Abstract
The initial response of renal epithelial cells to the antidiuretic hormone arginine vasopressin (AVP) is an increase in cyclic AMP. By applying immunofluorescence, cell membrane capacitance and transepithelial water flux measurements we show that cAMP alone is sufficient to elicit the antidiuretic cellular response in primary cultured epithelial cells from renal inner medulla, namely the transport of aquaporin-2 (AQP2)-bearing vesicles to, and their subsequent fusion with, the plasma membrane (AQP2 shuttle). The AQP2 shuttle is evoked neither by AVP-independent Ca(2+) increases nor by AVP-induced Ca(2+) increases. However, clamping cytosolic Ca(2+) concentrations below resting levels at 25 nM inhibited exocytosis. Exocytosis was confined to a slow monophasic response, and readily releasable vesicles were missing. Analysis of endocytic capacitance steps revealed that cAMP does not decelerate the retrieval of AQP2 from the plasma membrane. Our data suggest that cAMP initiates an early step, namely the transport of AQP2-bearing vesicles towards the plasma membrane, and do not support a regulatory function for Ca(2+) in the AQP2 shuttle.
MeSH Terms
Animals
Aquaporin 2
Aquaporin 6
Aquaporins/metabolism
Arginine Vasopressin/pharmacology
Calcium/physiology
Calcium Signaling
Cell Line/drug effects
Cyclic AMP/pharmacology,physiology
Endocytosis/drug effects
Epithelial Cells/drug effects,metabolism
Exocytosis/drug effects,physiology
Immunohistochemistry
Kidney Medulla/cytology,metabolism
Kidney Tubules, Collecting/cytology,metabolism
Photolysis
Protein Transport
Rats
Second Messenger Systems/physiology
Chemicals
Aqp2 protein, rat
Aquaporin 2
Aquaporin 6
Aquaporins
Arginine Vasopressin
Cyclic AMP
Calcium
Authors & Affiliations
7 authors, click to expand affiliations / ORCID
Lorenz Dorothea
Forschungsinstitut für Molekulare Pharmakologie, Robert-Rössle-Strasse 10, D-13125 Berlin, Germany.
Krylov Andrey
Hahm Daniel
Hagen Volker
Rosenthal Walter
Pohl Peter
Maric Kenan
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