Keyphrases
Molecular Mechanism
100%
Pharmacology
100%
Ligand-binding Domain
100%
Developmental Delay
100%
Myoclonus
100%
GRIN1
100%
N-methyl-D-aspartate Receptor (NMDAR)
66%
Glycine
66%
Agonist Binding
66%
Neurodevelopment
33%
Seizure
33%
Glutamate
33%
Molecular Dynamics Simulation
33%
Synaptic
33%
Response Time
33%
Receptor Cells
33%
Neuropathology
33%
Dimer Interface
33%
Hypoplasia
33%
Surface Expression
33%
Frontal White Matter
33%
Frontal Lobe
33%
Clinical Phenotype
33%
Effective Concentration
33%
Biophysical Properties
33%
Functional Deficits
33%
Pharmacological Properties
33%
Open Probability
33%
GluN1
33%
GluN2B
33%
Positive Modulator
33%
Deleterious Variants
33%
GluN2B Subunit
33%
Stimuli-sensitive
33%
Developmental Encephalopathy
33%
Zinc Inhibition
33%
GluN2A Subunit
33%
Single-molecule Fluorescence Resonance Energy Transfer (smFRET)
33%
New Phenotypes
33%
Medicine and Dentistry
N Methyl-D-Aspartate Receptor
100%
Myoclonus
100%
Developmental Delay
100%
GRIN1
100%
Fluorescence Resonance Energy Transfer
50%
Epileptic Seizure
50%
Glutamic Acid
50%
Cell Surface Receptor
50%
Nerve Cell Differentiation
50%
Brain Disease
50%
Hypoplasia
50%
Frontal Lobe
50%
Cleft
50%
Dimer
50%
Neuroscience
Agonist
100%
GRIN1
100%
Myoclonus
100%
Aspartic Acid
66%
Receptor
66%
Frontal Lobe
33%
Cleft
33%
Glutamic Acid
33%
Energy Transfer
33%
Nerve Cell Differentiation
33%
Cell Surface Receptor
33%
Hypoplasia
33%
Brain Disease
33%
Pharmacology, Toxicology and Pharmaceutical Science
Receptor
100%
Developmental Delay
100%
Aspartic Acid
100%
Myoclonus
100%
Brain Disease
50%
Cell Surface Receptor
50%
Dimer
50%
Glutamic Acid
50%
Hypoplasia
50%
Biochemistry, Genetics and Molecular Biology
Binding Domain
100%
Agonist
100%
GRIN1
100%
Aspartic Acid
66%
Fluorescence Resonance Energy Transfer
33%
Zinc
33%
Nerve Cell Differentiation
33%
Effective Concentration
33%
Cell Surface Receptor
33%
Glutamic Acid
33%