Cell Growth via H(2)O(2) Production
title_sort mnte-2-pyp suppresses prostate cancer cell growth via h(2)o(2) production
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7346125/
https://www.ncbi.nlm.nih.gov/pubmed/32512786
http://dx.doi.org/10.3390/antiox9060490
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