4.5 Article

EVIDENCE FOR M2 MUSCARINIC RECEPTOR MODULATION OF AXON TERMINALS AND DENDRITES IN THE RODENT BASOLATERAL AMYGDALA: AN ULTRASTRUCTURAL AND ELECTROPHYSIOLOGICAL ANALYSIS

Journal

NEUROSCIENCE
Volume 357, Issue -, Pages 349-362

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.neuroscience.2017.06.019

Keywords

cholinergic; electron microscopy; immunohistochemistry; whole-cell recording; IPSC

Categories

Funding

  1. NIH [R01MH104638]

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The basolateral amygdala receives a very dense cholinergic innervation from the basal forebrain that is important for memory consolidation. Although behavioral studies have shown that both M-1 and M-2 muscarinic receptors are critical for these mnemonic functions, there have been very few neuroanatomical and electrophysiological investigations of the localization and function of different types of muscarinic receptors in the amygdala. In the present study we investigated the subcellular localization of M-2 muscarinic receptors (M(2)Rs) in the anterior basolateral nucleus (BLa) of the mouse, including the localization of M(2)Rs in parvalbumin (PV) immunoreactive interneurons, using double-labeling immunoelectron microscopy. Little if any M2R-immunoreactivity (M2R-ir) was observed in neuronal somata, but the neuropil was densely labeled. Ultrastructural analysis using a pre-embedding immunogold-silver technique (IGS) demonstrated M2R-ir in dendritic shafts, spines, and axon terminals forming asymmetrical (excitatory) or symmetrical (mostly inhibitory) synapses. In addition, about one-quarter of PV+ axon terminals and half of PV+ dendrites, localized using immunoperoxidase, were M2R+ when observed in single thin sections. In all M2R+ neuropilar structures, including those that were PV+, about one-quarter to two-thirds of M2R+ immunoparticles were plasma-membrane-associated, depending on the structure. The expression of M(2)Rs in PV+ and PV-negative terminals forming symmetrical synapses indicates M2R modulation of inhibitory transmission. Electrophysiological studies in mouse and rat brain slices, including paired recordings from interneurons and pyramidal projection neurons, demonstrated M2R-mediated suppression of GABA release. These findings suggest cell-type-specific functions of M(2)Rs and shed light on organizing principles of cholinergic modulation in the BLa. (C) 2017 IBRO. Published by Elsevier Ltd. All rights reserved.

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