Shank3-Rich2 Interaction Regulates AMPA Receptor Recycling and Synaptic Long-Term Potentiation
@article{Raynaud2013Shank3Rich2IR, title={Shank3-Rich2 Interaction Regulates AMPA Receptor Recycling and Synaptic Long-Term Potentiation}, author={F. Raynaud and A. J{\'a}nossy and J. Dahl and F. Bertaso and J. Perroy and A. Varrault and M. Vidal and P. Worley and T. Boeckers and J. Bockaert and P. Marin and L. Fagni and V. Homburger}, journal={The Journal of Neuroscience}, year={2013}, volume={33}, pages={9699 - 9715} }
Synaptic long-term potentiation (LTP) is a key mechanism involved in learning and memory, and its alteration is associated with mental disorders. Shank3 is a major postsynaptic scaffolding protein that orchestrates dendritic spine morphogenesis, and mutations of this protein lead to mental retardation and autism spectrum disorders. In the present study we investigated the role of a new Shank3-associated protein in LTP. We identified the Rho-GAP interacting CIP4 homolog 2 (Rich2) as a new Shank3… CONTINUE READING
Figures and Topics from this paper
44 Citations
Enlarged dendritic spines and pronounced neophobia in mice lacking the PSD protein RICH2
- Biology, Medicine
- Molecular Brain
- 2016
- 20
Shank and Zinc Mediate an AMPA Receptor Subunit Switch in Developing Neurons
- Chemistry, Medicine
- Front. Mol. Neurosci.
- 2018
- 22
- PDF
SNAP23–Kif5 complex controls mGlu1 receptor trafficking
- Chemistry, Medicine
- Journal of molecular cell biology
- 2018
- 3
- PDF
Actin-Dependent Alterations of Dendritic Spine Morphology in Shankopathies
- Biology, Medicine
- Neural plasticity
- 2016
- 22
- PDF
Rho-GTPase-activating Protein Interacting with Cdc-42-interacting Protein 4 Homolog 2 (Rich2)
- Biology, Medicine
- The Journal of Biological Chemistry
- 2013
- 24
- PDF
ARHGAP12 Functions as a Developmental Brake on Excitatory Synapse Function.
- Biology, Medicine
- Cell reports
- 2016
- 14
- PDF
The Crossroads of Synaptic Growth Signaling, Membrane Traffic and Neurological Disease: Insights from Drosophila
- Biology, Medicine
- Traffic
- 2016
- 29
Integrative Analysis of Brain Region-specific Shank3 Interactomes for Understanding the Heterogeneity of Neuronal Pathophysiology Related to SHANK3 Mutations
- Biology, Medicine
- Front. Mol. Neurosci.
- 2017
- 15
- PDF
Interplay between TETs and microRNAs in the adult brain for memory formation
- Biology, Medicine
- Scientific Reports
- 2018
- 12
- PDF
References
SHOWING 1-10 OF 62 REFERENCES
Shank Expression Is Sufficient to Induce Functional Dendritic Spine Synapses in Aspiny Neurons
- Biology, Medicine
- The Journal of Neuroscience
- 2005
- 263
- PDF
SHANK3 mutations identified in autism lead to modification of dendritic spine morphology via an actin-dependent mechanism
- Biology, Medicine
- Molecular Psychiatry
- 2012
- 235
- PDF
The Rho-linked mental retardation protein oligophrenin-1 controls synapse maturation and plasticity by stabilizing AMPA receptors.
- Biology, Medicine
- Genes & development
- 2009
- 123
- PDF
Synaptic dysfunction and abnormal behaviors in mice lacking major isoforms of Shank3.
- Biology, Medicine
- Human molecular genetics
- 2011
- 388
- PDF
The role of endosomal-recycling in long-term potentiation
- Biology, Medicine
- Cellular and Molecular Life Sciences
- 2010
- 25
The Rho-Linked Mental Retardation Protein OPHN1 Controls Synaptic Vesicle Endocytosis via Endophilin A1
- Biology, Medicine
- Current Biology
- 2009
- 81
Regulation of Dendritic Spine Morphology and Synaptic Function by Shank and Homer
- Chemistry, Medicine
- Neuron
- 2001
- 665
Shank, a Novel Family of Postsynaptic Density Proteins that Binds to the NMDA Receptor/PSD-95/GKAP Complex and Cortactin
- Biology, Medicine
- Neuron
- 1999
- 846
ProSAP/Shank proteins – a family of higher order organizing molecules of the postsynaptic density with an emerging role in human neurological disease
- Biology, Medicine
- Journal of neurochemistry
- 2002
- 298
Coupling of mGluR/Homer and PSD-95 Complexes by the Shank Family of Postsynaptic Density Proteins
- Chemistry, Medicine
- Neuron
- 1999
- 960