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2018-05Zeitschriftenartikel
Dimerization of the cellular prion protein inhibits propagation of scrapie prions
dc.contributor.authorEngelke, Anna D.
dc.contributor.authorGonsberg, Anika
dc.contributor.authorThapa, Simrika
dc.contributor.authorJung, Sebastian
dc.contributor.authorUlbrich, Sarah
dc.contributor.authorSeidel, Ralf
dc.contributor.authorBasu, Shaon
dc.contributor.authorMulthaup, Gerd
dc.contributor.authorBaier, Michael
dc.contributor.authorEngelhard, Martin
dc.contributor.authorSchätzl, Hermann M.
dc.contributor.authorWinklhofer, Konstanze F.
dc.contributor.authorTatzelt, Jörg
dc.date.accessioned2026-08-20T13:46:56Z
dc.date.available2026-08-20T13:46:56Z
dc.date.issued2018-05none
dc.identifier.other10.1074/jbc.RA117.000990
dc.identifier.urihttp://edoc.rki.de/176904/13853
dc.description.abstractA central step in the pathogenesis of prion diseases is the conformational transition of the cellular prion protein (PrPC) into the scrapie isoform, denoted PrPSc. Studies in transgenic mice have indicated that this conversion requires a direct interaction between PrPC and PrPSc; however, insights into the underlying mechanisms are still missing. Interestingly, only a subfraction of PrPC is converted in scrapie-infected cells, suggesting that not all PrPC species are suitable substrates for the conversion. On the basis of the observation that PrPC can form homodimers under physiological conditions with the internal hydrophobic domain (HD) serving as a putative dimerization domain, we wondered whether PrP dimerization is involved in the formation of neurotoxic and/or infectious PrP conformers. Here, we analyzed the possible impact on dimerization of pathogenic mutations in the HD that induce a spontaneous neurodegenerative disease in transgenic mice. Similarly to wildtype (WT) PrPC, the neurotoxic variant PrP(AV3) formed homodimers as well as heterodimers with WTPrPC. Notably, forced PrP dimerization via an intermolecular disulfide bond did not interfere with its maturation and intracellular trafficking. Covalently linked PrP dimers were complex glycosylated, GPI-anchored, and sorted to the outer leaflet of the plasma membrane. However, forced PrPC dimerization completely blocked its conversion into PrPSc in chronically scrapie-infected mouse neuroblastoma cells. Moreover, PrPC dimers had a dominant-negative inhibition effect on the conversion of monomeric PrPC. Our findings suggest that PrPC monomers are the major substrates for PrPSc propagation and that it may be possible to halt prion formation by stabilizing PrPC dimers.eng
dc.language.isoengnone
dc.publisherRobert Koch-Institut
dc.rights(CC BY 3.0 DE) Namensnennung 3.0 Deutschlandger
dc.rights.urihttp://creativecommons.org/licenses/by/3.0/de/
dc.subject.ddc610 Medizin und Gesundheitnone
dc.titleDimerization of the cellular prion protein inhibits propagation of scrapie prionsnone
dc.typearticle
dc.identifier.urnurn:nbn:de:0257-176904/13853-1
dc.type.versionpublishedVersionnone
local.edoc.container-titleJournal of Biological Chemistrynone
local.edoc.container-issn1083-351Xnone
local.edoc.type-nameZeitschriftenartikel
local.edoc.container-typeperiodical
local.edoc.container-type-nameZeitschrift
local.edoc.container-urlhttps://www.sciencedirect.com/journal/journal-of-biological-chemistrynone
local.edoc.container-publisher-nameElseviernone
local.edoc.container-volume293none
local.edoc.container-issue21none
local.edoc.container-reportyear2018none
local.edoc.container-firstpage8020none
local.edoc.container-lastpage8031none
dc.description.versionPeer Reviewednone

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