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CaMKII phosphorylation of neuroligin-1 regulates excitatory synapses.


ABSTRACT: Neuroligins are postsynaptic cell adhesion molecules that are important for synaptic function through their trans-synaptic interaction with neurexins (NRXNs). The localization and synaptic effects of neuroligin-1 (NL-1, also called NLGN1) are specific to excitatory synapses with the capacity to enhance excitatory synapses dependent on synaptic activity or Ca(2+)/calmodulin kinase II (CaMKII). Here we report that CaMKII robustly phosphorylates the intracellular domain of NL-1. We show that T739 is the dominant CaMKII site on NL-1 and is phosphorylated in response to synaptic activity in cultured rodent neurons and sensory experience in vivo. Furthermore, a phosphodeficient mutant (NL-1 T739A) reduces the basal and activity-driven surface expression of NL-1, leading to a reduction in neuroligin-mediated excitatory synaptic potentiation. To the best of our knowledge, our results are the first to demonstrate a direct functional interaction between CaMKII and NL-1, two primary components of excitatory synapses.

SUBMITTER: Bemben MA 

PROVIDER: S-EPMC3943352 | biostudies-literature | 2014 Jan

REPOSITORIES: biostudies-literature

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CaMKII phosphorylation of neuroligin-1 regulates excitatory synapses.

Bemben Michael A MA   Shipman Seth L SL   Hirai Takaaki T   Herring Bruce E BE   Li Yan Y   Badger John D JD   Nicoll Roger A RA   Diamond Jeffrey S JS   Roche Katherine W KW  

Nature neuroscience 20131215 1


Neuroligins are postsynaptic cell adhesion molecules that are important for synaptic function through their trans-synaptic interaction with neurexins (NRXNs). The localization and synaptic effects of neuroligin-1 (NL-1, also called NLGN1) are specific to excitatory synapses with the capacity to enhance excitatory synapses dependent on synaptic activity or Ca(2+)/calmodulin kinase II (CaMKII). Here we report that CaMKII robustly phosphorylates the intracellular domain of NL-1. We show that T739 i  ...[more]

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