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SRX6915142: GSM4099322: SRn_2_mRNA; Mus musculus; RNA-Seq
3 ILLUMINA (Illumina HiSeq 3000) runs: 27.8M spots, 8.4G bases, 3Gb downloads

Submitted by: NCBI (GEO)
Study: Neuronal and glial DNA methylation and gene expression changes in early epileptogenesis
show Abstracthide Abstract
Mesial Temporal Lobe Epilepsy is characterized by progressive changes of both neurons and glia, also referred to as epileptogenesis. No curative treatment options, apart from surgery, are available. DNA methylation (DNAm) is a potential upstream mechanism in epileptogenesis and may serve as a novel therapeutic target. To our knowledge, this is the first study to investigate epilepsy-related DNAm, gene expression (GE) and their relationship, in neurons and glia. We used the intracortical kainic acid injection model to elicit status epilepticus. At 24 hours post injection, hippocampi from eight kainic acid- (KA) and eight saline-injected (SH) mice were extracted and shock frozen. Separation into neurons and glial nuclei was performed by flow cytometry. Changes in DNAm and gene expression were measured with reduced representation bisulfite sequencing (RRBS) and mRNA-sequencing (mRNAseq). Statistical analyses were performed in R with the edgeR package. We observed fulminant DNAm- and GE changes in both neurons and glia at 24 hours after initiation of status epilepticus. The vast majority of these changes were specific for either neurons or glia. At several epilepsy-related genes, like HDAC11, SPP1, GAL, DRD1 and SV2C, significant differential methylation and differential gene expression coincided. We found neuron- and glia-specific changes in DNAm and gene expression in early epileptogenesis. We detected single genetic loci in several epilepsy-related genes, where DNAm and GE changes coincide, worth further investigation. Further, our results may serve as an information source for neuronal and glial alterations in both DNAm and GE in early epileptogenesis. Overall design: DNA methylation (RRBS) and gene expression (mRNA-seq) changes in neurons and glia; Right hippocampus of kainic acid injected mice (numbner of mice=8, number of samples=3); vs saline injected mice(numbner of mice=8, number of samples=3) at 24 hrs post injection.
Sample: SRn_2_mRNA
SAMN12861454 • SRS5446207 • All experiments • All runs
Organism: Mus musculus
Library:
Instrument: Illumina HiSeq 3000
Strategy: RNA-Seq
Source: TRANSCRIPTOMIC
Selection: cDNA
Layout: PAIRED
Construction protocol: 24 hours after status epilepticus right hippocampi were extracted and flash frozen. Tissue was thawed in homogenization buffer and homogenized on a GentleMACS dissociator (Miltenyi). Debris was removed by density gradient centrifugation, using Debris Removal Solution (Miltenyi cat.no. 130-109-398). Nuclei were resuspended in buffer and stained with anti-NeuN-Alexa Fluor488 (Millipore cat.no. MAB377X), followed by sorting on BD FACSAria (BD Biosciences). RNA was extracted from NeuN negative nuclei, following procedures E and F.I in the mirVana miRNA Isolation Kit protocol (Ambion cat. no. AM 1560). RNA was up-concentrated using the RNA Clean & Concentrator-5 kit (Zymo Research cat.no. R1015). SMART-Seqv4 Ultra Low InputRNA Kit for Sequencing (Takara Bio cat.no. 634891) was used to amplify 1 ng mRNA from total RNA, with 10 cycles of PCR performed. The resulting cDNA was used as input in library preparation with ThruPlex DNAseq Kit (Rubicon Genomics cat.no. R400407).
Experiment attributes:
GEO Accession: GSM4099322
Links:
Runs: 3 runs, 27.8M spots, 8.4G bases, 3Gb
Run# of Spots# of BasesSizePublished
SRR101949379,162,6262.8G1Gb2019-12-06
SRR101949389,281,9582.8G1Gb2019-12-06
SRR101949399,365,3452.8G1Gb2019-12-06

ID:
9097891

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