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Smad translocation and growth suppression in lens epithelial cells by endogenous TGFbeta2 during wound repair
1Department of Ophthalmology, Wakayama 641-0012, Japan. shizuya@wakayama-med.ac.jp
Abstract:
To determine whether endogenous TGFbeta affects lens epithelial cells during repair after an anterior capsule injury in mice, we studied translocation of Smad proteins, which carry the TGFbeta signal from cell surface receptors to promoters in nuclei. We immunolocalized Smads in murine lenses at intervals up to 8 weeks following capsular injury. Effects of injecting TGFbeta neutralizing antibodies on Smad4 location and cell proliferation were examined at 24 hr after injury. Finally, we examined whether exogenous TGFbeta2 induced Smad nuclear translocation in murine lenses in organ culture. Cell proliferation was quantitated by 5-bromo-2'-deoxyuridine (BrdU) labelling. In uninjured lenses, Smads were located in the cytoplasm. In injured lenses, nuclear localization of Smads was observed in cells next to the capsular break from 8 to 24 hr after the injury, and was observed peripheral to the break at 48 hr. Nuclear Smads then continued to be observed occasionally in a minority of cells. Injection of antibodies neutralizing TGFbeta2, but not TGFbeta1 or TGFbeta3, inhibited Smad4 nuclear translocation and resulted in the appearance of BrdU-positive anterior epithelial cells. With the lenses in culture, transient nuclear localization of Smads occurred between 3 and 24 hr in response to continuous exposure to TGFbeta2. No nuclear translocation was seen at 48 hr. Endogenous TGFbeta2 affects lens cells during wound repair after anterior capsule injury, inhibiting lens cell proliferation during the early phase. Nuclear translocation of Smads in lens epithelial cells is transient even with continuous exposure to TGFbeta2.
Insights
Transforming growth factor beta 2 (TGFbeta2) inhibits lens cell proliferation during wound repair after anterior capsule injury. Smad nuclear translocation in lens epithelial cells is transient, even with continuous TGFbeta2 exposure.
Area of Science:
- Ophthalmology
- Cell Biology
- Wound Healing
Background:
- The role of endogenous transforming growth factor beta (TGFbeta) in lens epithelial cell repair after injury is not fully understood.
- Smad proteins are key mediators of TGFbeta signaling, translocating to the nucleus to regulate gene expression.
Purpose of the Study:
- To investigate the effect of endogenous TGFbeta on lens epithelial cells during repair following anterior capsule injury in mice.
- To examine the role of Smad protein translocation in TGFbeta-mediated signaling in the injured lens.
Main Methods:
- Immunolocalization of Smad proteins in murine lenses post-capsular injury.
- Administration of TGFbeta-neutralizing antibodies to assess effects on Smad4 localization and cell proliferation (measured by BrdU labeling).
- Organ culture experiments to evaluate exogenous TGFbeta2-induced Smad nuclear translocation.
Main Results:
- Smad proteins translocated to the nucleus in lens epithelial cells near the injury site within 8-48 hours post-injury.
- Neutralizing antibodies against TGFbeta2, but not TGFbeta1 or TGFbeta3, inhibited Smad4 nuclear translocation and increased cell proliferation.
- Exogenous TGFbeta2 induced transient Smad nuclear translocation in cultured lenses within 3-24 hours.
Conclusions:
- Endogenous TGFbeta2 plays a significant role in lens wound repair by inhibiting early-phase lens cell proliferation.
- Smad nuclear translocation in response to TGFbeta2 in lens epithelial cells is a transient process.