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Differential molecular chaperone response associated with various mouse adapted scrapie strains

Differential molecular chaperone response associated with various mouse adapted scrapie strains
Differential molecular chaperone response associated with various mouse adapted scrapie strains
Prionoses are a group of neurodegenerative diseases characterized by misfolding of cellular prion protein (PrP(C)) and accumulation of its diseases specific conformer PrP(Sc) in the brain and neuropathologically, they can be associated with presence or absence of PrP amyloid deposits. Functional molecular chaperones (MCs) that constitute the unfolded protein response include heat shock proteins and glucose-regulated protein families. They protect intracellular milieu against various stress conditions including accumulation of misfolded proteins and oxidative stress, typical of neurodegenerative diseases. Little is known about the role of MCs in pathogenesis of prionoses in mammalian prion model systems. In this study we characterized MCs response pattern in mice infected with various mouse adapted scrapie strains. Rather than uniform upregulation of MCs, we encountered two distinctly different patterns of MCs response distinguishing ME7 and 87V strains from 22L and 139A strains. ME7 and 87V strains are known for the induction of amyloid deposition in infected animals, while in mice infected with 22L and 139A strains amyloid deposits are absent. MCs response pattern similar to that associated with amyloidogenic ME7 and 87V strains was also observed in APPPS1-21 Alzheimer's transgenic mice, which represent an aggressive model of cerebral amyloidosis caused by ?-amyloid deposition. Our results highlight the probability that different mechanisms of MCs regulation exist driven by amyloidogenic and non-amyloidogenic nature of prion strains.
0304-3940
Asuni, Ayodeji A.
b1412b1b-9794-4705-aada-aed5d3da038f
Pankiewicz, Joanna E.
6d5d4234-c713-40a3-9050-7f5eeafafbde
Sadowski, Martin J.
8add36aa-b648-4378-91e3-94e85a19b977
Asuni, Ayodeji A.
b1412b1b-9794-4705-aada-aed5d3da038f
Pankiewicz, Joanna E.
6d5d4234-c713-40a3-9050-7f5eeafafbde
Sadowski, Martin J.
8add36aa-b648-4378-91e3-94e85a19b977

Asuni, Ayodeji A., Pankiewicz, Joanna E. and Sadowski, Martin J. (2013) Differential molecular chaperone response associated with various mouse adapted scrapie strains. Neuroscience Letters. (doi:10.1016/j.neulet.2013.01.027). (PMID:23370284)

Record type: Article

Abstract

Prionoses are a group of neurodegenerative diseases characterized by misfolding of cellular prion protein (PrP(C)) and accumulation of its diseases specific conformer PrP(Sc) in the brain and neuropathologically, they can be associated with presence or absence of PrP amyloid deposits. Functional molecular chaperones (MCs) that constitute the unfolded protein response include heat shock proteins and glucose-regulated protein families. They protect intracellular milieu against various stress conditions including accumulation of misfolded proteins and oxidative stress, typical of neurodegenerative diseases. Little is known about the role of MCs in pathogenesis of prionoses in mammalian prion model systems. In this study we characterized MCs response pattern in mice infected with various mouse adapted scrapie strains. Rather than uniform upregulation of MCs, we encountered two distinctly different patterns of MCs response distinguishing ME7 and 87V strains from 22L and 139A strains. ME7 and 87V strains are known for the induction of amyloid deposition in infected animals, while in mice infected with 22L and 139A strains amyloid deposits are absent. MCs response pattern similar to that associated with amyloidogenic ME7 and 87V strains was also observed in APPPS1-21 Alzheimer's transgenic mice, which represent an aggressive model of cerebral amyloidosis caused by ?-amyloid deposition. Our results highlight the probability that different mechanisms of MCs regulation exist driven by amyloidogenic and non-amyloidogenic nature of prion strains.

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More information

Published date: 28 January 2013
Organisations: Centre for Biological Sciences

Identifiers

Local EPrints ID: 348575
URI: http://eprints.soton.ac.uk/id/eprint/348575
ISSN: 0304-3940
PURE UUID: 9c655ed0-331d-467c-8622-89be041a170b

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Date deposited: 14 Feb 2013 13:45
Last modified: 14 Mar 2024 13:02

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Contributors

Author: Ayodeji A. Asuni
Author: Joanna E. Pankiewicz
Author: Martin J. Sadowski

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