Transient MyoD overexpression in concert with small molecule treatment reprograms mouse fibroblasts into induced myogenic progenitor cells (iMPCs). However, the molecular landscape and mechanisms orchestrating this cellular conversion remain unknown. Here, we undertook an integrative multiomics approach to delineate the process of iMPC reprogramming in comparison to myogenic transdifferentiation mediated solely by MyoD. Using transcriptomics, proteomics, and genome-wide chromatin accessibility assays, we unravel distinct molecular trajectories that govern the two processes. Notably, only iMPC reprogramming is characterized by gradual up-regulation of muscle stem cell markers, unique signaling pathways, and chromatin remodelers in conjunctio...
Genetic reprogramming holds great potential for disease modeling, drug screening, and regenerative m...
Following cues from mouse embryogenesis, Chal et al. (2015) identified key regulators of skeletal my...
Life-long regeneration of healthy muscle by cell transplantation is an ideal therapy for patients wi...
Transient MyoD overexpression in concert with small molecule treatment reprograms mouse fibroblasts ...
Summary Skeletal muscle harbors quiescent stem cells termed satellite cells and proliferative progen...
Genetic mutations in dystrophin manifest in Duchenne muscular dystrophy (DMD), the most commonly inh...
Background Myogenic transdifferentiation can be accomplished through ectopic MYOD1 ...
Skeletal muscle myoblasts (iMyoblasts) were generated from human induced pluripotent stem cells (iPS...
University of Minnesota Master of Science thesis. August 2012. Major: Stem Cell Biology. Advisor: At...
SummaryMuscle regeneration declines with aging and myopathies, and reprogramming of differentiated m...
AbstractMyoD is a master regulator of myogenesis with a potent ability to redirect the cell fate of ...
Muscular dystrophies (MDs) are often characterized by impairment of both skeletal and cardiac muscle...
Skeletal muscle is the most abundant human tissue; therefore, an unlimited availability of myogenic ...
During muscle regeneration, the mechanism integrating environmental cues at the chromatin of muscle ...
MyoD and Myf5 are transcription factors that regulate myogenesis by promoting satellite cell transcr...
Genetic reprogramming holds great potential for disease modeling, drug screening, and regenerative m...
Following cues from mouse embryogenesis, Chal et al. (2015) identified key regulators of skeletal my...
Life-long regeneration of healthy muscle by cell transplantation is an ideal therapy for patients wi...
Transient MyoD overexpression in concert with small molecule treatment reprograms mouse fibroblasts ...
Summary Skeletal muscle harbors quiescent stem cells termed satellite cells and proliferative progen...
Genetic mutations in dystrophin manifest in Duchenne muscular dystrophy (DMD), the most commonly inh...
Background Myogenic transdifferentiation can be accomplished through ectopic MYOD1 ...
Skeletal muscle myoblasts (iMyoblasts) were generated from human induced pluripotent stem cells (iPS...
University of Minnesota Master of Science thesis. August 2012. Major: Stem Cell Biology. Advisor: At...
SummaryMuscle regeneration declines with aging and myopathies, and reprogramming of differentiated m...
AbstractMyoD is a master regulator of myogenesis with a potent ability to redirect the cell fate of ...
Muscular dystrophies (MDs) are often characterized by impairment of both skeletal and cardiac muscle...
Skeletal muscle is the most abundant human tissue; therefore, an unlimited availability of myogenic ...
During muscle regeneration, the mechanism integrating environmental cues at the chromatin of muscle ...
MyoD and Myf5 are transcription factors that regulate myogenesis by promoting satellite cell transcr...
Genetic reprogramming holds great potential for disease modeling, drug screening, and regenerative m...
Following cues from mouse embryogenesis, Chal et al. (2015) identified key regulators of skeletal my...
Life-long regeneration of healthy muscle by cell transplantation is an ideal therapy for patients wi...