SummaryNeuronal activity influences genes involved in circuit development and information processing. However, the molecular basis of this process remains poorly understood. We found that HDAC4, a histone deacetylase that shuttles between the nucleus and cytoplasm, controls a transcriptional program essential for synaptic plasticity and memory. The nuclear import of HDAC4 and its association with chromatin is negatively regulated by NMDA receptors. In the nucleus, HDAC4 represses genes encoding constituents of central synapses, thereby affecting synaptic architecture and strength. Furthermore, we show that a truncated form of HDAC4 encoded by an allele associated with mental retardation is a gain-of-function nuclear repressor that abolishes...
A growing body of research indicates that pharmacological inhibition of histone deacetylases (HDACs)...
Reversible protein acetylation provides a central mechanism for controlling gene expression and cell...
Reversible protein acetylation provides a central mechanism for controlling gene expression and cell...
Neuronal activity influences genes involved in circuit development and information processing. Howev...
SummaryNeuronal activity influences genes involved in circuit development and information processing...
Long-lasting forms of hippocampal plasticity and hippocampus-dependent memory share a requirement fo...
Long-lasting forms of hippocampal plasticity and hippocampus-dependent memory share a requirement fo...
Neural activity actively regulates muscle gene expression. This regulation is crucial for specifying...
AbstractModulation of gene expression is a constant and necessary event for mammalian brain function...
Histonedeacetylase (HDAC) inhibitors increasehistoneacetylationandenhancebothmemoryandsynapticplasti...
Over the past 30 years, lysine acetylation of histone and nonhistone proteins has become established...
Modulation of gene expression is a constant and necessary event for mammalian brain function. An imp...
Recent studies show that histone deacetylase 6 (HDAC6) has important roles in the human brain, espec...
Histone deacetylases (HDACs) have been extensively studied as drug targets in neurodegenerative dise...
A growing body of research indicates that pharmacological inhibition of histone deacetylases (HDACs)...
A growing body of research indicates that pharmacological inhibition of histone deacetylases (HDACs)...
Reversible protein acetylation provides a central mechanism for controlling gene expression and cell...
Reversible protein acetylation provides a central mechanism for controlling gene expression and cell...
Neuronal activity influences genes involved in circuit development and information processing. Howev...
SummaryNeuronal activity influences genes involved in circuit development and information processing...
Long-lasting forms of hippocampal plasticity and hippocampus-dependent memory share a requirement fo...
Long-lasting forms of hippocampal plasticity and hippocampus-dependent memory share a requirement fo...
Neural activity actively regulates muscle gene expression. This regulation is crucial for specifying...
AbstractModulation of gene expression is a constant and necessary event for mammalian brain function...
Histonedeacetylase (HDAC) inhibitors increasehistoneacetylationandenhancebothmemoryandsynapticplasti...
Over the past 30 years, lysine acetylation of histone and nonhistone proteins has become established...
Modulation of gene expression is a constant and necessary event for mammalian brain function. An imp...
Recent studies show that histone deacetylase 6 (HDAC6) has important roles in the human brain, espec...
Histone deacetylases (HDACs) have been extensively studied as drug targets in neurodegenerative dise...
A growing body of research indicates that pharmacological inhibition of histone deacetylases (HDACs)...
A growing body of research indicates that pharmacological inhibition of histone deacetylases (HDACs)...
Reversible protein acetylation provides a central mechanism for controlling gene expression and cell...
Reversible protein acetylation provides a central mechanism for controlling gene expression and cell...