4.7 Article

microRNA targeting of the P2X7 purinoceptor opposes a contralateral epileptogenic focus in the hippocampus

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SCIENTIFIC REPORTS
卷 5, 期 -, 页码 -

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NATURE PUBLISHING GROUP
DOI: 10.1038/srep17486

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资金

  1. Science Foundation Ireland [13/IA/1891, 14/ADV/RC2721, 12/COEN/18, 13/SIRG/2098, 13/SIRG/2114]
  2. Health Research Board Ireland [HRA-POR-2013-325, HRA-POR/2012/56, HRA-POR/2011/41, HRA-POR/2010/123]
  3. European Union [602130]
  4. Irish Research Council
  5. Brazilian National Council for Scientific and Technological Development (CNPq)
  6. Programme for Research in Third-Level Institutions
  7. European Regional Development fund (BioAnalysis and Therapeutics Structured PhD Programme)
  8. Comunidad de Madrid [S-SAL-0253-2006]
  9. Spanish Ministry of Science and Education [BFU2008-02699, BFU2011-26253, BFU2012-31195]
  10. Fundacion Marcelino Botin
  11. Consolider SICI Spanish Ion Channel Initiative [CSD2008-00005]
  12. UCM-Santander Central Hispano Bank [911585-670]
  13. Health Research Board (HRB) [HRA-POR-2010-123, HRA-POR-2011-41, HRA-POR-2012-56] Funding Source: Health Research Board (HRB)
  14. Science Foundation Ireland (SFI) [14/ADV/RC2721] Funding Source: Science Foundation Ireland (SFI)

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The ATP-gated ionotropic P2X7 receptor (P2X7R) modulates glial activation, cytokine production and neurotransmitter release following brain injury. Levels of the P2X7R are increased in experimental and human epilepsy but the mechanisms controlling P2X7R expression remain poorly understood. Here we investigated P2X7R responses after focal-onset status epilepticus in mice, comparing changes in the damaged, ipsilateral hippocampus to the spared, contralateral hippocampus. P2X7-Rgated inward currents were suppressed in the contralateral hippocampus and P2rx7 mRNA was selectively uploaded into the RNA-induced silencing complex (RISC), suggesting microRNA targeting. Analysis of RISC-loaded microRNAs using a high-throughput platform, as well as functional assays, suggested the P2X7R is a target of microRNA-22. Inhibition of microRNA-22 increased P2X7R expression and cytokine levels in the contralateral hippocampus after status epilepticus and resulted in more frequent spontaneous seizures in mice. The major pro-inflammatory and hyperexcitability effects of microRNA-22 silencing were prevented in P2rx7(-/-) mice or by treatment with a specific P2X7R antagonist. Finally, in vivo injection of microRNA-22 mimics transiently suppressed spontaneous seizures in mice. The present study supports a role for post-transcriptional regulation of the P2X7R and suggests therapeutic targeting of microRNA-22 may prevent inflammation and development of a secondary epileptogenic focus in the brain.

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