Hydrogen peroxide reversibly inhibits epidermal growth factor (EGF) receptor internalization and coincident ubiquitination of the EGF receptor and Eps15.

R. De Wit, M. Makkinje, J. Boonstra, A.J. Verkleij, J.A. Post

Research output: Contribution to journalArticleAcademicpeer-review

Abstract

Recently, we demonstrated that hydrogen peroxide (H2O2) inhibits the internalization of the epidermal growth factor (EGF) receptor and the EGF-induced mono-ubiquitination of EGF receptor pathway substrate clone #15 (Eps15) in fibroblasts. In addition, it was suggested that EGF receptor internalization might be inhibited by H2O2 by inhibition of ubiquitination of proteins involved in endocytosis. Here, we show that H2O2 also inhibits the poly-ubiquitination of the EGF receptor in fibroblasts. Furthermore, recovery of the cells resulted in re-establishment of ubiquitination of both the EGF receptor and Eps15 and coincided with restoration of internalization of those receptors that had bound EGF in the presence of H2O2. In addition, EGF receptor internalization was inhibited by the sulphydryl reagent N-ethylmaleimide (NEM), indicating that intact SH groups might be required for receptor-mediated endocytosis. Furthermore, H2O2 rapidly induced an increase in the cellular ratio of GSSG:GSH (oxidized glutathione:reduced glutathione) and removal of H2O2 resulted in a fast restoration of the ratio of GSSG:GSH. Therefore, these results suggest a relation between the inhibition of internalization ubiquitination and an increase in GSSG:GSH ratio, which strengthens the hypothesis that H2O2 inhibits EGF receptor internalization by an inhibition of ubiquitination of proteins involved in EGF receptor-mediated endocytosis.
Original languageEnglish
Pages (from-to)306-308
Number of pages3
JournalFASEB Journal
Volume15
Issue number2
Publication statusPublished - 1 Feb 2001

Keywords

  • calcium binding protein
  • epidermal growth factor
  • epidermal growth factor receptor
  • EPS15 protein, human
  • glutathione
  • glutathione disulfide
  • hydrogen peroxide
  • phosphoprotein
  • recombinant protein
  • signal peptide
  • ubiquitin
  • animal
  • article
  • biological model
  • cell culture
  • cell membrane
  • drug effect
  • endocytosis
  • fibroblast
  • genetic transfection
  • human
  • metabolism
  • oxidative stress
  • physiology
  • signal transduction

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