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Assaying Protein Kinase Activity with Radiolabeled ATP
Published on: May 26, 2017
Src-family protein tyrosine kinase phosphorylates WNK4 and modulates its inhibitory effect on KCNJ1 (ROMK)
Dao-Hong Lin1, Peng Yue1, Orlando Yarborough2
1Department of Pharmacology, New York Medical College, Valhalla, NY 10595;
Abstract:
With-no-lysine kinase 4 (WNK4) inhibits the activity of the potassium channel KCNJ1 (ROMK) in the distal nephron, thereby contributing to the maintenance of potassium homeostasis. This effect is inhibited via phosphorylation at Ser1196 by serum/glucocorticoid-induced kinase 1 (SGK1), and this inhibition is attenuated by the Src-family protein tyrosine kinase (SFK). Using Western blot and mass spectrometry, we now identify three sites in WNK4 that are phosphorylated by c-Src: Tyr(1092), Tyr(1094), and Tyr(1143), and show that both c-Src and protein tyrosine phosphatase type 1D (PTP-1D) coimmunoprecipitate with WNK4. Mutation of Tyr(1092) or Tyr(1143) to phenylalanine decreased the association of c-Src or PTP-1D with WNK4, respectively. Moreover, the Tyr1092Phe mutation markedly reduced ROMK inhibition by WNK4; this inhibition was completely absent in the double mutant WNK4(Y1092/1094F). Similarly, c-Src prevented SGK1-induced phosphorylation of WNK4 at Ser(1196), an effect that was abrogated in the double mutant. WNK4(Y1143F) inhibited ROMK activity as potently as wild-type (WT) WNK4, but unlike WT, the inhibitory effect of WNK4(Y1143F) could not be reversed by SGK1. The failure to reverse WNK4(Y1143F)-induced inhibition of ROMK by SGK1 was possibly due to enhancing endogenous SFK effect on WNK4 by decreasing the WNK4-PTP-1D association because inhibition of SFK enabled SGK1 to reverse WNK4(Y1143F)-induced inhibition of ROMK. We conclude that WNK4 is a substrate of SFKs and that the association of c-Src and PTP-1D with WNK4 at Tyr(1092) and Tyr(1143) plays an important role in modulating the inhibitory effect of WNK4 on ROMK.
Insights
With-no-lysine kinase 4 (WNK4) regulates potassium channels, but its inhibition of ROMK is modulated by c-Src and PTP-1D. These interactions at specific WNK4 sites are crucial for controlling potassium homeostasis.
Area of Science:
- Nephrology
- Molecular Biology
- Biochemistry
Background:
- With-no-lysine kinase 4 (WNK4) is a key regulator of potassium homeostasis in the distal nephron, inhibiting the ROMK channel.
- Serum/glucocorticoid-induced kinase 1 (SGK1) phosphorylates WNK4 at Ser1196, reducing its inhibitory activity.
- Src-family kinases (SFKs) attenuate SGK1's effect on WNK4, but the precise mechanisms are unclear.
Purpose of the Study:
- To identify specific sites on WNK4 phosphorylated by c-Src.
- To investigate the role of c-Src and PTP-1D in modulating WNK4's inhibition of ROMK.
- To elucidate the interplay between WNK4, SGK1, SFKs, and PTP-1D in regulating potassium channel activity.
Main Methods:
- Western blot and mass spectrometry to identify WNK4 phosphorylation sites.
- Site-directed mutagenesis of WNK4 (Tyr to Phe substitutions).
- Coimmunoprecipitation assays to assess protein-protein interactions.
Main Results:
- c-Src phosphorylates WNK4 at Tyr(1092), Tyr(1094), and Tyr(1143).
- Mutations at Tyr(1092) and Tyr(1143) altered WNK4's interaction with c-Src and PTP-1D, and affected ROMK inhibition.
- c-Src prevented SGK1-induced WNK4 phosphorylation at Ser(1196), an effect dependent on WNK4 tyrosine residues.
Conclusions:
- WNK4 is a substrate of SFKs, with Tyr(1092) and Tyr(1143) being critical sites.
- The interaction of c-Src and PTP-1D with WNK4 modulates its inhibitory effect on ROMK.
- These findings reveal a novel regulatory pathway for potassium homeostasis involving WNK4 phosphorylation and protein interactions.
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