scholarly article | Q13442814 |
P50 | author | Sheena A. Josselyn | Q64942428 |
P2093 | author name string | C J Cole | |
A J Rashid | |||
P2860 | cites work | Regulation of histone deacetylase 4 and 5 and transcriptional activity by 14-3-3-dependent cellular localization | Q22254367 |
Signal-dependent nuclear export of a histone deacetylase regulates muscle differentiation | Q24290523 | ||
Activation of the myocyte enhancer factor-2 transcription factor by calcium/calmodulin-dependent protein kinase-stimulated binding of 14-3-3 to histone deacetylase 5 | Q24290618 | ||
A calcium-regulated MEF2 sumoylation switch controls postsynaptic differentiation | Q24305050 | ||
Multiple autism-linked genes mediate synapse elimination via proteasomal degradation of a synaptic scaffold PSD-95 | Q24306675 | ||
Calreticulin signals upstream of calcineurin and MEF2C in a critical Ca(2+)-dependent signaling cascade | Q24306858 | ||
hMEF2C gene encodes skeletal muscle- and brain-specific transcription factors | Q24322986 | ||
p38 and extracellular signal-regulated kinases regulate the myogenic program at multiple steps | Q24554203 | ||
MEF2C, a MADS/MEF2-family transcription factor expressed in a laminar distribution in cerebral cortex | Q24563497 | ||
Fragile X syndrome: loss of local mRNA regulation alters synaptic development and function | Q24608468 | ||
Mutations in LGI1 cause autosomal-dominant partial epilepsy with auditory features | Q24643177 | ||
Transcription factor MEF2C influences neural stem/progenitor cell differentiation and maturation in vivo | Q24644531 | ||
Regulation of neuronal survival factor MEF2D by chaperone-mediated autophagy | Q24646352 | ||
Mutational analysis of the DNA binding, dimerization, and transcriptional activation domains of MEF2C | Q24649105 | ||
Identifying autism loci and genes by tracing recent shared ancestry | Q24655308 | ||
Arc/Arg3.1 interacts with the endocytic machinery to regulate AMPA receptor trafficking | Q24681745 | ||
Signal-dependent activation of the MEF2 transcription factor by dissociation from histone deacetylases | Q24682791 | ||
Big mitogen-activated kinase regulates multiple members of the MEF2 protein family | Q28137985 | ||
Inactivation of the myocyte enhancer factor-2 repressor histone deacetylase-5 by endogenous Ca(2+) //calmodulin-dependent kinase II promotes depolarization-mediated cerebellar granule neuron survival | Q28191655 | ||
MEF2: a calcium-dependent regulator of cell division, differentiation and death | Q28215798 | ||
MEF2: a central regulator of diverse developmental programs | Q28254625 | ||
Metaplasticity: the plasticity of synaptic plasticity | Q28281044 | ||
MEF2 protein expression, DNA binding specificity and complex composition, and transcriptional activity in muscle and non-muscle cells | Q28289460 | ||
Transcriptional control of muscle development by myocyte enhancer factor-2 (MEF2) proteins | Q28294155 | ||
Activity-dependent regulation of MEF2 transcription factors suppresses excitatory synapse number | Q28297899 | ||
MEF2C, a transcription factor that facilitates learning and memory by negative regulation of synapse numbers and function | Q28507026 | ||
In vivo analysis of MEF2 transcription factors in synapse regulation and neuronal survival | Q28508411 | ||
The expression of MEF2 genes is implicated in CNS neuronal differentiation | Q28511872 | ||
Ubiquitination regulates PSD-95 degradation and AMPA receptor surface expression | Q28566984 | ||
Cdk5-Mediated Inhibition of the Protective Effects of Transcription Factor MEF2 in Neurotoxicity-Induced Apoptosis | Q28571515 | ||
The interaction between Stargazin and PSD-95 regulates AMPA receptor surface trafficking | Q28581802 | ||
Calcineurin enhances MEF2 DNA binding activity in calcium-dependent survival of cerebellar granule neurons | Q28583015 | ||
Mechanism for nucleocytoplasmic shuttling of histone deacetylase 7 | Q28594917 | ||
