SNX27-Mediated Recycling of Neuroligin-2 Regulates Inhibitory Signaling
Author(s) -
Els F. Halff,
Blanka R. Szulc,
Flavie Lesept,
Josef T. Kittler
Publication year - 2019
Publication title -
cell reports
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 6.264
H-Index - 154
eISSN - 2639-1856
pISSN - 2211-1247
DOI - 10.1016/j.celrep.2019.10.096
Subject(s) - neuroligin , pdz domain , inhibitory postsynaptic potential , microbiology and biotechnology , gephyrin , synapse , neurexin , neurotransmission , neuroscience , postsynaptic density , biology , downregulation and upregulation , chemistry , receptor , excitatory postsynaptic potential , biochemistry , postsynaptic potential , gene , glycine receptor , glycine , amino acid
GABA A receptors mediate fast inhibitory transmission in the brain, and their number can be rapidly up- or downregulated to alter synaptic strength. Neuroligin-2 plays a critical role in the stabilization of synaptic GABA A receptors and the development and maintenance of inhibitory synapses. To date, little is known about how the amount of neuroligin-2 at the synapse is regulated and whether neuroligin-2 trafficking affects inhibitory signaling. Here, we show that neuroligin-2, when internalized to endosomes, co-localizes with SNX27, a brain-enriched cargo-adaptor protein that facilitates membrane protein recycling. Direct interaction between the PDZ domain of SNX27 and PDZ-binding motif in neuroligin-2 enables membrane retrieval of neuroligin-2, thus enhancing synaptic neuroligin-2 clusters. Furthermore, SNX27 knockdown has the opposite effect. SNX27-mediated up- and downregulation of neuroligin-2 surface levels affects inhibitory synapse composition and signaling strength. Taken together, we show a role for SNX27-mediated recycling of neuroligin-2 in maintenance and signaling of the GABAergic synapse.
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