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Growth factor regulation of insulin-like growth factor binding protein-6 expression in osteoblasts

B Gabbitas1, E Canalis

  • 1Department of Research, Saint Francis Hospital and Medical Center, Hartford, Connecticut 06105, USA.

Insights

Transforming growth factor beta 1 (TGF beta 1) reduces insulin-like growth factor binding protein 6 (IGFBP-6) in bone cells. This decrease in IGFBP-6 may increase available insulin-like growth factor II (IGF II) in the bone microenvironment.

Area of Science:

  • Bone biology
  • Cell signaling
  • Endocrinology

Background:

  • Transforming growth factor beta 1 (TGF beta 1), basic fibroblast growth factor (FGF), and platelet-derived growth factor (PDGF) BB are known to inhibit insulin-like growth factor (IGF) II synthesis.
  • The effect of these growth factors on IGF binding protein 6 (IGFBP-6) in osteoblasts remains uncharacterized.
  • IGFBP-6 binds IGF II, potentially regulating its availability to bone cells.

Purpose of the Study:

  • To investigate the effects of TGF beta 1, basic FGF, PDGF BB, IGF I, and IGF II on IGFBP-6 expression in osteoblast-enriched cultures.
  • To elucidate the regulatory mechanisms by which TGF beta 1 influences IGFBP-6 expression.

Main Methods:

  • Osteoblast-enriched cells (Ob cells) from fetal rat calvariae were cultured.
  • Cells were treated with various growth factors (TGF beta 1, basic FGF, PDGF BB, IGF I, IGF II).
  • IGFBP-6 mRNA levels were analyzed by Northern blot, and polypeptide levels by Western immunoblot. Transcriptional activity was assessed using nuclear run-on assays.

Main Results:

  • TGF beta 1 caused a time- and dose-dependent decrease in IGFBP-6 mRNA and polypeptide levels in Ob cells.
  • The inhibitory effect of TGF beta 1 on IGFBP-6 was mediated by transcriptional mechanisms.
  • Basic FGF, PDGF BB, IGF I, and IGF II did not affect IGFBP-6 mRNA levels.

Conclusions:

  • TGF beta 1 significantly inhibits IGFBP-6 expression in osteoblasts at the transcriptional level.
  • The reduction in IGFBP-6 induced by TGF beta 1 may serve as a local feedback mechanism to enhance IGF II availability in the bone microenvironment.

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