Literature DB >> 34855580

REST/NRSF drives homeostatic plasticity of inhibitory synapses in a target-dependent fashion.

Cosimo Prestigio1,2, Daniele Ferrante1,2, Antonella Marte1, Alessandra Romei2, Gabriele Lignani3, Franco Onofri1,4, Pierluigi Valente1,4, Fabio Benfenati2,4, Pietro Baldelli1,4.   

Abstract

The repressor-element 1-silencing transcription/neuron-restrictive silencer factor (REST/NRSF) controls hundreds of neuron-specific genes. We showed that REST/NRSF downregulates glutamatergic transmission in response to hyperactivity, thus contributing to neuronal homeostasis. However, whether GABAergic transmission is also implicated in the homeostatic action of REST/NRSF is unknown. Here, we show that hyperactivity-induced REST/NRSF activation, triggers a homeostatic rearrangement of GABAergic inhibition, with increased frequency of miniature inhibitory postsynaptic currents (IPSCs) and amplitude of evoked IPSCs in mouse cultured hippocampal neurons. Notably, this effect is limited to inhibitory-onto-excitatory neuron synapses, whose density increases at somatic level and decreases in dendritic regions, demonstrating a complex target- and area-selectivity. The upscaling of perisomatic inhibition was occluded by TrkB receptor inhibition and resulted from a coordinated and sequential activation of the Npas4 and Bdnf gene programs. On the opposite, the downscaling of dendritic inhibition was REST-dependent, but BDNF-independent. The findings highlight the central role of REST/NRSF in the complex transcriptional responses aimed at rescuing physiological levels of network activity in front of the ever-changing environment.
© 2021, Prestigio et al.

Entities:  

Keywords:  BDNF; GABAergic synapses; NPAS4; REST/NRSF; homeostatic plasticity; mouse; neural hyperactivity; neuroscience; synaptic homeostasis

Mesh:

Substances:

Year:  2021        PMID: 34855580      PMCID: PMC8639147          DOI: 10.7554/eLife.69058

Source DB:  PubMed          Journal:  Elife        ISSN: 2050-084X            Impact factor:   8.140


  95 in total

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