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Publication : Selective control of inhibitory synapse development by Slitrk3-PTPĪ“ trans-synaptic interaction.

First Author  Takahashi H Year  2012
Journal  Nat Neurosci Volume  15
Issue  3 Pages  389-98, S1-2
PubMed ID  22286174 Mgi Jnum  J:232385
Mgi Id  MGI:5776681 Doi  10.1038/nn.3040
Citation  Takahashi H, et al. (2012) Selective control of inhibitory synapse development by Slitrk3-PTPdelta trans-synaptic interaction. Nat Neurosci 15(3):389-98, S1-2
abstractText  Balanced development of excitatory and inhibitory synapses is required for normal brain function, and an imbalance in this development may underlie the pathogenesis of many neuropsychiatric disorders. Compared with the many identified trans-synaptic adhesion complexes that organize excitatory synapses, little is known about the organizers that are specific for inhibitory synapses. We found that Slit and NTRK-like family member 3 (Slitrk3) actS as a postsynaptic adhesion molecule that selectively regulates inhibitory synapse development via trans-interaction with axonal tyrosine phosphatase receptor PTPdelta. When expressed in fibroblasts, Slitrk3 triggered only inhibitory presynaptic differentiation in contacting axons of co-cultured rat hippocampal neurons. Recombinant Slitrk3 preferentially localized to inhibitory postsynaptic sites. Slitrk3-deficient mice exhibited decreases in inhibitory, but not excitatory, synapse number and function in hippocampal CA1 neurons and exhibited increased seizure susceptibility and spontaneous epileptiform activity. Slitrk3 required trans-interaction with axonal PTPdelta to induce inhibitory presynaptic differentiation. These results identify Slitrk3-PTPdelta as an inhibitory-specific trans-synaptic organizing complex that is required for normal functional GABAergic synapse development.
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