Back to Search
Start Over
NOX5 and p22phox are 2 novel regulators of human monocytic differentiation into dendritic cells.
- Source :
-
Blood [Blood] 2017 Oct 12; Vol. 130 (15), pp. 1734-1745. Date of Electronic Publication: 2017 Aug 22. - Publication Year :
- 2017
-
Abstract
- Dendritic cells (DCs) are a heterogeneous population of professional antigen-presenting cells and are key cells of the immune system, acquiring different phenotypes in accordance with their localization during the immune response. A subset of inflammatory DCs is derived from circulating monocytes (Mo) and has a key role in inflammation and infection. The pathways controlling Mo-DC differentiation are not fully understood. Our objective was to investigate the possible role of nicotinamide adenine dinucleotide phosphate reduced form oxidases (NOXs) in Mo-DC differentiation. In this study, we revealed that Mo-DC differentiation was inhibited by NOX inhibitors and reactive oxygen species scavengers. We show that the Mo-DC differentiation was dependent on p22phox, and not on gp91phox/NOX2, as shown by the reduced Mo-DC differentiation observed in chronic granulomatous disease patients lacking p22phox. Moreover, we revealed that NOX5 expression was strongly increased during Mo-DC differentiation, but not during Mo-macrophage differentiation. NOX5 was expressed in circulating myeloid DC, and at a lower level in plasmacytoid DC. Interestingly, NOX5 was localized at the outer membrane of the mitochondria and interacted with p22phox in Mo-DC. Selective inhibitors and small interfering RNAs for NOX5 indicated that NOX5 controlled Mo-DC differentiation by regulating the JAK/STAT/MAPK and NFκB pathways. These data demonstrate that the NOX5-p22phox complex drives Mo-DC differentiation, and thus could be critical for immunity and inflammation.<br /> (© 2017 by The American Society of Hematology.)
- Subjects :
- Dendritic Cells drug effects
Dendritic Cells metabolism
Enzyme Inhibitors pharmacology
Free Radical Scavengers pharmacology
Humans
Membrane Glycoproteins metabolism
Membrane Proteins antagonists & inhibitors
Mitochondria drug effects
Mitochondria metabolism
Mitochondrial Membranes drug effects
Mitochondrial Membranes metabolism
Models, Biological
Monocytes drug effects
Monocytes metabolism
NADPH Oxidase 2
NADPH Oxidase 5
NADPH Oxidases antagonists & inhibitors
NF-kappa B metabolism
Protein Binding drug effects
Reactive Oxygen Species metabolism
Signal Transduction drug effects
Cell Differentiation drug effects
Dendritic Cells cytology
Membrane Proteins metabolism
Monocytes cytology
NADPH Oxidases metabolism
Subjects
Details
- Language :
- English
- ISSN :
- 1528-0020
- Volume :
- 130
- Issue :
- 15
- Database :
- MEDLINE
- Journal :
- Blood
- Publication Type :
- Academic Journal
- Accession number :
- 28830888
- Full Text :
- https://doi.org/10.1182/blood-2016-10-746347