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A new thiol-independent mechanism of epithelial host defense against Pseudomonas aeruginosa: iNOS/NO(•) sabotage of theft-ferroptosis

Ferroptosis is a redox-driven type of regulated cell death program arising from maladaptation of three metabolic pathways: glutathione homeostasis, iron handling and lipid peroxidation. Though GSH/Gpx4 is the predominant system detoxifying phospholipid hydroperoxides (PLOOH) in mammalian cells, rece...

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Autores principales: Dar, Haider H., Anthonymuthu, Tamil S., Ponomareva, Liubov A., Souryavong, Austin B., Shurin, Galina V., Kapralov, Alexandr O., Tyurin, Vladimir A., Lee, Janet S., Mallampalli, Rama K., Wenzel, Sally E., Bayir, Hülya, Kagan, Valerian E.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8227829/
https://www.ncbi.nlm.nih.gov/pubmed/34167028
http://dx.doi.org/10.1016/j.redox.2021.102045
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author Dar, Haider H.
Anthonymuthu, Tamil S.
Ponomareva, Liubov A.
Souryavong, Austin B.
Shurin, Galina V.
Kapralov, Alexandr O.
Tyurin, Vladimir A.
Lee, Janet S.
Mallampalli, Rama K.
Wenzel, Sally E.
Bayir, Hülya
Kagan, Valerian E.
author_facet Dar, Haider H.
Anthonymuthu, Tamil S.
Ponomareva, Liubov A.
Souryavong, Austin B.
Shurin, Galina V.
Kapralov, Alexandr O.
Tyurin, Vladimir A.
Lee, Janet S.
Mallampalli, Rama K.
Wenzel, Sally E.
Bayir, Hülya
Kagan, Valerian E.
author_sort Dar, Haider H.
collection PubMed
description Ferroptosis is a redox-driven type of regulated cell death program arising from maladaptation of three metabolic pathways: glutathione homeostasis, iron handling and lipid peroxidation. Though GSH/Gpx4 is the predominant system detoxifying phospholipid hydroperoxides (PLOOH) in mammalian cells, recently Gpx4-independent regulators of ferroptosis like ferroptosis suppressor protein 1 (FSP1) in resistant cancer lines and iNOS/NO(•) in M1 macrophages have been discovered. We previously reported that Pseudomonas aeruginosa (PA) utilizes its 15- lipoxygenase (pLoxA) to trigger ferroptotic death in epithelial cells by oxidizing the host arachidonoyl-phosphatidylethanolamine (ETE-PE) into pro-ferroptotic 15-hydroperoxy- arachidonyl-PE (15-HpETE-PE). Here we demonstrate that PA degrades the host GPx4 defense by activating the lysosomal chaperone-mediated autophagy (CMA). In response, the host stimulates the iNOS/NO(•)-driven anti-ferroptotic mechanism to stymie lipid peroxidation and protect GPx4/GSH-deficient cells. By using a co-culture model system, we showed that macrophage-produced NO(•) can distantly prevent PA stimulated ferroptosis in epithelial cells as an inter-cellular mechanism. We further established that suppression of ferroptosis in epithelial cells by NO(•) is enabled through the suppression of phospholipid peroxidation, particularly the production of pro-ferroptotic 15-HpETE-PE signals. Pharmacological targeting of iNOS (NO(•) generation) attenuated its anti-ferroptotic function. In conclusion, our findings define a new inter-cellular ferroptosis suppression mechanism which may represent a new strategy of the host against P. aeruginosa induced theft-ferroptosis.
