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Cytokine-induced endothelial arginase expression is dependent on epidermal growth factor receptor

  • Leif D. Nelin
  • , Louis C. Chicoine
  • , Kristina M. Reber
  • , B. Keith English
  • , Tamara L. Young
  • , Yusen Liu

Research output: Contribution to journalArticlepeer-review

Abstract

L-arginine is metabolized to nitric oxide (NO) by NO synthase (NOS), or to urea and L-ornithine by arginase. L-ornithine contributes to vascular remodeling in pulmonary hypertension via metabolism to polyamines and proline. Previously we found that cytokines upregulate both NOS and arginase in pulmonary arterial endothelial cells. We hypothesized that cytokine-induced arginase I and II expression depend on epidermal growth factor (ECF) receptor (ECFR) activity. Bovine pulmonary arterial endothelial cells were treated with lipopolysaccharide and tumor necrosis factor-α (L/T). L/T treatment resulted in a substantial increase in urea production, and this increase in urea production was potently inhibited by both genistein and AG1478, inhibitors of ECFR. Levels of arginase I protein and arginase II mRNA were increased in response to L/T treatment, and genistein prevented the L/T-induced elevations in both arginase I protein and arginase II mRNA levels. L/T treatment increased production of nitrites and inducible NOS mRNA accumulation, and genistein and AG1478 had little effect on these changes. ECF (50 ng/ml) treatment resulted in enhanced urea production. Finally, a 170-kD protein was phosphorylated upon treatment with either ECF or L/T. Our results indicate that arginase induction by L/T depends in part on ECFR activity. We speculate that ECFR inhibitors may attenuate vascular remodeling without affecting NO release, and thus may represent novel therapeutic modalities for pulmonary hypertensive disorders.

Original languageEnglish
Pages (from-to)394-401
Number of pages8
JournalAmerican journal of respiratory cell and molecular biology
Volume33
Issue number4
DOIs
StatePublished - Oct 2005

Keywords

  • Cell signalling
  • Inducible nitric oxide synthase
  • Nitric oxide
  • Pulmonary hypertension

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