Transcriptional networks supervising class IIa HDAC expression are poorly defined. Here we demonstrate that MEF2D is the key factor controlling HDAC9 transcription. This control, which is part of a negative feed-back loop during muscle differentiation, is hijacked in cancer. In leiomyosarcomas the MEF2D/HDAC9 vicious circuit sustains proliferation and cell survival, through the repression of the death receptor FAS. Comprehensive genome-wide studies demonstrate that HDAC4 and HDAC9 control different genetic programs and show both specific and common genomic binding sites. Although the number of MEF2-target genes commonly regulated is similar, only HDAC4 represses many additional genes that are not MEF2D targets. As expected, HDAC4-/- and HDA...
Skeletal muscle exhibits a high regenerative capacity, mainly due to the ability of satellite cells ...
While MEF2 transcription factors are well known to cooperate in orchestrating cell fate and adaptive...
Histone acetylation and deacetylation play essential roles in modifying chromatin structure and regu...
The contribution of MEF2 TFs to the tumorigenic process is still mysterious. Here we clarify that ME...
MEF2 transcription factors (TFs) are well known regulators of differenziative and adaptive responses...
In leiomyosarcoma class IIa HDACs (histone deacetylases) bind MEF2 and convert these transcription f...
The MEF2-class IIa HDACs axis operates in several differentiation pathways and in numerous adaptive ...
MEF2s transcription factors and class IIa HDACs compose a fundamental axis for several differentiati...
AbstractDiscovered for their ability to deacetylate histones and repress transcription, HDACs are a ...
MEF2s transcription factors and class IIa HDACs compose a fundamental axis for several differentiati...
The emergence of specialized cell types and their organisation into organs and tissues involve the t...
In vitro transformation of primary human fibroblasts has been commonly used to understand the specif...
Histone deacetylases (HDACs) are important regulators of gene expression. Specific structural featur...
Two families of transcription factors are important for executing the differentiation program in pro...
AbstractInappropriate transcriptional repression involving histone deacetylases (HDACs) is a promine...
Skeletal muscle exhibits a high regenerative capacity, mainly due to the ability of satellite cells ...
While MEF2 transcription factors are well known to cooperate in orchestrating cell fate and adaptive...
Histone acetylation and deacetylation play essential roles in modifying chromatin structure and regu...
The contribution of MEF2 TFs to the tumorigenic process is still mysterious. Here we clarify that ME...
MEF2 transcription factors (TFs) are well known regulators of differenziative and adaptive responses...
In leiomyosarcoma class IIa HDACs (histone deacetylases) bind MEF2 and convert these transcription f...
The MEF2-class IIa HDACs axis operates in several differentiation pathways and in numerous adaptive ...
MEF2s transcription factors and class IIa HDACs compose a fundamental axis for several differentiati...
AbstractDiscovered for their ability to deacetylate histones and repress transcription, HDACs are a ...
MEF2s transcription factors and class IIa HDACs compose a fundamental axis for several differentiati...
The emergence of specialized cell types and their organisation into organs and tissues involve the t...
In vitro transformation of primary human fibroblasts has been commonly used to understand the specif...
Histone deacetylases (HDACs) are important regulators of gene expression. Specific structural featur...
Two families of transcription factors are important for executing the differentiation program in pro...
AbstractInappropriate transcriptional repression involving histone deacetylases (HDACs) is a promine...
Skeletal muscle exhibits a high regenerative capacity, mainly due to the ability of satellite cells ...
While MEF2 transcription factors are well known to cooperate in orchestrating cell fate and adaptive...
Histone acetylation and deacetylation play essential roles in modifying chromatin structure and regu...