FEBS Letters · 2015 · 21 citations · 44 references
Molecular BiologyNeurochemical BiomarkersSocial SciencesAlzheimer's DiseaseLarge Protein AggregatesProtein FoldingPolyglutamine Amyloid FormationDegenerative PathologyPrion DiseaseProtein MisfoldingNeurologyBrain PathologyPrefibrillar Huntingtin OligomersMolecular NeuroscienceSeed Amyloid FormationHd BrainNeurodegenerationNeurodegenerative DiseasesAmyloid StateNeuroscienceMolecular NeurobiologyMedicine
Many neurodegenerative diseases are associated with deposits of aggregated protein in the brain. The molecular pathways through which soluble proteins misfold to form amyloids and large protein aggregates often include diverse oligomeric species, only some of which progress to the amyloid state. Here we show that prefibrillar huntingtin (HTT) oligomers, isolated from Huntington's disease (HD) affected human brain samples or mouse models, stimulate polyglutamine amyloid formation. Fibrillar HTT oligomers have been shown to be unstable under denaturing conditions and appear not to lead to amyloid formation. Here we show that prefibrillar HTT oligomers are remarkably stable and are potent seeds of polyglutamine amyloid formation. Therefore, our findings help to dissect the complex molecular pathway of HTT misfolding.
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Aggregation of Huntingtin in Neuronal Intranuclear Inclusions and Dystrophic Neurites in Brain
Marian DiFiglia, Ellen Sapp, Kathryn Chase et al. · Science · 1997 · 2.9K citations