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

Author:

Marchi Paolo M12ORCID,Marrone Lara12ORCID,Brasseur Laurent3,Coens Audrey3,Webster Christopher P12ORCID,Bousset Luc3,Destro Marco12,Smith Emma F124,Walther Christa G5ORCID,Alfred Victor12ORCID,Marroccella Raffaele12,Graves Emily J12,Robinson Darren5ORCID,Shaw Allan C12ORCID,Wan Lai Mei12,Grierson Andrew J12,Ebbens Stephen J6ORCID,De Vos Kurt J124,Hautbergue Guillaume M12ORCID,Ferraiuolo Laura12ORCID,Melki Ronald3ORCID,Azzouz Mimoun12ORCID

Affiliation:

1. Sheffield Institute for Translational Neuroscience (SITraN), Department of Neuroscience, University of Sheffield, Sheffield, UK

2. Neuroscience Institute, University of Sheffield, Western Bank, Sheffield, UK

3. The French Alternative Energies and Atomic Energy Commission (CEA), Institut François Jacob (MIRcen) and The French National Centre for Scientific Research (CNRS), Laboratory of Neurodegenerative Diseases (UMR9199), Fontenay-aux-Roses, France

4. Centre for Membrane Interactions and Dynamics, University of Sheffield, Western Bank, Sheffield, UK

5. The Wolfson Light Microscopy Facility, University of Sheffield, Sheffield, UK

6. Department of Chemical and Biological Engineering, University of Sheffield, Sheffield, UK

Abstract

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.

Funder

European Research Council

MRC DPFS Award

JPND-MRC

ARUK award

CureAP4

Maddi Foundation

Spastic Paraplegia Foundation

British Neuropathological Society

Motor Neurone Disease Association Prize Studentship

Motor Neurone Disease Association project grant

Medical Research Council

European Commission Joint Programme on Neurodegenerative Diseases

Electron microscopy facility of Imagerie-Gif

Biotechnology and Biological Sciences Research Council

Academy of Medical Sciences

MRC

Publisher

Life Science Alliance, LLC

Subject

Health, Toxicology and Mutagenesis,Plant Science,Biochemistry, Genetics and Molecular Biology (miscellaneous),Ecology

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