MODULATION OF VASOPRESSIN-ELICITED WATER TRANSPORT BY TRAFFICKING OF AQUAPORIN2-CONTAINING VESICLES

Author:

Ward Donald T.12,Hammond Timothy G.12,Harris H. William12

Affiliation:

1. Division of Nephrology, Children's Hospital, Harvard Medical School, Boston, Massachusetts 02115;

2. Renal Electrolyte Division and Veterans Administration Medical Center, Tulane University Medical Center, New Orleans, Louisiana 70118

Abstract

▪ Abstract  Vasopressin or AVP regulates water reabsorption by the kidney inner medullary collecting duct (IMCD) through the insertion and removal of aquaporin (AQP) 2 water channels into the IMCD apical membrane. AVP-elicited trafficking of AQP2 with the apical membrane occurs via a specialized population of vesicles that resemble synaptic vesicles in neurons. AQP2 vesicles and the IMCD apical membrane contain homologs of vesicle-targeting and signal transduction proteins found in neurons. Expression studies of AQP2, including human AQP2 mutants, suggest that the carboxyl-terminal domain of AQP2 is important in AQP2 trafficking, particularly as a site for cAMP-dependent protein kinase phosphorylation. These present data reveal that IMCD cells possess a complex integrated-signaling and vesicle-trafficking machinery that provides integration of AVP-elicited water transport with many other parameters within the IMCD cell as well as kidney.

Publisher

Annual Reviews

Subject

Physiology

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