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Heart failure (HF) is driven via interplay between master regulatory transcription factors and dynamic alterations in chromatin structure. While pathologic gene transactivation in this context is known to be associated with recruitment of histone acetyl-transferases and local chromatin hyperacetylat...
ORGANISM(S): Rattus norvegicus 
Heart failure (HF) is driven via interplay between master regulatory transcription factors and dynamic alterations in chromatin structure. While pathologic gene transactivation in this context is known to be associated with recruitment of histone acetyl-transferases and local chromatin hyperacetylat...
ORGANISM(S): Mus musculus 
Heart failure is driven by the interplay between master regulatory transcription factors and dynamic alterations in chromatin structure. Coordinate activation of developmental, inflammatory, fibrotic and growth regulators underlies the hallmark phenotypes of pathologic cardiac hypertrophy and contra...
ORGANISM(S): Mus musculus 
PBRM1 bromodomains associate with RNA to facilitate chromatin association (CLIP-seq)
PBRM1 bromodomains associate with RNA to facilitate chromatin association (ChIP-seq)
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