Related Experiment Videos
Vanadate, but not insulin, inhibits insulin receptor gene expression in rat hepatoma cells
S Bortoli1, M Amessou, M Collinet
1Unité 30 INSERM, Hôpital Necker-Enfants Malades, Paris, France.
Abstract:
Insulin and vanadate treatments have recently been shown to reverse the overexpression of the hepatic insulin receptor (IR) gene in streptozotocin-induced diabetic rats. To better understand the mechanisms underlying these effects, the abilities of insulin and vanadate to affect IR gene expression have been comparatively examined in Fao hepatoma cells, an insulin-responsive cell line. Exposure of Fao cells to insulin (1 microM) or vanadate (500 microM) for 24 h led to a 2-fold decrease in IR number in total cellular membranes. Insulin treatment did not affect IR messenger RNA (mRNA) level regardless of time of exposure and concentration. In contrast, vanadate treatment caused a time- and dose-dependent decrease in IR mRNA level, which was maximal (4-fold change) after a 24-h exposure to 500 microM vanadate and was fully reversible. Insulin treatment increased from 28 to 39% the relative expression of isotype A IR mRNA, but vanadate treatment did not significantly affect this parameter. Vanadate treatment did not modify mRNA half-life (3.5 h) in 5, 6 dichlorobenzimidazole riboside-treated cells but decreased by 4-fold the transcriptional activity of the IR gene. These data show for the first time that, although both insulin and vanadate decrease total cellular IR number in Fao cells, only vanadate decreases IR mRNA level. It does so by inhibiting transcription of the IR gene, suggesting an action on the gene promoter which could be mediated by changes in the level of expression and/or of phosphorylation of trans-acting factors.
Insights
Vanadate, unlike insulin, reduces insulin receptor (IR) mRNA levels by inhibiting IR gene transcription in liver cells. Both treatments decrease total IR numbers, but vanadate
Area of Science:
- Molecular Biology
- Cell Biology
- Pharmacology
Background:
- Insulin and vanadate can reverse hepatic insulin receptor (IR) gene overexpression in diabetic rats.
- Understanding the mechanisms of IR gene regulation by insulin and vanadate is crucial.
Purpose of the Study:
- To comparatively analyze the effects of insulin and vanadate on IR gene expression in Fao hepatoma cells.
- To elucidate the distinct molecular mechanisms by which insulin and vanadate modulate IR gene expression and receptor levels.
Main Methods:
- Cultured Fao hepatoma cells were treated with insulin or vanadate.
- Insulin receptor (IR) number, IR messenger RNA (mRNA) levels, and IR gene transcriptional activity were quantified.
- mRNA half-life and relative expression of IR mRNA isotypes were assessed.
Main Results:
- Both insulin and vanadate decreased total cellular IR number by twofold.
- Vanadate, but not insulin, significantly reduced IR mRNA levels in a time- and dose-dependent manner.
- Vanadate inhibited IR gene transcription by fourfold without affecting mRNA half-life.
Conclusions:
- Vanadate decreases total IR number and IR mRNA levels by inhibiting IR gene transcription.
- Insulin decreases total IR number but does not affect IR mRNA levels or transcription.
- Vanadate's mechanism may involve modulation of trans-acting factors affecting the IR gene promoter.