Please use this identifier to cite or link to this item: https://doi.org/10.3389/fimmu.2018.01552
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dc.titleNrf2 is a central regulator of metabolic reprogramming of myeloid-derived suppressor cells in steady state and sepsis
dc.contributor.authorOhl, K
dc.contributor.authorFragoulis, A
dc.contributor.authorKlemm, P
dc.contributor.authorBaumeister, J
dc.contributor.authorKlock, W
dc.contributor.authorVerjans, E
dc.contributor.authorBöll, S
dc.contributor.authorMöllmann, J
dc.contributor.authorLehrke, M
dc.contributor.authorCosta, I
dc.contributor.authorDenecke, B
dc.contributor.authorSchippers, A
dc.contributor.authorRoth, J
dc.contributor.authorWagner, N
dc.contributor.authorWruck, C
dc.contributor.authorTenbrock, K
dc.date.accessioned2020-10-20T05:02:00Z
dc.date.available2020-10-20T05:02:00Z
dc.date.issued2018
dc.identifier.citationOhl, K, Fragoulis, A, Klemm, P, Baumeister, J, Klock, W, Verjans, E, Böll, S, Möllmann, J, Lehrke, M, Costa, I, Denecke, B, Schippers, A, Roth, J, Wagner, N, Wruck, C, Tenbrock, K (2018). Nrf2 is a central regulator of metabolic reprogramming of myeloid-derived suppressor cells in steady state and sepsis. Frontiers in Immunology 9 (JUL) : 1552. ScholarBank@NUS Repository. https://doi.org/10.3389/fimmu.2018.01552
dc.identifier.issn16643224
dc.identifier.urihttps://scholarbank.nus.edu.sg/handle/10635/178079
dc.description.abstractArising in inflammatory conditions, myeloid-derived suppressor cells (MDSCs) are constantly confronted with intracellular and extracellular reactive oxygen species molecules and oxidative stress. Generating mice with a constitutive activation of Nuclear factor (erythroid-derived 2)-like 2 (Nrf2) we show a pivotal role of the antioxidant stress defense for development of these immune-modulatory cells. These mice are characterized by a massive increase of splenic CD11b+Gr-1+ cells, which exhibit typical suppressive characteristics of MDSCs. Whole transcriptome analysis revealed Nrf2-dependent activation of cell cycle and metabolic pathways, which resemble pathways in CD11b+Gr-1+ MDSCs expanded by in vivo LPS exposure. Constitutive Nrf2 activation thereby regulates activation and balance between glycolysis and mitochondrial metabolism and hence expansion of highly suppressive MDSCs, which mediate protection in LPS-induced sepsis. Our study establishes Nrf2 as key regulator of MDSCs and acquired tolerance against LPS-induced sepsis. © 2018 Ohl, Fragoulis, Klemm, Baumeister, Klock, Verjans, Böll, Möllmann, Lehrke, Costa, Denecke, Schippers, Roth, Wagner, Wruck and Tenbrock.
dc.rightsAttribution 4.0 International
dc.rights.urihttp://creativecommons.org/licenses/by/4.0/
dc.sourceUnpaywall 20201031
dc.subjectCD11b antigen
dc.subjectCD4 antigen
dc.subjectcomplementary DNA
dc.subjectdeoxyribonuclease I
dc.subjectgranulocyte macrophage colony stimulating factor
dc.subjectinducible nitric oxide synthase
dc.subjectinterleukin 1
dc.subjectinterleukin 12
dc.subjectinterleukin 6
dc.subjectkelch like ECH associated protein 1
dc.subjecttoll like receptor 4
dc.subjecttranscription factor Nrf2
dc.subjecttranscriptome
dc.subjecturacil DNA glycosidase
dc.subjectaerobic glycolysis
dc.subjectanimal cell
dc.subjectanimal experiment
dc.subjectanimal model
dc.subjectanimal tissue
dc.subjectArticle
dc.subjectCD4+ T lymphocyte
dc.subjectcell cycle
dc.subjectcell expansion
dc.subjectcolitis
dc.subjectcontrolled study
dc.subjectgene expression
dc.subjectimmunological tolerance
dc.subjectimmunomodulation
dc.subjectin vitro study
dc.subjectin vivo study
dc.subjectlipopolysaccharide-induced sepsis
dc.subjectmetabolic activation
dc.subjectmetabolic regulation
dc.subjectmitochondrial respiration
dc.subjectmouse
dc.subjectmyeloid-derived suppressor cell
dc.subjectnonhuman
dc.subjectnuclear reprogramming
dc.subjectoxidative stress
dc.subjecttranscriptomics
dc.typeArticle
dc.contributor.departmentSAW SWEE HOCK SCHOOL OF PUBLIC HEALTH
dc.description.doi10.3389/fimmu.2018.01552
dc.description.sourcetitleFrontiers in Immunology
dc.description.volume9
dc.description.issueJUL
dc.description.page1552
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