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Ectopic Atoh1 expression drives Merkel cell production in embryonic, postnatal and adult mouse epidermis. | LitMetric

Ectopic Atoh1 expression drives Merkel cell production in embryonic, postnatal and adult mouse epidermis.

Development

Richard King Mellon Institute for Pediatric Research, Department of Pediatrics, University of Pittsburgh, Pittsburgh, PA 15224, USA

Published: July 2015

AI Article Synopsis

  • Merkel cells are skin cells sensitive to touch, and their formation relies on the transcription factor Atoh1.
  • Inducing Atoh1 in the skin of mice led to abnormal production of Merkel cell markers, with different outcomes depending on the skin area and developmental stage.
  • The results indicate Atoh1 can generate new Merkel cells, but their response is influenced by factors like skin location, age, hair growth cycle, and the Notch signaling pathway.

Article Abstract

Merkel cells are mechanosensitive skin cells whose production requires the basic helix-loop-helix transcription factor Atoh1. We induced ectopic Atoh1 expression in the skin of transgenic mice to determine whether Atoh1 was sufficient to create additional Merkel cells. In embryos, ectopic Atoh1 expression drove ectopic expression of the Merkel cell marker keratin 8 (K8) throughout the epidermis. Epidermal Atoh1 induction in adolescent mice similarly drove widespread K8 expression in glabrous skin of the paws, but in the whisker pads and body skin ectopic K8+ cells were confined to hair follicles and absent from interfollicular regions. Ectopic K8+ cells acquired several characteristics of mature Merkel cells in a time frame similar to that seen during postnatal development of normal Merkel cells. Although ectopic K8+ cell numbers decreased over time, small numbers of these cells remained in deep regions of body skin hair follicles at 3 months post-induction. In adult mice, greater numbers of ectopic K8+ cells were created by Atoh1 induction during anagen versus telogen and following disruption of Notch signaling by conditional deletion of Rbpj in the epidermis. Our data demonstrate that Atoh1 expression is sufficient to produce new Merkel cells in the epidermis, that epidermal cell competency to respond to Atoh1 varies by skin location, developmental age and hair cycle stage, and that the Notch pathway plays a key role in limiting epidermal cell competency to respond to Atoh1 expression.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4510865PMC
http://dx.doi.org/10.1242/dev.123141DOI Listing

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