EpCAM Induction Functionally Links to the Wnt-Enhanced Cell Proliferation in Human Keratinocytes

Author:

Shen Ching-I1,Lee Hsiu-Chin2,Kao Ying-Hsien3,Wu Chieh-Shan4,Chen Po-Hung5,Lin Shinn-Zong678,Lai Ping-Shan1,Su Hong-Lin29

Affiliation:

1. Department of Chemistry, Agricultural Biotechnology Center, National Chung-Hsing University, Taiwan

2. Department of Life Sciences, Agricultural Biotechnology Center, National Chung-Hsing University, Taiwan

3. Department of Medical Research, E-DA Hospital, I-Shou University, Taiwan

4. Department of Dermatology, Kaohsiung Veterans General Hospital, Taiwan

5. Chen Po-Hung Dermatologic Clinic, Kaohsiung, Taiwan

6. Center for Neuropsychiatry, China Medical University and Hospital, Taiwan

7. China Medical University Beigang Hospital, Taiwan

8. Department of Immunology, China Medical University, Taiwan

9. Department of Physical Therapy, Graduate Institute of Rehabilitation Science, China Medical University, Taichung, Taiwan

Abstract

Accelerating proliferation of primary keratinocytes benefits skin autografts for severely burned patients. Wnt signal, a conserved pathway controlling cell cycle and morphogenesis in embryo, also involves in cell proliferation and tumorigenesis in adult tissues. Here the effects of Wnt signal on the growth of human interfollicular keratinocytes were investigated. We demonstrated that recombinant Wnt3a significantly promoted the growth of primary keratinocytes at a low cell density. A well-characterized GSK-3b inhibitor, BIO, activated the Wnt signals and also enhanced the colony formation of keratinocytes dose dependently. Gene expression profile of the BIO-treated keratinocytes revealed the linkage of BIO with cell mitosis and indicated that epithelial cell adhesion molecule (EpCAM), a Wnt target gene, was significantly upregulated. Compared to the sorted EpCAM- keratinocytes, the EpCAM+ cells showed a higher proliferation rate and efficacy of colony formation. Inhibiting the EpCAM expression by shRNA attenuated the proliferation effect of BIO and the growth advantage of the EpCAM+ keratinocytes. These evidences emphasize the positive roles of canonical Wnt and EpCAM on the regulation of cell growth and self-renewal of human keratinocytes.

Publisher

SAGE Publications

Subject

Transplantation,Cell Biology,Biomedical Engineering

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