Literature DB >> 5544799

The kinetics of sodium transport in the toad bladder. II. Dual effects of vasopressin.

A L Finn.   

Abstract

In the accompanying paper, a compartmental model for the toad bladder sodium transport system was developed. In the present paper, the model is tested by determining the effects of antidiuretic hormone on the pools and fluxes. It is shown that this hormone affects only that sodium pool previously designated as the transport pool, and that the effects are on two separate sites. In the first place, the hormone stimulates entry at the mucosal side of the transport compartment, and by this means brings about an increase in the amount of sodium contained in the compartment. Second, the hormone has a distinct stimulatory effect on the rate coefficient for efflux across the serosal boundary, the pump rate coefficient. Evidence is presented that under control conditions, the pump rate coefficient is a decreasing function of the pool size, a characteristic feature of a saturating system. Therefore, the effect of vasopressin in increasing both the pool size and the pump rate coefficient must be construed as a direct effect on the pump, and not one which is secondary to the increase in the pool size. Furthermore, it is shown that the effect of the hormone on the sodium pump is not dependent on the presence of sodium in the serosal medium.

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Year:  1971        PMID: 5544799      PMCID: PMC2203099          DOI: 10.1085/jgp.57.3.349

Source DB:  PubMed          Journal:  J Gen Physiol        ISSN: 0022-1295            Impact factor:   4.086


  17 in total

1.  EFFLUX OF SODIUM FROM ISOLATED TOAD BLADDER.

Authors:  H S FRAZIER; E I HAMMER
Journal:  Am J Physiol       Date:  1963-10

2.  Some effects of mammalian neurohypophyseal hormones on metabolism and active transport of sodium by the isolated toad bladder.

Authors:  A LEAF; E DEMPSEY
Journal:  J Biol Chem       Date:  1960-07       Impact factor: 5.157

3.  The contributions of diffusion and flow to the passage of D2O through living membranes; effect of neurohypophyseal hormone on isolated anuran skin.

Authors:  V KOEFOED-JOHNSEN; H H USSING
Journal:  Acta Physiol Scand       Date:  1953-03-31

4.  Active transport of sodium as the source of electric current in the short-circuited isolated frog skin.

Authors:  H H USSING; K ZERAHN
Journal:  Acta Physiol Scand       Date:  1951-08-25

5.  Effects of potassium and amphotericin B on ion transport in the toad bladder.

Authors:  A L Finn
Journal:  Am J Physiol       Date:  1970-02

6.  Effect of vasopressin on toad bladder under conditions of zero net sodium transport.

Authors:  M M Civan; O Kedem; A Leaf
Journal:  Am J Physiol       Date:  1966-09

7.  The electrical potential profile of the isolated toad bladder.

Authors:  H S FRAZIER
Journal:  J Gen Physiol       Date:  1962-01       Impact factor: 4.086

8.  Active sodium transport by the isolated toad bladder.

Authors:  A LEAF; J ANDERSON; L B PAGE
Journal:  J Gen Physiol       Date:  1958-03-20       Impact factor: 4.086

9.  Movement of sodium across the mucosal surface of the isolated toad bladder and its modification by vasopressin.

Authors:  H S FRAZIER; E F DEMPSEY; A LEAF
Journal:  J Gen Physiol       Date:  1962-01       Impact factor: 4.086

10.  Studies on the movement of water through the isolated toad bladder and its modification by vasopressin.

Authors:  R M HAYS; A LEAF
Journal:  J Gen Physiol       Date:  1962-05       Impact factor: 4.086

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  15 in total

1.  Isolation of radio-iodinated apical and basal-lateral plasma membranes of toad bladder epithelium.

Authors:  H J Rodriguez; I S Edelman
Journal:  J Membr Biol       Date:  1979-04-09       Impact factor: 1.843

2.  Regulation of protein phosphorylation and sodium transport in toad bladder.

Authors:  K G Walton; R J DeLorenzo; P F Curran; P Greengard
Journal:  J Gen Physiol       Date:  1975-02       Impact factor: 4.086

3.  Sodium pump stimulation by oxytocin and cyclic AMP in the isolated epithelium of the frog skin.

Authors:  J Aceves
Journal:  Pflugers Arch       Date:  1977-11-23       Impact factor: 3.657

4.  Effect of oxytocin on transepithelial transport of water and Na+ in distinct ventral regions of frog skin (Rana catesbeiana).

Authors:  L H Bevevino; J Procopio; A Sesso; S M Sanioto
Journal:  J Comp Physiol B       Date:  1996       Impact factor: 2.200

5.  Amiloride and the sodium channel.

Authors:  A W Cuthbert; W K Shum
Journal:  Naunyn Schmiedebergs Arch Pharmacol       Date:  1974       Impact factor: 3.000

6.  Effects of changes in the composition of the serosal solution on the electrical properties of the toad urinary bladder epithelium.

Authors:  A L Finn; L Reuss
Journal:  J Physiol       Date:  1975-09       Impact factor: 5.182

7.  Effects of changes in the composition of the mucosal solution on the electrical properties of the toad urinary bladder epithelium.

Authors:  L Reuss; A L Finn
Journal:  J Membr Biol       Date:  1975       Impact factor: 1.843

8.  The kinetics and distribution of potassium in the toad bladder.

Authors:  A L Finn; H Nellans
Journal:  J Membr Biol       Date:  1972       Impact factor: 1.843

9.  Pathways for movement of ions and water across toad urinary bladder. II. Site and mode of action of vasopressin.

Authors:  M M Civan; D DiBona
Journal:  J Membr Biol       Date:  1974       Impact factor: 1.843

10.  Resolution of parameters in the equivalent electrical circuit of the sodium transport mechanism across toad skin.

Authors:  L C Isaacson
Journal:  J Membr Biol       Date:  1977-01-28       Impact factor: 1.843

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