Very low osmotic water permeability and membrane fluidity in isolated toad bladder granules
- 1 September 1988
- journal article
- research article
- Published by Springer Nature in The Journal of Membrane Biology
- Vol. 104 (3) , 241-251
- https://doi.org/10.1007/bf01872326
Abstract
Osmotic water permeability of the apical membrane of toad urinary epithelium is increased greatly by vasopressin (VP) and is associated with exocytic addition of granules and aggrephores at the apical surface. To determine the physiological role of granule exocytosis, we measured the osmotic water permeability and membrane fluidity of isolated granules, surface membranes and microsomes prepared from toad bladder in the presence and absence of VP.P f was measured by stopped-flow light scattering and membrane fluidity was examined by diphenylhexatriene (DPH) fluorescence anisotropy. In response to a 75mm inward sucrose gradient, granule size decreased with a single exponential time constant of 2.3±0.1 sec (sem, seven preparations, 23°C), corresponding to aP f of 5×10−4 cm/sec; the activation energy (E a ) forP f was 17.6±0.8 kcal/mole. Under the same conditions, the volume of surface membrane vesicles decreased biexponentially with time constants of 0.13 and 1.9 sec; the fast component comprised ≈ 70% of the signal. Granule, surface membrane and microsome time constants were unaffected by VP. However, in surface membranes, there was a small decrease (6±2%) in the fraction of surface membranes with fast time constant. DPH anisotropies were 0.253 (granules), 0.224 (surface membrane fluidity is remarkably lower than that of surface and microsomal membranes, and (4) rapid water transport occurs in surface membrane vesicles. The unique physical properties of the granule suggests that apical exocytic addition of granule membrane may be responsible for the low water permeability of the unstimulated apical membrane.This publication has 50 references indexed in Scilit:
- Endosomes from kidney collecting tubule cells contain the vasopressin-sensitive water channelNature, 1988
- Evidence for water channels in renal proximal tubule cell membranesThe Journal of Membrane Biology, 1987
- Isolation and characterization of specialized regions of toad urinary bladder apical plasma membrane involved in the water permeability response to antidiuretic hormoneThe Journal of Membrane Biology, 1987
- Serial permeability barriers to water transport in human placental vesiclesThe Journal of Membrane Biology, 1986
- Osmotic water permeabilities of brush border and basolateral membrane vesicles from rat renal cortex and small intestineThe Journal of Membrane Biology, 1986
- Isolation and characterization of granules of the toad bladderThe Journal of Membrane Biology, 1986
- Osmotic water permeability of small intestinal brush-border membranesThe Journal of Membrane Biology, 1985
- Barriers to water flow in vasopressin-treated toad urinary bladderThe Journal of Membrane Biology, 1981
- Quantitative analysis of exocytosis and endocytosis in the hydroosmotic response of toad bladderThe Journal of Membrane Biology, 1980
- The cellular specificity of the effect of vasopressin on toad urinary bladderThe Journal of Membrane Biology, 1969