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This version published online on November 30, 2006
Endocrinology, doi:10.1210/en.2006-1277
A more recent version of this article appeared on March 1, 2007
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*Substance via MeSH

Submitted on September 18, 2006
Accepted on November 22, 2006

Hypotonicity induces Aquaporin-2 internalization and cytosol-to-membrane translocation of ICln in renal cells

Grazia Tamma, Giuseppe Procino, Agnese Strafino, Elena Bonomi, Giuliano Meyer, Markus Paulmichl, Vincenzo Formoso, Maria Svelto, and Giovanna Valenti*

Department of General and Environmental Physiology, University of Bari, Italy; Department of Biomolecular Science and Biotechnology, University of Milan, Italy; Department of Physiology and medical Physics, Medical University of Innsbruck, Austria; Department of Physics and Laboratorio Regionale LICRYL, INFM-CNR, University of Calabria, Italy

* To whom correspondence should be addressed. E-mail: markus.paulmichl{at}unimi.it.

Kidney collecting-duct cells swell in response to changes in medulla osmolality caused by the transition from antidiuresis to diuresis. Regulatory volume decrease (RVD) mechanisms must be activated to face this hypotonic stress. In AQP2-expressing renal CD8 cells, hypotonicity decreased cell surface expression of AQP2 and increased the amount of AQP2 localized intracellularly, while the total amount of AQP2 phosphorylated at ser-256 decreased. Analysis of cAMP dynamics using fluorescence resonance energy transfer (FRET), showed that hypotonicity causes a reduction of cAMP, consistent with a decrease in phospho-AQP2. Moreover, hypotonicity caused a profound actin reorganization, associated with the loss of stress fibers and formation of F-actin patches (microspikes) at the cell border. Those changes were regulated by the monomeric GTPase Cdc42. Interestingly, expression of the dominant negative Cdc42 (N17-Cdc42) prevented the hypotonicity-induced microspike formation and the generation of Cl- currents. Hypotonicity also caused the relocation from the cytosol to the plasma membrane and increase in interaction with actin of ICln (I current; Cl chloride; n nucleotide sensitive), a protein essential for the generation of ion currents activated during RVD. Together, the profound actin remodelling, internalization of AQP2 and translocation of ICln to the plasma membrane during hypotonicity may contribute to RVD after cell swelling in renal medulla.


Key words: Aquaporin • ICln • Actin • Osmoregulation • Cdc42 • RVD




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G. Procino, C. Barbieri, G. Tamma, L. De Benedictis, J. E. Pessin, M. Svelto, and G. Valenti
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[Abstract] [Full Text] [PDF]




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