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alpha-Synuclein strains target distinct brain regions and cell types

Authors :
Lau, Angus
So, Raphaella W. L.
Lau, Heather H. C.
Sang, Jason C.
Ruiz-Riquelme, Alejandro
Fleck, Shelaine C.
Stuart, Erica
Menon, Sindhu
Visanji, Naomi P.
Meisl, Georg
Faidi, Rania
Marano, Maria M.
Schmitt-Ulms, Cian
Wang, Zhilan
Fraser, Paul E.
Tandon, Anurag
Hyman, Bradley T.
Wille, Holger
Ingelsson, Martin
Klenerman, David
Watts, Joel C.
Lau, Angus
So, Raphaella W. L.
Lau, Heather H. C.
Sang, Jason C.
Ruiz-Riquelme, Alejandro
Fleck, Shelaine C.
Stuart, Erica
Menon, Sindhu
Visanji, Naomi P.
Meisl, Georg
Faidi, Rania
Marano, Maria M.
Schmitt-Ulms, Cian
Wang, Zhilan
Fraser, Paul E.
Tandon, Anurag
Hyman, Bradley T.
Wille, Holger
Ingelsson, Martin
Klenerman, David
Watts, Joel C.
Publication Year :
2020

Abstract

The clinical and pathological differences between synucleinopathies such as Parkinson's disease and multiple system atrophy have been postulated to stem from unique strains of alpha-synuclein aggregates, akin to what occurs in prion diseases. Here we demonstrate that inoculation of transgenic mice with different strains of recombinant or brain-derived alpha-synuclein aggregates produces clinically and pathologically distinct diseases. Strain-specific differences were observed in the signs of neurological illness, time to disease onset, morphology of cerebral alpha-synuclein deposits and the conformational properties of the induced aggregates. Moreover, different strains targeted distinct cellular populations and cell types within the brain, recapitulating the selective targeting observed among human synucleinopathies. Strain-specific clinical, pathological and biochemical differences were faithfully maintained after serial passaging, which implies that alpha-synuclein propagates via prion-like conformational templating. Thus, pathogenic alpha-synuclein exhibits key hallmarks of prion strains, which provides evidence that disease heterogeneity among the synucleinopathies is caused by distinct alpha-synuclein strains.

Details

Database :
OAIster
Notes :
English
Publication Type :
Electronic Resource
Accession number :
edsoai.on1235253796
Document Type :
Electronic Resource
Full Text :
https://doi.org/10.1038.s41593-019-0541-x