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Published on: March 24, 2017
Interferon Regulatory Factor 6 Controls Proliferation of Keratinocytes From Children With Van der Woude Syndrome
Insights
Interferon Regulatory Factor 6 (IRF6) plays a key role in skin health. Studies show IRF6 mutations in Van der Woude Syndrome (VWS) lead to increased skin cell proliferation and impaired homeostasis.
Area of Science:
- Dermatology
- Genetics
- Developmental Biology
Background:
- Interferon Regulatory Factor 6 (IRF6) is crucial for craniofacial development and epidermal differentiation.
- Mutations in IRF6 are linked to Van der Woude Syndrome (VWS), characterized by craniofacial anomalies and potential wound-healing issues.
- The role of IRF6 in human skin homeostasis remains largely uncharacterized.
Purpose of the Study:
- To investigate the role of IRF6 in human skin homeostasis.
- To characterize the skin of patients with Van der Woude Syndrome (VWS).
Main Methods:
- Histological analysis of hip skin samples from children with VWS and non-syndromic cleft lip and palate (NSCLP).
- Immunofluorescence staining for Proliferating Cell Nuclear Antigen (PCNA), IRF6, P63, and Keratin 10.
- In vitro assessment of keratinocyte proliferation using colony-forming efficiency assays.
Main Results:
- Skin epidermis in VWS patients was thicker compared to NSCLP patients.
- Increased cell proliferation (PCNA) was observed in VWS skin tissues.
- Keratinocytes isolated from VWS patients exhibited enhanced long-term proliferation potential in vitro.
Conclusions:
- IRF6 is essential for regulating epidermal proliferation in human skin.
- These findings highlight a critical function of IRF6 in maintaining cutaneous homeostasis.
Objective:
Interferon Regulatory Factor 6 (IRF6) is critical for craniofacial development, epidermal differentiation, and tissue repair. IRF6 mutations cause Van der Woude Syndrome (VWS) and Popliteal Pterygium Syndrome. Individuals with VWS exhibit craniofacial anomalies, including cleft lip and palate and lip pits. Furthermore, they have an increased risk for wound-healing complications following surgical repair when compared with patients with nonsyndromic cleft lip and palate (NSCLP). However, nothing is known about the skin of these patients. The objective was to characterize the skin of patients with VWS. We hypothesize that IRF6 is required for proper skin homeostasis in humans.
Design:
Discarded tissue from a hip was collected during surgical alveolar bone graft. Samples from children with VWS harboring IRF6 mutations (n = 2) were compared with samples from children with NSCLP (n = 7). Histology was assessed following hematoxylin and eosin staining. The expressions of Proliferating Cell Nuclear Antigen, IRF6, P63, and Keratin 10 were determined by immunofluorescence. Keratinocytes were isolated and their proliferation potential was assessed by colony-forming efficiency assay.
Results:
Hip skin from children with VWS showed a thicker epidermis when compared with that from children with NSCLP. Proliferating Cell Nuclear Antigen staining revealed an increase in proliferation in syndromic tissues when compared with controls. However, P63 and Keratin 10 expression were similar between groups. Finally, keratinocytes from VWS showed increased long-term proliferation when compared with NSCLP.
Conclusions:
These results support, in vivo and in vitro, a previously described role for IRF6 in epidermal proliferation in humans. They further demonstrate a critical function for IRF6 in cutaneous homeostasis.
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