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Prions Strongly Reduce NMDA Receptor S-Nitrosylation Levels at Pre-symptomatic and Terminal Stages of Prion Diseases

Meneghetti, Elisa
•
Gasperini, Lisa
•
Virgilio, Tommaso
altro
Legname, Giuseppe
2019
  • journal article

Periodico
MOLECULAR NEUROBIOLOGY
Abstract
Prion diseases are fatal neurodegenerative disorders characterized by the cellular prion protein (PrPC) conversion into a misfolded and infectious isoform termed prion or PrPSc. The neuropathological mechanism underlying prion toxicity is still unclear, and the debate on prion protein gain- or loss-of-function is still open. PrPC participates to a plethora of physiological mechanisms. For instance, PrPC and copper cooperatively modulate N-methyl-D-aspartate receptor (NMDAR) activity by mediating S-nitrosylation, an inhibitory post-translational modification, hence protecting neurons from excitotoxicity. Here, NMDAR S-nitrosylation levels were biochemically investigated at pre- and post-symptomatic stages of mice intracerebrally inoculated with RML, 139A, and ME7 prion strains. Neuropathological aspects of prion disease were studied by histological analysis and proteinase K digestion. We report that hippocampal NMDAR S-nitrosylation is greatly reduced in all three prion strain infections in both pre-symptomatic and terminal stages of mouse disease. Indeed, we show that NMDAR S-nitrosylation dysregulation affecting prion-inoculated animals precedes the appearance of clinical signs of disease and visible neuropathological changes, such as PrPSc accumulation and deposition. The pre-symptomatic reduction of NMDAR S-nitrosylation in prion-infected mice may be a possible cause of neuronal death in prion pathology, and it might contribute to the pathology progression opening new therapeutic strategies against prion disorders.
DOI
10.1007/s12035-019-1505-6
WOS
WOS:000478910000005
Archivio
http://hdl.handle.net/20.500.11767/127325
info:eu-repo/semantics/altIdentifier/scopus/2-s2.0-85060969780
Diritti
metadata only access
Soggetti
  • Copper

  • Excitotoxicity

  • Nitric oxide

  • NMDA receptor

  • Prion

  • S-Nitrosylation

  • Neuroscience (miscell...

  • Neurology

  • Cellular and Molecula...

  • Settore BIO/10 - Bioc...

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