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Publication : Organotypic coculture preparation for the study of developmental synapse elimination in mammalian brain.

First Author  Uesaka N Year  2012
Journal  J Neurosci Volume  32
Issue  34 Pages  11657-70
PubMed ID  22915109 Mgi Jnum  J:279660
Mgi Id  MGI:6363949 Doi  10.1523/JNEUROSCI.1097-12.2012
Citation  Uesaka N, et al. (2012) Organotypic coculture preparation for the study of developmental synapse elimination in mammalian brain. J Neurosci 32(34):11657-70
abstractText  We developed an organotypic coculture preparation allowing fast and efficient identification of molecules that regulate developmental synapse elimination in the mammalian brain. This coculture consists of a cerebellar slice obtained from rat or mouse at postnatal day 9 (P9) or P10 and a medullary explant containing the inferior olive dissected from rat at embryonic day 15. We verified that climbing fibers (CFs), the axons of inferior olivary neurons, formed functional synapses onto Purkinje cells (PCs) in the cerebellum of cocultures. PCs were initially reinnervated by multiple CFs with similar strengths. Surplus CFs were eliminated subsequently, and the remaining CFs became stronger. These changes are similar to those occurring in developing cerebellum in vivo. Importantly, the changes in CF innervations in cocultures involved the same molecules required for CF synapse elimination in vivo, including NMDA receptor, type 1 metabotropic glutamate receptor and glutamate receptor delta2 (GluRdelta2). We demonstrate that gain- and loss-of-function analyses can be efficiently performed by lentiviral-mediated overexpression and RNAi-induced knockdown of GluRdelta2. Using this approach, we identified neuroligin-2 as a novel molecule that promotes CF synapse elimination in postsynaptic PCs. Thus, our coculture preparation will greatly facilitate the elucidation of molecular mechanisms of synapse elimination.
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