bioRxiv · 10.1101/2020.03.05.979112
Differentiation reveals the plasticity of age-related change in murine muscle progenitors
Abstract
Skeletal muscle experiences a decline in lean mass and regenerative potential with age, in part due to intrinsic changes in progenitor cells. However, it remains unclear if age-related changes in progenitors persist across a differentiation trajectory or if new age-related changes manifest in differentiated cells. To investigate this possibility, we performed single cell RNA-seq on muscle mononuclear cells from young and aged mice and profiled muscle stem cells (MuSCs) and fibro/adipose progenitors (FAPs) after differentiation. Differentiation increased the magnitude of age-related change in MuSCs and FAPs, but also masked a subset of age-related changes present in progenitors. Using a dynamical systems approach and RNA velocity, we found that aged MuSCs follow the same differentiation trajectory as young cells, but stall in differentiation near a commitment decision. Our results suggest that age-related changes are plastic across differentiation trajectories and that fate commitment decisions are delayed in aged myogenic cells.
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Kimmel, J. C., Hendrickson, D. G., Kelley, D. R.. 2020-03-06. Differentiation reveals the plasticity of age-related change in murine muscle progenitors. https://doi.org/10.1101/2020.03.05.979112
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