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Formation of protein adducts with Hydroperoxy-PE electrophilic cleavage products during ferroptosis

Ferroptosis is an iron dependent form of cell death, that is triggered by the discoordination of iron, lipids, and thiols. Its unique signature that distinguishes it from other forms of cell death is the formation and accumulation of lipid hydroperoxides, particularly oxidized forms of polyunsaturat...

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Autores principales: Amoscato, A.A., Anthonymuthu, T., Kapralov, O., Sparvero, L.J., Shrivastava, I.H., Mikulska-Ruminska, K., Tyurin, V.A., Shvedova, A.A., Tyurina, Y.Y., Bahar, I., Wenzel, S., Bayir, H., Kagan, V.E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10238881/
https://www.ncbi.nlm.nih.gov/pubmed/37245287
http://dx.doi.org/10.1016/j.redox.2023.102758
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author Amoscato, A.A.
Anthonymuthu, T.
Kapralov, O.
Sparvero, L.J.
Shrivastava, I.H.
Mikulska-Ruminska, K.
Tyurin, V.A.
Shvedova, A.A.
Tyurina, Y.Y.
Bahar, I.
Wenzel, S.
Bayir, H.
Kagan, V.E.
author_facet Amoscato, A.A.
Anthonymuthu, T.
Kapralov, O.
Sparvero, L.J.
Shrivastava, I.H.
Mikulska-Ruminska, K.
Tyurin, V.A.
Shvedova, A.A.
Tyurina, Y.Y.
Bahar, I.
Wenzel, S.
Bayir, H.
Kagan, V.E.
author_sort Amoscato, A.A.
collection PubMed
description Ferroptosis is an iron dependent form of cell death, that is triggered by the discoordination of iron, lipids, and thiols. Its unique signature that distinguishes it from other forms of cell death is the formation and accumulation of lipid hydroperoxides, particularly oxidized forms of polyunsaturated phosphatidylethanolamines (PEs), which drives cell death. These readily undergo iron-catalyzed secondary free radical reactions leading to truncated products which retain the signature PE headgroup and which can readily react with nucleophilic moieties in proteins via their truncated electrophilic acyl chains. Using a redox lipidomics approach, we have identified oxidatively-truncated PE species (trPEox) in enzymatic and non-enzymatic model systems. Further, using a model peptide we demonstrate adduct formation with Cys as the preferred nucleophilic residue and PE(26:2) +2 oxygens, as one of the most reactive truncated PE-electrophiles produced. In cells stimulated to undergo ferroptosis we identified PE-truncated species with sn-2 truncations ranging from 5 to 9 carbons. Taking advantage of the free PE headgroup, we have developed a new technology using the lantibiotic duramycin, to enrich and identify the PE-lipoxidated proteins. Our results indicate that several dozens of proteins for each cell type, are PE-lipoxidated in HT-22, MLE, and H9c2 cells and M2 macrophages after they were induced to undergo ferroptosis. Pretreatment of cells with the strong nucleophile, 2-mercaptoethanol, prevented the formation of PE-lipoxidated proteins and blocked ferroptotic death. Finally, our docking simulations showed that the truncated PE species bound at least as good to several of the lantibiotic-identified proteins, as compared to the non-truncated parent molecule, stearoyl-arachidonoyl PE (SAPE), indicating that these oxidatively-truncated species favor/promote the formation of PEox-protein adducts. The identification of PEox-protein adducts during ferroptosis suggests that they are participants in the ferroptotic process preventable by 2-mercaptoethanol and may contribute to a point of no return in the ferroptotic death process.
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spelling pubmed-102388812023-06-04 Formation of protein adducts with Hydroperoxy-PE electrophilic cleavage products during ferroptosis Amoscato, A.A. Anthonymuthu, T. Kapralov, O. Sparvero, L.J. Shrivastava, I.H. Mikulska-Ruminska, K. Tyurin, V.A. Shvedova, A.A. Tyurina, Y.Y. Bahar, I. Wenzel, S. Bayir, H. Kagan, V.E. Redox Biol Research Paper Ferroptosis is an iron dependent form of cell death, that is triggered by the discoordination of iron, lipids, and thiols. Its unique signature that distinguishes it from other forms of cell death is the formation and accumulation of lipid hydroperoxides, particularly oxidized forms of polyunsaturated phosphatidylethanolamines (PEs), which drives cell death. These readily undergo iron-catalyzed secondary free radical reactions leading to truncated products which retain the signature PE headgroup and which can readily react with nucleophilic moieties in proteins via their truncated electrophilic acyl chains. Using a redox lipidomics approach, we have identified oxidatively-truncated PE species (trPEox) in enzymatic and non-enzymatic model systems. Further, using a model peptide we demonstrate adduct formation with Cys as the preferred nucleophilic residue and PE(26:2) +2 oxygens, as one of the most reactive truncated PE-electrophiles produced. In cells stimulated to undergo ferroptosis we identified PE-truncated species with sn-2 truncations ranging from 5 to 9 carbons. Taking advantage of the free PE headgroup, we have developed a new technology using the lantibiotic duramycin, to enrich and identify the PE-lipoxidated proteins. Our results indicate that several dozens of proteins for each cell type, are PE-lipoxidated in HT-22, MLE, and H9c2 cells and M2 macrophages after they were induced to undergo ferroptosis. Pretreatment of cells with the strong nucleophile, 2-mercaptoethanol, prevented the formation of PE-lipoxidated proteins and blocked ferroptotic death. Finally, our docking simulations showed that the truncated PE species bound at least as good to several of the lantibiotic-identified proteins, as compared to the non-truncated parent molecule, stearoyl-arachidonoyl PE (SAPE), indicating that these oxidatively-truncated species favor/promote the formation of PEox-protein adducts. The identification of PEox-protein adducts during ferroptosis suggests that they are participants in the ferroptotic process preventable by 2-mercaptoethanol and may contribute to a point of no return in the ferroptotic death process. Elsevier 2023-05-22 /pmc/articles/PMC10238881/ /pubmed/37245287 http://dx.doi.org/10.1016/j.redox.2023.102758 Text en © 2023 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Paper
Amoscato, A.A.
Anthonymuthu, T.
Kapralov, O.
Sparvero, L.J.
Shrivastava, I.H.
Mikulska-Ruminska, K.
Tyurin, V.A.
Shvedova, A.A.
Tyurina, Y.Y.
Bahar, I.
Wenzel, S.
Bayir, H.
Kagan, V.E.
Formation of protein adducts with Hydroperoxy-PE electrophilic cleavage products during ferroptosis
title Formation of protein adducts with Hydroperoxy-PE electrophilic cleavage products during ferroptosis
title_full Formation of protein adducts with Hydroperoxy-PE electrophilic cleavage products during ferroptosis
title_fullStr Formation of protein adducts with Hydroperoxy-PE electrophilic cleavage products during ferroptosis
title_full_unstemmed Formation of protein adducts with Hydroperoxy-PE electrophilic cleavage products during ferroptosis
title_short Formation of protein adducts with Hydroperoxy-PE electrophilic cleavage products during ferroptosis
title_sort formation of protein adducts with hydroperoxy-pe electrophilic cleavage products during ferroptosis
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10238881/
https://www.ncbi.nlm.nih.gov/pubmed/37245287
http://dx.doi.org/10.1016/j.redox.2023.102758
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