4.8 Article

Alternatively spliced praline-rich cassettes link WNK1 to aldosterone action

Journal

JOURNAL OF CLINICAL INVESTIGATION
Volume 125, Issue 9, Pages 3433-3448

Publisher

AMER SOC CLINICAL INVESTIGATION INC
DOI: 10.1172/JCI75245

Keywords

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Funding

  1. NIH [R01DK098145, R01DK84184, R01DK75048, R00DK78917, R01HL88120, P30DK79307]
  2. American Society of Nephrology Gottschalk Scholar grant
  3. Swiss National Science Foundation [310030_0141013]
  4. Swiss National Centre of Competence in Research Kidney Control of Homeostasis (NCCR Kidney.CH)
  5. U.S. Department of Veterans Affairs
  6. VA VISN4 Competitive Pilot Project Funds
  7. James A. Shaver Fund of the American Heart Association [10BGIA3890010]

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The thiazide-sensitive NaCl cotransporter (NCC) is important for renal salt handling and blood-pressure homeostasis. The canonical NCC-activating pathway consists of With-No-Lysine (WNK) kinases and their downstream effector kinases SPAK and OSR1, which phosphorylate NCC directly. The upstream mechanisms that connect physiological stimuli to this system remain obscure. Here, we have shown that aldosterone activates SPAK/OSR1 via WNk1. We identified 2 alternatively spliced exons embedded within a proline-rich region of WNK1 that contain PV motifs, which bind the E3 ubiquitin ligase NEDD4-2. PV motif-containing WNK1 isoforms were expressed in human kidney, and these isoforms were efficiently degraded by the ubiquitin proteasome system, an effect reversed by the aldosterone-induced kinase SGK1. In gene-edited cells, WNK1 deficiency negated regulatory effects of NEDD4-2 and SGK1 on NCC, suggesting that WNK1 mediates aldosterone-dependent activity of the WNK/SPAK/OSR1 pathway. Aldosterone infusion increased proline-rich WNK1 isoforrn abundance in WT mice but did not alter WNK1 abundance in hypertensive Nedd4-2 KO mice, which exhibit high baseline WNK1 and SPAK/OSR1 activity toward NCC. Conversely, hypotensive Sgk1 KO mice exhibited low WNK1 expression and activity. Together, our findings indicate that the proline-rich exons are modular cassettes that convert WNK1 into a NEDD4-2 substrate, thereby linking aldosterone and other NEDD4-2-suppressing antinatriuretic hormones to NCC phosphorylation status.

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