SummaryPrior studies suggested that the transcription factor ATF4 negatively regulates synaptic plastic and memory. By contrast, we provide evidence from direct in vitro and in vivo knockdown of ATF4 in rodent hippocampal neurons and from ATF4-null mice that implicate ATF4 as essential for normal synaptic plasticity and memory. In particular, hippocampal ATF4 downregulation produces deficits in long-term spatial memory and behavioral flexibility without affecting associative memory or anxiety-like behavior. ATF4 knockdown or loss also causes profound impairment of both long-term potentiation (LTP) and long-term depression (LTD) as well as decreased glutamatergic function. We conclude that ATF4 is a key regulator of the physiological state n...
The capability of the brain to change functionally in response to sensory experience is most active ...
A fundamental goal in neuroscience is to understand mechanisms underlying the ability to create memo...
Mutations in ATRX, a Snf2-type chromatin remodeler, frequently lead to intellectual disability. Howe...
Prior studies suggested that the transcription factor ATF4 negatively regulates synaptic plastic and...
The ubiquitously expressed activating transcription factor 4 (ATF4) has been variably reported to ei...
Maintenance of long-term synaptic plasticity requires gene expression mediated by cAMP-responsive el...
Maintenance of long-term synaptic plasticity requires gene expression mediated by cAMP-responsive el...
SummaryHuman haploinsufficiency of the transcription factor Tcf4 leads to a rare autism spectrum dis...
SummaryNeuronal activity influences genes involved in circuit development and information processing...
Tcf4 is a transcription factor which regulates neurogenesis and neuronal migration in the brain. In ...
Although it is generally accepted that memory consolidation requires regulation of gene expression, ...
AbstractTo examine the role of C/EBP-related transcription factors in long-term synaptic plasticity ...
α-Thalassemia X-linked intellectual disability (ATR-X) syndrome is a neurodevelopmental disorder cau...
The genetic and molecular basis underlying fear memory formation is a key theme in anxiety disorder ...
Human haploinsufficiency of the transcription factor Tcf4 leads to a rare autism spectrum disorder c...
The capability of the brain to change functionally in response to sensory experience is most active ...
A fundamental goal in neuroscience is to understand mechanisms underlying the ability to create memo...
Mutations in ATRX, a Snf2-type chromatin remodeler, frequently lead to intellectual disability. Howe...
Prior studies suggested that the transcription factor ATF4 negatively regulates synaptic plastic and...
The ubiquitously expressed activating transcription factor 4 (ATF4) has been variably reported to ei...
Maintenance of long-term synaptic plasticity requires gene expression mediated by cAMP-responsive el...
Maintenance of long-term synaptic plasticity requires gene expression mediated by cAMP-responsive el...
SummaryHuman haploinsufficiency of the transcription factor Tcf4 leads to a rare autism spectrum dis...
SummaryNeuronal activity influences genes involved in circuit development and information processing...
Tcf4 is a transcription factor which regulates neurogenesis and neuronal migration in the brain. In ...
Although it is generally accepted that memory consolidation requires regulation of gene expression, ...
AbstractTo examine the role of C/EBP-related transcription factors in long-term synaptic plasticity ...
α-Thalassemia X-linked intellectual disability (ATR-X) syndrome is a neurodevelopmental disorder cau...
The genetic and molecular basis underlying fear memory formation is a key theme in anxiety disorder ...
Human haploinsufficiency of the transcription factor Tcf4 leads to a rare autism spectrum disorder c...
The capability of the brain to change functionally in response to sensory experience is most active ...
A fundamental goal in neuroscience is to understand mechanisms underlying the ability to create memo...
Mutations in ATRX, a Snf2-type chromatin remodeler, frequently lead to intellectual disability. Howe...