Cargando…

The contribution of N(2)O(3) to the cytotoxicity of the nitric oxide donor DETA/NO: an emerging role for S-nitrosylation

The relationship between the biological activity of NO and its chemistry is complex. The objectives of this study were to investigate the influence of oxygen tension on the cytotoxicity of the NO(•) donor DETA/NO and to determine the effects of oxygen tension on the key RNS (reactive nitrogen specie...

Descripción completa

Detalles Bibliográficos
Autores principales: Ali, Ahlam A., Coulter, Jonathan A., Ogle, Claire H., Migaud, Marie M., Hirst, David G., Robson, Tracy, McCarthy, Helen O.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Portland Press Ltd. 2013
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3610299/
https://www.ncbi.nlm.nih.gov/pubmed/23402389
http://dx.doi.org/10.1042/BSR20120120
_version_ 1782264439189274624
author Ali, Ahlam A.
Coulter, Jonathan A.
Ogle, Claire H.
Migaud, Marie M.
Hirst, David G.
Robson, Tracy
McCarthy, Helen O.
author_facet Ali, Ahlam A.
Coulter, Jonathan A.
Ogle, Claire H.
Migaud, Marie M.
Hirst, David G.
Robson, Tracy
McCarthy, Helen O.
author_sort Ali, Ahlam A.
collection PubMed
description The relationship between the biological activity of NO and its chemistry is complex. The objectives of this study were to investigate the influence of oxygen tension on the cytotoxicity of the NO(•) donor DETA/NO and to determine the effects of oxygen tension on the key RNS (reactive nitrogen species) responsible for any subsequent toxicity. The findings presented in this study indicate that the DETA/NO-mediated cytotoxic effects were enhanced under hypoxic conditions. Further investigations revealed that neither ONOO(−) (peroxynitrite) nor nitroxyl was generated. Fluorimetric analysis in the presence of scavengers suggest for the first time that another RNS, dinitrogen trioxide may be responsible for the cytotoxicity with DETA/NO. Results showed destabilization of HIF (hypoxia inducible factor)-1α and depletion of GSH levels following the treatment with DETA/NO under hypoxia, which renders cells more susceptible to DETA/NO cytotoxicity, and could account for another mechanism of DETA/NO cytotoxicity under hypoxia. In addition, there was significant accumulation of nuclear p53, which showed that p53 itself might be a target for S-nitrosylation following the treatment with DETA/NO. Both the intrinsic apoptotic pathway and the Fas extrinsic apoptotic pathway were also activated. Finally, GAPDH (glyceraldehyde-3-phosphate dehydrogenase) is another important S-nitrosylated protein that may possibly play a key role in DETA/NO-mediated apoptosis and cytotoxicity. Therefore this study elucidates further mechanisms of DETA/NO mediated cytotoxicity with respect to S-nitrosylation that is emerging as a key player in the signalling and detection of DETA/NO-modified proteins in the tumour microenvironment.
format Online
Article
Text
id pubmed-3610299
institution National Center for Biotechnology Information
language English
publishDate 2013
publisher Portland Press Ltd.
record_format MEDLINE/PubMed
spelling pubmed-36102992013-07-11 The contribution of N(2)O(3) to the cytotoxicity of the nitric oxide donor DETA/NO: an emerging role for S-nitrosylation Ali, Ahlam A. Coulter, Jonathan A. Ogle, Claire H. Migaud, Marie M. Hirst, David G. Robson, Tracy McCarthy, Helen O. Biosci Rep Original Paper The relationship between the biological activity of NO and its chemistry is complex. The objectives of this study were to investigate the influence of oxygen tension on the cytotoxicity of the NO(•) donor DETA/NO and to determine the effects of oxygen tension on the key RNS (reactive nitrogen species) responsible for any subsequent toxicity. The findings presented in this study indicate that the DETA/NO-mediated cytotoxic effects were enhanced under hypoxic conditions. Further investigations revealed that neither ONOO(−) (peroxynitrite) nor nitroxyl was generated. Fluorimetric analysis in the presence of scavengers suggest for the first time that another RNS, dinitrogen trioxide may be responsible for the cytotoxicity with DETA/NO. Results showed destabilization of HIF (hypoxia inducible factor)-1α