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The Set7 Lysine Methyltransferase Regulates Plasticity in Oxidative Phosphorylation Necessary for Trained Immunity Induced by β-Glucan

Trained immunity confers a sustained augmented response of innate immune cells to a secondary challenge, via a process dependent on metabolic and transcriptional reprogramming. Because of its previous associations with metabolic and transcriptional memory, as well as the importance of H3 histone lys...

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Autores principales: Keating, Samuel T., Groh, Laszlo, van der Heijden, Charlotte D.C.C., Rodriguez, Hanah, dos Santos, Jéssica C., Fanucchi, Stephanie, Okabe, Jun, Kaipananickal, Harikrishnan, van Puffelen, Jelmer H., Helder, Leonie, Noz, Marlies P., Matzaraki, Vasiliki, Li, Yang, de Bree, L. Charlotte J., Koeken, Valerie A.C.M., Moorlag, Simone J.C.F.M., Mourits, Vera P., Domínguez-Andrés, Jorge, Oosting, Marije, Bulthuis, Elianne P., Koopman, Werner J.H., Mhlanga, Musa, El-Osta, Assam, Joosten, Leo A.B., Netea, Mihai G., Riksen, Niels P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Cell Press 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7184679/
https://www.ncbi.nlm.nih.gov/pubmed/32320649
http://dx.doi.org/10.1016/j.celrep.2020.107548
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author Keating, Samuel T.
Groh, Laszlo
van der Heijden, Charlotte D.C.C.
Rodriguez, Hanah
dos Santos, Jéssica C.
Fanucchi, Stephanie
Okabe, Jun
Kaipananickal, Harikrishnan
van Puffelen, Jelmer H.
Helder, Leonie
Noz, Marlies P.
Matzaraki, Vasiliki
Li, Yang
de Bree, L. Charlotte J.
Koeken, Valerie A.C.M.
Moorlag, Simone J.C.F.M.
Mourits, Vera P.
Domínguez-Andrés, Jorge
Oosting, Marije
Bulthuis, Elianne P.
Koopman, Werner J.H.
Mhlanga, Musa
El-Osta, Assam
Joosten, Leo A.B.
Netea, Mihai G.
Riksen, Niels P.
author_facet Keating, Samuel T.
Groh, Laszlo
van der Heijden, Charlotte D.C.C.
Rodriguez, Hanah
dos Santos, Jéssica C.
Fanucchi, Stephanie
Okabe, Jun
Kaipananickal, Harikrishnan
van Puffelen, Jelmer H.
Helder, Leonie
Noz, Marlies P.
Matzaraki, Vasiliki
Li, Yang
de Bree, L. Charlotte J.
Koeken, Valerie A.C.M.
Moorlag, Simone J.C.F.M.
Mourits, Vera P.
Domínguez-Andrés, Jorge
Oosting, Marije
Bulthuis, Elianne P.
Koopman, Werner J.H.
Mhlanga, Musa
El-Osta, Assam
Joosten, Leo A.B.
Netea, Mihai G.
Riksen, Niels P.
author_sort Keating, Samuel T.
collection PubMed
description Trained immunity confers a sustained augmented response of innate immune cells to a secondary challenge, via a process dependent on metabolic and transcriptional reprogramming. Because of its previous associations with metabolic and transcriptional memory, as well as the importance of H3 histone lysine 4 monomethylation (H3K4me1) to innate immune memory, we hypothesize that the Set7 methyltransferase has an important role in trained immunity induced by β-glucan. Using pharmacological studies of human primary monocytes, we identify trained immunity-specific immunometabolic pathways regulated by Set7, including a previously unreported H3K4me1-dependent plasticity in the induction of oxidative phosphorylation. Recapitulation of β-glucan training in vivo additionally identifies Set7-dependent changes in gene expression previously associated with the modulation of myelopoiesis progenitors in trained immunity. By revealing Set7 as a key regulator of trained immunity, these findings provide mechanistic insight into sustained metabolic changes and underscore the importance of characterizing regulatory circuits of innate immune memory.
