Structural and Dynamic Insights Into α-Synuclein Dimer Conformations
Structural and Dynamic Insights Into α-Synuclein Dimer Conformations
Parkinson disease is associated with the aggregation of the protein α-synuclein. While α-synuclein can exist in multiple oligomeric states, the dimer has been a subject of extensive debates. Here, using an array of biophysical approaches, we demonstrate that α-synuclein in vitro exhibits primarily monomer and dimers in up to a few micromolars. We then use spatial information from hetero-isotopic cross-linking mass spectrometry experiments as restrains in discrete molecular dynamics simulations to obtain the ensemble structure of dimeric species. Out of eight structural sub-populations of dimers, we identify one that is compact, stable, abundant, and exhibits partially exposed β-sheet structures. This compact dimer is the only one where the hydroxyls of tyrosine 39 are in proximity that may promote dityrosine covalent linkage upon hydroxyl radicalization, which is implicated in α-synuclein amyloid fibrils. We propose that this α-synuclein dimer features etiological relevance to Parkinson disease.
Zamel Joanna、Zaer Sofia、Dokholyan Nikolay V.、Lerner Eitan、Harris Paul David、Drori Paz、Lebendiker Mario、Chen Jiaxing、Kalisman Nir
神经病学、精神病学生物科学研究方法、生物科学研究技术分子生物学
Zamel Joanna,Zaer Sofia,Dokholyan Nikolay V.,Lerner Eitan,Harris Paul David,Drori Paz,Lebendiker Mario,Chen Jiaxing,Kalisman Nir.Structural and Dynamic Insights Into α-Synuclein Dimer Conformations[EB/OL].(2025-03-28)[2025-04-29].https://www.biorxiv.org/content/10.1101/795997.点此复制
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