Mathieu Letellier
Team leader
Researcher - PhD (CR) / CNRS/ Contact
+33 5 33 51 47 67
www.orcid.org/0000-0003-4008-298X
Scientific articles
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LRRTM2 controls presynapse nano-organization and AMPA receptor sub-positioning through Neurexin-binding interface
Nat Commun. 2024-10-11. 15(1)
10.1038/s41467-024-53090-y -
GRID1/GluD1 homozygous variants linked to intellectual disability and spastic paraplegia impair mGlu1/5 receptor signaling and excitatory synapses
Mol Psychiatry. 2024-02-28.
10.1038/s41380-024-02469-w -
Astrocyte Calcium Signaling Shifts the Polarity of Presynaptic Plasticity
Neuroscience. 2023-08-01. 525 : 38-46.
10.1016/j.neuroscience.2023.05.032 -
miR ‐124‐dependent tagging of synapses by synaptopodin enables input‐specific homeostatic plasticity
The EMBO Journal. 2022-07-25.
10.15252/embj.2021109012 -
MDGAs are fast-diffusing molecules that delay excitatory synapse development by altering neuroligin behavior.
eLife. 2022-05-09. 11
10.7554/elife.75233 -
Editorial: Homeostatic Synaptic Plasticity: From Synaptic Circuit Assembly to Neurological Disorders.
Front. Cell. Neurosci.. 2021-05-14. 15
10.3389/fncel.2021.695313 -
mir124-dependent tagging of glutamatergic synapses by synaptopodin controls non-uniform and input-specific homeostatic synaptic plasticity
. 2021-04-30.
10.1101/2021.04.30.442089 -
Correction: Pre-post synaptic alignment through neuroligin-1 tunes synaptic transmission efficiency
eLife. 2020-12-16.
10.7554/eLife.65689 -
Optogenetic control of excitatory post-synaptic differentiation through neuroligin-1 tyrosine phosphorylation
eLife. 2020-04-23. 9
10.7554/elife.52027 -
miRNA-Dependent Control of Homeostatic Plasticity in Neurons
Front. Cell. Neurosci.. 2019-12-05. 13
10.3389/fncel.2019.00536 -
Differential role of pre- and postsynaptic neurons in the activity-dependent control of synaptic strengths across dendrites
PLoS Biol. 2019-06-05. 17(6) : e2006223.
10.1371/journal.pbio.2006223 -
Lattice light sheet microscopy and photo-stimulation in brain slices
Neural Imaging and Sensing 2019. 2019-03-01.
10.1117/12.2509467 -
A unique intracellular tyrosine in neuroligin-1 regulates AMPA receptor recruitment during synapse differentiation and potentiation
Nat Commun. 2018-09-28. 9(1)
10.1038/s41467-018-06220-2 -
Pre-post synaptic alignment through neuroligin-1 tunes synaptic transmission efficiency
eLife. 2018-07-25. 7
10.7554/eLife.31755 -
Astrocytes regulate heterogeneity of presynaptic strengths in hippocampal networks
Proc Natl Acad Sci USA. 2016-04-26. 113(19) : E2685-E2694.
10.1073/pnas.1523717113 -
Mapping the dynamics and nanoscale organization of synaptic adhesion proteins using monomeric streptavidin.
Nat Comms. 2016-03-16. 7 : 10773.
10.1038/ncomms10773 -
Erratum: MiR-92a regulates expression of synaptic GluA1-containing AMPA receptors during homeostatic scaling (Nature Neuroscience (2014) 17 (1040-1042))
Nat Neurosci. 2014-11-21. 17(12) : 1841-1841.
10.1038/nn1214-1841c -
miR-92a regulates expression of synaptic GluA1-containing AMPA receptors during homeostatic scaling.
Nat Neurosci. 2014-07-13. 17(8) : 1040-1042.
10.1038/nn.3762 -
Formation and reformation of climbing fibre synapses in the cerebellum: A similar story?
Cerebellum. 2013-01-17. 12(3) : 319-321.
10.1007/s12311-012-0443-x -
Synaptic remodeling and neosynaptogenesis
Handbook of the Cerebellum and Cerebellar Disorders. 2013-01-01. : 257-279.
10.1007/978-94-007-1333-8_13 -
β3 integrin is dispensable for conditioned fear and hebbian forms of plasticity in the hippocampus
European Journal of Neuroscience. 2012-07-02. 36(4) : 2461-2469.
10.1111/j.1460-9568.2012.08163.x -
Homeostatic synaptic plasticity: From single synapses to neural circuits
Current Opinion in Neurobiology. 2012-06-01. 22(3) : 516-521.
10.1016/j.conb.2011.09.006 -
Differential control of presynaptic efficacy by postsynaptic N-cadherin and β-catenin
Nat Neurosci. 2011-12-04. 15(1) : 81-89.
10.1038/nn.2995 -
Synapse elimination in olivo-cerebellar explants occurs during a critical period and leaves an indelible trace in Purkinje cells
Proceedings of the National Academy of Sciences. 2009-08-03. 106(33) : 14102-14107.
10.1073/pnas.0902820106 -
Normal adult climbing fiber monoinnervation of cerebellar Purkinje cells in mice lacking MHC class I molecules
Devel Neurobio. 2008-01-01. 68(8) : 997-1006.
10.1002/dneu.20639 -
Reinnervation of late postnatal Purkinje cells by climbing fibers: Neosynaptogenesis without transient multi-innervation
Journal of Neuroscience. 2007-05-16. 27(20) : 5373-5383.
10.1523/JNEUROSCI.0452-07.2007 -
Post-lesion transcommissural growth of olivary climbing fibres creates functional synaptic microzones
Eur J Neurosci. 2003-12-01. 18(11) : 3027-3036.
10.1111/j.1460-9568.2003.03045.x