Epidermal stratification is uncoupled from centrosome-dependent cell division orientation of the basal progenitors
Damen, M.; Soroka, E.; Khatif, H.; Kukat, C.; Simons, B. D.; Bazzi, H.
Show abstract
The development of complex stratified epithelial barriers in mammals is initiated from single-layered epithelia. How stratification is initiated and fueled are still open questions. Previous studies on skin epidermal stratification suggested a central role for perpendicular/asymmetric cell division orientation of the basal keratinocyte progenitors. Here, we use centrosomes, that organize the mitotic spindle, to test whether cell division orientation and stratification are linked. Genetically ablating centrosomes from the developing epidermis led to the activation of the p53-, 53BP1- and USP28-dependent mitotic surveillance pathway causing a thinner epidermis and hair follicle arrest. The centrosome/p53-double mutant keratinocyte progenitors significantly altered their division orientation in the later stages without majorly affecting epidermal differentiation. Together with time-lapse imaging and tissue growth dynamics measurements, the data suggested that the first and major phase of epidermal stratification is boosted by high proliferation rates of the basal and suprabasal transit-amplifying cells as well as cell delamination, whereas the second phase maybe uncoupled from the division orientation of the basal progenitors. The data provide insights for tissue homeostasis and hyperproliferative diseases that may recapitulate developmental programs.
Matching journals
The top 4 journals account for 50% of the predicted probability mass.
Similar papers in this journal
Similar papers in this journal
- Mechanical Instability of Adherens Junctions Overrides Intrinsic Quiescence of Hair Follicle Stem Cells 95%
- Defining the contribution of Troy-positive progenitor cells to the mouse esophageal epithelium. 94%
- Conserved signals orchestrate self-organization and symmetry breaking of bi-layered epithelia during development and regeneration 94%
Similar papers in this journal
- TLR2 Regulates Hair Follicle Cycle and Regeneration via BMP Signaling. 95%
- Lef1 expression in fibroblasts maintains developmental potential in adult skin to regenerate wounds 95%
- A sheath of motile cells supports collective migration of the Zebrafish posterior lateral line primordium under the skin 94%
Similar papers in this journal
- Oncogenic Kras induces spatiotemporally specific tissue deformation through converting pulsatile into sustained ERK activation 96%
- Gradual differentiation uncoupled from cell cycle exit generates heterogeneity in the epidermal stem cell layer. 96%
- Somatic mutations distinguish melanocyte subpopulations in human skin 95%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.