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Oxidative modulation of cyclic AMP-dependent protein kinase in human fibroblasts: possible role in psoriasis
F Raynaud1, D Evain-Brion, P Gerbaud
1Unité INSERM 427, Faculté des Sciences Pharmaceutiques et Biologiques de Paris, Université René Descartes, France.
Abstract:
Previous studies have established that cyclic AMP-dependent protein kinase (PKA) activity, as well as 8-azido-[32P]-cAMP binding to the RI and RII regulatory subunits, are decreased in cells from psoriatic patients compared to cells from normal patients. Here we show that the exposure of normal human dermal fibroblasts in culture to hydrogen peroxide and to oxygen free-radical generating systems decreased PKA activity, as well as cyclic AMP binding to the RI and RII regulatory subunits, to levels similar to those observed with psoriatic fibroblasts. Likewise, treatment of normal cytosolic preparations of PKA, as well as purified bovine PKA II, in vitro with free radical generating systems also resulted in decreased PKA activity and 8-azido [32P]-cAMP binding to the RI and RII regulatory subunits. Further, treatment of psoriatic fibroblasts with free radical scavenging agents such as vitamins E and C, and mannitol, and also with superoxide dismutase, restored the ability of RI and RII to bind 8-azido-[32P]-cAMP toward normal levels. Western blot analysis showed that the protein levels of the RI and RII subunits are similar in normal and psoriatic fibroblasts, and that the amounts of RI and RII are not altered by treatment of the cells with free radical-generating systems. These results suggest that oxidative modification may serve as a mechanism to alter PKA activity in human cells, and that an altered oxidative state may be involved in mediating the decrease in PKA activity and cyclic AMP binding noted in cells from psoriatic patients.
Insights
Oxidative stress decreases cyclic AMP-dependent protein kinase (PKA) activity and cyclic AMP binding in normal cells, mimicking psoriatic cells. Antioxidants restore normal binding, suggesting oxidative modification impacts PKA in psoriasis.
Area of Science:
- Biochemistry
- Cell Biology
- Dermatology
Background:
- Cyclic AMP-dependent protein kinase (PKA) activity and cyclic AMP binding are reduced in psoriatic cells.
- The underlying mechanism for this reduction remains unclear.
Purpose of the Study:
- To investigate the role of oxidative stress in altering PKA activity and cyclic AMP binding.
- To determine if oxidative modification contributes to the PKA changes observed in psoriatic cells.
Main Methods:
- Normal human dermal fibroblasts were exposed to free radical generating systems.
- Purified PKA preparations were treated with free radicals in vitro.
- Psoriatic fibroblasts were treated with free radical scavenging agents.
- Western blot analysis was used to assess regulatory subunit protein levels.
Main Results:
- Exposure to hydrogen peroxide and free radicals decreased PKA activity and cyclic AMP binding in normal fibroblasts and purified PKA.
- Free radical scavenging agents (Vitamins E, C, mannitol, superoxide dismutase) restored cyclic AMP binding in psoriatic fibroblasts.
- Protein levels of PKA regulatory subunits (RI and RII) were unchanged in psoriatic cells and after free radical treatment.
Conclusions:
- Oxidative modification appears to be a mechanism altering PKA activity and cyclic AMP binding in human cells.
- An altered oxidative state may mediate the decreased PKA activity and cyclic AMP binding observed in psoriatic patient cells.