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spelling pubmed-82278292021-06-29 A new thiol-independent mechanism of epithelial host defense against Pseudomonas aeruginosa: iNOS/NO(•) sabotage of theft-ferroptosis Dar, Haider H. Anthonymuthu, Tamil S. Ponomareva, Liubov A. Souryavong, Austin B. Shurin, Galina V. Kapralov, Alexandr O. Tyurin, Vladimir A. Lee, Janet S. Mallampalli, Rama K. Wenzel, Sally E. Bayir, Hülya Kagan, Valerian E. Redox Biol Articles from the Special Issue on Redox signaling in the pathogenesis and treatments of acute lung injury and beyond, Edited by: Dr. Lin Mantell, Dr. Peter Vitiello and Dr. Eva Nozik Ferroptosis is a redox-driven type of regulated cell death program arising from maladaptation of three metabolic pathways: glutathione homeostasis, iron handling and lipid peroxidation. Though GSH/Gpx4 is the predominant system detoxifying phospholipid hydroperoxides (PLOOH) in mammalian cells, recently Gpx4-independent regulators of ferroptosis like ferroptosis suppressor protein 1 (FSP1) in resistant cancer lines and iNOS/NO(•) in M1 macrophages have been discovered. We previously reported that Pseudomonas aeruginosa (PA) utilizes its 15- lipoxygenase (pLoxA) to trigger ferroptotic death in epithelial cells by oxidizing the host arachidonoyl-phosphatidylethanolamine (ETE-PE) into pro-ferroptotic 15-hydroperoxy- arachidonyl-PE (15-HpETE-PE). Here we demonstrate that PA degrades the host GPx4 defense by activating the lysosomal chaperone-mediated autophagy (CMA). In response, the host stimulates the iNOS/NO(•)-driven anti-ferroptotic mechanism to stymie lipid peroxidation and protect GPx4/GSH-deficient cells. By using a co-culture model system, we showed that macrophage-produced NO(•) can distantly prevent PA stimulated ferroptosis in epithelial cells as an inter-cellular mechanism. We further established that suppression of ferroptosis in epithelial cells by NO(•) is enabled through the suppression of phospholipid peroxidation, particularly the production of pro-ferroptotic 15-HpETE-PE signals. Pharmacological targeting of iNOS (NO(•) generation) attenuated its anti-ferroptotic function. In conclusion, our findings define a new inter-cellular ferroptosis suppression mechanism which may represent a new strategy of the host against P. aeruginosa induced theft-ferroptosis. Elsevier 2021-06-16 /pmc/articles/PMC8227829/ /pubmed/34167028 http://dx.doi.org/10.1016/j.redox.2021.102045 Text en © 2021 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 Articles from the Special Issue on Redox signaling in the pathogenesis and treatments of acute lung injury and beyond, Edited by: Dr. Lin Mantell, Dr. Peter Vitiello and Dr. Eva Nozik
Dar, Haider H.
Anthonymuthu, Tamil S.
Ponomareva, Liubov A.
Souryavong, Austin B.
Shurin, Galina V.
Kapralov, Alexandr O.
Tyurin, Vladimir A.
Lee, Janet S.
Mallampalli, Rama K.
Wenzel, Sally E.
Bayir, Hülya
Kagan, Valerian E.
A new thiol-independent mechanism of epithelial host defense against Pseudomonas aeruginosa: iNOS/NO(•) sabotage of theft-ferroptosis
title A new thiol-independent mechanism of epithelial host defense against Pseudomonas aeruginosa: iNOS/NO(•) sabotage of theft-ferroptosis
title_full A new thiol-independent mechanism of epithelial host defense against Pseudomonas aeruginosa: iNOS/NO(•) sabotage of theft-ferroptosis
title_fullStr A new thiol-independent mechanism of epithelial host defense against Pseudomonas aeruginosa: iNOS/NO(•) sabotage of theft-ferroptosis
title_full_unstemmed A new thiol-independent mechanism of epithelial host defense against Pseudomonas aeruginosa: iNOS/NO(•) sabotage of theft-ferroptosis
title_short A new thiol-independent mechanism of epithelial host defense against Pseudomonas aeruginosa: iNOS/NO(•) sabotage of theft-ferroptosis
title_sort new thiol-independent mechanism of epithelial host defense against pseudomonas aeruginosa: inos/no(•) sabotage of theft-ferroptosis
topic Articles from the Special Issue on Redox signaling in the pathogenesis and treatments of acute lung injury and beyond, Edited by: Dr. Lin Mantell, Dr. Peter Vitiello and Dr. Eva Nozik
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8227829/
https://www.ncbi.nlm.nih.gov/pubmed/34167028
http://dx.doi.org/10.1016/j.redox.2021.102045
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