Comparative Studies in the A30P and A53T α-Synuclein C. elegans Strains to Investigate the Molecular Origins of Parkinson's Disease

Author:

Perni Michele,van der Goot Annemieke,Limbocker Ryan,van Ham Tjakko J.,Aprile Francesco A.,Xu Catherine K.,Flagmeier Patrick,Thijssen Karen,Sormanni Pietro,Fusco Giuliana,Chen Serene W.,Challa Pavan K.,Kirkegaard Julius B.,Laine Romain F.,Ma Kai Yu,Müller Martin B. D.,Sinnige Tessa,Kumita Janet R.,Cohen Samuel I. A.,Seinstra Renée,Kaminski Schierle Gabriele S.,Kaminski Clemens F.,Barbut Denise,De Simone Alfonso,Knowles Tuomas P. J.,Zasloff Michael,Nollen Ellen A. A.,Vendruscolo Michele,Dobson Christopher M.

Abstract

The aggregation of α-synuclein is a hallmark of Parkinson's disease (PD) and a variety of related neurological disorders. A number of mutations in this protein, including A30P and A53T, are associated with familial forms of the disease. Patients carrying the A30P mutation typically exhibit a similar age of onset and symptoms as sporadic PD, while those carrying the A53T mutation generally have an earlier age of onset and an accelerated progression. We report two C. elegans models of PD (PDA30P and PDA53T), which express these mutational variants in the muscle cells, and probed their behavior relative to animals expressing the wild-type protein (PDWT). PDA30P worms showed a reduced speed of movement and an increased paralysis rate, control worms, but no change in the frequency of body bends. By contrast, in PDA53T worms both speed and frequency of body bends were significantly decreased, and paralysis rate was increased. α-Synuclein was also observed to be less well localized into aggregates in PDA30P worms compared to PDA53T and PDWT worms, and amyloid-like features were evident later in the life of the animals, despite comparable levels of expression of α-synuclein. Furthermore, squalamine, a natural product currently in clinical trials for treating symptomatic aspects of PD, was found to reduce significantly the aggregation of α-synuclein and its associated toxicity in PDA53T and PDWT worms, but had less marked effects in PDA30P. In addition, using an antibody that targets the N-terminal region of α-synuclein, we observed a suppression of toxicity in PDA30P, PDA53T and PDWT worms. These results illustrate the use of these two C. elegans models in fundamental and applied PD research.

Funder

EPSRC Centre for Doctoral Training in Medical Imaging

Wellcome Trust

Medical Research Council

MedImmune

Horizon 2020

Publisher

Frontiers Media SA

Subject

Cell Biology,Developmental Biology

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