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Updated: May 5, 2026

Cell Population Analyses During Skin Carcinogenesis
Published on: August 21, 2013
CtBP1 overexpression in keratinocytes perturbs skin homeostasis
Hui Deng1, Fulun Li2, Hong Li3
1Department of Dermatology, University of Colorado Denver, Aurora, Colorado, USA; Department of Pathology, University of Colorado Denver, Aurora, Colorado, USA; Department of Dermatology, The Sixth People's Hospital of Shanghai, Shanghai Jiaotong University, Shanghai, China.
Abstract:
Carboxyl-terminal-binding protein-1 (CtBP1) is a transcriptional corepressor with multiple in vitro targets, but its in vivo functions are largely unknown. We generated keratinocyte-specific CtBP1 transgenic mice with a keratin-5 promoter (K5.CtBP1) to probe the pathological roles of CtBP1. At transgene expression levels comparable to endogenous CtBP1 in acute skin wounds, the K5.CtBP1 epidermis displayed hyperproliferation, loss of E-cadherin, and failed terminal differentiation. Known CtBP1 target genes associated with these processes, e.g., p21, Brca1, and E-cadherin, were downregulated in K5.CtBP1 skin. Surprisingly, K5.CtBP1 pups also exhibited a hair loss phenotype. We found that expression of the Distal-less 3 (Dlx3), a critical regulator of hair follicle differentiation and cycling, was decreased in K5.CtBP1 mice. Molecular studies revealed that CtBP1 directly suppressed Dlx3 transcription. Consistently, K5.CtBP1 mice displayed abnormal hair follicles with decreased expression of Dlx3 downstream targets Gata3, Hoxc13, and hair keratins. In summary, this CtBP1 transgenic model provides in vivo evidence for certain CtBP1 functions predicted from in vitro studies, reveals--to our knowledge--previously unreported functions and transcriptional activities of CtBP1 in the context of epithelial-mesenchymal interplay, and suggests that CtBP1 has a pathogenic role in hair follicle morphogenesis and differentiation.
Insights
Carboxyl-terminal-binding protein-1 (CtBP1) acts as a transcriptional corepressor. This study reveals CtBP1's in vivo role in skin, causing hyperproliferation and hair loss by suppressing key genes like Distal-less 3.
Area of Science:
- Molecular Biology
- Developmental Biology
- Genetics
Background:
- Carboxyl-terminal-binding protein-1 (CtBP1) is a known transcriptional corepressor.
- Its in vivo functions, particularly in epithelial tissues, remain largely uncharacterized.
Purpose of the Study:
- To investigate the in vivo pathological roles of CtBP1 in the epidermis.
- To explore CtBP1's function in hair follicle morphogenesis and differentiation.
Main Methods:
- Generation of keratinocyte-specific CtBP1 transgenic mice (K5.CtBP1) using the keratin-5 promoter.
- Analysis of epidermal and hair follicle phenotypes, including gene expression profiling.
- Molecular studies to determine CtBP1's direct transcriptional targets.
Main Results:
- K5.CtBP1 epidermis exhibited hyperproliferation, loss of E-cadherin, and impaired terminal differentiation.
- Downregulation of known CtBP1 target genes (p21, Brca1, E-cadherin) was observed.
- A novel hair loss phenotype was identified, linked to decreased expression of Distal-less 3 (Dlx3) and its downstream targets, with evidence of direct CtBP1 suppression of Dlx3 transcription.
Conclusions:
- The CtBP1 transgenic model provides in vivo evidence for CtBP1's role in epithelial processes.
- CtBP1 was found to directly suppress Dlx3, impacting hair follicle development.
- CtBP1 plays a pathogenic role in hair follicle morphogenesis and differentiation, extending beyond previously known functions.
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