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Lipidomics and Transcriptomics in Neurological Diseases
Published on: March 18, 2022
P2X7 Receptor-Dependent microRNA Expression Profile in the Brain Following Status Epilepticus in Mice
Giorgia Conte1, Ngoc T Nguyen1,2, Mariana Alves1
1Department of Physiology & Medical Physics, Royal College of Surgeons in Ireland (RCSI), Dublin, Ireland.
Abstract:
The ionotropic ATP-gated P2X7 receptor is an important contributor to inflammatory signaling cascades via the release of Interleukin-1β, as well as having roles in cell death, neuronal plasticity and the release of neurotransmitters. Accordingly, there is interest in targeting the P2X7 receptor for the treatment of epilepsy. However, the signaling pathways downstream of P2X7 receptor activation remain incompletely understood. Notably, recent studies showed that P2X7 receptor expression is controlled, in part, by microRNAs (miRNAs). Here, we explored P2X7 receptor-dependent microRNA expression by comparing microRNA expression profiles of wild-type (wt) and P2X7 receptor knockout mice before and after status epilepticus. Genome-wide microRNA profiling was performed using hippocampi from wt and P2X7 receptor knockout mice following status epilepticus induced by intra-amygdala kainic acid. This revealed that the genetic deletion of the P2X7 receptor results in distinct patterns of microRNA expression. Specifically, we found that in vehicle-injected control mice, the lack of the P2X7 receptor resulted in the up-regulation of 50 microRNAs and down-regulation of 35 microRNAs. Post-status epilepticus, P2X7 receptor deficiency led to the up-regulation of 44 microRNAs while 13 microRNAs were down-regulated. Moreover, there was only limited overlap among identified P2X7 receptor-dependent microRNAs between control conditions and post-status epilepticus, suggesting that the P2X7 receptor regulates the expression of different microRNAs during normal physiology and pathology. Bioinformatic analysis revealed that genes targeted by P2X7 receptor-dependent microRNAs were particularly overrepresented in pathways involved in intracellular signaling, inflammation, and cell death; processes that have been repeatedly associated with P2X7 receptor activation. Moreover, whereas genes involved in signaling pathways and inflammation were common among up- and down-regulated P2X7 receptor-dependent microRNAs during physiological and pathological conditions, genes associated with cell death seemed to be restricted to up-regulated microRNAs during both physiological conditions and post-status epilepticus. Taken together, our results demonstrate that the P2X7 receptor impacts on the expression profile of microRNAs in the brain, thereby possibly contributing to both the maintenance of normal cellular homeostasis and pathological processes.
Insights
The P2X7 receptor influences microRNA expression in the brain, impacting pathways involved in inflammation and cell death. This suggests a role for the P2X7 receptor in both normal brain function and disease states like epilepsy.
Area of Science:
- Neuroscience
- Molecular Biology
- Genetics
Background:
- The P2X7 receptor (P2X7R) is implicated in inflammatory signaling, cell death, and neuronal plasticity.
- P2X7R activation is linked to Interleukin-1β release and neurotransmitter modulation.
- Targeting P2X7R is a potential therapeutic strategy for epilepsy, but downstream signaling remains unclear.
- MicroRNAs (miRNAs) are known regulators of gene expression, including P2X7R.
Purpose of the Study:
- To investigate P2X7 receptor-dependent microRNA expression profiles in the brain.
- To compare miRNA expression in wild-type and P2X7R knockout mice under physiological and pathological conditions (status epilepticus).
- To identify the functional pathways targeted by P2X7R-regulated miRNAs.
Main Methods:
- Genome-wide microRNA profiling was conducted on hippocampal tissue from wild-type and P2X7R knockout mice.
- Status epilepticus was induced using intra-amygdala kainic acid injection.
- Bioinformatic analysis was employed to identify targeted genes and enriched pathways.
Main Results:
- Genetic deletion of P2X7R significantly altered microRNA expression patterns in the hippocampus.
- In control conditions, P2X7R deficiency led to 50 upregulated and 35 downregulated miRNAs.
- Following status epilepticus, P2X7R deficiency resulted in 44 upregulated and 13 downregulated miRNAs.
- Distinct sets of miRNAs were regulated by P2X7R under physiological versus pathological conditions.
- Bioinformatic analysis revealed P2X7R-dependent miRNAs target genes in intracellular signaling, inflammation, and cell death pathways.
Conclusions:
- The P2X7 receptor modulates microRNA expression in the brain.
- P2X7R-regulated miRNAs are involved in key cellular processes, including signaling, inflammation, and cell death.
- These findings suggest a role for P2X7R-miRNA interactions in both normal brain homeostasis and pathological conditions such as epilepsy.

