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      With no lysine L-WNK1 isoforms are negative regulators of the K +-Cl cotransporters

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          Abstract

          The K +-Cl cotransporters (KCC1-KCC4) encompass a branch of the SLC12 family of electroneutral cation-coupled chloride cotransporters that translocate ions out of the cell to regulate various factors, including cell volume and intracellular chloride concentration, among others. L-WNK1 is an ubiquitously expressed kinase that is activated in response to osmotic stress and intracellular chloride depletion, and it is implicated in two distinct hereditary syndromes: the renal disease pseudohypoaldosteronism type II (PHAII) and the neurological disease hereditary sensory neuropathy 2 (HSN2). The effect of L-WNK1 on KCC activity is unknown. Using Xenopus laevis oocytes and HEK-293 cells, we show that the activation of KCCs by cell swelling was prevented by L-WNK1 coexpression. In contrast, the activity of the Na +-K +-2Cl cotransporter NKCC1 was remarkably increased with L-WNK1 coexpression. The negative effect of L-WNK1 on the KCCs is kinase dependent. Elimination of the STE20 proline-alanine rich kinase (SPAK)/oxidative stress-responsive kinase (OSR1) binding site or the HQ motif required for the WNK-WNK interaction prevented the effect of L-WNK1 on KCCs, suggesting a required interaction between L-WNK1 molecules and SPAK. Together, our data support that NKCC1 and KCCs are coordinately regulated by L-WNK1 isoforms.

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          Author and article information

          Journal
          Am J Physiol Cell Physiol
          Am. J. Physiol., Cell Physiol
          ajpcell
          ajpcell
          AJPCELL
          American Journal of Physiology - Cell Physiology
          American Physiological Society (Bethesda, MD )
          0363-6143
          1522-1563
          11 May 2016
          1 July 2016
          1 July 2017
          : 311
          : 1
          : C54-C66
          Affiliations
          [1] 1Department of Nephrology, Instituto Nacional de Cardiología Ignacio Chávez, Tlalpan, Mexico City, Mexico;
          [2] 2División de Investigación, Facultad de Medicina, Universidad Nacional Autónoma de México, Coyoacán, Mexico City, Mexico;
          [3] 3Molecular Physiology Unit, Instituto de Investigaciones Biomédicas, Universidad Nacional Autónoma de México, Tlalpan, Mexico City, Mexico;
          [4] 4Department of Nephrology and Mineral Metabolism, Instituto Nacional de Ciencias Médicas y Nutrición Salvador Zubirán. Tlalpan, Mexico City, Mexico;
          [5] 5INSERM UMR970-Paris Cardiovascular Research Center, Paris, France; and
          [6] 6University Paris-Descartes, Sorbonne Paris Cité, Faculty of Medicine, Paris, France
          Author notes
          Address for reprint requests and other correspondence: G. Gamba, Nephrology Dept., Vasco de Quiorga No. 15, Tlalpan 14080, Mexico City, Mexico (e-mail: gamba@ 123456biomedicas.unam.mx ).
          Article
          PMC4967140 PMC4967140 4967140 C-00193-2015
          10.1152/ajpcell.00193.2015
          4967140
          27170636
          0cb0ca1e-008f-471b-bc9d-a92320952fd9
          Copyright © 2016 the American Physiological Society
          History
          : 30 June 2015
          : 2 May 2016
          Funding
          Funded by: 501100003141 Consejo Nacional de Ciencia y Tecnología (National Council of Science and Technology, Mexico)
          Award ID: 132503
          Award ID: 222928
          Award ID: 188712
          Award ID: 165815
          Award ID: 188712
          Funded by: 501100001665 Agence Nationale de la Recherche (L' Agence Nationale de la Recherche)
          Award ID: ANR-12-ISVS1-0001-01
          Categories
          Articles

          HEK-293 cells,SPAK,WNK4, Xenopus oocytes
          HEK-293 cells, SPAK, WNK4, Xenopus oocytes

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