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Water, proton, and urea transport in toad bladder endosomes that contain the vasopressin-sensitive water channel.

Data up to Jan 2025

Published1990
Citations36
References36

Total Citations Per Year

Abstract

References (36)

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Endosomes from kidney collecting tubule cells contain the vasopressin-sensitive water channel

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Correlation between water flow and intramembrane particle aggregates in toad epidermis

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FITC-dextran as a probe for endosome function and localization in kidney

1990 • 112 citations

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Membrane water and solute permeability determined quantitatively by self-quenching of an entrapped fluorophore

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Apical membrane endocytosis via coated pits is stimulated by removal of antidiuretic hormone from isolated, perfused rabbit cortical collecting tubule

1988 • 81 citations

Antidiuretic hormone moves membranes

1988 • 74 citations

Vasopressin stimulates endocytosis in kidney collecting duct principal cells.

1988 • 71 citations

Use of weak acids to determine the bulk diffusion limitation of H+ ion conductance through the gramicidin channel

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Transepithelial water flow regulates apical membrane retrieval in antidiuretic hormone-stimulated toad urinary bladder.

1986 • 52 citations

Vasopressin increases water permeability by inducing pores

1980 • 52 citations

The role of membrane turnover in the water permeability response to antidiuretic hormone

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Independence of urea and water transport in rat inner medullary collecting duct

1989 • 44 citations

Very high water permeability in vasopressin-induced endocytic vesicles from toad urinary bladder.

1989 • 43 citations

Functional colocalization of water channels and proton pumps in endosomes from kidney proximal tubule.

1989 • 39 citations

Membrane pathways for water and solutes in the toad bladder: I. Independent activation of water and urea transport

1979 • 39 citations

Effect of an osmotic gradient on antidiuretic hormone-induced endocytosis and hydroosmosis in the toad urinary bladder

1984 • 31 citations

Passive H+/OH− permeability in epithelial brush border membranes

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Anomalous driving force for renal brush border proton/hydroxide transport characterized by using 6-carboxyfluorescein

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Variability of cellular responsiveness to ADH stimulation in toad urinary bladder

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Water, proton, and urea transport in toad bladder endosomes that contain the… (1990) – The Journal of General Physiology | Metascience Observatory Explorer