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Originally published In Press as doi:10.1074/jbc.M303435200 on May 5, 2003
J. Biol. Chem., Vol. 278, Issue 29, 26946-26951, July 18, 2003
Short-term Stimulation of the Renal Na-K-Cl Cotransporter (NKCC2) by Vasopressin Involves Phosphorylation and Membrane Translocation of the Protein*
Ignacio Giménez and
Biff Forbush
From the
Department of Cellular and Molecular Physiology, Yale University School
of Medicine, New Haven, Connecticut 06520-8026
Na-K-Cl cotransporter (NKCC2)-mediated sodium chloride reabsorption in the
thick ascending limb is stimulated by the antidiuretic hormone vasopressin. We
investigate the mechanisms underlying the short term activation of NKCC2 by
vasopressin in vivo, finding that administration of a vasopressin
analogue (deamino-Cys-D-Arg vasopressin) causes a 2-fold increase
in mouse kidney NKCC2 phosphorylation, as detected with a phosphospecific
antibody, R5. The subtissue localization of the activation is defined by
immunofluorescence. In vasopressin-treated animals, a dramatic increase in R5
immunostaining is observed in the initial segment of the thick ascending limb
located in the inner stripe of the outer medulla, the region with a higher
sensitivity to vasopressin. Although a pool of NKCC2 is present in cytoplasmic
vesicles, the distribution of the phosphorylated cotransporter seems to be
restricted to the cell membrane compartment; morphometric analysis of electron
microscope images demonstrates a 55% increase in NKCC2 molecules at the apical
membrane, suggesting the administration of vasopressin induces trafficking of
the cotransporter. Thus, the short term actions of vasopressin on the thick
ascending limb cotransporter are mediated by both an effect on the
translocation of the protein and an increase in phosphorylation of regulatory
threonines in the amino terminus of NKCC2.
Received for publication, April 2, 2003
, and in revised form, May 1, 2003.
* This research was supported by National Institutes of Health Grant DK17433
and a fellowship from the National Kidney Foundation (to I.G.). The costs of
publication of this article were defrayed in part by the payment of page
charges. This article must therefore be hereby marked
"advertisement" in accordance with 18 U.S.C. Section 1734
solely to indicate this fact.
To whom correspondence should be addressed: 333 Cedar St., Bldg. SHM, Room
B146, New Haven, CT 06520. Tel.: 203-737-2586; Fax: 203-785-6834; E-mail:
ignacio.gimenez{at}yale.edu.

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Copyright © 2003 by the American Society for Biochemistry and Molecular Biology.
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