Cargando…

S-Nitrosylated Human Serum Albumin-mediated Cytoprotective Activity Is Enhanced by Fatty Acid Binding

Binding of oleate to S-nitrosylated human serum albumin (SNO-HSA) enhances its cytoprotective effect on liver cells in a rat ischemia/reperfusion model. It enhances the antiapoptotic effect of SNO-HSA on HepG2 cells exposed to anti-Fas antibody. To identify some of the reasons for the increased cyto...

Descripción completa

Detalles Bibliográficos
Autores principales: Ishima, Yu, Akaike, Takaaki, Kragh-Hansen, Ulrich, Hiroyama, Shuichi, Sawa, Tomohiro, Suenaga, Ayaka, Maruyama, Toru, Kai, Toshiya, Otagiri, Masaki
Formato: Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2008
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2596408/
https://www.ncbi.nlm.nih.gov/pubmed/18940810
http://dx.doi.org/10.1074/jbc.M807009200
_version_ 1782161841608196096
author Ishima, Yu
Akaike, Takaaki
Kragh-Hansen, Ulrich
Hiroyama, Shuichi
Sawa, Tomohiro
Suenaga, Ayaka
Maruyama, Toru
Kai, Toshiya
Otagiri, Masaki
author_facet Ishima, Yu
Akaike, Takaaki
Kragh-Hansen, Ulrich
Hiroyama, Shuichi
Sawa, Tomohiro
Suenaga, Ayaka
Maruyama, Toru
Kai, Toshiya
Otagiri, Masaki
author_sort Ishima, Yu
collection PubMed
description Binding of oleate to S-nitrosylated human serum albumin (SNO-HSA) enhances its cytoprotective effect on liver cells in a rat ischemia/reperfusion model. It enhances the antiapoptotic effect of SNO-HSA on HepG2 cells exposed to anti-Fas antibody. To identify some of the reasons for the increased cytoprotective effects, additional experiments were performed with glutathione and HepG2 cells. As indicated by 5,5′-dithiobis-2-nitrobenzoic acid binding, the addition of oleate increased the accessibility of the single thiol group of albumin. Binding of increasing amounts of oleate resulted in increasing and more rapid S-transnitrosation of glutathione. Likewise, binding of oleate, or of a mixture of endogenous fatty acids, improved S-denitrosation of SNO-HSA by HepG2 cells. Oleate also enhanced S-transnitrosation by HepG2 cells, as detected by intracellular fluorescence of diaminofluorescein-FM. All of the S-transnitrosation caused by oleate binding was blocked by filipin III. Oleate also increased, in a dose-dependent manner, the binding of SNO-HSA labeled with fluorescein isothiocyanate to the surface of the hepatocytes. A model in two parts was worked out for S-transnitrosation, which does not involve low molecular weight thiols. Fatty acid binding facilitates S-denitrosation of SNO-HSA, increases its binding to HepG2 cells and greatly increases S-transnitrosation by hepatocytes in a way that is sensitive to filipin III. A small nitric oxide transfer takes place in a slow system, which is unaffected by fatty acid binding to SNO-HSA and not influenced by filipin III. Thus, fatty acids could be a novel type of mediator for S-transnitrosation.
format Text
id pubmed-2596408
institution National Center for Biotechnology Information
language English
publishDate 2008
publisher American Society for Biochemistry and Molecular Biology
record_format MEDLINE/PubMed
spelling pubmed-25964082009-12-12 S-Nitrosylated Human Serum Albumin-mediated Cytoprotective Activity Is Enhanced by Fatty Acid Binding Ishima, Yu Akaike, Takaaki Kragh-Hansen, Ulrich Hiroyama, Shuichi Sawa, Tomohiro Suenaga, Ayaka Maruyama, Toru Kai, Toshiya Otagiri, Masaki J Biol Chem Protein Synthesis, Post-Translational Modification, and Degradation Binding of oleate to S-nitrosylated human serum albumin (SNO-HSA) enhances its cytoprotective effect on liver cells in a rat ischemia/reperfusion model. It enhances the antiapoptotic effect of SNO-HSA on HepG2 cells exposed to anti-Fas antibody. To identify some of the reasons for the increased cytoprotective effects, additional