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Am J Physiol Renal Physiol 293: F212-F218, 2007. First published April 4, 2007; doi:10.1152/ajprenal.00042.2007
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NHE3 phosphorylation at serines 552 and 605 does not directly affect NHE3 activity

Hetal S. Kocinsky,1 Diane W. Dynia,1 Tong Wang,2 and Peter S. Aronson2,3

Departments of 1Pediatrics, 2Cellular and Molecular Physiology, and 3Internal Medicine, Yale University School of Medicine, New Haven, Connecticut

Submitted 24 January 2007 ; accepted in final form 29 March 2007

Direct phosphorylation of sodium hydrogen exchanger type 3 (NHE3) is a well-established physiological phenomenon; however, the exact role of NHE3 phosphorylation in its regulation remains unclear. The objective of this study was to evaluate whether NHE3 phosphorylation at serines 552 and 605 is physiologically regulated in vivo and, if so, whether changes in phosphorylation at these sites are tightly coupled to changes in transport activity. To this end, we directly compared PKA-induced NHE3 inhibition with site-specific changes in NHE3 phosphorylation in vivo and in vitro. In vivo, PKA was activated using an intravenous infusion of parathyroid hormone in Sprague-Dawley rats. In vitro, PKA was activated directly in opossum kidney (OKP) cells using forskolin and IBMX. NHE3 activity was assayed in microvillar membrane vesicles in the rat model and by 22Na uptake in the OKP cell model. In both cases, NHE3 phosphorylation at serines 552 and 605 was determined using previously characterized monoclonal phosphospecific antibodies directed to these sites. In vivo, we found dramatic changes in NHE3 phosphorylation at serines 552 and 605 with PKA activation but no corresponding alteration in NHE3 activity. This dissociation between NHE3 phosphorylation and activity was further verified in OKP cells in which phosphorylation clearly preceded transport inhibition. We conclude that although phosphorylation of NHE3 at serines 552 and 605 is regulated by PKA both in vivo and in vitro, phosphorylation of these sites does not directly alter Na+/H+ exchange activity.

proximal tubule; microvilli; protein kinase A; parathyroid hormone



Address for reprint requests and other correspondence: H. Kocinsky, Dept. of Pediatrics, 333 Cedar St., LMP 3105, P.O. Box 208064, New Haven, CT 06520-8064 (e-mail: hetal.kocinsky{at}yale.edu)




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Am. J. Physiol. Renal Physiol.Home page
L. E. Yang, M. B. Sandberg, A. D. Can, K. Pihakaski-Maunsbach, and A. A. McDonough
Effects of dietary salt on renal Na+ transporter subcellular distribution, abundance, and phosphorylation status
Am J Physiol Renal Physiol, October 1, 2008; 295(4): F1003 - F1016.
[Abstract] [Full Text] [PDF]




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