4.7 Article

Melanocyte Stem Cell Activation and Translocation Initiate Cutaneous Melanoma in Response to UV Exposure

Journal

CELL STEM CELL
Volume 21, Issue 5, Pages 665-+

Publisher

CELL PRESS
DOI: 10.1016/j.stem.2017.09.001

Keywords

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Funding

  1. Office of the Assistant Secretary of Defense for Health Affairs, through the Peer Reviewed Cancer Research Program [W81XWH-16-1-0272]
  2. Cornell Center for Vertebrate Genomics scholar award
  3. NIH-NIAMS award [5R01AR057409]
  4. Cornell Stem Cell Program Seed grant

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Melanoma is one of the deadliest cancers, yet the cells of origin and mechanisms of tumor initiation remain unclear. The majority of melanomas emerge from clear skin without a precursor lesion, but it is unknown whether these melanomas can arise from melanocyte stem cells (MCSCs). Here we employ mouse models to define the role of MCSCs as melanoma cells of origin, demonstrate that MCSC quiescence acts as a tumor suppressor, and identify the extrinsic environmental and molecular factors required for the critical early steps of melanoma initiation. Specifically, melanomas originate from melanoma-competent MCSCs upon stimulation by UVB, which induces MCSC activation and translocation via an inflammation-dependent process. Moreover, the chromatin-remodeling factor Hmga2 in the skin plays a critical role in UVB-mediated melanomagenesis. These findings delineate melanoma formation from melanoma-competent MCSCs following extrinsic stimuli, and they suggest that abrogation of Hmga2 function in the microenvironment can suppress MCSC-originating cutaneous melanomas.

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