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  4. FTLD-TDP assemblies seed neoaggregates with subtype-specific features via a prion-like cascade
 
research article

FTLD-TDP assemblies seed neoaggregates with subtype-specific features via a prion-like cascade

De Rossi, Pierre
•
Lewis, Amanda J.
•
Furrer, Johanna
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November 22, 2021
Embo Reports

Morphologically distinct TDP-43 aggregates occur in clinically different FTLD-TDP subtypes, yet the mechanism of their emergence and contribution to clinical heterogeneity are poorly understood. Several lines of evidence suggest that pathological TDP-43 follows a prion-like cascade, but the molecular determinants of this process remain unknown. We use advanced microscopy techniques to compare the seeding properties of pathological FTLD-TDP-A and FTLD-TDP-C aggregates. Upon inoculation of patient-derived aggregates in cells, FTLD-TDP-A seeds amplify in a template-dependent fashion, triggering neoaggregation more efficiently than those extracted from FTLD-TDP-C patients, correlating with the respective disease progression rates. Neoaggregates are sequentially phosphorylated with N-to-C directionality and with subtype-specific timelines. The resulting FTLD-TDP-A neoaggregates are large and contain densely packed fibrils, reminiscent of the pure compacted fibrils present within cytoplasmic inclusions in postmortem brains. In contrast, FTLD-TDP-C dystrophic neurites show less dense fibrils mixed with cellular components, and their respective neoaggregates are small, amorphous protein accumulations. These cellular seeding models replicate aspects of the patient pathological diversity and will be a useful tool in the quest for subtype-specific therapeutics.

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Type
research article
DOI
10.15252/embr.202153877
Web of Science ID

WOS:000720930500001

Author(s)
De Rossi, Pierre
Lewis, Amanda J.
Furrer, Johanna
De Vos, Laura
Demeter, Tomas
Zbinden, Aurelie
Zhong, Weijia
Wiersma, Vera, I
Scialo, Carlo
Weber, Julien
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Date Issued

2021-11-22

Publisher

WILEY

Published in
Embo Reports
Article Number

e53877

Subjects

Biochemistry & Molecular Biology

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Cell Biology

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frontotemporal dementia

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ftld-tdp

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prion-like

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tdp-43

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tdp-43 strains

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frontotemporal lobar degeneration

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dna-binding protein

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43 kda tdp-43

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phase-separation

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rna targets

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pathology

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phosphorylation

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als

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visualization

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aggregation

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
LBEM  
Available on Infoscience
December 4, 2021
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/183623
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