Literature DB >> 21441896

The cellular prion protein mediates neurotoxic signalling of β-sheet-rich conformers independent of prion replication.

Ulrike K Resenberger1, Anja Harmeier, Andreas C Woerner, Jessica L Goodman, Veronika Müller, Rajaraman Krishnan, R Martin Vabulas, Hans A Kretzschmar, Susan Lindquist, F Ulrich Hartl, Gerd Multhaup, Konstanze F Winklhofer, Jörg Tatzelt.   

Abstract

Formation of aberrant protein conformers is a common pathological denominator of different neurodegenerative disorders, such as Alzheimer's disease or prion diseases. Moreover, increasing evidence indicates that soluble oligomers are associated with early pathological alterations and that oligomeric assemblies of different disease-associated proteins may share common structural features. Previous studies revealed that toxic effects of the scrapie prion protein (PrP(Sc)), a β-sheet-rich isoform of the cellular PrP (PrP(C)), are dependent on neuronal expression of PrP(C). In this study, we demonstrate that PrP(C) has a more general effect in mediating neurotoxic signalling by sensitizing cells to toxic effects of various β-sheet-rich (β) conformers of completely different origins, formed by (i) heterologous PrP, (ii) amyloid β-peptide, (iii) yeast prion proteins or (iv) designed β-peptides. Toxic signalling via PrP(C) requires the intrinsically disordered N-terminal domain (N-PrP) and the GPI anchor of PrP. We found that the N-terminal domain is important for mediating the interaction of PrP(C) with β-conformers. Interestingly, a secreted version of N-PrP associated with β-conformers and antagonized their toxic signalling via PrP(C). Moreover, PrP(C)-mediated toxic signalling could be blocked by an NMDA receptor antagonist or an oligomer-specific antibody. Our study indicates that PrP(C) can mediate toxic signalling of various β-sheet-rich conformers independent of infectious prion propagation, suggesting a pathophysiological role of the prion protein beyond of prion diseases.

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Year:  2011        PMID: 21441896      PMCID: PMC3098494          DOI: 10.1038/emboj.2011.86

Source DB:  PubMed          Journal:  EMBO J        ISSN: 0261-4189            Impact factor:   11.598


  59 in total

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Review 4.  Proteases and proteolysis in Alzheimer disease: a multifactorial view on the disease process.

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Review 5.  Amyloid-beta-induced neuronal dysfunction in Alzheimer's disease: from synapses toward neural networks.

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Review 8.  Alzheimer's disease amyloid beta-protein and synaptic function.

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9.  Role of amyloid-beta glycine 33 in oligomerization, toxicity, and neuronal plasticity.

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  116 in total

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Review 2.  Prion protein at the crossroads of physiology and disease.

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Review 5.  The Essential Role of Soluble Aβ Oligomers in Alzheimer's Disease.

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6.  Simulations of membrane-bound diglycosylated human prion protein reveal potential protective mechanisms against misfolding.

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7.  Prion nucleation site unmasked by transient interaction with phospholipid cofactor.

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8.  Cellular Prion Protein Mediates the Disruption of Hippocampal Synaptic Plasticity by Soluble Tau In Vivo.

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Review 9.  Binding Sites for Amyloid-β Oligomers and Synaptic Toxicity.

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10.  Regulation of Amyloid β Oligomer Binding to Neurons and Neurotoxicity by the Prion Protein-mGluR5 Complex.

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Journal:  J Biol Chem       Date:  2016-08-25       Impact factor: 5.157

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