MBNL1 drives dynamic transitions between fibroblasts and myofibroblasts in cardiac wound healing

MBNL1 驱动心脏伤口愈合中成纤维细胞和肌成纤维细胞之间的动态转变

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作者:Darrian Bugg, Logan R J Bailey, Ross C Bretherton, Kylie E Beach, Isabella M Reichardt, Kalen Z Robeson, Anna C Reese, Jagadambika Gunaje, Galina Flint, Cole A DeForest, April Stempien-Otero, Jennifer Davis

Abstract

Dynamic fibroblast to myofibroblast state transitions underlie the heart's fibrotic response. Because transcriptome maturation by muscleblind-like 1 (MBNL1) promotes differentiated cell states, this study investigated whether tactical control of MBNL1 activity could alter myofibroblast activity and fibrotic outcomes. In healthy mice, cardiac fibroblast-specific overexpression of MBNL1 transitioned the fibroblast transcriptome to that of a myofibroblast and after injury promoted myocyte remodeling and scar maturation. Both fibroblast- and myofibroblast-specific loss of MBNL1 limited scar production and stabilization, which was ascribed to negligible myofibroblast activity. The combination of MBNL1 deletion and injury caused quiescent fibroblasts to expand and adopt features of cardiac mesenchymal stem cells, whereas transgenic MBNL1 expression blocked fibroblast proliferation and drove the population into a mature myofibroblast state. These data suggest MBNL1 is a post-transcriptional switch, controlling fibroblast state plasticity during cardiac wound healing.

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