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Transcription factor TCF4 maintains the properties of human corneal epithelial stem cells
Rong Lu1, Yangluowa Qu, Jian Ge
1Zhongshan Ophthalmic Center, State Key Laboratory of Ophthalmology, Sun Yat-Sen University, Guangzhou, People's Republic of China.
Abstract:
TCF4, a key transcription factor of Wnt signaling system, has been recently found to be essential for maintaining stem cells. However, its signaling pathway is not well elucidated. This study was to explore the functional roles and signaling pathway of TCF4 in maintaining adult stem cell properties using human corneal epithelial stem cells as a model. With immunofluorescent staining and real-time polymerase chain reaction, we observed that TCF4 was exclusively expressed in the basal layer of human limbal epithelium where corneal epithelial stem cells reside. TCF4 was found to be well colocalized with ABCG2 and p63, two recognized epithelial stem/progenitor cell markers. Using in vitro culture models of primary human corneal epithelial cells, we revealed that TCF4 mRNA and protein were upregulated by cells in exponential growth stage, and RNA interference by small interfering RNA-TCF4 (10-50 nM) transfection blocked TCF4 signaling and suppressed cell proliferation as measured by WST-1 assay. TCF4 silence was found to be accompanied by downregulated proliferation-associated factors p63 and survivin, as well as upregulated cyclin-dependent kinase inhibitor 1C (p57). By creating a wound healing model in vitro, we identified upregulation and activation of β-catenin/TCF4 with their protein translocation from cytoplasm to nuclei, as evaluated by reverse transcription-quantitative real-time polymerase chain reaction, immunostaining, and Western blotting. Upregulated p63/survivin and downregulated p57 were further identified to be TCF4 downstream molecules that promote cell migration and proliferation in wound healing process. These findings demonstrate that transcription factor TCF4 plays an important role in determining or maintaining the phenotype and functional properties of human corneal epithelial stem cells.
Insights
Transcription factor TCF4 is crucial for maintaining human corneal epithelial stem cell properties. Its signaling pathway regulates cell proliferation, migration, and stem cell phenotype.
Area of Science:
- Stem Cell Biology
- Molecular Biology
- Ophthalmology
Background:
- Transcription factor 4 (TCF4) is vital for Wnt signaling and stem cell maintenance.
- The precise signaling pathway of TCF4 in adult stem cells remains unclear.
- Human corneal epithelial stem cells serve as a model to investigate TCF4's role.
Purpose of the Study:
- To explore the functional roles of TCF4 in maintaining adult stem cell properties.
- To elucidate the signaling pathway of TCF4 in human corneal epithelial stem cells.
- To understand TCF4's contribution to corneal epithelial stem cell phenotype and function.
Main Methods:
- Immunofluorescent staining and real-time PCR to assess TCF4 expression and localization.
- In vitro culture of primary human corneal epithelial cells.
- RNA interference (siRNA-TCF4) to inhibit TCF4 signaling.
- WST-1 assay for cell proliferation measurement.
- Western blotting and RT-qPCR for protein and gene expression analysis.
- In vitro wound healing models.
Main Results:
- TCF4 is exclusively expressed in the basal layer of the limbal epithelium, co-localizing with stem cell markers ABCG2 and p63.
- TCF4 mRNA and protein levels increase during exponential cell growth.
- TCF4 inhibition via RNA interference suppresses cell proliferation and downregulates p63 and survivin while upregulating p57.
- Wound healing activates the β-catenin/TCF4 pathway, with nuclear translocation of proteins.
- TCF4 downstream molecules, including p63 and survivin, promote cell migration and proliferation.
Conclusions:
- TCF4 plays a significant role in maintaining the phenotype and functional properties of human corneal epithelial stem cells.
- TCF4 signaling is essential for regulating corneal epithelial stem cell proliferation and migration.
- The study elucidates key aspects of the TCF4 signaling pathway in adult stem cell maintenance.
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