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spelling pubmed-71846792020-04-28 The Set7 Lysine Methyltransferase Regulates Plasticity in Oxidative Phosphorylation Necessary for Trained Immunity Induced by β-Glucan Keating, Samuel T. Groh, Laszlo van der Heijden, Charlotte D.C.C. Rodriguez, Hanah dos Santos, Jéssica C. Fanucchi, Stephanie Okabe, Jun Kaipananickal, Harikrishnan van Puffelen, Jelmer H. Helder, Leonie Noz, Marlies P. Matzaraki, Vasiliki Li, Yang de Bree, L. Charlotte J. Koeken, Valerie A.C.M. Moorlag, Simone J.C.F.M. Mourits, Vera P. Domínguez-Andrés, Jorge Oosting, Marije Bulthuis, Elianne P. Koopman, Werner J.H. Mhlanga, Musa El-Osta, Assam Joosten, Leo A.B. Netea, Mihai G. Riksen, Niels P. Cell Rep Article Trained immunity confers a sustained augmented response of innate immune cells to a secondary challenge, via a process dependent on metabolic and transcriptional reprogramming. Because of its previous associations with metabolic and transcriptional memory, as well as the importance of H3 histone lysine 4 monomethylation (H3K4me1) to innate immune memory, we hypothesize that the Set7 methyltransferase has an important role in trained immunity induced by β-glucan. Using pharmacological studies of human primary monocytes, we identify trained immunity-specific immunometabolic pathways regulated by Set7, including a previously unreported H3K4me1-dependent plasticity in the induction of oxidative phosphorylation. Recapitulation of β-glucan training in vivo additionally identifies Set7-dependent changes in gene expression previously associated with the modulation of myelopoiesis progenitors in trained immunity. By revealing Set7 as a key regulator of trained immunity, these findings provide mechanistic insight into sustained metabolic changes and underscore the importance of characterizing regulatory circuits of innate immune memory. Cell Press 2020-04-21 /pmc/articles/PMC7184679/ /pubmed/32320649 http://dx.doi.org/10.1016/j.celrep.2020.107548 Text en © 2020 The Author(s) http://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 Article
Keating, Samuel T.
Groh, Laszlo
van der Heijden, Charlotte D.C.C.
Rodriguez, Hanah
dos Santos, Jéssica C.
Fanucchi, Stephanie
Okabe, Jun
Kaipananickal, Harikrishnan
van Puffelen, Jelmer H.
Helder, Leonie
Noz, Marlies P.
Matzaraki, Vasiliki
Li, Yang
de Bree, L. Charlotte J.
Koeken, Valerie A.C.M.
Moorlag, Simone J.C.F.M.
Mourits, Vera P.
Domínguez-Andrés, Jorge
Oosting, Marije
Bulthuis, Elianne P.
Koopman, Werner J.H.
Mhlanga, Musa
El-Osta, Assam
Joosten, Leo A.B.
Netea, Mihai G.
Riksen, Niels P.
The Set7 Lysine Methyltransferase Regulates Plasticity in Oxidative Phosphorylation Necessary for Trained Immunity Induced by β-Glucan
title The Set7 Lysine Methyltransferase Regulates Plasticity in Oxidative Phosphorylation Necessary for Trained Immunity Induced by β-Glucan
title_full The Set7 Lysine Methyltransferase Regulates Plasticity in Oxidative Phosphorylation Necessary for Trained Immunity Induced by β-Glucan
title_fullStr The Set7 Lysine Methyltransferase Regulates Plasticity in Oxidative Phosphorylation Necessary for Trained Immunity Induced by β-Glucan
title_full_unstemmed The Set7 Lysine Methyltransferase Regulates Plasticity in Oxidative Phosphorylation Necessary for Trained Immunity Induced by β-Glucan
title_short The Set7 Lysine Methyltransferase Regulates Plasticity in Oxidative Phosphorylation Necessary for Trained Immunity Induced by β-Glucan
title_sort set7 lysine methyltransferase regulates plasticity in oxidative phosphorylation necessary for trained immunity induced by β-glucan
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7184679/
https://www.ncbi.nlm.nih.gov/pubmed/32320649
http://dx.doi.org/10.1016/j.celrep.2020.107548
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