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Published on: October 27, 2020
Effect of wound type on Smad 2 and 4 translocation
Audrey E K Hutcheon1, Xiaoqing Q Guo, Mary Ann Stepp
1Schepens Eye Research Institute and Department of Ophthalmology, Harvard Medical School, Boston, Massachusetts 02114, USA.
Purpose:
In a prior study, it was reported that both TGF-beta receptors type-I and -II are upregulated after wounding, suggesting that TGF-beta signaling may play a role in corneal epithelial repair. The Smad proteins, which translocate into the nucleus after activation of the TGF-beta receptors, are key factors in the major TGF-beta signaling pathway. The present study was undertaken to examine whether Smads 2 and 4 translocate into the nucleus during wound repair and whether the wound type affects the extent of translocation.
Methods:
Either a 3-mm superficial keratectomy or epithelial debridement was performed on adult Sprague-Dawley rats. The eyes were allowed to heal from 4 hours to 2 weeks. Indirect immunofluorescence was performed with anti-Smads 2 and 4, anti-laminin, a marker of basement membrane, and anti-alphavbeta6 integrin, which has been implicated in TGF-beta activation. In addition, the effect of the p38MAPK inhibitor SB202190 on healing rates of debridement and keratectomy wounds was determined in organ culture.
Results:
In unwounded tissue, Smad 2 was cytoplasmic. By 4 hours after keratectomy, nuclear localization was visible in a few epithelial basal cells at the leading edge of the wound. The number of basal cells expressing nuclear Smad 2 in the wound area increased with time, peaking at 48 hours (95%). However, in the debridement model, Smad 2 localization remained primarily cytoplasmic. Smad 4 showed similar localization. In both wound models, p38MAPK inhibitor slowed epithelial migration, and alphavbeta6 integrin appeared to be upregulated with localization primarily observed in the basal cells migrating over the wound area.
Conclusions:
The presence of the basement membrane appears to have an effect on the extent and duration of translocation of the Smad 2 and 4 proteins during corneal epithelial wound repair. The Smad pathway does not appear to be essential for migration; rather, it may play a role in resynthesis of the basement membrane.
Insights
Corneal wound healing involves Smad 2 and 4 nuclear translocation, influenced by basement membrane presence. This pathway may aid basement membrane repair rather than direct cell migration.
Area of Science:
- Ophthalmology
- Cell Biology
- Wound Healing Research
Background:
- Transforming growth factor-beta (TGF-beta) signaling is implicated in corneal epithelial repair.
- Smad proteins are key mediators in the TGF-beta signaling pathway.
- Prior studies indicated TGF-beta receptor upregulation post-wounding.
Purpose of the Study:
- To investigate Smad 2 and 4 nuclear translocation during corneal wound repair.
- To determine if wound type influences Smad translocation extent.
- To explore the role of Smad proteins in corneal healing.
Main Methods:
- Corneal wound models (keratectomy, debridement) in Sprague-Dawley rats.
- Indirect immunofluorescence for Smad 2, Smad 4, laminin, and alphavbeta6 integrin.
- Assessment of p38MAPK inhibitor (SB202190) effects on wound healing rates.
Main Results:
- Smad 2 and 4 showed nuclear localization in basal cells at the wound edge after keratectomy, peaking at 48 hours.
- Smad translocation was primarily cytoplasmic in the debridement model.
- p38MAPK inhibition slowed epithelial migration; alphavbeta6 integrin was upregulated in migrating basal cells.
Conclusions:
- Basement membrane presence affects Smad 2 and 4 translocation duration and extent.
- The Smad pathway may not be essential for corneal epithelial migration.
- Smad signaling might play a role in basement membrane resynthesis during repair.
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