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Analytical Techniques for Assaying Nitric Oxide Bioactivity
Published on: June 18, 2012
Effect of hypercholesterolemia and of oxidative stress on the nitric oxide-cGMP pathway
Michèle Francois1, Georg Kojda
1Institut für Pharmakologie und Klinische Pharmakologie, Heinrich-Heine-Universität, Moorenstr. 5, 40225 Düsseldorf, Germany.
Insights
Oxidative stress in hypercholesterolemia impairs vascular Soluble Guanylyl Cyclase (sGC) function, leading to endothelial dysfunction. This dysfunction involves reversible sGC overexpression, but platelet sGC activity remains unaffected.
Area of Science:
- Cardiovascular Research
- Biochemistry
- Pathophysiology
Background:
- Soluble guanylyl cyclase (sGC) mediates vasoprotective effects via the NO-cGMP pathway.
- Endothelial dysfunction in hypercholesterolemia and atherosclerosis impairs these protective functions.
- Increased vascular reactive oxygen species (ROS), like superoxide and peroxynitrite, contribute to endothelial dysfunction.
Purpose of the Study:
- To investigate the impact of superoxide and peroxynitrite on sGC expression and function.
- To determine if these oxidative stress mechanisms are involved in hypercholesterolemia-induced atherosclerosis.
Main Methods:
- Experiments with isolated rat aortic rings exposed to extracellular superoxide and peroxynitrite.
- Administration of intracellular superoxide using LY85385.
- Studies in cholesterol-fed White New Zealand rabbits with induced atherosclerosis.
- Assessment of sGC activity, expression, and vasodilator responses.
Main Results:
- Extracellular superoxide did not affect sGC expression or function.
- Extracellular peroxynitrite reduced sGC activity in rat aortic rings.
- Intracellular superoxide inhibited sGC activity and increased its expression.
- Cholesterol-fed rabbits showed a 3.5-fold sGC upregulation, with impaired basal and NO-stimulated activities and reduced vasodilator potency.
- Overexpressed sGC was found in intimal lesions, while platelet sGC activity and anti-aggregatory effects were unchanged.
Conclusions:
- Endothelial dysfunction in hypercholesterolemia is linked to oxidative stress-dependent, reversible overexpression of dysfunctional vascular sGC.
- Platelet sGC activity is likely not involved in hypercholesterolemia-induced platelet hyperreactivity.
Abstract:
Soluble guanylyl cyclase (sGC) is a key enzyme of the NO-cGMP pathway which is believed to mediate vasoprotective actions. In cardiovascular diseases such as hypercholesterolemia and atherosclerosis, these important functions of the vascular endothelium are strongly impaired. One of the major reasons for this so-called endothelial dysfunction is the increased vascular generation of reactive oxygen species such as superoxide and peroxynitrite. We aimed to investigate whether superoxide and peroxynitrite impacts on the expression and function of sGC and if such a mechanism occurs in a hypercholestemia-induced atherosclerosis. Our experiments with isolated rat aortic rings showed that extracellular superoxide has no effect on expression and function of sGC, while subjection of these rings to continuously generated extracellular peroxynitrite reduced sGC activity. Furthermore, intracellular superoxide as generated by LY85385 almost completely inhibited sGC-activity and increased its expression. In the cholesterol-fed White New Zealand rabbit, we found a 3.5-fold upregulation of sGC, while basal and NO-stimulated sGC-activities were only slightly enhanced and the vasodilator potency of SNAP was decreased by 10-fold. A great portion of the overexpressed dysfunctional sGC is located in intimal lesions. Finally, platelet sGC-activity and the anti-aggregatory effect of SNAP were not changed. These data suggest that endothelial dysfunction in hypercholesterolemia is associated with an oxidative stress-dependent and reversible overexpression of a dysfunctional vascular sGC, while inhibition of platelet sGC-activity is most likely not involved in hypercholesterolemia-induced platelet hyperreactivity.
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