[HTML][HTML] Stem cell plasticity, acetylation of H3K14, and de novo gene activation rely on KAT7

AJ Kueh, MI Bergamasco, A Quaglieri, B Phipson… - Cell Reports, 2023 - cell.com
In the conventional model of transcriptional activation, transcription factors bind to response
elements and recruit co-factors, including histone acetyltransferases. Contrary to this model …

Stem cell plasticity, acetylation of H3K14, and de novo gene activation rely on KAT7.

AJ Kueh, MI Bergamasco, A Quaglieri, B Phipson… - Cell Reports, 2023 - europepmc.org
In the conventional model of transcriptional activation, transcription factors bind to response
elements and recruit co-factors, including histone acetyltransferases. Contrary to this model …

Stem cell plasticity, acetylation of H3K14, and de novo gene activation rely on KAT7

AJ Kueh, MI Bergamasco, A Quaglieri… - Cell …, 2023 - pubmed.ncbi.nlm.nih.gov
In the conventional model of transcriptional activation, transcription factors bind to response
elements and recruit co-factors, including histone acetyltransferases. Contrary to this model …

[HTML][HTML] Stem cell plasticity, acetylation of H3K14, and de novo gene activation rely on KAT7

AJ Kueh, MI Bergamasco, A Quaglieri, B Phipson… - Cell Reports, 2023 - cell.com
In the conventional model of transcriptional activation, transcription factors bind to response
elements and recruit co-factors, including histone acetyltransferases. Contrary to this model …

[HTML][HTML] Stem cell plasticity, acetylation of H3K14, and de novo gene activation rely on KAT7

AJ Kueh, MI Bergamasco, A Quaglieri, B Phipson… - Cell Reports, 2023 - Elsevier
In the conventional model of transcriptional activation, transcription factors bind to response
elements and recruit co-factors, including histone acetyltransferases. Contrary to this model …