Related Experiment Videos
Ouabain binding in rectal gland of Squalus acanthias
Abstract:
In an attempt to examine the mechanisms of activation of (Na, K)-ATPase when epithelial transport is stimulated, the binding of ouabain to rectal gland tissue was measured before and after stimulation with dibutyryl cAMP and theophylline. Stimulation significantly altered the characteristics of ouabain binding to slices of Squalus acanthias rectal gland and to isolated rectal gland cells, accelerating the rate of binding and increasing the amount of ouabain bound at equilibrium when low concentrations of ouabain (10(-9) to 10(-7) M) were present in the medium. Scatchard plots of ouabain binding were nonlinear, suggesting at least two classes of binding sites, one of higher and one of lower affinity. Stimulation with cAMP and theophylline appeared to increase the affinity of the high-affinity site. Ouabain binding was increased by cAMP and theophylline even in the presence of furosemide (10(-4) M) or bumetanide (10(-5) M), and when Li+ was substituted for Na+, or NO3- for Cl- -maneuvers known to inhibit rectal gland secretion. The changes in ouabain binding induced by cAMP and theophylline do not appear, therefore, to be secondary to secretory activity but may reflect a change in the configuration, environment or location of existing enzyme so as to enhance its activity. Stimulation of ouabain binding cannot be demonstrated in whole homogenates of rectal gland, indicating that intact cells are necessary for the cyclic AMP-induced increase in ouabain binding to become manifest.
Insights
Stimulating epithelial transport with cAMP and theophylline enhances ouabain binding to rectal gland cells. This suggests enzyme activation, not just increased secretion, is key for (Na, K)-ATPase function.
Area of Science:
- Cellular Physiology
- Ion Transport Mechanisms
- Biochemistry
Background:
- The sodium-potassium pump (Na, K)-ATPase is crucial for epithelial transport.
- Understanding its activation mechanisms during stimulated transport is essential.
Purpose of the Study:
- To investigate how epithelial transport stimulation affects (Na, K)-ATPase activation.
- To determine if changes in ouabain binding reflect enzyme activity alterations.
Main Methods:
- Measured ouabain binding to Squalus acanthias rectal gland tissue and isolated cells.
- Stimulated cells using dibutyryl cAMP and theophylline.
- Analyzed binding kinetics and affinity using Scatchard plots.
Main Results:
- Stimulation accelerated ouabain binding rates and increased equilibrium binding.
- Scatchard analysis revealed nonlinear binding, indicating multiple affinity sites.
- cAMP and theophylline increased the affinity of high-affinity binding sites.
- These effects persisted despite inhibitors of secretion and ion substitutions.
- Stimulation of ouabain binding was only observed in intact cells, not homogenates.
Conclusions:
- cAMP and theophylline-induced changes in ouabain binding are not secondary to secretion.
- These changes likely reflect alterations in the enzyme's configuration, environment, or location, enhancing activity.
- Intact cellular structures are necessary for observing the functional impact of cyclic AMP on (Na, K)-ATPase binding.