Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
10758133 | Biochemical and Biophysical Research Communications | 2013 | 5 Pages |
Abstract
Using a yeast model of Parkinson's disease, we found that alpha-synuclein (αS) binds to lipid droplets in lipid-loaded, wild-type yeast cells but not to lipid droplets in lipid-loaded, peroxisome-deficient cells (pex3Î). Our analysis revealed that pex3Î cells have both fewer lipid droplets and smaller lipid droplets than wild-type cells, and that the acyl chains of the phospholipids on the surface of the lipid droplets from pex3Î cells are on average shorter (C16) than those (C18) on the surface of lipid droplets from wild-type cells. We propose that the shift to shorter (C18 â C16) acyl chains contributes to the reduced binding of αS to lipid droplets in pex3Î cells.
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Authors
Shaoxiao Wang, Patrick J. Horn, Liang-Chun Liou, Martin I. Muggeridge, Zhaojie Zhang, Kent D. Chapman, Stephan N. Witt,