Scientific article
English

Tension Creates an Endoreplication Wavefront that Leads Regeneration of Epicardial Tissue

Published inDevelopmental cell, vol. 42, no. 6, p. 600-615.e4
Publication date2017-09-25
First online date2017-09-25
Abstract

Mechanisms that control cell-cycle dynamics during tissue regeneration require elucidation. Here we find in zebrafish that regeneration of the epicardium, the mesothelial covering of the heart, is mediated by two phenotypically distinct epicardial cell subpopulations. These include a front of large, multinucleate leader cells, trailed by follower cells that divide to produce small, mononucleate daughters. By using live imaging of cell-cycle dynamics, we show that leader cells form by spatiotemporally regulated endoreplication, caused primarily by cytokinesis failure. Leader cells display greater velocities and mechanical tension within the epicardial tissue sheet, and experimentally induced tension anisotropy stimulates ectopic endoreplication. Unbalancing epicardial cell-cycle dynamics with chemical modulators indicated autonomous regenerative capacity in both leader and follower cells, with leaders displaying an enhanced capacity for surface coverage. Our findings provide evidence that mechanical tension can regulate cell-cycle dynamics in regenerating tissue, stratifying the source cell features to improve repair.

Keywords
  • Endoreplication
  • Epicardium
  • Heart
  • Mechanical tension
  • Polyploidy
  • Regeneration
  • Zebrafish
Affiliation entities Not a UNIGE publication
Citation (ISO format)
CAO, Jingli et al. Tension Creates an Endoreplication Wavefront that Leads Regeneration of Epicardial Tissue. In: Developmental cell, 2017, vol. 42, n° 6, p. 600–615.e4. doi: 10.1016/j.devcel.2017.08.024
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Article (Published version)
accessLevelRestricted
Identifiers
Journal ISSN1534-5807
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