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 PMID:23954751  

The epidermis comprises autonomous compartments maintained by distinct stem cell populations.

Mahalia E Page | Patrick Lombard | Felicia Ng | Berthold Göttgens | Kim B Jensen
Cell stem cell | 2013

The complex anatomy of the epidermis contains multiple adult stem cell populations, but the extent to which they functionally overlap during homeostasis, wound healing, and tumor initiation remains poorly defined. Here, we demonstrate that Lrig1(+ve) cells are highly proliferative epidermal stem cells. Long-term clonal analysis reveals that Lrig1(+ve) cells maintain the upper pilosebaceous unit, containing the infundibulum and sebaceous gland as independent compartments, but contribute to neither the hair follicle nor the interfollicular epidermis, which are maintained by distinct stem cell populations. In contrast, upon wounding, stem cell progeny from multiple compartments acquire lineage plasticity and make permanent contributions to regenerating tissue. We further show that oncogene activation in Lrig1(+ve) cells drives hyperplasia but requires auxiliary stimuli for tumor formation. In summary, our data demonstrate that epidermal stem cells are lineage restricted during homeostasis and suggest that compartmentalization may constitute a conserved mechanism underlying epithelial tissue maintenance.

Pubmed ID: 23954751

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Associated grants

  • Agency: Medical Research Council, United Kingdom
    Id: MC_PC_12009
  • Agency: Wellcome Trust, United Kingdom
    Id: 079249
  • Agency: Wellcome Trust, United Kingdom
    Id: WT088454MA
  • Agency: National Centre for the Replacement, Refinement and Reduction of Animals in Research, United Kingdom
    Id: G0900729/1
  • Agency: Cancer Research UK, United Kingdom
    Id: 12765
  • Agency: Wellcome Trust, United Kingdom
    Id: 100140

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Broad Institute (tool)

RRID:SCR_007073

Biomedical and genomic research center located in Cambridge, Massachusetts, United States. Nonprofit research organization under the name Broad Institute Inc., and is partners with Massachusetts Institute of Technology, Harvard University, and the five Harvard teaching hospitals. Dedicated to advance understanding of biology and treatment of human disease to improve human health.

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LIMMA (tool)

RRID:SCR_010943

Software package for the analysis of gene expression microarray data, especially the use of linear models for analyzing designed experiments and the assessment of differential expression.

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