and depletion of GSH levels following the treatment with DETA/NO under hypoxia, which renders cells more susceptible to DETA/NO cytotoxicity, and could account for another mechanism of DETA/NO cytotoxicity under hypoxia. In addition, there was significant accumulation of nuclear p53, which showed that p53 itself might be a target for S-nitrosylation following the treatment with DETA/NO. Both the intrinsic apoptotic pathway and the Fas extrinsic apoptotic pathway were also activated. Finally, GAPDH (glyceraldehyde-3-phosphate dehydrogenase) is another important S-nitrosylated protein that may possibly play a key role in DETA/NO-mediated apoptosis and cytotoxicity. Therefore this study elucidates further mechanisms of DETA/NO mediated cytotoxicity with respect to S-nitrosylation that is emerging as a key player in the signalling and detection of DETA/NO-modified proteins in the tumour microenvironment. Portland Press Ltd. 2013-03-28 /pmc/articles/PMC3610299/ /pubmed/23402389 http://dx.doi.org/10.1042/BSR20120120 Text en © 2013 The Author(s) http://creativecommons.org/licenses/by-nc/2.5/ This is an Open Access article distributed under the terms of the Creative Commons Attribution Non-Commercial Licence (http://creativecommons.org/licenses/by-nc/2.5/) which permits unrestricted non-commercial use, distribution and reproduction in any medium, provided the original work is properly cited
spellingShingle Original Paper
Ali, Ahlam A.
Coulter, Jonathan A.
Ogle, Claire H.
Migaud, Marie M.
Hirst, David G.
Robson, Tracy
McCarthy, Helen O.
The contribution of N(2)O(3) to the cytotoxicity of the nitric oxide donor DETA/NO: an emerging role for S-nitrosylation
title The contribution of N(2)O(3) to the cytotoxicity of the nitric oxide donor DETA/NO: an emerging role for S-nitrosylation
title_full The contribution of N(2)O(3) to the cytotoxicity of the nitric oxide donor DETA/NO: an emerging role for S-nitrosylation
title_fullStr The contribution of N(2)O(3) to the cytotoxicity of the nitric oxide donor DETA/NO: an emerging role for S-nitrosylation
title_full_unstemmed The contribution of N(2)O(3) to the cytotoxicity of the nitric oxide donor DETA/NO: an emerging role for S-nitrosylation
title_short The contribution of N(2)O(3) to the cytotoxicity of the nitric oxide donor DETA/NO: an emerging role for S-nitrosylation
title_sort contribution of n(2)o(3) to the cytotoxicity of the nitric oxide donor deta/no: an emerging role for s-nitrosylation
topic Original Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3610299/
https://www.ncbi.nlm.nih.gov/pubmed/23402389
http://dx.doi.org/10.1042/BSR20120120
work_keys_str_mv AT aliahlama thecontributionofn2o3tothecytotoxicityofthenitricoxidedonordetanoanemergingroleforsnitrosylation
AT coulterjonathana thecontributionofn2o3tothecytotoxicityofthenitricoxidedonordetanoanemergingroleforsnitrosylation
AT ogleclaireh thecontributionofn2o3tothecytotoxicityofthenitricoxidedonordetanoanemergingroleforsnitrosylation
AT migaudmariem thecontributionofn2o3tothecytotoxicityofthenitricoxidedonordetanoanemergingroleforsnitrosylation
AT hirstdavidg thecontributionofn2o3tothecytotoxicityofthenitricoxidedonordetanoanemergingroleforsnitrosylation
AT robsontracy thecontributionofn2o3tothecytotoxicityofthenitricoxidedonordetanoanemergingroleforsnitrosylation
AT mccarthyheleno thecontributionofn2o3tothecytotoxicityofthenitricoxidedonordetanoanemergingroleforsnitrosylation
AT aliahlama contributionofn2o3tothecytotoxicityofthenitricoxidedonordetanoanemergingroleforsnitrosylation
AT coulterjonathana contributionofn2o3tothecytotoxicityofthenitricoxidedonordetanoanemergingroleforsnitrosylation
AT ogleclaireh contributionofn2o3tothecytotoxicityofthenitricoxidedonordetanoanemergingroleforsnitrosylation
AT migaudmariem contributionofn2o3tothecytotoxicityofthenitricoxidedonordetanoanemergingroleforsnitrosylation
AT hirstdavidg contributionofn2o3tothecytotoxicityofthenitricoxidedonordetanoanemergingroleforsnitrosylation
AT robsontracy contributionofn2o3tothecytotoxicityofthenitricoxidedonordetanoanemergingroleforsnitrosylation
AT mccarthyheleno contributionofn2o3tothecytotoxicityofthenitricoxidedonordetanoanemergingroleforsnitrosylation