Key result
Myotube differentiation and AraC treatment resulted in significant local and global developmental changes in 3D genome organization and transcription, particularly within the euchromatic compartment.
Muscle cell-specific responses to developmental and environmental stimuli are mediated through a chromatin structure mechanism.
Chromatin changes may mediate muscle cell responses; leaves open translation to human myopathies or therapies.
BACKGROUND: The spatial organization of eukaryotic genomes facilitates and reflects the underlying nuclear processes that are occurring in the cell. As such, the spatial organization of a genome represents a window on the genome biology that enables analysis of the nuclear regulatory processes that contribute to mammalian development. METHODS: In this study, Hi-C and RNA-seq were used to capture the genome organization and transcriptome in mouse muscle progenitor cells (C2C12 myoblasts) before and after differentiation to myotubes, in the presence or absence of the cytidine analogue AraC. RESULTS: We observed significant local and global developmental changes despite high levels of correlation between the myotubes and myoblast genomes. Notably, the genes that exhibited the greatest variation in transcript levels between the different developmental stages were predominately within the euchromatic compartment. There was significant re-structuring and changes in the expression of replication-dependent histone variants within the HIST1 locus. Finally, treating terminally differentiated myotubes with AraC resulted in additional changes to the transcriptome and 3D genome organization of sets of genes that were all involved in pyroptosis. CONCLUSIONS: Collectively, our results provide evidence for muscle cell-specific responses to developmental and environmental stimuli mediated through a chromatin structure mechanism.
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Doynova et al. (2017) studied Skeletal muscle development (myogenesis). Myotube differentiation and AraC treatment vs. Undifferentiated myoblasts and untreated myotubes was evaluated on Changes in 3D genome organization (Hi-C) and transcriptome (RNA-seq). Myotube differentiation and AraC treatment resulted in significant local and global developmental changes in 3D genome organization and transcription, particularly within the euchromatic compartment.
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