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research article

Retromer deficiency in Tauopathy models enhances the truncation and toxicity of Tau

Asadzadeh, Jamshid
•
Ruchti, Evelyne  
•
Jiao, Wei  
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August 27, 2022
Nature Communications

Alteration of the levels, localization or post-translational processing of the microtubule associated protein Tau is associated with many neurodegenerative disorders. Here we develop adult-onset models for human Tau (hTau) toxicity in Drosophila that enable age-dependent quantitative measurement of central nervous system synapse loss and axonal degeneration, in addition to effects upon lifespan, to facilitate evaluation of factors that may contribute to Tau-dependent neurodegeneration. Using these models, we interrogate the interaction of hTau with the retromer complex, an evolutionarily conserved cargo-sorting protein assembly, whose reduced activity has been associated with both Parkinson's and late onset Alzheimer's disease. We reveal that reduction of retromer activity induces a potent enhancement of hTau toxicity upon synapse loss, axon retraction and lifespan through a specific increase in the production of a C-terminal truncated isoform of hTau. Our data establish a molecular and subcellular mechanism necessary and sufficient for the depletion of retromer activity to exacerbate Tau-dependent neurodegeneration.

Tau and the Retromer complex are both linked to Parkinson's and Alzheimer's disease. Using Drosophila neurodegeneration models, this study finds that low retromer activity induces a specific increase of a highly toxic truncated form of human Tau.

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Type
research article
DOI
10.1038/s41467-022-32683-5
Web of Science ID

WOS:000846449200004

Author(s)
Asadzadeh, Jamshid
•
Ruchti, Evelyne  
•
Jiao, Wei  
•
Limoni, Greta  
•
MacLachlan, Catherine  
•
Small, Scott A.
•
Knott, Graham  orcid-logo
•
Santa-Maria, Ismael
•
McCabe, Brian D.  
Date Issued

2022-08-27

Publisher

Nature Portfolio

Published in
Nature Communications
Volume

13

Issue

1

Article Number

5049

Subjects

Multidisciplinary Sciences

•

Science & Technology - Other Topics

•

caspase-cleavage

•

drosophila-melanogaster

•

alzheimer-disease

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alpha-synuclein

•

emerging role

•

cell-death

•

protein

•

vps35

•

neurons

•

complex

Peer reviewed

REVIEWED

Written at

EPFL

EPFL units
UPMCCABE  
Available on Infoscience
September 12, 2022
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/190675
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