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Distance-dependent regulation of NMDAR nanoscale organization along hippocampal neuron dendrites
by
Butler, Corey
, Dupuis, Julien P.
, Sibarita, Jean-Baptiste
, Groc, Laurent
, Bénac, Nathan
, Levet, Florian
, Kellermayer, Blanka
, Manso, Constance
, Ferreira, Joana S.
, Bouchet, Delphine
in
Action potential
/ Animals
/ Biological Sciences
/ Ca2+/calmodulin-dependent protein kinase II
/ Calcium-binding protein
/ Calcium-Calmodulin-Dependent Protein Kinase Type 2 - metabolism
/ Calmodulin
/ Dendrites
/ Dendrites - genetics
/ Dendrites - metabolism
/ Dendritic structure
/ Glutamate receptors
/ Glutamatergic transmission
/ Glutamic acid receptors (ionotropic)
/ Hippocampus
/ Hippocampus - metabolism
/ Human health and pathology
/ Kinases
/ Life Sciences
/ N-Methyl-D-aspartic acid receptors
/ Nanoparticles
/ Neurons
/ Neurons - metabolism
/ Neurons and Cognition
/ Neuroscience
/ Proteins
/ Pyramidal cells
/ Rats
/ Receptors, N-Methyl-D-Aspartate - genetics
/ Receptors, N-Methyl-D-Aspartate - metabolism
/ Segments
/ Synapses
/ Synapses - metabolism
/ Synaptic plasticity
/ Tissues and Organs
/ Topography
2020
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Distance-dependent regulation of NMDAR nanoscale organization along hippocampal neuron dendrites
by
Butler, Corey
, Dupuis, Julien P.
, Sibarita, Jean-Baptiste
, Groc, Laurent
, Bénac, Nathan
, Levet, Florian
, Kellermayer, Blanka
, Manso, Constance
, Ferreira, Joana S.
, Bouchet, Delphine
in
Action potential
/ Animals
/ Biological Sciences
/ Ca2+/calmodulin-dependent protein kinase II
/ Calcium-binding protein
/ Calcium-Calmodulin-Dependent Protein Kinase Type 2 - metabolism
/ Calmodulin
/ Dendrites
/ Dendrites - genetics
/ Dendrites - metabolism
/ Dendritic structure
/ Glutamate receptors
/ Glutamatergic transmission
/ Glutamic acid receptors (ionotropic)
/ Hippocampus
/ Hippocampus - metabolism
/ Human health and pathology
/ Kinases
/ Life Sciences
/ N-Methyl-D-aspartic acid receptors
/ Nanoparticles
/ Neurons
/ Neurons - metabolism
/ Neurons and Cognition
/ Neuroscience
/ Proteins
/ Pyramidal cells
/ Rats
/ Receptors, N-Methyl-D-Aspartate - genetics
/ Receptors, N-Methyl-D-Aspartate - metabolism
/ Segments
/ Synapses
/ Synapses - metabolism
/ Synaptic plasticity
/ Tissues and Organs
/ Topography
2020
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Distance-dependent regulation of NMDAR nanoscale organization along hippocampal neuron dendrites
by
Butler, Corey
, Dupuis, Julien P.
, Sibarita, Jean-Baptiste
, Groc, Laurent
, Bénac, Nathan
, Levet, Florian
, Kellermayer, Blanka
, Manso, Constance
, Ferreira, Joana S.
, Bouchet, Delphine
in
Action potential
/ Animals
/ Biological Sciences
/ Ca2+/calmodulin-dependent protein kinase II
/ Calcium-binding protein
/ Calcium-Calmodulin-Dependent Protein Kinase Type 2 - metabolism
/ Calmodulin
/ Dendrites
/ Dendrites - genetics
/ Dendrites - metabolism
/ Dendritic structure
/ Glutamate receptors
/ Glutamatergic transmission
/ Glutamic acid receptors (ionotropic)
/ Hippocampus
/ Hippocampus - metabolism
/ Human health and pathology
/ Kinases
/ Life Sciences
/ N-Methyl-D-aspartic acid receptors
/ Nanoparticles
/ Neurons
/ Neurons - metabolism
/ Neurons and Cognition
/ Neuroscience
/ Proteins
/ Pyramidal cells
/ Rats
/ Receptors, N-Methyl-D-Aspartate - genetics
/ Receptors, N-Methyl-D-Aspartate - metabolism
/ Segments
/ Synapses
/ Synapses - metabolism
/ Synaptic plasticity
/ Tissues and Organs
/ Topography
2020
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Distance-dependent regulation of NMDAR nanoscale organization along hippocampal neuron dendrites
Journal Article
Distance-dependent regulation of NMDAR nanoscale organization along hippocampal neuron dendrites
2020
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Overview
Hippocampal pyramidal neurons are characterized by a unique arborization subdivided in segregated dendritic domains receiving distinct excitatory synaptic inputs with specific properties and plasticity rules that shape their respective contributions to synaptic integration and action potential firing. Although the basal regulation and plastic range of proximal and distal synapses are known to be different, the composition and nanoscale organization of key synaptic proteins at these inputs remains largely elusive. Here we used superresolution imaging and single nanoparticle tracking in rat hippocampal neurons to unveil the nanoscale topography of native GluN2A- and GluN2B-NMDA receptors (NMDARs)—which play key roles in the use-dependent adaptation of glutamatergic synapses—along the dendritic arbor. We report significant changes in the nanoscale organization of GluN2B-NMDARs between proximal and distal dendritic segments, whereas the topography of GluN2A-NMDARs remains similar along the dendritic tree. Remarkably, the nanoscale organization of GluN2B-NMDARs at proximal segments depends on their interaction with calcium/calmodulin-dependent protein kinase II (CaM-KII), which is not the case at distal segments. Collectively, our data reveal that the nanoscale organization of NMDARs changes along dendritic segments in a subtype-specific manner and is shaped by the interplay with CaMKII at proximal dendritic segments, shedding light on our understanding of the functional diversity of hippocampal glutamatergic synapses.
Publisher
National Academy of Sciences
Subject
/ Animals
/ Ca2+/calmodulin-dependent protein kinase II
/ Calcium-Calmodulin-Dependent Protein Kinase Type 2 - metabolism
/ Glutamic acid receptors (ionotropic)
/ Kinases
/ N-Methyl-D-aspartic acid receptors
/ Neurons
/ Proteins
/ Rats
/ Receptors, N-Methyl-D-Aspartate - genetics
/ Receptors, N-Methyl-D-Aspartate - metabolism
/ Segments
/ Synapses
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