Dendritic signaling in inhibitory interneurons: Local tuning via group I metabotropic glutamate receptors

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Abstract

Communication between neurons is achieved by rapid signal transduction via highly specialized structural elements known as synaptic contacts. In addition, numerous extrasynaptic mechanisms provide a flexible platform for the local regulation of synaptic signals. For example, peri- and extra-synaptic signaling through the group I metabotropic glutamate receptors (mGluRs) can be involved in the highly compartmentalized regulation of dendritic ion conductances, the induction of input-specific synaptic plasticity, and the local release of retrograde messengers. Therefore, extrasynaptic mechanisms appear to play a key role in the local tuning of dendritic computations. Here, we review recent findings on the role of group I mGluRs in the dendritic signaling of inhibitory interneurons. We propose that group I mGluRs provide a dual-mode signaling device that integrates different patterns of neural activity. By implementing distinct forms of intrinsic and synaptic regulation, group I mGluRs may be responsible for the local fine-tuning of dendritic function. © 2012 Camiré, Lacaille and Topolnik.

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Camiré, O., Lacaille, J. C., & Topolnik, L. (2012). Dendritic signaling in inhibitory interneurons: Local tuning via group I metabotropic glutamate receptors. Frontiers in Physiology. https://doi.org/10.3389/fphys.2012.00259

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