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Double the keys, double the control: coupled phosphorylation sites provide novel molecular targets for precise control of ion channel function. Focus on “Differential regulation of a CLC anion channel by SPAK kinase ortholog-mediated multisite phosphorylation”

Double the keys, double the control: coupled phosphorylation sites provide novel molecular... GRANTS G. Wang is supported by American Heart Association (AHA) Grant 10SDG4120011. D. AUTHOR CONTRIBUTIONS D.D.D. and G.W. prepared the figure; D.D.D. and G.W. drafted the manuscript; D.D.D. edited and revised the manuscript; D.D.D. and G.W. approved the final version of the manuscript. Copyright © 2012 the American Physiological Society Previous Section http://www.deepdyve.com/assets/images/DeepDyve-Logo-lg.png AJP - Cell Physiology The American Physiological Society

Double the keys, double the control: coupled phosphorylation sites provide novel molecular targets for precise control of ion channel function. Focus on “Differential regulation of a CLC anion channel by SPAK kinase ortholog-mediated multisite phosphorylation”

AJP - Cell Physiology , Volume 302 (12): C1699 – Jun 15, 2012

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Publisher
The American Physiological Society
Copyright
Copyright © 2012 the American Physiological Society
ISSN
0363-6143
eISSN
1522-1563
DOI
10.1152/ajpcell.00107.2012
pmid
22496246
Publisher site
See Article on Publisher Site

Abstract

GRANTS G. Wang is supported by American Heart Association (AHA) Grant 10SDG4120011. D. AUTHOR CONTRIBUTIONS D.D.D. and G.W. prepared the figure; D.D.D. and G.W. drafted the manuscript; D.D.D. edited and revised the manuscript; D.D.D. and G.W. approved the final version of the manuscript. Copyright © 2012 the American Physiological Society Previous Section

Journal

AJP - Cell PhysiologyThe American Physiological Society

Published: Jun 15, 2012

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