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Estrogen receptor impairs interleukin-6 expression by preventing protein binding on the NF-kappaB site

R Galien1, T Garcia

  • 1Roussel Uclaf, 102 route de Noisy, 93235 Romainville Cedex, France. galien@mac.rousseluclaf.fr

Insights

Estrogen

Area of Science:

  • Molecular biology
  • Endocrinology
  • Cell biology

Background:

  • Interleukin-6 (IL-6) is implicated in post-menopausal osteoporosis.
  • Estrogen down-regulates IL-6, suggesting a role in bone health.
  • Previous work identified key promoter regions for TNFα and estradiol effects on IL-6.

Purpose of the Study:

  • To elucidate the molecular mechanism by which estrogens regulate the human IL-6 promoter.
  • To define the specific transcription factors and DNA binding sites involved in estrogen's action.

Main Methods:

  • Gel shift assays were performed using a specific IL-6 promoter DNA fragment.
  • Nuclear extracts from TNFα-induced HeLa, MCF7, and Saos2 cells were utilized.
  • Competition assays with competitor DNA and antisera against transcription factors were employed.

Main Results:

  • Several protein complexes bound to the IL-6 promoter region, primarily involving NF-κB factors and C/EBP binding factors.
  • In vitro translated human estrogen receptor (hER) inhibited the binding of specific NF-κB complexes.
  • NF-κB site was crucial for hER's inhibitory effect, targeting c-rel and RelA proteins.

Conclusions:

  • Human estrogen receptor (hER) inhibits TNFα-induced IL-6 production.
  • This inhibition occurs by preventing the binding of c-rel and RelA transcription factors to the NF-κB site on the IL-6 promoter.
  • Findings provide molecular insight into estrogen's role in regulating IL-6, relevant to osteoporosis.

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