Title of article
Direct Observation of the Interconversion of Normal and Toxic Forms of α-Synuclein
Author/Authors
Nunilo Cremades، نويسنده , , Samuel I.A. Cohen، نويسنده , , Emma Deas، نويسنده , , Andrey Y. Abramov، نويسنده , , Allen Y. Chen، نويسنده , , Angel Orte، نويسنده , , Massimo Sandal، نويسنده , , Richard W. Clarke، نويسنده , , Paul Dunne، نويسنده , , Francesco A. Aprile، نويسنده , , Carlos W. Bertoncini، نويسنده , , Nicholas W. Wood، نويسنده , , Tuomas P.J. Knowles، نويسنده , , Christopher M. Dobson، نويسنده , , David Klenerman، نويسنده ,
Issue Information
هفته نامه با شماره پیاپی سال 2012
Pages
12
From page
1048
To page
1059
Abstract
Here, we use single-molecule techniques to study the aggregation of α-synuclein, the protein whose misfolding and deposition is associated with Parkinsonʹs disease. We identify a conformational change from the initially formed oligomers to stable, more compact proteinase-K-resistant oligomers as the key step that leads ultimately to fibril formation. The oligomers formed as a result of the structural conversion generate much higher levels of oxidative stress in rat primary neurons than do the oligomers formed initially, showing that they are more damaging to cells. The structural conversion is remarkably slow, indicating a high kinetic barrier for the conversion and suggesting that there is a significant period of time for the cellular protective machinery to operate and potentially for therapeutic intervention, prior to the onset of cellular damage. In the absence of added soluble protein, the assembly process is reversed and fibrils disaggregate to form stable oligomers, hence acting as a source of cytotoxic species.
Journal title
CELL
Serial Year
2012
Journal title
CELL
Record number
1021201
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