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Intracellular l-arginine concentration does not determine NO production in endothelial cells: Implications on the " l-arginine paradox"

  • SUNY Buffalo

Research output: Contribution to journalArticlepeer-review

61 Scopus citations

Abstract

We examined the relative contributory roles of extracellular vs. intracellular l-arginine (ARG) toward cellular activation of endothelial nitric oxide synthase (eNOS) in human endothelial cells. EA.hy926 human endothelial cells were incubated with different concentrations of 15N 4-ARG, ARG, or l-arginine ethyl ester (ARG-EE) for 2h. To modulate ARG transport, siRNA for ARG transporter (CAT-1) vs. sham siRNA were transfected into cells. ARG transport activity was assessed by cellular fluxes of ARG, 15N 4-ARG, dimethylarginines, and l-citrulline by an LC-MS/MS assay. eNOS activity was determined by nitrite/nitrate accumulation, either via a fluorometric assay or by 15N-nitrite or estimated 15N 3-citrulline concentrations when 15N 4-ARG was used to challenge the cells. We found that ARG-EE incubation increased cellular ARG concentration but no increase in nitrite/nitrate was observed, while ARG incubation increased both cellular ARG concentration and nitrite accumulation. Cellular nitrite/nitrate production did not correlate with cellular total ARG concentration. Reduced 15N 4-ARG cellular uptake in CAT-1 siRNA transfected cells vs. control was accompanied by reduced eNOS activity, as determined by 15N-nitrite, total nitrite and 15N 3-citrulline formation. Our data suggest that extracellular ARG, not intracellular ARG, is the major determinant of NO production in endothelial cells. It is likely that once transported inside the cell, ARG can no longer gain access to the membrane-bound eNOS. These observations indicate that the " l-arginine paradox" should not consider intracellular ARG concentration as a reference point.

Original languageEnglish
Pages (from-to)660-663
Number of pages4
JournalBiochemical and Biophysical Research Communications
Volume414
Issue number4
DOIs
StatePublished - Nov 4 2011

Keywords

  • Asymmetric dimethylarginine
  • L-Arginine
  • L-Arginine paradox
  • L-Arginine transport
  • Nitric oxide

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