Abstract
The neurodegenerative disease spinocerebellar ataxia type 1 (SCA1) is caused by aggregation and misfolding of the ataxin-1 protein.While the pathology correlates with mutations that lead to expansion of a polyglutamine tract in the protein, other regions contribute to the aggregation process as also non-expanded ataxin-1 is intrinsically aggregation-prone and forms nuclear foci in cell. Here, we have used a combined approach based on FRET analysis, confocal microscopy and in vitro techniques to map aggregation-prone regions other than polyglutamine and to establish the importance of dimerization in self-association/foci formation. Identification of aggregation-prone regions other than polyglutamine could greatly help the development of SCA1 treatment more specific than that based on targeting the low complexity polyglutamine region. © 2014 Menon et al.
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Menon, R. P., Soong, D., de Chiara, C., Holt, M., McCormick, J. E., Anilkumar, N., & Pastore, A. (2014). Mapping the self-association domains of ataxin-1: Identification of novel non overlapping motifs. PeerJ, 2014(1). https://doi.org/10.7717/peerj.323
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