NMDA Receptor Subunits in the Adult Rat Hippocampus Undergo Similar Changes after 5 Minutes in an Open Field and after LTP Induction
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Summary
It was corroborated that translation was necessary for LTP induction and expression of NMDA receptor subunits and the rise in GluN1 depends on transcription and translation, while the increase in GLUN2A appears to mainly depend on translation, though a contribution of some remaining transcriptional activity during actinomycin D treatment could not be rouled out.
- Type
- article
- Published
- 2013-02-01
- Cited by
- 32
- References
- 65
- Access
- Open access
- OpenAlex
- https://openalex.org/W1980586443
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:83967
Keywords
Long-term potentiation, LTP induction, NMDA receptor, Hippocampal formation, Synaptic plasticity
References
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- An NMDA Receptor ER Retention Signal Regulated by Phosphorylation and Alternative Splicing
- Allocentric Spatial Learning by Hippocampectomised Rats: A Further Test of the “Spatial Mapping” and “Working Memory” Theories of Hippocampal Function
- NR2A Subunit Expression Shortens NMDA Receptor Synaptic Currents in Developing Neocortex
- Subunit‐specific mechanisms and proton sensitivity of NMDA receptor channel block
- Genetic enhancement of learning and memory in mice
- Spaced stimuli stabilize MAPK pathway activation and its effects on dendritic morphology
- NMDA Receptor Subunit NR2A Is Required for Rapidly Acquired Spatial Working Memory But Not Incremental Spatial Reference Memory
- Increases in NMDA receptor binding are specifically related to memory formation for a passive avoidance task in the chick: a quantitative autoradiographic study.
- Translational control of long-lasting synaptic plasticity and memory.
- Regulation of NMDA Receptor Subunit Expression and Its Implications for LTD, LTP, and Metaplasticity
- NMDA receptor trafficking in synaptic plasticity and neuropsychiatric disorders
- Synaptic plasticity and translation initiation.
- A single social stress-experience alters glutamate receptor-binding in rat hippocampal CA3 area.
- Requirement of a critical period of transcription for induction of a late phase of LTP.
- NMDA receptor subunits: function and pharmacology.
Cited by
- Altered hippocampal plasticity by prenatal kynurenine administration, kynurenine-3-monoxygenase (KMO) deletion or galantamine
- Theta-Burst Stimulation of Hippocampal Slices Induces Network-Level Calcium Oscillations and Activates Analogous Gene Transcription to Spatial Learning
- Hippocampal NMDA receptors and the previous experience effect on memory.
- Effect of exercise training on long-term potentiation and NMDA receptor channels in rats with cerebral infarction
- Contribution of NMDA receptors to dorsolateral prefrontal cortical networks in primates
- Sleep-Dependent Declarative Memory Consolidation—Unaffected after Blocking NMDA or AMPA Receptors but Enhanced by NMDA Coagonist D-Cycloserine
- Changes in synaptic transmission and protein expression in the brains of adult offspring after prenatal inhibition of the kynurenine pathway.
- Urban air pollutants reduce synaptic function of CA1 neurons via an NMDA/NO• pathway in vitro
- In vivo evidence for neuroplasticity in older adults
- The levels of the GluN2A NMDA receptor subunit are modified in both the neonatal and adult rat brain by an early experience involving denial of maternal contact.
- Re-Opening the Critical Window for Estrogen Therapy
- Surface expression of NMDA receptor changes during memory consolidation in the crab Neohelice granulata
- Matrix Metalloprotease 3 Activity Supports Hippocampal EPSP-to-Spike Plasticity Following Patterned Neuronal Activity via the Regulation of NMDAR Function and Calcium Flux
- GluN1 and GluN2A NMDA Receptor Subunits Increase in the Hippocampus during Memory Consolidation in the Rat
- Adenosine A1 Receptors Play an Important Protective Role Against Cognitive Impairment and Long-Term Potentiation Inhibition in a Pentylenetetrazol Mouse Model of Epilepsy
- Sense and antisense Oligodeoxynucleotides to Glun1 Nmdar are Cognitive Enhancers (Nootropics) and protective agents in normal and ischemic (Anoxic) conditions- In vitro study
- NMDA Receptor Subunits Change after Synaptic Plasticity Induction and Learning and Memory Acquisition
- NMDAR Hypofunction Animal Models of Schizophrenia
- Linking NMDA Receptor Synaptic Retention to Synaptic Plasticity and Cognition
- Synaptic GluN2A-Containing NMDA Receptors: From Physiology to Pathological Synaptic Plasticity
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