4.7 Article

Cell-Type-Specific Chromatin States Differentially Prime Squamous Cell Carcinoma Tumor-Initiating Cells for Epithelial to Mesenchymal Transition

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CELL STEM CELL
卷 20, 期 2, 页码 191-+

出版社

CELL PRESS
DOI: 10.1016/j.stem.2016.10.018

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资金

  1. long-term EMBO fellowship [ALTF 1172-2013]
  2. TELEVIE
  3. FNRS
  4. ERC [616333 Expand]
  5. PAI program [P7/03-CanEpi]
  6. Worldwide Cancer Research [15-0270]
  7. Fondation Contre le Cancer [Convention 2012-171]
  8. ULB fondation
  9. fond Gaston Ithier
  10. foundation Bettencourt Schueller
  11. Fondation Baillet Latour

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Epithelial to mesenchymal transition (EMT) in cancer cells has been associated with metastasis, stemness, and resistance to therapy. Some tumors undergo EMT while others do not, which may reflect intrinsic properties of their cell of origin. However, this possibility is largely unexplored. By targeting the same oncogenic mutations to discrete skin compartments, we show that cell-type-specific chromatin and transcriptional states differentially prime tumors to EMT. Squamous cell carcinomas (SCCs) derived from interfollicular epidermis (IFE) are generally well differentiated, while hair follicle (HF) stem cell-derived SCCs frequently exhibit EMT, efficiently form secondary tumors, and possess increasedmetastatic potential. Transcriptional and epigenomic profiling revealed that IFE and HF tumor-initiating cells possess distinct chromatin landscapes and gene regulatory networks associated with tumorigenesis and EMT that correlate with accessibility of key epithelial and EMT transcription factor binding sites. These findings highlight the importance of chromatin states and transcriptional priming in dictating tumor phenotypes and EMT.

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