Complementation between pathological prion protein subassemblies to cross existing species barriers
Igel-Egalon, A.; Laferriere, F.; Tixador, P.; Moudjou, M.; Herzog, L.; Reine, F.; Torres, J. M.; Laude, H.; Rezaei, H.; Beringue, V.
Show abstract
Backgroundprion replication results from the autocatalytic templated assisted conversion of the host-encoded prion protein PrPC into misfolded, polydisperse PrPSc conformers. Structurally distinct PrPSc conformers can give rise to multiple prion strains. Within and between prion strains, the biological activity (replicative efficacy and specific infectivity) of PrPSc assemblies is size-dependent and thus reflects an intrinsic structural heterogeneity. The contribution of such PrPSc heterogeneity across species prion adaptation, - which is believed to be based on fit-adjustment between PrPSc template(s) and host PrPC -, has not been explored. Methodsto define the structural-to-fitness PrPSc landscape, we measured the relative capacity of size-fractionated PrPSc assemblies from different prion strains to cross mounting species barriers in transgenic mice expressing foreign PrPc. Resultsin the absence of a transmission barrier, the relative efficacy of the isolated PrPSc assemblies to induce the disease is superimposable to the efficacy observed in the homotypic context. However, in the presence of a transmission barrier, size fractionation overtly delays and even abrogates prion pathogenesis in both neural and extraneural, prion-permissive tissues, for reason independent of the infectivity load of the isolated assemblies. This suggests that a synergy between structurally distinct PrPSc assemblies in the inoculum is requested for crossing the species barrier. We further strengthen this hypothesis by showing that altering, by serial dilution, PrPSc assemblies content of unfractionated inocula reduce their specific infectivity in an aberrant manner, solely in the presence of a transmission barrier. Conclusionsour data support a mechanism whereby overcoming prion species barrier requires complementation between structurally distinct PrPSc assemblies. This work provides key insight into the "quasi-species" concept applied to prions, which would not necessarily rely on prion sub-strains as constituent but on structural PrPSc heterogeneity within prion population.
Matching journals
The top 8 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Proteomic evidence for amyloidogenic cross-seeding in fibrinaloid microclots 89%
- Neuronal Dot1l is a broad mitochondrial gene-repressor associated with human brain aging via H3K79 hypermethylation 88%
- Binding of different substrate molecules at the docking site and the active site of γ-secretase can trigger toxic events in sporadic and familial Alzheimer's disease 87%
Similar papers in this journal
Similar papers in this journal
- The role of Aβ circRNA in Alzheimer's disease: alternative mechanism of Aβ biogenesis from Aβ circRNA translation 90%
- Tissue-specific vulnerability to apoptosis in Machado-Joseph disease 88%
- Heterologous HSPC transplantation rescues neuroinflammation and ameliorates peripheral manifestations in the mouse model of lysosomal transmembrane enzyme deficiency, MPS IIIC. 88%
Similar papers in this journal
- Proliferative arrest induces neuron differentiation and innate immune responses in control and Creutzfeldt-Jakob Disease agent (CJ) infected rat septal neurons 90%
- Genome wide association study of clinical duration and age at onset of sporadic CJD 90%
- A protease protection assay for the detection of internalized alpha-synuclein pre-formed fibrils 89%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.