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A Functional Interplay between 5-Lipoxygenase and μ-Calpain Affects Survival and Cytokine Profile of Human Jurkat T Lymphocyte Exposed to Simulated Microgravity

A growing body of evidence strongly indicates that both simulated and authentic weightlessness exert a broad range of effects on mammalian tissues and cells, including impairment of immune cell function and increased apoptotic death. We previously reported that microgravity-dependent activation of 5...

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Autores principales: Gasperi, Valeria, Rapino, Cinzia, Battista, Natalia, Bari, Monica, Mastrangelo, Nicolina, Angeletti, Silvia, Dainese, Enrico, Maccarrone, Mauro
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi Publishing Corporation 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4182306/
https://www.ncbi.nlm.nih.gov/pubmed/25309925
http://dx.doi.org/10.1155/2014/782390
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author Gasperi, Valeria
Rapino, Cinzia
Battista, Natalia
Bari, Monica
Mastrangelo, Nicolina
Angeletti, Silvia
Dainese, Enrico
Maccarrone, Mauro
author_facet Gasperi, Valeria
Rapino, Cinzia
Battista, Natalia
Bari, Monica
Mastrangelo, Nicolina
Angeletti, Silvia
Dainese, Enrico
Maccarrone, Mauro
author_sort Gasperi, Valeria
collection PubMed
description A growing body of evidence strongly indicates that both simulated and authentic weightlessness exert a broad range of effects on mammalian tissues and cells, including impairment of immune cell function and increased apoptotic death. We previously reported that microgravity-dependent activation of 5-lipoxygenase (5-LOX) might play a central role in the initiation of apoptosis in human T lymphocytes, suggesting that the upregulation of this enzyme might be (at least in part) responsible for immunodepression observed in astronauts during space flights. Herein, we supplement novel information about the molecular mechanisms underlying microgravity-triggered apoptotic cell death and immune system deregulation, demonstrating that under simulated microgravity human Jurkat T cells increase the content of cytosolic DNA fragments and cytochrome c (typical hallmarks of apoptosis) and have an upregulated expression and activity of µ-calpain. These events were paralleled by the unbalance of interleukin- (IL-) 2 and interferon- (INF-) γ, anti- and proapoptotic cytokines, respectively, that seemed to be dependent on the functional interplay between 5-LOX and µ-calpain. Indeed, we report unprecedented evidence that 5-LOX inhibition reduced apoptotic death, restored the initial IL-2/INF-γ ratio, and more importantly reverted µ-calpain activation induced by simulated microgravity.
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spelling pubmed-41823062014-10-12 A Functional Interplay between 5-Lipoxygenase and μ-Calpain Affects Survival and Cytokine Profile of Human Jurkat T Lymphocyte Exposed to Simulated Microgravity Gasperi, Valeria Rapino, Cinzia Battista, Natalia Bari, Monica Mastrangelo, Nicolina Angeletti, Silvia Dainese, Enrico Maccarrone, Mauro Biomed Res Int Research Article A growing body of evidence strongly indicates that both simulated and authentic weightlessness exert a broad range of effects on mammalian tissues and cells, including impairment of immune cell function and increased apoptotic death. We previously reported that microgravity-dependent activation of 5-lipoxygenase (5-LOX) might play a central role in the initiation of apoptosis in human T lymphocytes, suggesting that the upregulation of this enzyme might be (at least in part) responsible for immunodepression observed in astronauts during space flights. Herein, we supplement novel information about the molecular mechanisms underlying microgravity-triggered apoptotic cell death and immune system deregulation, demonstrating that under simulated microgravity human Jurkat T cells increase the content of cytosolic DNA fragments and cytochrome c (typical hallmarks of apoptosis) and have an upregulated expression and activity of µ-calpain. These events were paralleled by the unbalance of interleukin- (IL-) 2 and interferon- (INF-) γ, anti- and proapoptotic cytokines, respectively, that seemed to be dependent on the functional interplay between 5-LOX and µ-calpain. Indeed, we report unprecedented evidence that 5-LOX inhibition reduced apoptotic death, restored the initial IL-2/INF-γ ratio, and more importantly reverted µ-calpain activation induced by simulated microgravity. Hindawi Publishing Corporation 2014 2014-09-16 /pmc/articles/PMC4182306/ /pubmed/25309925 http://dx.doi.org/10.1155/2014/782390 Text en Copyright © 2014 Valeria Gasperi et al. https://creativecommons.org/licenses/by/3.0/ This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Gasperi, Valeria
Rapino, Cinzia
Battista, Natalia
Bari, Monica
Mastrangelo, Nicolina
Angeletti, Silvia
Dainese, Enrico
Maccarrone, Mauro
A Functional Interplay between 5-Lipoxygenase and μ-Calpain Affects Survival and Cytokine Profile of Human Jurkat T Lymphocyte Exposed to Simulated Microgravity
title A Functional Interplay between 5-Lipoxygenase and μ-Calpain Affects Survival and Cytokine Profile of Human Jurkat T Lymphocyte Exposed to Simulated Microgravity
title_full A Functional Interplay between 5-Lipoxygenase and μ-Calpain Affects Survival and Cytokine Profile of Human Jurkat T Lymphocyte Exposed to Simulated Microgravity
title_fullStr A Functional Interplay between 5-Lipoxygenase and μ-Calpain Affects Survival and Cytokine Profile of Human Jurkat T Lymphocyte Exposed to Simulated Microgravity
title_full_unstemmed A Functional Interplay between 5-Lipoxygenase and μ-Calpain Affects Survival and Cytokine Profile of Human Jurkat T Lymphocyte Exposed to Simulated Microgravity
title_short A Functional Interplay between 5-Lipoxygenase and μ-Calpain Affects Survival and Cytokine Profile of Human Jurkat T Lymphocyte Exposed to Simulated Microgravity
title_sort functional interplay between 5-lipoxygenase and μ-calpain affects survival and cytokine profile of human jurkat t lymphocyte exposed to simulated microgravity
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4182306/
https://www.ncbi.nlm.nih.gov/pubmed/25309925
http://dx.doi.org/10.1155/2014/782390
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