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Defective keratocyte apoptosis in response to epithelial injury in stat 1 null mice
R R Mohan1, R R Mohan, W J Kim
1The Department of Ophthalmology, University of Washington School of Medicine, Seattle 98195-6485, USA.
Abstract:
Defects in apoptosis have been noted in signal transducer and activator of transcription (Stat) 1-null cells in vitro. The purpose of this study was to analyse the keratocyte apoptosis response that occurs in vivo in response to corneal epithelial injury in Stat 1null compared with control mice and to determine whether Stat 1null corneal fibroblasts have a defective response to death receptor activation in vitro. Corneal epithelial scrape injuries were performed in Stat 1-null and wild-type mice. Keratocyte apoptosis was monitored with the quantitative TUNEL assay and confirmed using transmission electron microscopy. Corneal fibroblast apoptosis in response to tumor necrosis factor (TNF) alpha, with and without inhibitors of nuclear factor kappa B (NF-kappaB) activation, was monitored using DNA laddering and the methylene blue assay. Significantly less keratocyte apoptosis was noted in Stat 1-null mice compared with wild-type controls. TNF alpha-induced apoptosis only occurred in wild-type mice in the presence of inhibitors of NF-kappaB activation. Corneal fibroblast TNF alpha-induced apoptosis was defective in Stat 1null corneal fibroblasts whether NF-kappaB activation was blocked or not. Stat 1 has an important role in the keratocyte apoptosis that occurs in response to corneal epithelial injury. Previous studies suggest that the defect is due to a lack of constitutive expression of caspases. This study demonstrates that this defect in apoptosis in Stat 1-null mice is present in vivo in Stat 1-null mice and suggests that Stat 1 could be a therapeutic target for transient inhibition of keratocyte apoptosis to modulate corneal wound healing.
Insights
Signal transducer and activator of transcription (Stat) 1 is crucial for keratocyte apoptosis following corneal injury. Stat 1-null mice show reduced apoptosis in vivo, indicating Stat 1 as a potential therapeutic target for corneal wound healing.
Area of Science:
- Ophthalmology
- Immunology
- Cell Biology
Background:
- Defects in apoptosis are observed in signal transducer and activator of transcription (Stat) 1-null cells.
- Stat 1 plays a role in cellular responses to injury and inflammation.
Purpose of the Study:
- To investigate keratocyte apoptosis in vivo after corneal epithelial injury in Stat 1-null mice compared to controls.
- To determine if Stat 1-null corneal fibroblasts exhibit defective apoptosis in response to death receptor activation in vitro.
Main Methods:
- Corneal epithelial scrape injuries were induced in Stat 1-null and wild-type mice.
- Keratocyte apoptosis was assessed using TUNEL assay and transmission electron microscopy.
- Fibroblast apoptosis was measured via DNA laddering and methylene blue assay following TNF-alpha stimulation, with and without NF-kappaB inhibitors.
Main Results:
- Stat 1-null mice exhibited significantly less keratocyte apoptosis in vivo compared to wild-type controls.
- TNF-alpha-induced apoptosis occurred in wild-type mice only when NF-kappaB activation was inhibited.
- Stat 1-null corneal fibroblasts showed defective TNF-alpha-induced apoptosis regardless of NF-kappaB activation status.
Conclusions:
- Stat 1 is essential for keratocyte apoptosis following corneal epithelial injury.
- The observed apoptosis defect in Stat 1-null mice is present in vivo.
- Stat 1 inhibition may be a therapeutic strategy to modulate corneal wound healing by controlling keratocyte apoptosis.