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Estradiol coupling to human monocyte nitric oxide release is dependent on intracellular calcium transients: Evidence for an estrogen surface receptor

  • George B. Stefano
  • , Vincent Prevot
  • , Jean Claude Beauvillain
  • , Caterina Fimiani
  • , Ingeborg Welters
  • , Patrick Cadet
  • , Christophe Breton
  • , Joel Pestel
  • , Michel Salzet
  • , Thomas V. Bilfinger
  • SUNY Old Westbury
  • Beth Israel Deaconess Medical Center
  • Stony Brook University
  • Institut national de la santé et de la recherche médicale
  • CNRS
  • Institut Pasteur de Lille

Research output: Contribution to journalArticlepeer-review

99 Scopus citations

Abstract

We tested the hypothesis that estrogen acutely stimulates constitutive NO synthase (cNOS) activity in human peripheral monocytes by acting on an estrogen surface receptor. NO release was measured in real time with an amperometric probe. 17β-estradiol exposure to monocytes stimulated NO release within seconds in a concentration-dependent manner, whereas 17α- estradiol had no effect. 17β-estradiol conjugated to BSA (E2-BSA) also stimulated NO release, suggesting mediation by a membrane surface receptor. Tamoxifen, an estrogen receptor inhibitor, antagonized the action of both 17β-estradiol and E2-BSA, whereas ICI 182,780, a selective inhibitor of the nuclear estrogen receptor, had no effect. We further showed, using a dual emission microfluorometry in a calcium-free medium, that the 17β-estradiol- stimulated release of monocyte NO was dependent on the initial stimulation of intracellular calcium transients in a tamoxifen-sensitive process. Leeching out the intracellular calcium stores abolished the effect of 17β-estradiol on NO release. RT-PCR analysis of RNA obtained from the cells revealed a strong estrogen receptor-α amplification signal and a weak β signal. Taken together, a physiological dose of estrogen acutely stimulates NO release from human monocytes via the activation of an estrogen surface receptor that is coupled to increases in intracellular calcium.

Original languageEnglish
Pages (from-to)3758-3763
Number of pages6
JournalJournal of Immunology
Volume163
Issue number7
DOIs
StatePublished - Oct 1 1999

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