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Positional Stability and Membrane Occupancy Define Skin Fibroblast Homeostasis In Vivo.


ABSTRACT: Fibroblasts are an essential cellular and structural component of our organs. Despite several advances, the critical behaviors that fibroblasts utilize to maintain their homeostasis in vivo have remained unclear. Here, by tracking the same skin fibroblasts in live mice, we show that fibroblast position is stable over time and that this stability is maintained despite the loss of neighboring fibroblasts. In contrast, fibroblast membranes are dynamic during homeostasis and extend to fill the space of lost neighboring fibroblasts in a Rac1-dependent manner. Positional stability is sustained during aging despite a progressive accumulation of gaps in fibroblast nuclei organization, while membrane occupancy continues to be maintained. This work defines positional stability and cell occupancy as key principles of skin fibroblast homeostasis in vivo, throughout the lifespan of mice, and identifies membrane extension in the absence of migration as the core cellular mechanism to carry out these principles.

SUBMITTER: Marsh E 

PROVIDER: S-EPMC7605015 | biostudies-literature | 2018 Nov

REPOSITORIES: biostudies-literature

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Positional Stability and Membrane Occupancy Define Skin Fibroblast Homeostasis In Vivo.

Marsh Edward E   Gonzalez David G DG   Lathrop Elizabeth A EA   Boucher Jonathan J   Greco Valentina V  

Cell 20181108 6


Fibroblasts are an essential cellular and structural component of our organs. Despite several advances, the critical behaviors that fibroblasts utilize to maintain their homeostasis in vivo have remained unclear. Here, by tracking the same skin fibroblasts in live mice, we show that fibroblast position is stable over time and that this stability is maintained despite the loss of neighboring fibroblasts. In contrast, fibroblast membranes are dynamic during homeostasis and extend to fill the space  ...[more]

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