Although many transcription factors are known to control important aspects of neural development, the genome-wide programs that are directly regulated by these factors are not known. We have characterized the genetic program that is activated by MEF2, a key regulator of activity-dependent synapse development. These MEF2 target genes have diverse functions at synapses, revealing a broad role for MEF2 in synapse development. Several of the MEF2 targets are mutated in human neurological disorders including epilepsy and autism spectrum disorders, suggesting that these disorders may be caused by disruption of an activity-dependent gene program that controls synapse development. Our analyses also reveal that neuronal activity promotes alternative...
How broadly expressed transcription factors contribute to tissue-specific gene expression is not wel...
AbstractIn the field of molecular and cellular neuroscience, it is not a trivial task to see the for...
Mutations in myocyte enhancer factor 2C (MEF2C), an important transcription factor in neurodevelopme...
SummaryAlthough many transcription factors are known to control important aspects of neural developm...
Although many transcription factors are known to control important aspects of neural development, th...
Although many transcription factors are known to control important aspects of neural development, th...
Neuronal activity regulates the transcription of a large set of genes, many of which encode proteins...
In the mammalian nervous system, neuronal activity regulates the strength and number of synapses for...
AbstractThe myocyte enhancer factor 2 (MEF2) family of transcription factors is highly expressed in ...
Compensation among paralogous transcription factors (TFs) confers genetic robustness of cellular pro...
Neuronal activity orchestrates the proper development of the neuronal circuitry by regulating both t...
The transcription factors of the myocyte enhancer factor 2 family (MEF2 A-D) are highly expressed in...
Point mutations and structural variants that directly disrupt the coding sequence of MEF2C have been...
A recent study by Gabel etal. (2015) found that Mecp2, the gene mutated in Rett syndrome, represses ...
A unique synaptic activity-responsive element (SARE) sequence, composed of the consensus binding sit...
How broadly expressed transcription factors contribute to tissue-specific gene expression is not wel...
AbstractIn the field of molecular and cellular neuroscience, it is not a trivial task to see the for...
Mutations in myocyte enhancer factor 2C (MEF2C), an important transcription factor in neurodevelopme...
SummaryAlthough many transcription factors are known to control important aspects of neural developm...
Although many transcription factors are known to control important aspects of neural development, th...
Although many transcription factors are known to control important aspects of neural development, th...
Neuronal activity regulates the transcription of a large set of genes, many of which encode proteins...
In the mammalian nervous system, neuronal activity regulates the strength and number of synapses for...
AbstractThe myocyte enhancer factor 2 (MEF2) family of transcription factors is highly expressed in ...
Compensation among paralogous transcription factors (TFs) confers genetic robustness of cellular pro...
Neuronal activity orchestrates the proper development of the neuronal circuitry by regulating both t...
The transcription factors of the myocyte enhancer factor 2 family (MEF2 A-D) are highly expressed in...
Point mutations and structural variants that directly disrupt the coding sequence of MEF2C have been...
A recent study by Gabel etal. (2015) found that Mecp2, the gene mutated in Rett syndrome, represses ...
A unique synaptic activity-responsive element (SARE) sequence, composed of the consensus binding sit...
How broadly expressed transcription factors contribute to tissue-specific gene expression is not wel...
AbstractIn the field of molecular and cellular neuroscience, it is not a trivial task to see the for...
Mutations in myocyte enhancer factor 2C (MEF2C), an important transcription factor in neurodevelopme...