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Characterizing Histone Post-translational Modification Alterations in Yeast Neurodegenerative Proteinopathy Models
Published on: March 24, 2019
Identification of new molecular alterations in fatal familial insomnia
Franc Llorens1, Katrin Thüne1, Matthias Schmitz1
1Department of Neurology, University Medical Center Göttingen, and German Center for Neurodegenerative Diseases (DZNE)-site Göttingen, Göttingen 37075, Germany.
Abstract:
Fatal familial insomnia is a rare disease caused by a D178N mutation in combination with methionine (Met) at codon 129 in the mutated allele of PRNP (D178N-129M haplotype). FFI is manifested by sleep disturbances with insomnia, autonomic disorders and spontaneous and evoked myoclonus, among other symptoms. This study describes new neuropathological and biochemical observations in a series of eight patients with FFI. The mediodorsal and anterior nuclei of the thalamus have severe neuronal loss and marked astrocytic gliosis in every case, whereas the entorhinal cortex is variably affected. Spongiform degeneration only occurs in the entorhinal cortex. Synaptic and fine granular proteinase K digestion (PrPres) immunoreactivity is found in the entorhinal cortex but not in the thalamus. Interleukin 6, interleukin 10 receptor alpha subunit, colony stimulating factor 3 receptor and toll-like receptor 7 mRNA expression increases in the thalamus in FFI. PrPc levels are significantly decreased in the thalamus, entorhinal cortex and cerebellum in FFI. This is accompanied by a particular PrPc and PrPres band profile. Altered PrP solubility consistent with significantly reduced PrP levels in the cytoplasmic fraction and increased PrP levels in the insoluble fraction are identified in FFI cases. Amyloid-like deposits are only seen in the entorhinal cortex. The RT-QuIC assay reveals that all the FFI samples of the entorhinal cortex are positive, whereas the thalamus is positive only in three cases and the cerebellum in two cases. The present findings unveil particular neuropathological and neuroinflammatory profiles in FFI and novel characteristics of natural prion protein in FFI, altered PrPres and Scrapie PrP (abnormal and pathogenic PrP) patterns and region-dependent putative capacity of PrP seeding.
Insights
Fatal familial insomnia (FFI) involves severe thalamic damage and neuroinflammation. This study reveals unique prion protein alterations and region-specific seeding potential in FFI patients.
Area of Science:
- Neuroscience
- Pathology
- Genetics
Background:
- Fatal familial insomnia (FFI) is a rare prion disease linked to the D178N-129M haplotype of the PRNP gene.
- FFI is characterized by progressive insomnia, autonomic dysfunction, and myoclonus.
Purpose of the Study:
- To investigate the neuropathological and biochemical characteristics of FFI.
- To explore prion protein (PrP) behavior and neuroinflammatory markers in FFI.
Main Methods:
- Neuropathological examination of eight FFI patients.
- Biochemical analyses including PrP profiling, solubility assays, and RT-QuIC.
- Analysis of mRNA expression for specific cytokines and receptors.
Main Results:
- Severe neuronal loss and gliosis in the thalamus; variable entorhinal cortex involvement with spongiform changes.
- Distinct PrPSc (abnormal prion protein) deposition in the entorhinal cortex but not thalamus.
- Increased thalamic expression of IL-6, IL-10Rα, CSF3R, and TLR7; decreased PrPC levels across brain regions.
- Altered PrP solubility and positive RT-QuIC seeding in entorhinal cortex.
Conclusions:
- FFI exhibits unique neuropathological and neuroinflammatory profiles, distinct from other prion diseases.
- Prion protein exhibits altered solubility and seeding properties in FFI.
- Findings highlight region-dependent prion propagation and disease mechanisms in FFI.

