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Hemoglobin is an oxygen-dependent glutathione buffer adapting the intracellular reduced glutathione levels to oxygen availability

Fast changes in environmental oxygen availability translate into shifts in mitochondrial free radical production. An increase in intraerythrocytic reduced glutathione (GSH) during deoxygenation would support the detoxification of exogenous oxidants released into the circulation from hypoxic peripher...

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Autores principales: Fenk, Simone, Melnikova, Elizaveta V., Anashkina, Anastasia A., Poluektov, Yuri M., Zaripov, Pavel I., Mitkevich, Vladimir A., Tkachev, Yaroslav V., Kaestner, Lars, Minetti, Giampaolo, Mairbäurl, Heimo, Goede, Jeroen S., Makarov, Alexander A., Petrushanko, Irina Yu, Bogdanova, Anna
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9679038/
https://www.ncbi.nlm.nih.gov/pubmed/36413919
http://dx.doi.org/10.1016/j.redox.2022.102535
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author Fenk, Simone
Melnikova, Elizaveta V.
Anashkina, Anastasia A.
Poluektov, Yuri M.
Zaripov, Pavel I.
Mitkevich, Vladimir A.
Tkachev, Yaroslav V.
Kaestner, Lars
Minetti, Giampaolo
Mairbäurl, Heimo
Goede, Jeroen S.
Makarov, Alexander A.
Petrushanko, Irina Yu
Bogdanova, Anna
author_facet Fenk, Simone
Melnikova, Elizaveta V.
Anashkina, Anastasia A.
Poluektov, Yuri M.
Zaripov, Pavel I.
Mitkevich, Vladimir A.
Tkachev, Yaroslav V.
Kaestner, Lars
Minetti, Giampaolo
Mairbäurl, Heimo
Goede, Jeroen S.
Makarov, Alexander A.
Petrushanko, Irina Yu
Bogdanova, Anna
author_sort Fenk, Simone
collection PubMed
description Fast changes in environmental oxygen availability translate into shifts in mitochondrial free radical production. An increase in intraerythrocytic reduced glutathione (GSH) during deoxygenation would support the detoxification of exogenous oxidants released into the circulation from hypoxic peripheral tissues. Although reported, the mechanism behind this acute oxygen-dependent regulation of GSH in red blood cells remains unknown. This study explores the role of hemoglobin (Hb) in the oxygen-dependent modulation of GSH levels in red blood cells. We have demonstrated that a decrease in Hb O(2) saturation to 50% or less observed in healthy humans while at high altitude, or in red blood cell suspensions results in rising of the intraerythrocytic GSH level that is proportional to the reduction in Hb O(2) saturation. This effect was not caused by the stimulation of GSH de novo synthesis or its release during deglutathionylation of Hb's cysteines. Using isothermal titration calorimetry and in silico modeling, we observed the non-covalent binding of four molecules of GSH to oxy-Hb and the release of two of them upon deoxygenation. Localization of the GSH binding sites within the Hb molecule was identified. Oxygen-dependent binding of GSH to oxy-Hb and its release upon deoxygenation occurred reciprocally to the binding and release of 2,3-bisphosphoglycerate. Furthermore, noncovalent binding of GSH to Hb moderately increased Hb oxygen affinity. Taken together, our findings have identified an adaptive mechanism by which red blood cells may provide an advanced antioxidant defense to respond to oxidative challenges immediately upon deoxygenation.
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spelling pubmed-96790382022-11-23 Hemoglobin is an oxygen-dependent glutathione buffer adapting the intracellular reduced glutathione levels to oxygen availability Fenk, Simone Melnikova, Elizaveta V. Anashkina, Anastasia A. Poluektov, Yuri M. Zaripov, Pavel I. Mitkevich, Vladimir A. Tkachev, Yaroslav V. Kaestner, Lars Minetti, Giampaolo Mairbäurl, Heimo Goede, Jeroen S. Makarov, Alexander A. Petrushanko, Irina Yu Bogdanova, Anna Redox Biol Research Paper Fast changes in environmental oxygen availability translate into shifts in mitochondrial free radical production. An increase in intraerythrocytic reduced glutathione (GSH) during deoxygenation would support the detoxification of exogenous oxidants released into the circulation from hypoxic peripheral tissues. Although reported, the mechanism behind this acute oxygen-dependent regulation of GSH in red blood cells remains unknown. This study explores the role of hemoglobin (Hb) in the oxygen-dependent modulation of GSH levels in red blood cells. We have demonstrated that a decrease in Hb O(2) saturation to 50% or less observed in healthy humans while at high altitude, or in red blood cell suspensions results in rising of the intraerythrocytic GSH level that is proportional to the reduction in Hb O(2) saturation. This effect was not caused by the stimulation of GSH de novo synthesis or its release during deglutathionylation of Hb's cysteines. Using isothermal titration calorimetry and in silico modeling, we observed the non-covalent binding of four molecules of GSH to oxy-Hb and the release of two of them upon deoxygenation. Localization of the GSH binding sites within the Hb molecule was identified. Oxygen-dependent binding of GSH to oxy-Hb and its release upon deoxygenation occurred reciprocally to the binding and release of 2,3-bisphosphoglycerate. Furthermore, noncovalent binding of GSH to Hb moderately increased Hb oxygen affinity. Taken together, our findings have identified an adaptive mechanism by which red blood cells may provide an advanced antioxidant defense to respond to oxidative challenges immediately upon deoxygenation. Elsevier 2022-11-16 /pmc/articles/PMC9679038/ /pubmed/36413919 http://dx.doi.org/10.1016/j.redox.2022.102535 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
Fenk, Simone
Melnikova, Elizaveta V.
Anashkina, Anastasia A.
Poluektov, Yuri M.
Zaripov, Pavel I.
Mitkevich, Vladimir A.
Tkachev, Yaroslav V.
Kaestner, Lars
Minetti, Giampaolo
Mairbäurl, Heimo
Goede, Jeroen S.
Makarov, Alexander A.
Petrushanko, Irina Yu
Bogdanova, Anna
Hemoglobin is an oxygen-dependent glutathione buffer adapting the intracellular reduced glutathione levels to oxygen availability
title Hemoglobin is an oxygen-dependent glutathione buffer adapting the intracellular reduced glutathione levels to oxygen availability
title_full Hemoglobin is an oxygen-dependent glutathione buffer adapting the intracellular reduced glutathione levels to oxygen availability
title_fullStr Hemoglobin is an oxygen-dependent glutathione buffer adapting the intracellular reduced glutathione levels to oxygen availability
title_full_unstemmed Hemoglobin is an oxygen-dependent glutathione buffer adapting the intracellular reduced glutathione levels to oxygen availability
title_short Hemoglobin is an oxygen-dependent glutathione buffer adapting the intracellular reduced glutathione levels to oxygen availability
title_sort hemoglobin is an oxygen-dependent glutathione buffer adapting the intracellular reduced glutathione levels to oxygen availability
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9679038/
https://www.ncbi.nlm.nih.gov/pubmed/36413919
http://dx.doi.org/10.1016/j.redox.2022.102535
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