作者
Blake E Roberts, Martin L Duennwald, Huan Wang, Chan Chung, Nicholas P Lopreiato, Elizabeth A Sweeny, M Noelle Knight, James Shorter
发表日期
2009/12
期刊
Nature chemical biology
卷号
5
期号
12
页码范围
936-946
出版商
Nature Publishing Group US
简介
Safely eradicating prions, amyloids and preamyloid oligomers may ameliorate several fatal neurodegenerative disorders. Yet whether small-molecule drugs can directly antagonize the entire spectrum of distinct amyloid structures or 'strains' that underlie distinct disease states is unclear. Here, we investigated this issue using the yeast prion protein Sup35. We have established how epigallocatechin-3-gallate (EGCG) blocks synthetic Sup35 prionogenesis, eliminates preformed Sup35 prions and disrupts inter- and intramolecular prion contacts. Unexpectedly, these direct activities were strain selective, altered the repertoire of accessible infectious forms and facilitated emergence of a new prion strain that configured original, EGCG-resistant intermolecular contacts. In vivo, EGCG cured and prevented induction of susceptible, but not resistant strains, and elicited switching from susceptible to resistant forms. Importantly …
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