Distinct Subunit Domains Govern Synaptic Stability and Specificity of the Kainate Receptor

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Abstract

Synaptic communication between neurons requires the precise localization of neurotransmitter receptors to the correct synapse type. Kainate-type glutamate receptors restrict synaptic localization that is determined by the afferent presynaptic connection. The mechanisms that govern this input-specific synaptic localization remain unclear. Here, we examine how subunit composition and specific subunit domains contribute to synaptic localization of kainate receptors. The cytoplasmic domain of the GluK2 low-affinity subunit stabilizes kainate receptors at synapses. In contrast, the extracellular domain of the GluK4/5 high-affinity subunit synergistically controls the synaptic specificity of kainate receptors through interaction with C1q-like proteins. Thus, the input-specific synaptic localization of the native kainate receptor complex involves two mechanisms that underlie specificity and stabilization of the receptor at synapses.

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Straub, C., Noam, Y., Nomura, T., Yamasaki, M., Yan, D., Fernandes, H. B., … Tomita, S. (2016). Distinct Subunit Domains Govern Synaptic Stability and Specificity of the Kainate Receptor. Cell Reports, 16(2), 531–544. https://doi.org/10.1016/j.celrep.2016.05.093

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