AMPA receptor trafficking and synaptic plasticity | Q29547876 | ||
Structure and function of dendritic spines | Q29617057 | ||
The organization of recent and remote memories | Q29619076 | ||
Protein kinase A represses skeletal myogenesis by targeting myocyte enhancer factor 2D. | Q30841374 | ||
Abnormal dendritic spine characteristics in the temporal and visual cortices of patients with fragile-X syndrome: a quantitative examination. | Q32063419 | ||
The Angelman Syndrome protein Ube3A regulates synapse development by ubiquitinating arc. | Q33744301 | ||
MEF2C haploinsufficiency caused by either microdeletion of the 5q14.3 region or mutation is responsible for severe mental retardation with stereotypic movements, epilepsy and/or cerebral malformations | Q33766816 | ||
Ca(2+)-dependent gene expression mediated by MEF2 transcription factors. | Q33885290 | ||
The involvement of the anterior cingulate cortex in remote contextual fear memory | Q34319307 | ||
Phosphorylation of the MADS-Box transcription factor MEF2C enhances its DNA binding activity. | Q34384721 | ||
Toward a molecular definition of long-term memory storage | Q34409226 | ||
Activation of the transcription factor MEF2C by the MAP kinase p38 in inflammation | Q34419537 | ||
MEF2 responds to multiple calcium-regulated signals in the control of skeletal muscle fiber type | Q34669135 | ||
Cocaine regulates MEF2 to control synaptic and behavioral plasticity | Q34818266 | ||
Spine growth in the anterior cingulate cortex is necessary for the consolidation of contextual fear memory | Q35002793 | ||
Angelman syndrome reviewed from a neurophysiological perspective. The UBE3A-GABRB3 hypothesis | Q35218659 | ||
Myocyte enhancer factor-2 transcription factors in neuronal differentiation and survival | Q35764277 | ||
Glucocorticoid receptor and myocyte enhancer factor 2 cooperate to regulate the expression of c-JUN in a neuronal context | Q36147160 | ||
brawn for brains: the role of MEF2 proteins in the developing nervous system | Q36294310 | ||
CREB, synapses and memory disorders: past progress and future challenges | Q36304863 | ||
Members of the myocyte enhancer factor 2 transcription factor family differentially regulate Bdnf transcription in response to neuronal depolarization | Q36367305 | ||
A Mef2 gene that generates a muscle-specific isoform via alternative mRNA splicing | Q36647589 | ||
Determination of the consensus binding site for MEF2 expressed in muscle and brain reveals tissue-specific sequence constraints | Q36681719 | ||
Genome-wide analysis of MEF2 transcriptional program reveals synaptic target genes and neuronal activity-dependent polyadenylation site selection | Q37070840 | ||
Communication between the synapse and the nucleus in neuronal development, plasticity, and disease | Q37212202 | ||
From synapse to nucleus: calcium-dependent gene transcription in the control of synapse development and function | Q37279404 | ||
Phosphorylation of neuronal survival factor MEF2D by glycogen synthase kinase 3beta in neuronal apoptosis | Q37432069 | ||
Protein degradation and memory formation | Q37809597 | ||
Direct interaction between myocyte enhancer factor 2 (MEF2) and protein phosphatase 1alpha represses MEF2-dependent gene expression. | Q39861257 | ||
Fragile X mental retardation protein is required for synapse elimination by the activity-dependent transcription factor MEF2. | Q40372504 | ||
MEF-2 regulates activity-dependent spine loss in striatopallidal medium spiny neurons. | Q40817289 | ||
Structural changes accompanying memory storage | Q40893584 | ||
Synaptic scaling requires the GluR2 subunit of the AMPA receptor. | Q41821575 | ||
Modulation of Neuronal Survival Factor MEF2 by Kinases in Parkinson's Disease | Q42180022 | ||
Mef2-mediated transcription of the miR379-410 cluster regulates activity-dependent dendritogenesis by fine-tuning Pumilio2 protein levels | Q43079834 | ||
