Prion-like seeding and nucleation of intracellular amyloid-β

Alzheimer's disease (AD) brain tissue can act as a seed to accelerate aggregation of amyloid-β (Aβ) into plaques in AD transgenic mice. Aβ seeds have been hypothesized to accelerate plaque formation in a prion-like manner of templated seeding and intercellular propagation. However, the structur...

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Main Authors: Tomas T. Olsson, Oxana Klementieva, Gunnar K. Gouras
Format: Article
Language:English
Published: Elsevier 2018-05-01
Series:Neurobiology of Disease
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S0969996118300214
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spelling doaj-c272164f982347e78bef57d271e27d3a2021-03-22T12:46:14ZengElsevierNeurobiology of Disease1095-953X2018-05-01113110Prion-like seeding and nucleation of intracellular amyloid-βTomas T. Olsson0Oxana Klementieva1Gunnar K. Gouras2Corresponding authors.; Experimental Dementia Research Unit, Dept. of Experimental Medical Science, Lund University, Lund, SwedenExperimental Dementia Research Unit, Dept. of Experimental Medical Science, Lund University, Lund, SwedenCorresponding authors.; Experimental Dementia Research Unit, Dept. of Experimental Medical Science, Lund University, Lund, SwedenAlzheimer's disease (AD) brain tissue can act as a seed to accelerate aggregation of amyloid-β (Aβ) into plaques in AD transgenic mice. Aβ seeds have been hypothesized to accelerate plaque formation in a prion-like manner of templated seeding and intercellular propagation. However, the structure(s) and location(s) of the Aβ seeds remain unknown. Moreover, in contrast to tau and α-synuclein, an in vitro system with prion-like Aβ has not been reported. Here we treat human APP expressing N2a cells with AD transgenic mouse brain extracts to induce inclusions of Aβ in a subset of cells. We isolate cells with induced Aβ inclusions and using immunocytochemistry, western blot and infrared spectroscopy show that these cells produce oligomeric Aβ over multiple replicative generations. Further, we demonstrate that cell lysates of clones with induced oligomeric Aβ can induce aggregation in previously untreated N2a APP cells. These data strengthen the case that Aβ acts as a prion-like protein, demonstrate that Aβ seeds can be intracellular oligomers and for the first time provide a cellular model of nucleated seeding of Aβ.http://www.sciencedirect.com/science/article/pii/S0969996118300214Alzheimer's diseaseAmyloidPrion-likeOligomersFTIR
collection DOAJ
language English
format Article
sources DOAJ
author Tomas T. Olsson
Oxana Klementieva
Gunnar K. Gouras
spellingShingle Tomas T. Olsson
Oxana Klementieva
Gunnar K. Gouras
Prion-like seeding and nucleation of intracellular amyloid-β
Neurobiology of Disease
Alzheimer's disease
Amyloid
Prion-like
Oligomers
FTIR
author_facet Tomas T. Olsson
Oxana Klementieva
Gunnar K. Gouras
author_sort Tomas T. Olsson
title Prion-like seeding and nucleation of intracellular amyloid-β
title_short Prion-like seeding and nucleation of intracellular amyloid-β
title_full Prion-like seeding and nucleation of intracellular amyloid-β
title_fullStr Prion-like seeding and nucleation of intracellular amyloid-β
title_full_unstemmed Prion-like seeding and nucleation of intracellular amyloid-β
title_sort prion-like seeding and nucleation of intracellular amyloid-β
publisher Elsevier
series Neurobiology of Disease
issn 1095-953X
publishDate 2018-05-01
description Alzheimer's disease (AD) brain tissue can act as a seed to accelerate aggregation of amyloid-β (Aβ) into plaques in AD transgenic mice. Aβ seeds have been hypothesized to accelerate plaque formation in a prion-like manner of templated seeding and intercellular propagation. However, the structure(s) and location(s) of the Aβ seeds remain unknown. Moreover, in contrast to tau and α-synuclein, an in vitro system with prion-like Aβ has not been reported. Here we treat human APP expressing N2a cells with AD transgenic mouse brain extracts to induce inclusions of Aβ in a subset of cells. We isolate cells with induced Aβ inclusions and using immunocytochemistry, western blot and infrared spectroscopy show that these cells produce oligomeric Aβ over multiple replicative generations. Further, we demonstrate that cell lysates of clones with induced oligomeric Aβ can induce aggregation in previously untreated N2a APP cells. These data strengthen the case that Aβ acts as a prion-like protein, demonstrate that Aβ seeds can be intracellular oligomers and for the first time provide a cellular model of nucleated seeding of Aβ.
topic Alzheimer's disease
Amyloid
Prion-like
Oligomers
FTIR
url http://www.sciencedirect.com/science/article/pii/S0969996118300214
work_keys_str_mv AT tomastolsson prionlikeseedingandnucleationofintracellularamyloidb
AT oxanaklementieva prionlikeseedingandnucleationofintracellularamyloidb
AT gunnarkgouras prionlikeseedingandnucleationofintracellularamyloidb
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