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Molecular pathology of fatal familial insomnia
P Parchi1, R B Petersen, S G Chen
1Division of Neuropathology, Institute of Pathology, Case Western Reserve University, Cleveland, Ohio 44106, USA.
Abstract:
Fatal familial insomnia (FFI) is linked to a mutation at codon 178 of the prion protein gene, coupled with the methionine codon at position 129, the site of a methionine/valine polymorphism. The D178N mutation coupled with the 129 valine codon is linked to a subtype of Creutzfeldt-Jakob disease (CJD178) with a different phenotype. Two protease resistant fragments of the pathogenic PrP (PrPres), which differ in molecular mass, are associated with FFI and CJD178, respectively, suggesting that the two PrPres have different conformations and hence they produce different disease phenotypes. FFI transmission experiments, which show that the endogenous PrPres recovered in affected syngenic mice specifically replicates the molecular mass of the FFI PrPres inoculated and is associated with a phenotype distinct from that of the CJD178 inoculated mice, support this idea. The second distinctive feature of the FFI PrPres is the underrepresentation of the unglycosylated PrPres form. Cell models indicate that the underrepresentation of this PrPres form results from the PrP dysmetabolism caused by the D178N mutation and not from the preferential conversion of the glycosylated forms. Codon 129 on the normal allele further modifies the FFI phenotype determining patient subpopulations of 129 homozygotes and heterozygotes: disease duration is generally shorter, insomnia more severe and histopathology more restricted to the thalamus in the homozygotes than in the heterozygotes. The allelic origin of PrPres fails to explain this finding since in both cases FFI PrPres is expressed only by the mutant allele. Despite remarkable advances, many issues remain unsolved precluding full understanding of the FFI pathogenesis.
Insights
Fatal familial insomnia (FFI) is caused by a prion protein gene mutation. Different prion conformations explain FFI and CJD phenotypes, with codon 129 influencing disease severity.
Area of Science:
- Neuroscience
- Genetics
- Molecular Biology
Background:
- Fatal familial insomnia (FFI) is a rare, inherited prion disease.
- It is associated with a specific mutation in the prion protein gene (PRNP D178N).
- The methionine/valine polymorphism at codon 129 of the PRNP gene influences disease phenotype.
Purpose of the Study:
- To investigate the molecular mechanisms underlying FFI pathogenesis.
- To differentiate the pathogenic prion protein (PrPres) conformations in FFI and Creutzfeldt-Jakob disease (CJD).
- To understand the role of codon 129 polymorphism in modifying FFI phenotype.
Main Methods:
- Analysis of protease-resistant prion protein (PrPres) fragments in FFI and CJD patients.
- Prion transmission studies in syngenic mouse models.
- Cell-based models to study PrP metabolism.
Main Results:
- Two distinct PrPres molecular masses were identified, correlating with FFI and CJD178 phenotypes.
- Transmission studies confirmed distinct prion replication and disease phenotypes.
- Underrepresentation of unglycosylated PrPres in FFI is due to PrP dysmetabolism, not preferential conversion.
- Codon 129 polymorphism (homozygotes vs. heterozygotes) affects FFI disease duration, insomnia severity, and histopathology.
Conclusions:
- Distinct PrPres conformations underlie FFI and CJD phenotypes.
- PrP dysmetabolism caused by the PRNP D178N mutation contributes to FFI.
- Codon 129 polymorphism significantly modifies the FFI clinical presentation.
- Further research is needed to fully elucidate FFI pathogenesis.