Allele-specific expression reveals genetic drivers of tissue regeneration in mice

等位基因特异性表达揭示了小鼠组织再生的遗传驱动因素

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作者:Katya L Mack ,Heather E Talbott ,Michelle F Griffin ,Jennifer B L Parker ,Nicholas J Guardino ,Amanda F Spielman ,Michael F Davitt ,Shamik Mascharak ,Mauricio Downer ,Annah Morgan ,Caleb Valencia ,Deena Akras ,Mark J Berger ,Derrick C Wan ,Hunter B Fraser ,Michael T Longaker

Abstract

In adult mammals, skin wounds typically heal by scarring rather than through regeneration. In contrast, "super-healer" Murphy Roths Large (MRL) mice have the unusual ability to regenerate ear punch wounds; however, the molecular basis for this regeneration remains elusive. Here, in hybrid crosses between MRL and non-regenerating mice, we used allele-specific gene expression to identify cis-regulatory variation associated with ear regeneration. Analyzing three major cell populations (immune, fibroblast, and endothelial), we found that genes with cis-regulatory differences specifically in fibroblasts were associated with wound-healing pathways and also co-localized with quantitative trait loci for ear wound-healing. Ectopic treatment with one of these proteins, complement factor H (CFH), accelerated wound repair and induced regeneration in typically fibrotic wounds. Through single-cell RNA sequencing (RNA-seq), we observed that CFH treatment dramatically reduced immune cell recruitment to wounds, suggesting a potential mechanism for CFH's effect. Overall, our results provide insights into the molecular drivers of regeneration with potential clinical implications.

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