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      Molecular physiology of the WNK kinases.

      Annual review of physiology
      Animals, Blood Pressure, physiology, Homeostasis, Humans, Intracellular Signaling Peptides and Proteins, Protein-Serine-Threonine Kinases, genetics, metabolism, Water-Electrolyte Balance

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          Abstract

          Mutations in the serine-threonine kinases WNK1 and WNK4 cause a Mendelian disease featuring hypertension and hyperkalemia. In vitro and in vivo studies have revealed that these proteins are molecular switches that have discrete functional states that impart different effects on downstream ion channels, transporters, and the paracellular pathway. These effects enable the distal nephron to allow either maximal NaCl reabsorption or maximal K+ secretion in response to hypovolemia or hyperkalemia, respectively. The related kinase WNK3 has reciprocal actions on the primary mediators of cellular Cl(-) influx and efflux, effects that can serve to regulate cell volume during growth and in response to osmotic stress as well as to modulate neuronal responses to GABA. These findings define a versatile new family of kinases that coordinate the activities of diverse ion transport pathways to achieve and maintain fluid and electrolyte homeostasis.

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          Author and article information

          Journal
          17961084
          10.1146/annurev.physiol.70.113006.100651

          Chemistry
          Animals,Blood Pressure,physiology,Homeostasis,Humans,Intracellular Signaling Peptides and Proteins,Protein-Serine-Threonine Kinases,genetics,metabolism,Water-Electrolyte Balance

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