Transcriptomics

Dataset Information

0

Compartment-specific regulation of gene expression orchestrates homeostatic synaptic scaling


ABSTRACT: Synaptic scaling is a form of homeostatic plasticity which allows neurons to reduce their action potential firing rate in response to chronic alterations in neural activity. Synaptic scaling requires profound changes in gene expression, but the relative contribution of local and cell-wide mechanisms to synaptic scaling is controversial. Here we performed a comprehensive multi-omics characterization of the somatic and process compartments of primary rat hippocampal neurons during synaptic scaling. Thereby, we uncovered highly compartment-specific and correlated changes in the neuronal transcriptome and proteome. Specifically, we identified highly compartment-specific downregulation of crucial regulators of neuronal excitability and excitatory synapse structure. Motif analysis further suggests an important role for trans-acting post-transcriptional regulators, including RNA-binding proteins and microRNAs, in the local regulation of the corresponding mRNAs. Altogether, our study indicates that compartmentalized gene expression changes are widespread in synaptic scaling and might co-exist with neuron-wide mechanism to allow synaptic computation and homeostasis.

ORGANISM(S): Rattus norvegicus

PROVIDER: GSE155540 | GEO | 2021/07/06

REPOSITORIES: GEO

Similar Datasets

2021-07-09 | PXD020745 | Pride
2016-12-22 | PXD004889 | Pride
2016-06-30 | E-GEOD-68960 | biostudies-arrayexpress
2016-06-30 | GSE68960 | GEO
2019-02-13 | GSE111384 | GEO
2017-02-07 | GSE90988 | GEO
2020-03-31 | PXD016004 | Pride
2017-02-13 | PXD004537 | Pride
| PRJNA450745 | ENA
| PRJNA650210 | ENA