Rational design of structure‐based vaccines targeting misfolded alpha‐synuclein conformers of Parkinson's disease and related disorders

Author:

Flores‐Fernandez Jose Miguel123,Pesch Verena4,Sriraman Aishwarya12,Chimal‐Juarez Enrique1,Amidian Sara12,Wang Xiongyao1,Duckering Caleb12,Fang Andrew12,Reithofer Sara4,Ma Liang4,Cortez Leonardo M.15,Sim Valerie L.156,Tamgüney Gültekin47ORCID,Wille Holger126ORCID

Affiliation:

1. Centre for Prions and Protein Folding Diseases University of Alberta Edmonton Alberta Canada

2. Department of Biochemistry University of Alberta Edmonton Alberta Canada

3. Department of Research and Innovation Universidad Tecnológica de Oriental Oriental Puebla Mexico

4. Institut für Biologische Informationsprozesse, Strukturbiochemie (IBI‐7), Forschungszentrum Jülich GmbH Jülich Germany

5. Department of Medicine University of Alberta Edmonton Alberta Canada

6. Neuroscience and Mental Health Institute, University of Alberta Edmonton Alberta Canada

7. Institut für Physikalische Biologie, Heinrich‐Heine‐Universität Düsseldorf Düsseldorf Germany

Abstract

AbstractSynucleinopathies, including Parkinson's disease (PD), multiple system atrophy (MSA), and dementia with Lewy bodies (DLB), are neurodegenerative disorders caused by the accumulation of misfolded alpha‐synuclein protein. Developing effective vaccines against synucleinopathies is challenging due to the difficulty of stimulating an immune‐specific response against alpha‐synuclein without causing harmful autoimmune reactions, selectively targeting only pathological forms of alpha‐synuclein. Previous attempts using linear peptides and epitopes without control of the antigen structure failed in clinical trials. The immune system was unable to distinguish between native alpha‐synuclein and its amyloid form. The prion domain of the fungal HET‐s protein was selected as a scaffold to introduce select epitopes from the surface of alpha‐synuclein fibrils. Four vaccine candidates were generated by introducing specific amino acid substitutions onto the surface of the scaffold protein. The approach successfully mimicked the stacking of the parallel in‐register beta‐sheet structure seen in alpha‐synuclein fibrils. All vaccine candidates induced substantial levels of IgG antibodies that recognized pathological alpha‐synuclein fibrils derived from a synucleinopathy mouse model. Furthermore, the antisera recognized pathological alpha‐synuclein aggregates in brain lysates from patients who died from DLB, MSA, or PD, but did not recognize linear alpha‐synuclein peptides. Our approach, based on the rational design of vaccines using the structure of alpha‐synuclein amyloid fibrils and strict control over the exposed antigen structure used for immunization, as well as the ability to mimic aggregated alpha‐synuclein, provides a promising avenue toward developing effective vaccines against alpha‐synuclein fibrils.

Funder

Weston Brain Institute

MJFF

Parkinson Association of Alberta

Publisher

Wiley

Reference60 articles.

1. Autonomic Dysfunction in α-Synucleinopathies

2. Genetic factors associated with dementia in Parkinson's disease (PD);Romo‐Gutiérrez D;Gac Med Mex,2015

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