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Article Dans Une Revue Biochemical and Biophysical Research Communications Année : 2013

Shadoo binds lipid membranes and undergoes aggregation and fibrillization

Résumé

Lipid membrane can enhance prion protein (PrP) pathological fibrillogenesis. A neuronal paralog of PrP, named Shadoo (Sho), is localized to similar membrane environment as PrP and can also convert to amyloid-like fibrilles. To gain insight into the role of Sho in prion diseases, we studied Sho interactions with cellular membrane models. Sho was found to bind anionic lipid vesicles. Spectroscopic and microscopic data showed that membrane-associated Sho slowly converted into amyloid fibers. Furthermore, binding of Sho to anionic liposomes has a disruptive effect on the integrity of the lipid bilayer leading to the formation of supramolecular lipid-protein complexes. In consequence, the role of Sho in prion diseases might depend on the oligomerization state of Sho but also the nature of these lipoprotein assembles. (C) 2013 Elsevier Inc. All rights reserved.

Dates et versions

hal-02643069 , version 1 (28-05-2020)

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Citer

Qiaojing Li, Christophe Chevalier, Celine C. Henry, Charles-Adrien Richard, Mohammed M. Moudjou, et al.. Shadoo binds lipid membranes and undergoes aggregation and fibrillization. Biochemical and Biophysical Research Communications, 2013, 438 (3), pp.519 - 525. ⟨10.1016/j.bbrc.2013.07.104⟩. ⟨hal-02643069⟩
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