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| Title: | CNNM2, encoding a basolateral protein required for renal Mg2+ handling, is mutated in dominant hypomagnesemia |
| Author(s): | Stuiver, M. Lainez, S. Will, C. Terryn, S. Gunzel, D. Debaix, H. Sommer, K. Kopplin, K. Thumfart, J. Kampik, N.B. Querfeld, U. Willnow, T.E. Nemec, V. Wagner, C.A. Hoenderop, J.G.J. (195017544) Devuyst, O. Knoers, N.V.A.M. (298974460) Bindels, R.J.M. (07205378X) Meij, I.C. Muller, D. |
| Publication year: | 2011 |
| Document type: | Article / Letter to editor |
| Journal: | American Journal of Human Genetics |
| ISSN: | 0002-9297 |
| Volume: | vol. 88 |
| Issue: | iss. 3 |
| Start page: | p. 333 |
| End page: | p. 343 |
| Annotation: | Stuiver, Marchel Lainez, Sergio Will, Constanze Terryn, Sara Gunzel, Dorothee Debaix, Huguette Sommer, Kerstin Kopplin, Kathrin Thumfart, Julia Kampik, Nicole B Querfeld, Uwe Willnow, Thomas E Nemec, Vladimir Wagner, Carsten A Hoenderop, Joost G Devuyst, Olivier Knoers, Nine V A M Bindels, Rene J Meij, Iwan C Muller, Dominik Research Support, Non-U.S. Gov't United States Am J Hum Genet. 2011 Mar 11;88(3):333-43. |
| Abstract: | Familial hypomagnesemia is a rare human disorder caused by renal or intestinal magnesium (Mg(2+)) wasting, which may lead to symptoms of Mg(2+) depletion such as tetany, seizures, and cardiac arrhythmias. Our knowledge of the physiology of Mg(2+) (re)absorption, particularly the luminal uptake of Mg(2+) along the nephron, has benefitted from positional cloning approaches in families with Mg(2+) reabsorption disorders; however, basolateral Mg(2+) transport and its regulation are still poorly understood. Here, by using a candidate screening approach, we identified CNNM2 as a gene involved in renal Mg(2+) handling in patients of two unrelated families with unexplained dominant hypomagnesemia. In the kidney, CNNM2 was predominantly found along the basolateral membrane of distal tubular segments involved in Mg(2+) reabsorption. The basolateral localization of endogenous and recombinant CNNM2 was confirmed in epithelial kidney cell lines. Electrophysiological analysis showed that CNNM2 mediated Mg(2+)-sensitive Na(+) currents that were significantly diminished in mutant protein and were blocked by increased extracellular Mg(2+) concentrations. Our data support the findings of a recent genome-wide association study showing the CNNM2 locus to be associated with serum Mg(2+) concentrations. The mutations found in CNNM2, its observed sensitivity to extracellular Mg(2+), and its basolateral localization signify a critical role for CNNM2 in epithelial Mg(2+) transport. |
| Subject: | NCMLS 2B: Membrane transport and intracellular motility
IGMD 9: Renal disorder NCMLS 3A: Genetics and epigenetic pathways of disease
IGMD 9: Renal disorder |
| Organization: | Cell Physiology Physiology UMCN Extern Human Genetics Paediatrics |
| Appears in Collections: | Academic bibliography
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Please use this identifier to cite or link to this item:
http://hdl.handle.net/2066/96685
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