Literature DB >> 35180389

Differential dendritic integration of long-range inputs in association cortex via subcellular changes in synaptic AMPA-to-NMDA receptor ratio.

Mathieu Lafourcade1, Marie-Sophie H van der Goes1, Dimitra Vardalaki1, Norma J Brown1, Jakob Voigts1, Dae Hee Yun2, Minyoung E Kim2, Taeyun Ku2, Mark T Harnett3.   

Abstract

Synaptic NMDA receptors can produce powerful dendritic supralinearities that expand the computational repertoire of single neurons and their respective circuits. This form of supralinearity may represent a general principle for synaptic integration in thin dendrites. However, individual cortical neurons receive many diverse classes of input that may require distinct postsynaptic decoding schemes. Here, we show that sensory, motor, and thalamic inputs preferentially target basal, apical oblique, and distal tuft dendrites, respectively, in layer 5b pyramidal neurons of the mouse retrosplenial cortex, a visuospatial association area. These dendritic compartments exhibited differential expression of NMDA receptor-mediated supralinearity due to systematic changes in the AMPA-to-NMDA receptor ratio. Our results reveal a new schema for integration in cortical pyramidal neurons, in which dendrite-specific changes in synaptic receptors support input-localized decoding. This coexistence of multiple modes of dendritic integration in single neurons has important implications for synaptic plasticity and cortical computation.
Copyright © 2022 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  AMPA; L5b pyramidal cells; NMDA; dendritic integration; retrosplenial cortex; sCRACM

Mesh:

Substances:

Year:  2022        PMID: 35180389      PMCID: PMC9081173          DOI: 10.1016/j.neuron.2022.01.025

Source DB:  PubMed          Journal:  Neuron        ISSN: 0896-6273            Impact factor:   18.688


  96 in total

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5.  Adrenergic Modulation Regulates the Dendritic Excitability of Layer 5 Pyramidal Neurons In Vivo.

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8.  Enhanced Dendritic Compartmentalization in Human Cortical Neurons.

Authors:  Lou Beaulieu-Laroche; Enrique H S Toloza; Marie-Sophie van der Goes; Mathieu Lafourcade; Derrick Barnagian; Ziv M Williams; Emad N Eskandar; Matthew P Frosch; Sydney S Cash; Mark T Harnett
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10.  Organization of long-range inputs and outputs of frontal cortex for top-down control.

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  1 in total

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