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Polar substitutions in helix 3 of the prion protein produce transmembrane isoforms that disturb vesicle trafficking.

Hum Mol Genet.. 2013-06; 
Sanchez-Garcia J, Arbelaez D, Jensen K, Rincon-Limas DE, Fernandez-Funez P. Department of Neurology, McKnight Brain Institute, University of Florida, Gainesville, FL 32611, USA.
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摘要

Prion diseases encompass a diverse group of neurodegenerative conditions characterized by the accumulation of misfolded Prion protein (PrP) isoforms. Other conformational variants of PrP have also been proposed to contribute to neurotoxicity in prion diseases, including misfolded intermediates as well as cytosolic and transmembrane isoforms. To better understand PrP neurotoxicity, we analyzed the role of two highly conserved methionines in helix 3 on PrP biogenesis, folding, and pathogenesis. Expression of the PrP-M205S and -M205,212S mutants in Drosophila led to hyperglycosylation, intracellular accumulation, and widespread conformational changes due to failure of oxidative folding. Surprisingly, PrP-M205S and... More

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