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Intracellular IL-32 regulates mitochondrial metabolism, proliferation, and differentiation of malignant plasma cells

Interleukin-32 (IL-32) is a nonclassical cytokine expressed in cancers, inflammatory diseases, and infections. Its expression is regulated by two different oxygen sensing systems; HIF1α and cysteamine dioxygenase (ADO), indicating that IL-32 may be involved in the response to hypoxia. We here demons...

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Autores principales: Aass, Kristin Roseth, Mjelle, Robin, Kastnes, Martin H., Tryggestad, Synne S., van den Brink, Luca M., Aass Roseth, Ingrid, Westhrin, Marita, Zahoor, Muhammad, Moen, Siv H., Vikene Nedal, Tonje M., Buene, Glenn, Misund, Kristine, Sponaas, Anne-Marit, Ma, Qianli, Sundan, Anders, Groen, Richard WJ., Slørdahl, Tobias S., Waage, Anders, Standal, Therese
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8717606/
https://www.ncbi.nlm.nih.gov/pubmed/35005550
http://dx.doi.org/10.1016/j.isci.2021.103605
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author Aass, Kristin Roseth
Mjelle, Robin
Kastnes, Martin H.
Tryggestad, Synne S.
van den Brink, Luca M.
Aass Roseth, Ingrid
Westhrin, Marita
Zahoor, Muhammad
Moen, Siv H.
Vikene Nedal, Tonje M.
Buene, Glenn
Misund, Kristine
Sponaas, Anne-Marit
Ma, Qianli
Sundan, Anders
Groen, Richard WJ.
Slørdahl, Tobias S.
Waage, Anders
Standal, Therese
author_facet Aass, Kristin Roseth
Mjelle, Robin
Kastnes, Martin H.
Tryggestad, Synne S.
van den Brink, Luca M.
Aass Roseth, Ingrid
Westhrin, Marita
Zahoor, Muhammad
Moen, Siv H.
Vikene Nedal, Tonje M.
Buene, Glenn
Misund, Kristine
Sponaas, Anne-Marit
Ma, Qianli
Sundan, Anders
Groen, Richard WJ.
Slørdahl, Tobias S.
Waage, Anders
Standal, Therese
author_sort Aass, Kristin Roseth
collection PubMed
description Interleukin-32 (IL-32) is a nonclassical cytokine expressed in cancers, inflammatory diseases, and infections. Its expression is regulated by two different oxygen sensing systems; HIF1α and cysteamine dioxygenase (ADO), indicating that IL-32 may be involved in the response to hypoxia. We here demonstrate that endogenously expressed, intracellular IL-32 interacts with components of the mitochondrial respiratory chain and promotes oxidative phosphorylation. Knocking out IL-32 in three myeloma cell lines reduced cell survival and proliferation in vitro and in vivo. High-throughput transcriptomic and MS-metabolomic profiling of IL-32 KO cells revealed that cells depleted of IL-32 had perturbations in metabolic pathways, with accumulation of lipids, pyruvate precursors, and citrate. IL-32 was expressed in a subgroup of myeloma patients with inferior survival, and primary myeloma cells expressing IL-32 had a gene signature associated with immaturity, proliferation, and oxidative phosphorylation. In conclusion, we demonstrate a previously unrecognized role of IL-32 in the regulation of plasma cell metabolism.
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spelling pubmed-87176062022-01-06 Intracellular IL-32 regulates mitochondrial metabolism, proliferation, and differentiation of malignant plasma cells Aass, Kristin Roseth Mjelle, Robin Kastnes, Martin H. Tryggestad, Synne S. van den Brink, Luca M. Aass Roseth, Ingrid Westhrin, Marita Zahoor, Muhammad Moen, Siv H. Vikene Nedal, Tonje M. Buene, Glenn Misund, Kristine Sponaas, Anne-Marit Ma, Qianli Sundan, Anders Groen, Richard WJ. Slørdahl, Tobias S. Waage, Anders Standal, Therese iScience Article Interleukin-32 (IL-32) is a nonclassical cytokine expressed in cancers, inflammatory diseases, and infections. Its expression is regulated by two different oxygen sensing systems; HIF1α and cysteamine dioxygenase (ADO), indicating that IL-32 may be involved in the response to hypoxia. We here demonstrate that endogenously expressed, intracellular IL-32 interacts with components of the mitochondrial respiratory chain and promotes oxidative phosphorylation. Knocking out IL-32 in three myeloma cell lines reduced cell survival and proliferation in vitro and in vivo. High-throughput transcriptomic and MS-metabolomic profiling of IL-32 KO cells revealed that cells depleted of IL-32 had perturbations in metabolic pathways, with accumulation of lipids, pyruvate precursors, and citrate. IL-32 was expressed in a subgroup of myeloma patients with inferior survival, and primary myeloma cells expressing IL-32 had a gene signature associated with immaturity, proliferation, and oxidative phosphorylation. In conclusion, we demonstrate a previously unrecognized role of IL-32 in the regulation of plasma cell metabolism. Elsevier 2021-12-13 /pmc/articles/PMC8717606/ /pubmed/35005550 http://dx.doi.org/10.1016/j.isci.2021.103605 Text en © 2021 The Author(s) 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 Article
Aass, Kristin Roseth
Mjelle, Robin
Kastnes, Martin H.
Tryggestad, Synne S.
van den Brink, Luca M.
Aass Roseth, Ingrid
Westhrin, Marita
Zahoor, Muhammad
Moen, Siv H.
Vikene Nedal, Tonje M.
Buene, Glenn
Misund, Kristine
Sponaas, Anne-Marit
Ma, Qianli
Sundan, Anders
Groen, Richard WJ.
Slørdahl, Tobias S.
Waage, Anders
Standal, Therese
Intracellular IL-32 regulates mitochondrial metabolism, proliferation, and differentiation of malignant plasma cells
title Intracellular IL-32 regulates mitochondrial metabolism, proliferation, and differentiation of malignant plasma cells
title_full Intracellular IL-32 regulates mitochondrial metabolism, proliferation, and differentiation of malignant plasma cells
title_fullStr Intracellular IL-32 regulates mitochondrial metabolism, proliferation, and differentiation of malignant plasma cells
title_full_unstemmed Intracellular IL-32 regulates mitochondrial metabolism, proliferation, and differentiation of malignant plasma cells
title_short Intracellular IL-32 regulates mitochondrial metabolism, proliferation, and differentiation of malignant plasma cells
title_sort intracellular il-32 regulates mitochondrial metabolism, proliferation, and differentiation of malignant plasma cells
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8717606/
https://www.ncbi.nlm.nih.gov/pubmed/35005550
http://dx.doi.org/10.1016/j.isci.2021.103605
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