Regulation of Na-K-Cl cotransporter type 2 by the with no lysine kinase-dependent signaling pathway.

Am J Physiol Cell Physiol

Nephrology Research Group, L'Hôtel-Dieu de Québec Research Center, Department of Medicine, Faculty of Medicine, Laval University, Quebec City, Quebec , Canada.

Published: July 2019

AI Article Synopsis

  • NKCC2 is a specialized cotransporter found in the kidneys that plays a crucial role in reabsorbing sodium and chloride ions, and it exists in three main variants (NKCC2A, NKCC2B, NKCC2F) with slight differences in their structure.* -
  • This study uses an experimental system to show that cell shrinkage can enhance the activity of NKCC2A and NKCC2B by increasing their presence on the cell surface, a process that may involve WNK kinases.* -
  • In contrast, NKCC2F was less responsive to cell shrinkage, indicating that different NKCC2 variants have unique regulatory mechanisms, highlighting the importance of a specific domain in their function

Article Abstract

Na-K-Cl cotransporter type 2 (NKCC2) is confined to the apical membrane of the thick ascending limb of Henle, where it reabsorbs a substantial fraction of the ultrafiltered NaCl load. It is expressed along this nephron segment as three main splice variants (called NKCC2A, NKCC2B, and NKCC2F) that differ in residue composition along their second transmembrane domain and first intracellular cytosolic connecting segment (CS2). NKCC2 is known to be activated by cell shrinkage and intracellular [Cl] reduction. Although the with no lysine (WNK) kinases could play a role in this response, the mechanisms involved are ill defined, and the possibility of variant-specific responses has not been tested thus far. In this study, we have used the oocyte expression system to gain further insight in these regards. We have found for the first time that cell shrinkage could stimulate NKCC2A- and NKCC2B-mediated ion transport by increasing carrier abundance at the cell surface and that this response was achieved (at least in part) by the enzymatic function of a WNK kinase. Interestingly, we have also found that the activity and cell surface abundance of NKCC2F were less affected by cell shrinkage compared with the other variants and that ion transport by certain variants could be stimulated through WNK kinase expression in the absence of carrier redistribution. Taken together, these results suggest that the WNK kinase-dependent pathway can affect both the trafficking as well as intrinsic activity of NKCC2 and that CS2 plays an important role in carrier regulation.

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Source
http://dx.doi.org/10.1152/ajpcell.00041.2019DOI Listing

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