Neurexins Physically and Functionally Interact with GABAA Receptors
Neurexins are presynaptic cell-adhesion molecules that formtrans-synaptic complexes with postsynaptic neuroligins. When overexpressed in nonneuronal cells, neurexins induce formation of postsynaptic specializations in cocultured neurons, suggesting that neurexins are synaptogenic. However, we find t...
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Veröffentlicht in: | Neuron (Cambridge, Mass.) Mass.), 2010-05, Vol.66 (3), p.403-416 |
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Zusammenfassung: | Neurexins are presynaptic cell-adhesion molecules that formtrans-synaptic complexes with postsynaptic neuroligins. When overexpressed in nonneuronal cells, neurexins induce formation of postsynaptic specializations in cocultured neurons, suggesting that neurexins are synaptogenic. However, we find that when overexpressed in neurons, neurexins do not increase synapse density, but instead selectively suppressed GABAergic synaptic transmission without decreasing GABAergic synapse numbers. This suppression was mediated by all subtypes of neurexins tested, in a cell-autonomous and neuroligin-independent manner. Strikingly, addition of recombinant neurexin to cultured neurons at submicromolar concentrations induced the same suppression of GABAergic synaptic transmission as neurexin overexpression. Moreover, experiments with native brain proteins and purified recombinant proteins revealed that neurexins directly and stoichiometrically bind to GABAAreceptors, suggesting that they decrease GABAergic synaptic responses by interacting with GABAAreceptors. Our findings suggest that besides their other well-documented interactions, presynaptic neurexins directly act on postsynaptic GABAAreceptors, which may contribute to regulate the excitatory/inhibitory balance in brain. |
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ISSN: | 0896-6273 1097-4199 |
DOI: | 10.1016/j.neuron.2010.04.008 |