Dendritic spine and dendritic field characteristics of layer V pyramidal neurons in the visual cortex of fragile-X knockout mice. | Q44124708 | ||
Regulation of neuroprotective activity of myocyte-enhancer factor 2 by cAMP-protein kinase A signaling pathway in neuronal survival | Q45285809 | ||
Cyclin-dependent kinase 5 mediates neurotoxin-induced degradation of the transcription factor myocyte enhancer factor 2. | Q46486132 | ||
The transcription factor MEF2 directs developmental visually driven functional and structural metaplasticity. | Q48358652 | ||
MEF2 negatively regulates learning-induced structural plasticity and memory formation | Q48411990 | ||
The primate hippocampal formation: evidence for a time-limited role in memory storage | Q48879853 | ||
Functional characterization of a novel mutation in KCNA1 in episodic ataxia type 1 associated with epilepsy | Q48912687 | ||
Inducible and reversible enhancement of learning, memory, and long-term potentiation by genetic inhibition of calcineurin. | Q48947728 | ||
Restricted and regulated overexpression reveals calcineurin as a key component in the transition from short-term to long-term memory. | Q52040390 | ||
Dendritic Spine Pathology: Cause or Consequence of Neurological Disorders? | Q58064430 | ||
P433 | issue | 1 | |
P407 | language of work or name | English | Q1860 |
P304 | page(s) | 118-125 | |
P577 | publication date | 2013-07-12 | |
P1433 | published in | Genes, Brain and Behavior | Q112067 |
P1476 | title | Emerging roles for MEF2 transcription factors in memory | |
P478 | volume | 13 |
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Q35748848 | Durable fear memories require PSD-95. |
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Q39328196 | Genome-wide epigenetic analysis of MEF2A and MEF2C transcription factors in mouse cortical neurons |
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Q48462977 | IGF-1 deficiency causes atrophic changes associated with upregulation of VGluT1 and downregulation of MEF2 transcription factors in the mouse cochlear nuclei. |
Q27023529 | Interactions between mitochondria and the transcription factor myocyte enhancer factor 2 (MEF2) regulate neuronal structural and functional plasticity and metaplasticity |
Q64120396 | MEF-2 isoforms' (A-D) roles in development and tumorigenesis |
Q26778515 | MEF2 transcription factors: developmental regulators and emerging cancer genes |
Q52626735 | MEF2A regulates mGluR-dependent AMPA receptor trafficking independently of Arc/Arg3.1. |
Q37457424 | MEF2C rs190982 polymorphism with late-onset Alzheimer's disease in Han Chinese: A replication study and meta-analyses |
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Q92668133 | Neuronal Myocyte-Specific Enhancer Factor 2D (MEF2D) Is Required for Normal Circadian and Sleep Behavior in Mice |
Q39999607 | Postnatal Loss of Mef2c Results in Dissociation of Effects on Synapse Number and Learning and Memory |
Q36045416 | Potent Protection Against MPP(+)-Induced Neurotoxicity via Activating Transcription Factor MEF2D by a Novel Derivative of Naturally Occurring Danshensu/Tetramethylpyrazine |
Q64242404 | Retinal-input-induced epigenetic dynamics in the developing mouse dorsal lateral geniculate nucleus |
Q38867124 | Role of hippocampal activity-induced transcription in memory consolidation. |
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Q26747536 | Sumoylation in Synaptic Function and Dysfunction |
Q36182197 | The E3 ligase APC/C-Cdh1 regulates MEF2A-dependent transcription by targeting SUMO-specific protease 2 for ubiquitination and degradation |
Q38671721 | The Role of CREB, SRF, and MEF2 in Activity-Dependent Neuronal Plasticity in the Visual Cortex. |
Q38220786 | The neuronal activity-driven transcriptome. |
Q55314869 | The transcription factor MEF2A plays a key role in the differentiation/maturation of rat neural stem cells into neurons. |
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