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Sequence- and seed-structure-dependent polymorphic fibrils of alpha-synuclein
Authors:Goki Tanaka  Tomoyuki Yamanaka  Yoshiaki Furukawa  Naoko Kajimura  Kaoru Mitsuoka  Nobuyuki Nukina
Affiliation:1. Laboratory of Structural Neuropathology, Doshisha University Graduate School of Brain Science, 1-3 Miyakodanitatara, Kyotanabe-shi, Kyoto 610-0394, Japan;2. Laboratory for Mechanistic Chemistry of Biomolecules, Department of Chemistry, Keio University, 3-14-1 Hiyoshi, Kohoku, Yokohama 223-8522, Japan;3. Research Center for Ultra-High Voltage Electron Microscopy, Osaka University, 7-1, Mihogaoka, Ibaraki, Osaka 567-0047, Japan
Abstract:Synucleinopathies comprise a diverse group of neurodegenerative diseases including Parkinson's disease (PD), dementia with Lewy bodies, and multiple system atrophy. These share a common pathological feature, the deposition of alpha-synuclein (a-syn) in neurons or oligodendroglia. A-syn is highly conserved in vertebrates, but the primary sequence of mouse a-syn differs from that of human at seven positions. However, structural differences of their aggregates remain to be fully characterized. In this study, we found that human and mouse a-syn aggregated in vitro formed morphologically distinct amyloid fibrils exhibiting twisted and straight structures, respectively. Furthermore, we identified different protease-resistant core regions, long and short, in human and mouse a-syn aggregates. Interestingly, among the seven unconserved amino acids, only A53T substitution, one of the familial PD mutations, was responsible for structural conversion to the straight-type. Finally, we checked whether the structural differences are transmissible by seeding and found that human a-syn seeded with A53T aggregates formed straight-type fibrils with short protease-resistant cores. These results suggest that a-syn aggregates form sequence-dependent polymorphic fibrils upon spontaneous aggregation but become seed structure-dependent upon seeding.
Keywords:Corresponding authors.  AD  Alzheimer disease  PD  Parkinson's disease  DLB  dementia with Lewy bodies  MSA  multiple system atrophy  a-syn  alpha-synuclein  WT  wild type  CBB  Coomassie Brilliant Blue  PFF  pre-formed fibrils  EM  electron microscopy  Alpha-synuclein  Protein aggregation  Parkinson's disease  Amyloid fibrils  Interspecies difference
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