Daniel Choquet

Interdisciplinary Institute for Neuroscience CNRS/Bordeaux University, Pessac, Nouvelle-Aquitaine, France 
AMPAR Trafficking
"Daniel Choquet"
Mean distance: 15.16 (cluster 32)


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Jean Mariani research assistant 1983-1983 Institut Pasteur
 (Modeling the VOR)
Christian Giaume grad student 1984-1984 Institut Pasteur
 (Crayfish septate junction)
Henri Korn grad student 1984-1988 Institut Pasteur
 (Ion channels in Lymphocytes)
Michael D. Cahalan grad student 1991-1991 UC Irvine
Michael P. Sheetz post-doc 1994-1996 Duke (Chemistry Tree)
 (Role of force in Integrin-cytoskeleton interaction)
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Zhang H, Zhang C, Vincent J, et al. (2018) Modulation of AMPA receptor surface diffusion restores hippocampal plasticity and memory in Huntington's disease models. Nature Communications. 9: 4272
Kellermayer B, Ferreira JS, Dupuis J, et al. (2018) Differential Nanoscale Topography and Functional Role of GluN2-NMDA Receptor Subtypes at Glutamatergic Synapses. Neuron
Hangen E, Cordelières FP, Petersen JD, et al. (2018) Neuronal Activity and Intracellular Calcium Levels Regulate Intracellular Transport of Newly Synthesized AMPAR. Cell Reports. 24: 1001-1012.e3
Haas KT, Compans B, Letellier M, et al. (2018) Pre-post synaptic alignment through neuroligin-1 tunes synaptic transmission efficiency. Elife. 7
Opazo P, Viana da Silva S, Carta M, et al. (2018) CaMKII Metaplasticity Drives Aβ Oligomer-Mediated Synaptotoxicity. Cell Reports. 23: 3137-3145
Martineau M, Somasundaram A, Grimm JB, et al. (2017) Semisynthetic fluorescent pH sensors for imaging exocytosis and endocytosis. Nature Communications. 8: 1412
Beghin A, Kechkar A, Butler C, et al. (2017) Localization-based super-resolution imaging meets high-content screening. Nature Methods
Rosendale M, Jullié D, Choquet D, et al. (2017) Spatial and Temporal Regulation of Receptor Endocytosis in Neuronal Dendrites Revealed by Imaging of Single Vesicle Formation. Cell Reports. 18: 1840-1847
Compans B, Choquet D, Hosy E. (2016) Review on the role of AMPA receptor nano-organization and dynamic in the properties of synaptic transmission. Neurophotonics. 3: 041811
Hinckelmann MV, Virlogeux A, Niehage C, et al. (2016) Self-propelling vesicles define glycolysis as the minimal energy machinery for neuronal transport. Nature Communications. 7: 13233
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