Allele-specific expression reveals genetic drivers of tissue regeneration in mice
Talbott, H. E.; Mack, K. L.; Griffin, M.; Guardino, N. J.; Parker, J. B.; Spielman, A. F.; Davitt, M. F.; Mascharak, S.; Berger, M. J.; Wan, D. C.; Fraser, H. B.; Longaker, M. T.
Show abstract
In adult mammals, skin wounds typically heal by scarring rather than through regeneration. In contrast, "super-healer" MRL mice have the unusual ability to regenerate ear punch wounds, yet the molecular basis for this regeneration remains elusive. Here, in hybrid crosses between MRL and non-regenerating mice, we use allele-specific gene expression to identify cis-regulatory variation associated with ear regeneration. Analyzing three major wound cell populations, we identified extensive strain- and tissue- specific cis-regulatory divergence associated with differences in healing outcomes. Genes with cis-regulatory differences specifically in fibroblasts were associated with wound healing phenotypes and pathways, and were enriched near genetic markers associated with ear-healing in a genetic cross. Finally, we demonstrated that one of these genes, Cfh, could be applied ectopically to accelerate wound repair and induce regeneration in typically fibrotic wounds. Overall, our results provide insight into the molecular drivers of regeneration in MRL mice with potential clinical implications.
Matching journals
The top 6 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 94%
- Cellular heterogeneity and lineage restriction during mouse digit tip regeneration at single cell resolution 94%
- Direct Reprogramming of Non-limb Fibroblasts toCells with Properties of Limb Progenitors 93%
Similar papers in this journal
- Hindbrain neuropore tissue geometry determines asymmetric cell-mediated closure dynamics 92%
- Microenvironmental sensing by fibroblasts controls macrophage population size 92%
- Ecdysone exerts biphasic control of regenerative signaling, coordinating the completion of regeneration with developmental progression 92%
"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.