Post-translational modifications of histones play a key role in the regulation of gene expression during development and differentiation. Numerous studies have shown the dynamics of combinatorial regulation by transcription factors and histone modifications, in the sense that different combinations lead to distinct expression outcomes. Here, we investigated gene regulation by stable enrichment patterns of histone marks H3K4me2 and H3K4me3 in combination with the chromatin binding of the muscle tissue-specific transcription factor MyoD during myogenic differentiation of C2C12 cells. Using k-means clustering, we found that specific combinations of H3K4me2/3 profiles over and towards the gene body impact on gene expression and marks a subset o...
SummaryRecent studies have demonstrated that MyoD initiates a feed-forward regulation of skeletal mu...
During skeletal myogenesis, muscle-regulatory factors bHLH and MEF2 promote the expression of muscle...
Lineage potential is triggered by lineage-specific transcription factors in association with changes...
<div><p>Post-translational modifications of histones play a key role in the regulation of gene expre...
BACKGROUND: Among the complexities of skeletal muscle differentiation is a temporal distinction in t...
<p>Molecular regulation of stem cell differentiation is exerted through both genetic and epigenetic ...
International audienceSkeletal muscle development and regeneration rely on the successive activation...
International audienceSkeletal muscle development and regeneration rely on the successive activation...
International audienceSkeletal muscle development and regeneration rely on the successive activation...
International audienceSkeletal muscle development and regeneration rely on the successive activation...
Skeletal muscle development and regeneration rely on the successive activation of specific transcrip...
Skeletal muscle differentiation is initiated by the transcription factor MyoD, which binds directly ...
Skeletal muscle differentiation is initiated by the transcription factor MyoD, which binds directly ...
Skeletal muscle differentiation is initiated by the transcription factor MyoD, which binds directly ...
MyoD is sufficient to initiate the skeletal muscle gene expression program. Transcription of certain...
SummaryRecent studies have demonstrated that MyoD initiates a feed-forward regulation of skeletal mu...
During skeletal myogenesis, muscle-regulatory factors bHLH and MEF2 promote the expression of muscle...
Lineage potential is triggered by lineage-specific transcription factors in association with changes...
<div><p>Post-translational modifications of histones play a key role in the regulation of gene expre...
BACKGROUND: Among the complexities of skeletal muscle differentiation is a temporal distinction in t...
<p>Molecular regulation of stem cell differentiation is exerted through both genetic and epigenetic ...
International audienceSkeletal muscle development and regeneration rely on the successive activation...
International audienceSkeletal muscle development and regeneration rely on the successive activation...
International audienceSkeletal muscle development and regeneration rely on the successive activation...
International audienceSkeletal muscle development and regeneration rely on the successive activation...
Skeletal muscle development and regeneration rely on the successive activation of specific transcrip...
Skeletal muscle differentiation is initiated by the transcription factor MyoD, which binds directly ...
Skeletal muscle differentiation is initiated by the transcription factor MyoD, which binds directly ...
Skeletal muscle differentiation is initiated by the transcription factor MyoD, which binds directly ...
MyoD is sufficient to initiate the skeletal muscle gene expression program. Transcription of certain...
SummaryRecent studies have demonstrated that MyoD initiates a feed-forward regulation of skeletal mu...
During skeletal myogenesis, muscle-regulatory factors bHLH and MEF2 promote the expression of muscle...
Lineage potential is triggered by lineage-specific transcription factors in association with changes...