High Expression of Antioxidant Proteins in Dendritic Cells
Высокая экспрессия антиоксидантных белков в дендритных клетках
2006-01-20
SCID: 54.1/be5dqz4y
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antioxidant proteinsdendritic cellsmanganese superoxide dismutaseoxidative stressperoxiredoxin enzymes
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Abstract (AI)
Dendritic cells (DCs) display the unique ability to activate naive T cells and to initiate primary T cell responses revealed in DC-T cell alloreactions. DCs frequently operate under stress conditions. Oxidative stress enhances the production of inflammatory cytokines by DCs. We performed a proteomic analysis to see which major changes occur, at the protein expression level, during DC differentiation and maturation. Comparative two-dimensional gel analysis of the monocyte, immature DC, and mature DC stages was performed. Manganese superoxide dismutase (Mn-SOD) reached 0.7% of the gel-displayed proteins at the mature DC stage. This important amount of Mn-SOD is a primary antioxidant defense system against superoxide radicals, but its product, H(2)O(2), is also deleterious for cells. Peroxiredoxin (Prx) enzymes play an important role in eliminating such peroxide. Prx1 expression level continuously increased during DC differentiation and maturation, whereas Prx6 continuously decreased, and Prx2 peaked at the immature DC stage. As a consequence, DCs were more resistant than monocytes to apoptosis induced by high amounts of oxidized low density lipoproteins containing toxic organic peroxides and hydrogen peroxide. Furthermore DC-stimulated T cells produced high levels of receptor activator of nuclear factor kappaB ligand, a chemotactic and survival factor for monocytes and DCs. This study provides insights into the original ability of DCs to express very high levels of antioxidant enzymes such as Mn-SOD and Prx1, to detoxify oxidized low density lipoproteins, and to induce high levels of receptor activator of nuclear factor kappaB ligand by the T cells they activate and further emphasizes the role that DCs might play in atherosclerosis, a pathology recognized as a chronic inflammatory disorder.
Key Findings
1
Dendritic cells were more resistant than monocytes to apoptosis induced by oxidized low-density lipoproteins and hydrogen peroxide.
2
Manganese superoxide dismutase reached 0.7% of gel-displayed proteins in mature dendritic cells, indicating strong antioxidant capacity.
3
Peroxiredoxin expression changed stage-dependently: Prx1 increased continuously, Prx6 decreased continuously, and Prx2 peaked in immature dendritic cells.
4
Proteomic analysis identified major protein-expression changes during monocyte-to-dendritic-cell differentiation and maturation.
5
T cells activated by dendritic cells produced high levels of RANK ligand, potentially supporting monocyte and dendritic-cell survival and implicating dendritic cells in atherosclerosis.
Research Object
Dendritic cells during differentiation and maturation
Research Subject
Expression of antioxidant enzymes and resistance to oxidative-stress-induced apoptosis, including effects on T-cell RANKL production
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2006-01-20
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