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Isoform-specific modulation of coronary artery PKC by glucocorticoids
K K Maddali1, D H Korzick, J R Turk
1Department of Biomedical Sciences, University of Missouri, Columbia, MO 65211, USA.
Abstract:
Glucocorticoids (GC) exert diverse cellular effects in response to both acute and chronic stress, the functional consequences of which have been implicated in the development of cardiovascular pathology such as hypertension and atherosclerosis. However, the mechanisms by which GCs activate divergent signaling pathways are poorly understood. The present study examined the direct effects of natural (cortisol) and synthetic (dexamethasone) GCs on protein kinase C (PKC) isoform expression in coronary arteries. Porcine right coronary arteries were treated in vitro for 18 h in the presence and absence of either dexamethasone (10, 100, or 500 nM) or cortisol (50, 125, 250, or 500 nM). PKC isoform levels and subcellular distribution were determined by immmunoblotting of whole cell homogenates and immunocytofluorescence using PKC-alpha, -betaII, -epsilon, -delta, and -zeta specific antibodies. Dexamethasone caused a approximately 4-fold increase in PKC-alpha, a approximately 2.5-fold increase in PKC-betaII, and a 2-fold increase in PKC-epsilon (p<0.05). In contrast, dexamethasone had no effect on PKC-delta or PKC- zeta levels. Dexamethasone also caused an increase in the activity of PKC-alpha (285%), -betaII (170%), and -epsilon (210%). Cortisol produced similar effects on PKC isoform expression. Confocal microscopy revealed that while dexamethasone altered localization patterns for PKC-alpha, -betaII and -epsilon, no such effect was observed for PKC-delta or PKC-zeta. The stimulatory effects of dexamethasone and cortisol on coronary PKC levels and translocation were prevented by the GC receptor (GR) blocker, RU486. These results demonstrate, for the first time, that GCs modulate coronary PKC expression and subcellular distribution in an isoform-specific manner through a GR-dependent mechanism.
Insights
Glucocorticoids (GCs) alter protein kinase C (PKC) expression and location in coronary arteries. These effects, mediated by the GC receptor (GR), are isoform-specific and may impact cardiovascular health.
Area of Science:
- Cardiovascular Physiology
- Molecular Pharmacology
- Endocrinology
Background:
- Glucocorticoids (GCs) are key stress hormones with widespread cellular effects.
- GCs are implicated in cardiovascular diseases like hypertension and atherosclerosis.
- Mechanisms of GC-induced signaling pathway activation remain unclear.
Purpose of the Study:
- To investigate the direct impact of cortisol and dexamethasone on protein kinase C (PKC) isoform expression in coronary arteries.
- To elucidate the role of the glucocorticoid receptor (GR) in mediating these effects.
Main Methods:
- Porcine coronary arteries were treated with cortisol or dexamethasone in vitro.
- PKC isoform levels and subcellular localization were analyzed using immunoblotting and immunofluorescence.
- The effect of the GR blocker RU486 was assessed.
Main Results:
- Dexamethasone and cortisol significantly increased PKC-alpha, -betaII, and -epsilon expression and activity.
- These GCs altered the subcellular distribution of PKC-alpha, -betaII, and -epsilon.
- Effects were prevented by RU486, confirming GR dependence.
- PKC-delta and -zeta levels and localization were unaffected.
Conclusions:
- GCs modulate coronary artery PKC expression and localization in an isoform-specific manner.
- These effects are mediated via the glucocorticoid receptor.
- Findings provide insights into GC-related cardiovascular pathology mechanisms.
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