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.

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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