Hypoxia potentiates monocyte-derived dendritic cells for release of tumor necrosis factor α via MAP3K8
0301 basic medicine
Biophysics
Biochemistry
Monocytes
03 medical and health sciences
Radboudumc 2: Cancer development and immune defence RIMLS: Radboud Institute for Molecular Life Sciences
Proto-Oncogene Proteins
Humans
dendritic cells
RNA, Small Interfering
Hypoxia
Molecular Biology
Research Articles
Cells, Cultured
Inflammation
hypoxia
Tumor Necrosis Factor-alpha
tumour necrosis factors
Cell Biology
Dendritic Cells
MAP Kinase Kinase Kinases
Cell Hypoxia
Up-Regulation
3. Good health
Toll-Like Receptor 4
Tumorimmunology - Radboud University Medical Center
inflammation
13. Climate action
mitogen-activated protein kinases
RNA Interference
DOI:
10.1042/bsr20182019
Publication Date:
2018-11-22T09:42:43Z
AUTHORS (8)
ABSTRACT
Dendritic cells (DCs) constantly sample peripheral tissues for antigens, which are subsequently ingested to derive peptides for presentation to T cells in lymph nodes. To do so, DCs have to traverse many different tissues with varying oxygen tensions. Additionally, DCs are often exposed to low oxygen tensions in tumors, where vascularization is lacking, as well as in inflammatory foci, where oxygen is rapidly consumed by inflammatory cells during the respiratory burst. DCs respond to oxygen levels to tailor immune responses to such low-oxygen environments. In the present study, we identified a mechanism of hypoxia-mediated potentiation of release of tumor necrosis factor α (TNF-α), a pro-inflammatory cytokine with important roles in both anti-cancer immunity and autoimmune disease. We show in human monocyte-derived DCs (moDCs) that this potentiation is controlled exclusively via the p38/mitogen-activated protein kinase (MAPK) pathway. We identified MAPK kinase kinase 8 (MAP3K8) as a target gene of hypoxia-induced factor (HIF), a transcription factor controlled by oxygen tension, upstream of the p38/MAPK pathway. Hypoxia increased expression of MAP3K8 concomitant with the potentiation of TNF-α secretion. This potentiation was no longer observed upon siRNA silencing of MAP3K8 or with a small molecule inhibitor of this kinase, and this also decreased p38/MAPK phosphorylation. However, expression of DC maturation markers CD83, CD86, and HLA-DR were not changed by hypoxia. Since DCs play an important role in controlling T-cell activation and differentiation, our results provide novel insight in understanding T-cell responses in inflammation, cancer, autoimmune disease and other diseases where hypoxia is involved.
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