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Cystine-dependent antiporters buffer against excess intracellular reactive sulfur species-induced stress

Reactive sulfur species (RSS) play a role in redox homeostasis; however, adaptive cell responses to excessive intracellular RSS are not well understood. Therefore, in this study, we generated transgenic (Tg) mice overexpressing cystathionine gamma-lyase (CSE) to produce excessive RSS. Contrary to ex...

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Autores principales: Akiyama, Masahiro, Unoki, Takamitsu, Aoki, Hanako, Nishimura, Akiyuki, Shinkai, Yasuhiro, Warabi, Eiji, Nishiyama, Kazuhiro, Furumoto, Yuka, Anzai, Naohiko, Akaike, Takaaki, Nishida, Motohiro, Kumagai, Yoshito
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9594640/
https://www.ncbi.nlm.nih.gov/pubmed/36279630
http://dx.doi.org/10.1016/j.redox.2022.102514
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author Akiyama, Masahiro
Unoki, Takamitsu
Aoki, Hanako
Nishimura, Akiyuki
Shinkai, Yasuhiro
Warabi, Eiji
Nishiyama, Kazuhiro
Furumoto, Yuka
Anzai, Naohiko
Akaike, Takaaki
Nishida, Motohiro
Kumagai, Yoshito
author_facet Akiyama, Masahiro
Unoki, Takamitsu
Aoki, Hanako
Nishimura, Akiyuki
Shinkai, Yasuhiro
Warabi, Eiji
Nishiyama, Kazuhiro
Furumoto, Yuka
Anzai, Naohiko
Akaike, Takaaki
Nishida, Motohiro
Kumagai, Yoshito
author_sort Akiyama, Masahiro
collection PubMed
description Reactive sulfur species (RSS) play a role in redox homeostasis; however, adaptive cell responses to excessive intracellular RSS are not well understood. Therefore, in this study, we generated transgenic (Tg) mice overexpressing cystathionine gamma-lyase (CSE) to produce excessive RSS. Contrary to expectations, tissue concentrations of RSS, such as cysteine persulfide (CysSSH), were comparable in both wild-type and CSE Tg mice, but the plasma concentrations of CysSSH were significantly higher in CSE Tg mice than in wild-type mice. This export of surplus intracellular RSS was also observed in primary hepatocytes of CSE Tg mice. Exposure of primary hepatocytes to the RSS generator sodium tetrasulfide (Na(2)S(4)) resulted in an initial increase in the intracellular concentration of RSS, which later returned to basal levels after export into the extracellular space. Interestingly, among all amino acids, cystine (CysSSCys) was found to be essential for CysSSH export from primary mouse hepatocytes, HepG2 cells, and HEK293 cells during Na(2)S(4) exposure, suggesting that the cystine/glutamate transporter (SLC7A11) contributes, at least partially, to CysSSH export. We established HepG2 cell lines with knockout and overexpression of SLC7A11 and used them to confirm SLC7A11 as the predominant antiporter of CysSSCys and CysSSH. We observed that the poor efflux of excess CysSSH from the cell enhanced cellular stresses induced by Na(2)S(4) exposure, such as polysulfidation of intracellular proteins, mitochondrial damage, and cytotoxicity. These results suggest the presence of a cellular response to excess intracellular RSS that involves the extracellular efflux of excess CysSSH by a cystine-dependent transporter to maintain intracellular redox homeostasis.
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spelling pubmed-95946402022-10-26 Cystine-dependent antiporters buffer against excess intracellular reactive sulfur species-induced stress Akiyama, Masahiro Unoki, Takamitsu Aoki, Hanako Nishimura, Akiyuki Shinkai, Yasuhiro Warabi, Eiji Nishiyama, Kazuhiro Furumoto, Yuka Anzai, Naohiko Akaike, Takaaki Nishida, Motohiro Kumagai, Yoshito Redox Biol Research Paper Reactive sulfur species (RSS) play a role in redox homeostasis; however, adaptive cell responses to excessive intracellular RSS are not well understood. Therefore, in this study, we generated transgenic (Tg) mice overexpressing cystathionine gamma-lyase (CSE) to produce excessive RSS. Contrary to expectations, tissue concentrations of RSS, such as cysteine persulfide (CysSSH), were comparable in both wild-type and CSE Tg mice, but the plasma concentrations of CysSSH were significantly higher in CSE Tg mice than in wild-type mice. This export of surplus intracellular RSS was also observed in primary hepatocytes of CSE Tg mice. Exposure of primary hepatocytes to the RSS generator sodium tetrasulfide (Na(2)S(4)) resulted in an initial increase in the intracellular concentration of RSS, which later returned to basal levels after export into the extracellular space. Interestingly, among all amino acids, cystine (CysSSCys) was found to be essential for CysSSH export from primary mouse hepatocytes, HepG2 cells, and HEK293 cells during Na(2)S(4) exposure, suggesting that the cystine/glutamate transporter (SLC7A11) contributes, at least partially, to CysSSH export. We established HepG2 cell lines with knockout and overexpression of SLC7A11 and used them to confirm SLC7A11 as the predominant antiporter of CysSSCys and CysSSH. We observed that the poor efflux of excess CysSSH from the cell enhanced cellular stresses induced by Na(2)S(4) exposure, such as polysulfidation of intracellular proteins, mitochondrial damage, and cytotoxicity. These results suggest the presence of a cellular response to excess intracellular RSS that involves the extracellular efflux of excess CysSSH by a cystine-dependent transporter to maintain intracellular redox homeostasis. Elsevier 2022-10-17 /pmc/articles/PMC9594640/ /pubmed/36279630 http://dx.doi.org/10.1016/j.redox.2022.102514 Text en © 2022 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Paper
Akiyama, Masahiro
Unoki, Takamitsu
Aoki, Hanako
Nishimura, Akiyuki
Shinkai, Yasuhiro
Warabi, Eiji
Nishiyama, Kazuhiro
Furumoto, Yuka
Anzai, Naohiko
Akaike, Takaaki
Nishida, Motohiro
Kumagai, Yoshito
Cystine-dependent antiporters buffer against excess intracellular reactive sulfur species-induced stress
title Cystine-dependent antiporters buffer against excess intracellular reactive sulfur species-induced stress
title_full Cystine-dependent antiporters buffer against excess intracellular reactive sulfur species-induced stress
title_fullStr Cystine-dependent antiporters buffer against excess intracellular reactive sulfur species-induced stress
title_full_unstemmed Cystine-dependent antiporters buffer against excess intracellular reactive sulfur species-induced stress
title_short Cystine-dependent antiporters buffer against excess intracellular reactive sulfur species-induced stress
title_sort cystine-dependent antiporters buffer against excess intracellular reactive sulfur species-induced stress
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9594640/
https://www.ncbi.nlm.nih.gov/pubmed/36279630
http://dx.doi.org/10.1016/j.redox.2022.102514
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