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Sulfasalazine, an inhibitor of the cystine-glutamate antiporter, reduces DNA damage repair and enhances radiosensitivity in murine B16F10 melanoma

The sodium-independent cystine-glutamate antiporter plays an important role in extracellular cystine uptake. It comprises the transmembrane protein, xCT and its chaperone, CD98. Because glutathione is only weakly cell membrane permeable, cellular uptake of its precursor, cystine, is known to be a ke...

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Autores principales: Nagane, Masaki, Kanai, Eiichi, Shibata, Yuki, Shimizu, Takuto, Yoshioka, Chie, Maruo, Takuya, Yamashita, Tadashi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5896924/
https://www.ncbi.nlm.nih.gov/pubmed/29649284
http://dx.doi.org/10.1371/journal.pone.0195151
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author Nagane, Masaki
Kanai, Eiichi
Shibata, Yuki
Shimizu, Takuto
Yoshioka, Chie
Maruo, Takuya
Yamashita, Tadashi
author_facet Nagane, Masaki
Kanai, Eiichi
Shibata, Yuki
Shimizu, Takuto
Yoshioka, Chie
Maruo, Takuya
Yamashita, Tadashi
author_sort Nagane, Masaki
collection PubMed
description The sodium-independent cystine-glutamate antiporter plays an important role in extracellular cystine uptake. It comprises the transmembrane protein, xCT and its chaperone, CD98. Because glutathione is only weakly cell membrane permeable, cellular uptake of its precursor, cystine, is known to be a key step in glutathione synthesis. Moreover, it has been reported that xCT expression affects the progression of tumors and their resistance to therapy. Sulfasalazine is an inhibitor of xCT that is known to increase cellular oxidative stress, giving it anti-tumor potential. Here, we describe a radio-sensitizing effect of sulfasalazine using a B16F10 melanoma model. Sulfasalazine decreased glutathione concentrations and resistance to H(2)O(2) in B16F10 melanoma cells, but not in mouse embryonic fibroblasts. It synergistically enhanced the cyto-killing effect of X-irradiation in B16F10 cells. It inhibited cellular DNA damage repair and prolonged cell cycle arrest after X-irradiation. Furthermore, in an in vivo transplanted melanoma model, sulfasalazine decreased intratumoral glutathione content, leading to enhanced susceptibility to radiation therapy. These results suggest the possibility of using SAS to augment the treatment of radio-resistant cancers.
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spelling pubmed-58969242018-05-04 Sulfasalazine, an inhibitor of the cystine-glutamate antiporter, reduces DNA damage repair and enhances radiosensitivity in murine B16F10 melanoma Nagane, Masaki Kanai, Eiichi Shibata, Yuki Shimizu, Takuto Yoshioka, Chie Maruo, Takuya Yamashita, Tadashi PLoS One Research Article The sodium-independent cystine-glutamate antiporter plays an important role in extracellular cystine uptake. It comprises the transmembrane protein, xCT and its chaperone, CD98. Because glutathione is only weakly cell membrane permeable, cellular uptake of its precursor, cystine, is known to be a key step in glutathione synthesis. Moreover, it has been reported that xCT expression affects the progression of tumors and their resistance to therapy. Sulfasalazine is an inhibitor of xCT that is known to increase cellular oxidative stress, giving it anti-tumor potential. Here, we describe a radio-sensitizing effect of sulfasalazine using a B16F10 melanoma model. Sulfasalazine decreased glutathione concentrations and resistance to H(2)O(2) in B16F10 melanoma cells, but not in mouse embryonic fibroblasts. It synergistically enhanced the cyto-killing effect of X-irradiation in B16F10 cells. It inhibited cellular DNA damage repair and prolonged cell cycle arrest after X-irradiation. Furthermore, in an in vivo transplanted melanoma model, sulfasalazine decreased intratumoral glutathione content, leading to enhanced susceptibility to radiation therapy. These results suggest the possibility of using SAS to augment the treatment of radio-resistant cancers. Public Library of Science 2018-04-12 /pmc/articles/PMC5896924/ /pubmed/29649284 http://dx.doi.org/10.1371/journal.pone.0195151 Text en © 2018 Nagane et al http://creativecommons.org/licenses/by/4.0/ This is an open access article distributed under the terms of the Creative Commons Attribution License (http://creativecommons.org/licenses/by/4.0/) , which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Article
Nagane, Masaki
Kanai, Eiichi
Shibata, Yuki
Shimizu, Takuto
Yoshioka, Chie
Maruo, Takuya
Yamashita, Tadashi
Sulfasalazine, an inhibitor of the cystine-glutamate antiporter, reduces DNA damage repair and enhances radiosensitivity in murine B16F10 melanoma
title Sulfasalazine, an inhibitor of the cystine-glutamate antiporter, reduces DNA damage repair and enhances radiosensitivity in murine B16F10 melanoma
title_full Sulfasalazine, an inhibitor of the cystine-glutamate antiporter, reduces DNA damage repair and enhances radiosensitivity in murine B16F10 melanoma
title_fullStr Sulfasalazine, an inhibitor of the cystine-glutamate antiporter, reduces DNA damage repair and enhances radiosensitivity in murine B16F10 melanoma
title_full_unstemmed Sulfasalazine, an inhibitor of the cystine-glutamate antiporter, reduces DNA damage repair and enhances radiosensitivity in murine B16F10 melanoma
title_short Sulfasalazine, an inhibitor of the cystine-glutamate antiporter, reduces DNA damage repair and enhances radiosensitivity in murine B16F10 melanoma
title_sort sulfasalazine, an inhibitor of the cystine-glutamate antiporter, reduces dna damage repair and enhances radiosensitivity in murine b16f10 melanoma
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5896924/
https://www.ncbi.nlm.nih.gov/pubmed/29649284
http://dx.doi.org/10.1371/journal.pone.0195151
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