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K depletion increases protein tyrosine kinase-mediated phosphorylation of ROMK

  • Dao Hong Lin
  • , Hyacinth Sterling
  • , Kenneth M. Lerea
  • , Paul Welling
  • , Lianhong Jin
  • , Gerhard Giebisch
  • , Wen Hui Wang

Research output: Contribution to journalArticlepeer-review

49 Scopus citations

Abstract

We purified Histagged ROMK1 and carried out in vitro phosphorylation assays with 32P-radiolabeled ATP to determine whether ROMK1 protein is a substrate for PTK. Addition of active c-Src and [32P]ATP to the purified ROMK1 protein resulted in the phosphorylation of the ROMK1 protein. However, c-Src did not phosphorylate R1Y337A in which tyrosine residue 337 was mutated to alanine. Furthermore, phosphopeptide mapping identified two phosphopeptides from the trypsin-digested ROMK1 protein. In contrast, no phosphorylated peptide has been found in the trypsin-digested R1Y337A protein. This suggested that two phosphorylated peptides might contain the same tyrosine residue. Also, addition of c-Src and [32P]ATP phosphorylated the synthesized peptide corresponding to amino acid sequence 333-362 of the COOH terminus of ROMK1. We then examined the effect of dietary K intake on the tyrosine-phosphorylated ROMK level. Although the ROMK channels pulled down by immunoprecipitation with ROMK antibody were the same from rats on a K-deficient diet or on a high-K diet, more ROMK channels were phosphorylated by PTK in rats on a K-deficient diet than those on a high-K diet. We conclude that ROMK1 can be phosphorylated by PTK and that tyrosine residue 337 is the key site for the phosphorylation. Also, the tyrosine phosphorylation of ROMK is modulated by dietary K intake. This strongly suggests that PTK is an important member of the aldosterone-independent signal transduction pathway for regulating renal K secretion.

Original languageEnglish
Pages (from-to)F671-F677
JournalAmerican Journal of Physiology - Renal Physiology
Volume283
Issue number4 52-4
DOIs
StatePublished - Oct 2002
Externally publishedYes

Keywords

  • Cortical collecting duct
  • Dietary potassium intake
  • Hypokalemia
  • Protein tyrosine phosphatase
  • Renal potassium secretion

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