The stress-responsive epigenetic repressor histone deacetylase 4 (HDAC4) regulates cardiac gene expression. Here we show that the levels of an N-terminal proteolytically derived fragment of HDAC4, termed HDAC4-NT, are lower in failing mouse hearts than in healthy control hearts. Virus-mediated transfer of the portion of the Hdac4 gene encoding HDAC4-NT into the mouse myocardium protected the heart from remodeling and failure; this was associated with decreased expression of Nr4a1, which encodes a nuclear orphan receptor, and decreased NR4A1-dependent activation of the hexosamine biosynthetic pathway (HBP). Conversely, exercise enhanced HDAC4-NT levels, and mice with a cardiomyocyte-specific deletion of Hdac4 show reduced exercise capacity, ...
Cell differentiation into cardiomyocytes requires activation of differentiation-specific genes and e...
Heart failure is associated with the reactivation of a fetal cardiac gene programme that has become ...
BACKGROUND: A number of distinct stress signaling pathways in myocardium cause cardiac hypertrophy a...
The stress-responsive epigenetic repressor histone deacetylase 4 (HDAC4) regulates cardiac gene expr...
The adult heart responds to stress signals by hypertrophic growth, which is often accompanied by act...
In the adult heart, a variety of stresses induce re-expression of a fetal gene program in associatio...
Abstract Background Histone deacetylases (HDACs) play a critical role in modulating myocardial prote...
In the adult heart, a variety of stresses induce re-expression of a fetal gene program in associatio...
Histone deacetylase (HDAC) inhibition plays a crucial role in mediating cardiogenesis and myocardial...
AbstractThe heart responds to stress signals by hypertrophic growth, which is accompanied by activat...
Histone deacetylase (HDAC) inhibition plays a crucial role in mediating cardiogenesis and myocardial...
HDACs can modify the structure and function of chromatin to regulate gene expression and can also mo...
Failure of the directed differentiation of the transplanted stem cells into cardiomyocytes is still ...
Failure of the directed differentiation of the transplanted stem cells into cardiomyocytes is still ...
Pressure overload induces stress-induced signaling pathways and a coordinated transcriptional respon...
Cell differentiation into cardiomyocytes requires activation of differentiation-specific genes and e...
Heart failure is associated with the reactivation of a fetal cardiac gene programme that has become ...
BACKGROUND: A number of distinct stress signaling pathways in myocardium cause cardiac hypertrophy a...
The stress-responsive epigenetic repressor histone deacetylase 4 (HDAC4) regulates cardiac gene expr...
The adult heart responds to stress signals by hypertrophic growth, which is often accompanied by act...
In the adult heart, a variety of stresses induce re-expression of a fetal gene program in associatio...
Abstract Background Histone deacetylases (HDACs) play a critical role in modulating myocardial prote...
In the adult heart, a variety of stresses induce re-expression of a fetal gene program in associatio...
Histone deacetylase (HDAC) inhibition plays a crucial role in mediating cardiogenesis and myocardial...
AbstractThe heart responds to stress signals by hypertrophic growth, which is accompanied by activat...
Histone deacetylase (HDAC) inhibition plays a crucial role in mediating cardiogenesis and myocardial...
HDACs can modify the structure and function of chromatin to regulate gene expression and can also mo...
Failure of the directed differentiation of the transplanted stem cells into cardiomyocytes is still ...
Failure of the directed differentiation of the transplanted stem cells into cardiomyocytes is still ...
Pressure overload induces stress-induced signaling pathways and a coordinated transcriptional respon...
Cell differentiation into cardiomyocytes requires activation of differentiation-specific genes and e...
Heart failure is associated with the reactivation of a fetal cardiac gene programme that has become ...
BACKGROUND: A number of distinct stress signaling pathways in myocardium cause cardiac hypertrophy a...