Literature DB >> 29859977

Distinct Roles of NMDAR and mGluR5 in Light Exposure Reversal of Feedforward Synaptic Strength in V1 of Juvenile Mice after Binocular Vision Deprivation.

Xiaoxiu Tie1, Shuo Li1, Yilin Feng1, Biqin Lai1, Sheng Liu2, Bin Jiang3.   

Abstract

In the visual cortex, sensory deprivation causes global augmentation of the amplitude of AMPA receptor-mediated miniature EPSCs in layer 2/3 pyramidal cells and enhancement of NMDA receptor-dependent long-term potentiation (LTP) in cells activated in layer 4, effects that are both rapidly reversed by light exposure. Layer 2/3 pyramidal cells receive both feedforward input from layer 4 and intra-cortical lateral input from the same layer, LTP is mainly induced by the former input. Whether feedforward excitatory synaptic strength is affected by visual deprivation and light exposure, how this synaptic strength correlates with the magnitude of LTP in this pathway, and the underlying mechanism have not been explored. Here, we showed that in juvenile mice, both dark rearing and dark exposure reduced the feedforward excitatory synaptic strength, and the effects can be reversed completely by 10-12 h and 6-8 h light exposure, respectively. However, inhibition of NMDA receptors by CPP or mGluR5 by MPEP, prevented the effect of light exposure on the mice reared in the dark from birth, while only inhibition of NMDAR prevented the effect of light exposure on dark-exposed mice. These results suggested that the activation of both NMDAR and mGluR5 are essential in the light exposure reversal of feedforward excitatory synaptic strength in the dark reared mice from birth; while in the dark exposed mice, only activation of NMDAR is required.
Copyright © 2018 IBRO. Published by Elsevier Ltd. All rights reserved.

Entities:  

Keywords:  dark exposure; dark rearing; feedforward excitatory synaptic strength; light exposure; visual cortex

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Year:  2018        PMID: 29859977     DOI: 10.1016/j.neuroscience.2018.05.034

Source DB:  PubMed          Journal:  Neuroscience        ISSN: 0306-4522            Impact factor:   3.590


  1 in total

1.  Astrocyte glutamate uptake coordinates experience-dependent, eye-specific refinement in developing visual cortex.

Authors:  Grayson O Sipe; Jeremy Petravicz; Rajeev V Rikhye; Rodrigo Garcia; Nikolaos Mellios; Mriganka Sur
Journal:  Glia       Date:  2021-03-06       Impact factor: 8.073

  1 in total

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