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Published on: July 23, 2012
Farnesyltransferase Inhibition Exacerbates Eosinophilic Inflammation and Airway Hyperreactivity in Mice with
Jennifer M Bratt1,2, Kevin Y Chang1, Michelle Rabowsky1
1Division of Pulmonary, Critical Care, and Sleep Medicine, Department of Internal Medicine, University of California, Davis, Davis, CA 95817.
Abstract:
Ras, a small GTPase protein, is thought to mediate Th2-dependent eosinophilic inflammation in asthma. Ras requires cell membrane association for its biological activity, and this requires the posttranslational modification of Ras with an isoprenyl group by farnesyltransferase (FTase) or geranylgeranyltransferase (GGTase). We hypothesized that inhibition of FTase using FTase inhibitor (FTI)-277 would attenuate allergic asthma by depleting membrane-associated Ras. We used the OVA mouse model of allergic inflammation and human airway epithelial (HBE1) cells to determine the role of FTase in inflammatory cell recruitment. BALB/c mice were first sensitized then exposed to 1% OVA aerosol or filtered air, and half were injected daily with FTI-277 (20 mg/kg per day). Treatment of mice with FTI-277 had no significant effect on lung membrane-anchored Ras, Ras protein levels, or Ras GTPase activity. In OVA-exposed mice, FTI-277 treatment increased eosinophilic inflammation, goblet cell hyperplasia, and airway hyperreactivity. Human bronchial epithelial (HBE1) cells were pretreated with 5, 10, or 20 microM FTI-277 prior to and during 12 h IL-13 (20 ng/ml) stimulation. In HBE1 cells, FTase inhibition with FTI-277 had no significant effect on IL-13-induced STAT6 phosphorylation, eotaxin-3 peptide secretion, or Ras translocation. However, addition of exogenous FPP unexpectedly augmented IL-13-induced STAT6 phosphorylation and eotaxin-3 secretion from HBE1 cells without affecting Ras translocation. Pharmacological inhibition of FTase exacerbates allergic asthma, suggesting a protective role for FTase or possibly Ras farnesylation. FPP synergistically augments epithelial eotaxin-3 secretion, indicating a novel Ras-independent farnesylation mechanism or direct FPP effect that promotes epithelial eotaxin-3 production in allergic asthma.
Insights
Inhibiting farnesyltransferase (FTase) with FTI-277 unexpectedly worsened allergic asthma symptoms in mice. This suggests FTase may have a protective role in asthma, possibly independent of Ras protein modification.
Area of Science:
- Immunology
- Cell Biology
- Biochemistry
Background:
- Ras GTPase protein is implicated in Th2-dependent eosinophilic inflammation in asthma.
- Ras requires membrane association for activity, achieved through posttranslational modification (farnesylation or geranylgeranylation).
- Farnesyltransferase (FTase) inhibitors (FTIs) were investigated for their potential to attenuate asthma by disrupting Ras membrane localization.
Purpose of the Study:
- To investigate the role of FTase in allergic asthma.
- To determine if inhibiting FTase with FTI-277 attenuates airway inflammation and hyperreactivity.
- To explore the effects of FTase inhibition and farnesyl pyrophosphate (FPP) on epithelial cell responses.
Main Methods:
- Utilized the OVA mouse model for allergic inflammation and human bronchial epithelial (HBE1) cells.
- Administered FTI-277 to OVA-sensitized and challenged mice.
- Treated HBE1 cells with FTI-277 and IL-13, with or without exogenous FPP, assessing STAT6 phosphorylation and eotaxin-3 secretion.
Main Results:
- FTI-277 treatment did not alter lung membrane-anchored Ras, protein levels, or GTPase activity in mice.
- In OVA-exposed mice, FTI-277 exacerbated eosinophilic inflammation, goblet cell hyperplasia, and airway hyperreactivity.
- FTI-277 did not affect IL-13-induced STAT6 phosphorylation or eotaxin-3 secretion in HBE1 cells, but exogenous FPP enhanced these responses.
Conclusions:
- Pharmacological inhibition of FTase exacerbates allergic asthma, suggesting a protective role for FTase or Ras farnesylation.
- Farnesyl pyrophosphate (FPP) synergistically augments epithelial eotaxin-3 secretion, indicating a potential Ras-independent mechanism in allergic asthma pathogenesis.
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