experiments were performed with glutathione and HepG2 cells. As indicated by 5,5′-dithiobis-2-nitrobenzoic acid binding, the addition of oleate increased the accessibility of the single thiol group of albumin. Binding of increasing amounts of oleate resulted in increasing and more rapid S-transnitrosation of glutathione. Likewise, binding of oleate, or of a mixture of endogenous fatty acids, improved S-denitrosation of SNO-HSA by HepG2 cells. Oleate also enhanced S-transnitrosation by HepG2 cells, as detected by intracellular fluorescence of diaminofluorescein-FM. All of the S-transnitrosation caused by oleate binding was blocked by filipin III. Oleate also increased, in a dose-dependent manner, the binding of SNO-HSA labeled with fluorescein isothiocyanate to the surface of the hepatocytes. A model in two parts was worked out for S-transnitrosation, which does not involve low molecular weight thiols. Fatty acid binding facilitates S-denitrosation of SNO-HSA, increases its binding to HepG2 cells and greatly increases S-transnitrosation by hepatocytes in a way that is sensitive to filipin III. A small nitric oxide transfer takes place in a slow system, which is unaffected by fatty acid binding to SNO-HSA and not influenced by filipin III. Thus, fatty acids could be a novel type of mediator for S-transnitrosation. American Society for Biochemistry and Molecular Biology 2008-12-12 /pmc/articles/PMC2596408/ /pubmed/18940810 http://dx.doi.org/10.1074/jbc.M807009200 Text en Copyright © 2008, The American Society for Biochemistry and Molecular Biology, Inc. Author's Choice
spellingShingle Protein Synthesis, Post-Translational Modification, and Degradation
Ishima, Yu
Akaike, Takaaki
Kragh-Hansen, Ulrich
Hiroyama, Shuichi
Sawa, Tomohiro
Suenaga, Ayaka
Maruyama, Toru
Kai, Toshiya
Otagiri, Masaki
S-Nitrosylated Human Serum Albumin-mediated Cytoprotective Activity Is Enhanced by Fatty Acid Binding
title S-Nitrosylated Human Serum Albumin-mediated Cytoprotective Activity Is Enhanced by Fatty Acid Binding
title_full S-Nitrosylated Human Serum Albumin-mediated Cytoprotective Activity Is Enhanced by Fatty Acid Binding
title_fullStr S-Nitrosylated Human Serum Albumin-mediated Cytoprotective Activity Is Enhanced by Fatty Acid Binding
title_full_unstemmed S-Nitrosylated Human Serum Albumin-mediated Cytoprotective Activity Is Enhanced by Fatty Acid Binding
title_short S-Nitrosylated Human Serum Albumin-mediated Cytoprotective Activity Is Enhanced by Fatty Acid Binding
title_sort s-nitrosylated human serum albumin-mediated cytoprotective activity is enhanced by fatty acid binding
topic Protein Synthesis, Post-Translational Modification, and Degradation
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2596408/
https://www.ncbi.nlm.nih.gov/pubmed/18940810
http://dx.doi.org/10.1074/jbc.M807009200
work_keys_str_mv AT ishimayu snitrosylatedhumanserumalbuminmediatedcytoprotectiveactivityisenhancedbyfattyacidbinding
AT akaiketakaaki snitrosylatedhumanserumalbuminmediatedcytoprotectiveactivityisenhancedbyfattyacidbinding
AT kraghhansenulrich snitrosylatedhumanserumalbuminmediatedcytoprotectiveactivityisenhancedbyfattyacidbinding
AT hiroyamashuichi snitrosylatedhumanserumalbuminmediatedcytoprotectiveactivityisenhancedbyfattyacidbinding
AT sawatomohiro snitrosylatedhumanserumalbuminmediatedcytoprotectiveactivityisenhancedbyfattyacidbinding
AT suenagaayaka snitrosylatedhumanserumalbuminmediatedcytoprotectiveactivityisenhancedbyfattyacidbinding
AT maruyamatoru snitrosylatedhumanserumalbuminmediatedcytoprotectiveactivityisenhancedbyfattyacidbinding
AT kaitoshiya snitrosylatedhumanserumalbuminmediatedcytoprotectiveactivityisenhancedbyfattyacidbinding
AT otagirimasaki snitrosylatedhumanserumalbuminmediatedcytoprotectiveactivityisenhancedbyfattyacidbinding