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Published on: October 16, 2016
Dissecting Wnt Signaling for Melanocyte Regulation during Wound Healing
Qi Sun1, Piul Rabbani1, Makoto Takeo1
1The Ronald O. Perelman Department of Dermatology, New York University School of Medicine, New York, New York, USA; The Department of Cell Biology, New York University School of Medicine, New York, New York, USA.
Abstract:
Abnormal pigmentation is commonly seen in the wound scar. Despite advancements in the research of wound healing, little is known about the repopulation of melanocytes in the healed skin. Previous studies have shown the capacity of melanocyte stem cells in the hair follicle to contribute skin epidermal melanocytes after injury in mice and humans. Here, we focused on the Wnt pathway, known to be a vital regulator of melanocyte stem cells in efforts to better understand the regulation of follicle-derived epidermal melanocytes during wound healing. We showed that transgenic expression of Wnt inhibitor Dkk1 in melanocytes reduced epidermal melanocytes in the wound scar. Conversely, forced activation of Wnt signaling by genetically stabilizing β-catenin in melanocytes increases epidermal melanocytes. Furthermore, we show that deletion of Wntless (Wls), a gene required for Wnt ligand secretion, within epithelial cells results in failure in activating Wnt signaling in adjacent epidermal melanocytes. These results show the essential function of extrinsic Wnt ligands in initiating Wnt signaling in follicle-derived epidermal melanocytes during wound healing. Collectively, our results suggest the potential for Wnt signal regulation to promote melanocyte regeneration and provide a potential molecular window to promote proper melanocyte regeneration after wounding and in conditions such as vitiligo.
Insights
Wound healing involves melanocyte repopulation. This study reveals the Wnt pathway is crucial for regulating epidermal melanocytes derived from hair follicles, offering insights for conditions like vitiligo.
Area of Science:
- Dermatology
- Stem Cell Biology
- Molecular Biology
Background:
- Abnormal pigmentation is common in wound scars, yet melanocyte repopulation mechanisms remain unclear.
- Melanocyte stem cells in hair follicles can repopulate epidermal melanocytes post-injury.
- The Wnt pathway is a key regulator of melanocyte stem cells.
Purpose of the Study:
- To investigate the role of the Wnt pathway in regulating epidermal melanocytes during wound healing.
- To understand the contribution of follicle-derived melanocytes to skin repair.
Main Methods:
- Utilized transgenic mice to manipulate Wnt signaling components (Dkk1, β-catenin).
- Investigated the function of Wntless (Wls) in epithelial cells for Wnt ligand secretion.
- Assessed epidermal melanocyte populations in wound scars.
Main Results:
- Inhibiting Wnt signaling (Dkk1) reduced epidermal melanocytes in wound scars.
- Activating Wnt signaling (β-catenin stabilization) increased epidermal melanocytes.
- Deleting Wls in epithelial cells impaired Wnt signaling activation in adjacent melanocytes, highlighting the role of extrinsic Wnt ligands.
Conclusions:
- Extrinsic Wnt ligands are essential for initiating Wnt signaling in follicle-derived epidermal melanocytes during wound healing.
- Wnt signal modulation holds potential for promoting melanocyte regeneration after wounding.
- Findings offer a molecular target for treating conditions like vitiligo.
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