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α-Synuclein fibrils subvert lysosome structure and function for the propagation of protein misfolding between cells through tunneling nanotubes

The accumulation of α-synuclein (α-syn) aggregates in specific brain regions is a hallmark of synucleinopathies including Parkinson disease (PD). α-Syn aggregates propagate in a “prion-like” manner and can be transferred inside lysosomes to recipient cells through tunneling nanotubes (TNTs). However...

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Autores principales: Dilsizoglu Senol, Aysegul, Samarani, Maura, Syan, Sylvie, Guardia, Carlos M., Nonaka, Takashi, Liv, Nalan, Latour-Lambert, Patricia, Hasegawa, Masato, Klumperman, Judith, Bonifacino, Juan S., Zurzolo, Chiara
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8291706/
https://www.ncbi.nlm.nih.gov/pubmed/34283825
http://dx.doi.org/10.1371/journal.pbio.3001287
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author Dilsizoglu Senol, Aysegul
Samarani, Maura
Syan, Sylvie
Guardia, Carlos M.
Nonaka, Takashi
Liv, Nalan
Latour-Lambert, Patricia
Hasegawa, Masato
Klumperman, Judith
Bonifacino, Juan S.
Zurzolo, Chiara
author_facet Dilsizoglu Senol, Aysegul
Samarani, Maura
Syan, Sylvie
Guardia, Carlos M.
Nonaka, Takashi
Liv, Nalan
Latour-Lambert, Patricia
Hasegawa, Masato
Klumperman, Judith
Bonifacino, Juan S.
Zurzolo, Chiara
author_sort Dilsizoglu Senol, Aysegul
collection PubMed
description The accumulation of α-synuclein (α-syn) aggregates in specific brain regions is a hallmark of synucleinopathies including Parkinson disease (PD). α-Syn aggregates propagate in a “prion-like” manner and can be transferred inside lysosomes to recipient cells through tunneling nanotubes (TNTs). However, how lysosomes participate in the spreading of α-syn aggregates is unclear. Here, by using super-resolution (SR) and electron microscopy (EM), we find that α-syn fibrils affect the morphology of lysosomes and impair their function in neuronal cells. In addition, we demonstrate that α-syn fibrils induce peripheral redistribution of lysosomes, likely mediated by transcription factor EB (TFEB), increasing the efficiency of α-syn fibrils’ transfer to neighboring cells. We also show that lysosomal membrane permeabilization (LMP) allows the seeding of soluble α-syn in cells that have taken up α-syn fibrils from the culture medium, and, more importantly, in healthy cells in coculture, following lysosome-mediated transfer of the fibrils. Moreover, we demonstrate that seeding occurs mainly at lysosomes in both donor and acceptor cells, after uptake of α-syn fibrils from the medium and following their transfer, respectively. Finally, by using a heterotypic coculture system, we determine the origin and nature of the lysosomes transferred between cells, and we show that donor cells bearing α-syn fibrils transfer damaged lysosomes to acceptor cells, while also receiving healthy lysosomes from them. These findings thus contribute to the elucidation of the mechanism by which α-syn fibrils spread through TNTs, while also revealing the crucial role of lysosomes, working as a Trojan horse for both seeding and propagation of disease pathology.
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spelling pubmed-82917062021-07-31 α-Synuclein fibrils subvert lysosome structure and function for the propagation of protein misfolding between cells through tunneling nanotubes Dilsizoglu Senol, Aysegul Samarani, Maura Syan, Sylvie Guardia, Carlos M. Nonaka, Takashi Liv, Nalan Latour-Lambert, Patricia Hasegawa, Masato Klumperman, Judith Bonifacino, Juan S. Zurzolo, Chiara PLoS Biol Research Article The accumulation of α-synuclein (α-syn) aggregates in specific brain regions is a hallmark of synucleinopathies including Parkinson disease (PD). α-Syn aggregates propagate in a “prion-like” manner and can be transferred inside lysosomes to recipient cells through tunneling nanotubes (TNTs). However, how lysosomes participate in the spreading of α-syn aggregates is unclear. Here, by using super-resolution (SR) and electron microscopy (EM), we find that α-syn fibrils affect the morphology of lysosomes and impair their function in neuronal cells. In addition, we demonstrate that α-syn fibrils induce peripheral redistribution of lysosomes, likely mediated by transcription factor EB (TFEB), increasing the efficiency of α-syn fibrils’ transfer to neighboring cells. We also show that lysosomal membrane permeabilization (LMP) allows the seeding of soluble α-syn in cells that have taken up α-syn fibrils from the culture medium, and, more importantly, in healthy cells in coculture, following lysosome-mediated transfer of the fibrils. Moreover, we demonstrate that seeding occurs mainly at lysosomes in both donor and acceptor cells, after uptake of α-syn fibrils from the medium and following their transfer, respectively. Finally, by using a heterotypic coculture system, we determine the origin and nature of the lysosomes transferred between cells, and we show that donor cells bearing α-syn fibrils transfer damaged lysosomes to acceptor cells, while also receiving healthy lysosomes from them. These findings thus contribute to the elucidation of the mechanism by which α-syn fibrils spread through TNTs, while also revealing the crucial role of lysosomes, working as a Trojan horse for both seeding and propagation of disease pathology. Public Library of Science 2021-07-20 /pmc/articles/PMC8291706/ /pubmed/34283825 http://dx.doi.org/10.1371/journal.pbio.3001287 Text en https://creativecommons.org/publicdomain/zero/1.0/This is an open access article, free of all copyright, and may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose. The work is made available under the Creative Commons CC0 (https://creativecommons.org/publicdomain/zero/1.0/) public domain dedication.
spellingShingle Research Article
Dilsizoglu Senol, Aysegul
Samarani, Maura
Syan, Sylvie
Guardia, Carlos M.
Nonaka, Takashi
Liv, Nalan
Latour-Lambert, Patricia
Hasegawa, Masato
Klumperman, Judith
Bonifacino, Juan S.
Zurzolo, Chiara
α-Synuclein fibrils subvert lysosome structure and function for the propagation of protein misfolding between cells through tunneling nanotubes
title α-Synuclein fibrils subvert lysosome structure and function for the propagation of protein misfolding between cells through tunneling nanotubes
title_full α-Synuclein fibrils subvert lysosome structure and function for the propagation of protein misfolding between cells through tunneling nanotubes
title_fullStr α-Synuclein fibrils subvert lysosome structure and function for the propagation of protein misfolding between cells through tunneling nanotubes
title_full_unstemmed α-Synuclein fibrils subvert lysosome structure and function for the propagation of protein misfolding between cells through tunneling nanotubes
title_short α-Synuclein fibrils subvert lysosome structure and function for the propagation of protein misfolding between cells through tunneling nanotubes
title_sort α-synuclein fibrils subvert lysosome structure and function for the propagation of protein misfolding between cells through tunneling nanotubes
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8291706/
https://www.ncbi.nlm.nih.gov/pubmed/34283825
http://dx.doi.org/10.1371/journal.pbio.3001287
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