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C9ORF72-derived poly-GA DPRs undergo endocytic uptake in iAstrocytes and spread to motor neurons

Dipeptide repeat (DPR) proteins are aggregation-prone polypeptides encoded by the pathogenic GGGGCC repeat expansion in the C9ORF72 gene, the most common genetic cause of amyotrophic lateral sclerosis and frontotemporal dementia. In this study, we focus on the role of poly-GA DPRs in disease spread....

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Autores principales: Marchi, Paolo M, Marrone, Lara, Brasseur, Laurent, Coens, Audrey, Webster, Christopher P, Bousset, Luc, Destro, Marco, Smith, Emma F, Walther, Christa G, Alfred, Victor, Marroccella, Raffaele, Graves, Emily J, Robinson, Darren, Shaw, Allan C, Wan, Lai Mei, Grierson, Andrew J, Ebbens, Stephen J, De Vos, Kurt J, Hautbergue, Guillaume M, Ferraiuolo, Laura, Melki, Ronald, Azzouz, Mimoun
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Life Science Alliance LLC 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9108631/
https://www.ncbi.nlm.nih.gov/pubmed/35568435
http://dx.doi.org/10.26508/lsa.202101276
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author Marchi, Paolo M
Marrone, Lara
Brasseur, Laurent
Coens, Audrey
Webster, Christopher P
Bousset, Luc
Destro, Marco
Smith, Emma F
Walther, Christa G
Alfred, Victor
Marroccella, Raffaele
Graves, Emily J
Robinson, Darren
Shaw, Allan C
Wan, Lai Mei
Grierson, Andrew J
Ebbens, Stephen J
De Vos, Kurt J
Hautbergue, Guillaume M
Ferraiuolo, Laura
Melki, Ronald
Azzouz, Mimoun
author_facet Marchi, Paolo M
Marrone, Lara
Brasseur, Laurent
Coens, Audrey
Webster, Christopher P
Bousset, Luc
Destro, Marco
Smith, Emma F
Walther, Christa G
Alfred, Victor
Marroccella, Raffaele
Graves, Emily J
Robinson, Darren
Shaw, Allan C
Wan, Lai Mei
Grierson, Andrew J
Ebbens, Stephen J
De Vos, Kurt J
Hautbergue, Guillaume M
Ferraiuolo, Laura
Melki, Ronald
Azzouz, Mimoun
author_sort Marchi, Paolo M
collection PubMed
description Dipeptide repeat (DPR) proteins are aggregation-prone polypeptides encoded by the pathogenic GGGGCC repeat expansion in the C9ORF72 gene, the most common genetic cause of amyotrophic lateral sclerosis and frontotemporal dementia. In this study, we focus on the role of poly-GA DPRs in disease spread. We demonstrate that recombinant poly-GA oligomers can directly convert into solid-like aggregates and form characteristic β-sheet fibrils in vitro. To dissect the process of cell-to-cell DPR transmission, we closely follow the fate of poly-GA DPRs in either their oligomeric or fibrillized form after administration in the cell culture medium. We observe that poly-GA DPRs are taken up via dynamin-dependent and -independent endocytosis, eventually converging at the lysosomal compartment and leading to axonal swellings in neurons. We then use a co-culture system to demonstrate astrocyte-to-motor neuron DPR propagation, showing that astrocytes may internalise and release aberrant peptides in disease pathogenesis. Overall, our results shed light on the mechanisms of poly-GA cellular uptake and propagation, suggesting lysosomal impairment as a possible feature underlying the cellular pathogenicity of these DPR species.
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spelling pubmed-91086312022-05-27 C9ORF72-derived poly-GA DPRs undergo endocytic uptake in iAstrocytes and spread to motor neurons Marchi, Paolo M Marrone, Lara Brasseur, Laurent Coens, Audrey Webster, Christopher P Bousset, Luc Destro, Marco Smith, Emma F Walther, Christa G Alfred, Victor Marroccella, Raffaele Graves, Emily J Robinson, Darren Shaw, Allan C Wan, Lai Mei Grierson, Andrew J Ebbens, Stephen J De Vos, Kurt J Hautbergue, Guillaume M Ferraiuolo, Laura Melki, Ronald Azzouz, Mimoun Life Sci Alliance Research Articles Dipeptide repeat (DPR) proteins are aggregation-prone polypeptides encoded by the pathogenic GGGGCC repeat expansion in the C9ORF72 gene, the most common genetic cause of amyotrophic lateral sclerosis and frontotemporal dementia. In this study, we focus on the role of poly-GA DPRs in disease spread. We demonstrate that recombinant poly-GA oligomers can directly convert into solid-like aggregates and form characteristic β-sheet fibrils in vitro. To dissect the process of cell-to-cell DPR transmission, we closely follow the fate of poly-GA DPRs in either their oligomeric or fibrillized form after administration in the cell culture medium. We observe that poly-GA DPRs are taken up via dynamin-dependent and -independent endocytosis, eventually converging at the lysosomal compartment and leading to axonal swellings in neurons. We then use a co-culture system to demonstrate astrocyte-to-motor neuron DPR propagation, showing that astrocytes may internalise and release aberrant peptides in disease pathogenesis. Overall, our results shed light on the mechanisms of poly-GA cellular uptake and propagation, suggesting lysosomal impairment as a possible feature underlying the cellular pathogenicity of these DPR species. Life Science Alliance LLC 2022-05-13 /pmc/articles/PMC9108631/ /pubmed/35568435 http://dx.doi.org/10.26508/lsa.202101276 Text en © 2022 Marchi et al. https://creativecommons.org/licenses/by/4.0/This article is available under a Creative Commons License (Attribution 4.0 International, as described at https://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Articles
Marchi, Paolo M
Marrone, Lara
Brasseur, Laurent
Coens, Audrey
Webster, Christopher P
Bousset, Luc
Destro, Marco
Smith, Emma F
Walther, Christa G
Alfred, Victor
Marroccella, Raffaele
Graves, Emily J
Robinson, Darren
Shaw, Allan C
Wan, Lai Mei
Grierson, Andrew J
Ebbens, Stephen J
De Vos, Kurt J
Hautbergue, Guillaume M
Ferraiuolo, Laura
Melki, Ronald
Azzouz, Mimoun
C9ORF72-derived poly-GA DPRs undergo endocytic uptake in iAstrocytes and spread to motor neurons
title C9ORF72-derived poly-GA DPRs undergo endocytic uptake in iAstrocytes and spread to motor neurons
title_full C9ORF72-derived poly-GA DPRs undergo endocytic uptake in iAstrocytes and spread to motor neurons
title_fullStr C9ORF72-derived poly-GA DPRs undergo endocytic uptake in iAstrocytes and spread to motor neurons
title_full_unstemmed C9ORF72-derived poly-GA DPRs undergo endocytic uptake in iAstrocytes and spread to motor neurons
title_short C9ORF72-derived poly-GA DPRs undergo endocytic uptake in iAstrocytes and spread to motor neurons
title_sort c9orf72-derived poly-ga dprs undergo endocytic uptake in iastrocytes and spread to motor neurons
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9108631/
https://www.ncbi.nlm.nih.gov/pubmed/35568435
http://dx.doi.org/10.26508/lsa.202101276
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