α-Synuclein Preformed Fibrils Bind to β-Neurexins and Impair β-Neurexin-Mediated Presynaptic Organization

Author:

Feller Benjamin12,Fallon Aurélie12ORCID,Luo Wen3,Nguyen Phuong Trang4,Shlaifer Irina3,Lee Alfred Kihoon15,Chofflet Nicolas15,Yi Nayoung12,Khaled Husam12,Karkout Samer1,Bourgault Steve4ORCID,Durcan Thomas M.35ORCID,Takahashi Hideto1256

Affiliation:

1. Synapse Development and Plasticity Research Unit, Institut de Recherches Cliniques de Montréal, Montreal, QC H2W 1R7, Canada

2. Department of Medicine, Université de Montréal, Montreal, QC H3T 1J4, Canada

3. The Neuro’s Early Drug Discovery Unit (EDDU), Department of Neurology and Neurosurgery, Montreal Neurological Institute-Hospital, McGill University, Montreal, QC H3A 2B4, Canada

4. Department of Chemistry, Quebec Network for Research on Protein Function, Engineering and Applications, PROTEO, Université du Québec à Montréal, Montreal, QC H3C 3P8, Canada

5. Integrated Program in Neuroscience, McGill University, Montreal, QC H3A 2B2, Canada

6. Division of Experimental Medicine, McGill University, Montreal, QC H3A 0G4, Canada

Abstract

Synucleinopathies form a group of neurodegenerative diseases defined by the misfolding and aggregation of α-synuclein (α-syn). Abnormal accumulation and spreading of α-syn aggregates lead to synapse dysfunction and neuronal cell death. Yet, little is known about the synaptic mechanisms underlying the α-syn pathology. Here we identified β-isoforms of neurexins (β-NRXs) as presynaptic organizing proteins that interact with α-syn preformed fibrils (α-syn PFFs), toxic α-syn aggregates, but not α-syn monomers. Our cell surface protein binding assays and surface plasmon resonance assays reveal that α-syn PFFs bind directly to β-NRXs through their N-terminal histidine-rich domain (HRD) at the nanomolar range (KD: ~500 nM monomer equivalent). Furthermore, our artificial synapse formation assays show that α-syn PFFs diminish excitatory and inhibitory presynaptic organization induced by a specific isoform of neuroligin 1 that binds only β-NRXs, but not α-isoforms of neurexins. Thus, our data suggest that α-syn PFFs interact with β-NRXs to inhibit β-NRX-mediated presynaptic organization, providing novel molecular insight into how α-syn PFFs induce synaptic pathology in synucleinopathies such as Parkinson’s disease and dementia with Lewy bodies.

Funder

Parkinson Canada New Investigator Award

Canadian Institutes of Health Research (CIHR) Project Grant

Fonds de la recherche du Québec–Santé (FRQS) Research Scholars

Canada First Research Excellence Fund

Natural Sciences and Engineering Research Council of Canada

CIHR Canada Graduate Scholarships

Université de Montréal Bourse de recrutement du Département de neurosciences

Alzheimer Society of Canada

Publisher

MDPI AG

Subject

General Medicine

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