Mercurial reagents inhibit flow through ADH-induced water channels in toad bladder
- 1 May 1989
- journal article
- research article
- Published by American Physiological Society in American Journal of Physiology-Renal Physiology
- Vol. 256 (5) , F948-F953
- https://doi.org/10.1152/ajprenal.1989.256.5.f948
Abstract
Mercurial reagents inhibit the water permeability of erythrocytes and proximal renal tubule. We examined the effect of two such agents on vasopressin-induced water transport across toad urinary bladder. Water flows were measured in unfixed tissues and in tissues fixed either with N-ethylmaleimide (NEM) or with glutaraldehyde. When added concurrently with 20 mU/ml vasopressin, 1 mM mucosal p-chloromercuribenzene-sulfonic acid (p-CMBS) inhibited water flow within 1 h. p-CMBS also inhibited flow in tissues that had been fixed with mucosal NEM after stimulation with vasopressin. However, p-CMBS did not affect flow in glutaraldehyde-fixed tissues. In contrast, HgCl2 inhibited water flow and urea permeability even in tissues that had been fixed with glutaraldehyde after stimulation with vasopressin. Inhibition was more pronounced when HgCl2 was added to the mucosal rather than the serosal bathing medium and was not reversed by dithiothreitol. HgCl2 did not diminish the frequency or area of luminal membrane aggregates observed by freeze-fracture electron microscopy. HgCl2 also did not affect amphotericin-induced water permeability in glutaraldehyde-treated tissues, suggesting that it did not diminish the permeability of cellular barriers to flow. Our results parallel closely those reported by other investigators for water flow across erythrocytes and proximal renal tubule and suggest that mercurial reagents can directly block the vasopressin-induced water channel. The water channel at the apical membrane of the toad bladder may prove to share structural similarity with that constantly present in erythrocytes and proximal renal tubule.This publication has 17 references indexed in Scilit:
- Glutaraldehyde fixation preserves the permeability properties of the ADH-induced water channelsThe Journal of Membrane Biology, 1985
- Inhibition of vasopressin-stimulated water flow in toad bladder by phorbol myristate acetate, dioctanoylglycerol, and RHC-80267. Evidence for modulation of action of vasopressin by protein kinase C.Journal of Clinical Investigation, 1985
- Effect of para-chloromercuribenzenesulfonic acid and temperature on cell water osmotic permeability of proximal straight tubulesBiochimica et Biophysica Acta (BBA) - Biomembranes, 1984
- The water permeability of toad urinary bladder. I. Permeability of barriers in series with the luminal membrane.The Journal of general physiology, 1984
- The water permeability of toad urinary bladder. II. The value of Pf/Pd(w) for the antidiuretic hormone-induced water permeation pathway.The Journal of general physiology, 1984
- Effect of glutaraldehyde on hydrosmotic response of toad bladder to vasopressinAmerican Journal of Physiology-Cell Physiology, 1983
- Retention of antidiuretic hormone-induced particle aggregates by luminal membranes separated from toad bladder epithelial cells.The Journal of cell biology, 1982
- Fine structure of intramembranous particle aggregates in ADH-treated frog urinary bladder and skin: Influence of glutaraldehyde and N-ethyl maleimideCell and tissue research, 1981
- Effects of trifluoperazine on function and structure of toad urinary bladder. Role of calmodulin vasopressin-stimulation of water permeability.Journal of Clinical Investigation, 1981
- Membrane associated particles: Distribution in frog urinary bladder epithelium at rest and after oxytocin treatmentCell and tissue research, 1974