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Published on: April 13, 2017
Accelerated prion disease pathogenesis in Toll-like receptor 4 signaling-mutant mice
Daryl S Spinner1, In Soo Cho, Seung Yong Park
1New York State Institute for Basic Research in Developmental Disabilities, Staten Island, New York 10314, USA. darylspinner@aol.com
Abstract:
Prion diseases such as scrapie involve the accumulation of disease-specific prion protein, PrP(Sc), in the brain. Toll-like receptors (TLRs) are a family of proteins that recognize microbial constituents and are central players in host innate immune responses. The TLR9 agonist unmethylated CpG DNA was shown to prolong the scrapie incubation period in mice, suggesting that innate immune activation interferes with prion disease progression. Thus, it was predicted that ablation of TLR signaling would result in accelerated pathogenesis. C3H/HeJ (Tlr4(Lps-d)) mice, which possess a mutation in the TLR4 intracellular domain preventing TLR4 signaling, and strain-matched wild-type control (C3H/HeOuJ) mice were infected intracerebrally or intraperitoneally with various doses of scrapie inoculum. Incubation periods were significantly shortened in C3H/HeJ compared with C3H/HeOuJ mice, regardless of the route of infection or dose administered. At the clinical phase of disease, brain PrP(Sc) levels in the two strains of mice showed no significant differences by Western blotting. In addition, compared with macrophages from C3H/HeOuJ mice, those from C3H/HeJ mice were unresponsive to fibrillogenic PrP peptides (PrP residues 106 to 126 [PrP(106-126)] and PrP(118-135)) and the TLR4 agonist lipopolysaccharide but not to the TLR2 agonist zymosan, as measured by cytokine production. These data confirm that innate immune activation via TLR signaling interferes with scrapie infection. Furthermore, the results also suggest that the scrapie pathogen, or a component(s) thereof, is capable of stimulating an innate immune response that is active in the central nervous system, since C3H/HeJ mice, which lack the response, exhibit shortened incubation periods following both intraperitoneal and intracerebral infections.
Insights
Innate immune activation via Toll-like receptor (TLR) signaling interferes with prion disease progression. Ablating TLR4 signaling in mice accelerated scrapie pathogenesis, indicating TLRs are crucial in combating prion infections.
Area of Science:
- Neuroimmunology
- Infectious Diseases
- Protein Misfolding Diseases
Background:
- Prion diseases, like scrapie, are characterized by the accumulation of misfolded prion protein (PrPSc) in the brain.
- Toll-like receptors (TLRs) are key components of the innate immune system, recognizing pathogen-associated molecular patterns.
- Previous studies suggested innate immune activation, specifically via TLR9, could prolong prion disease incubation periods.
Purpose of the Study:
- To investigate the role of Toll-like receptor (TLR) signaling in prion disease pathogenesis.
- To determine if the absence of TLR signaling accelerates scrapie disease progression.
Main Methods:
- Used C3H/HeJ mice with a defective TLR4 signaling pathway and wild-type C3H/HeOuJ mice.
- Infected both mouse strains with scrapie via intracerebral or intraperitoneal routes.
- Assessed incubation periods, brain PrPSc levels, and macrophage responsiveness to TLR agonists and PrP peptides.
Main Results:
- Mice lacking functional TLR4 signaling (C3H/HeJ) exhibited significantly shortened scrapie incubation periods compared to wild-type controls.
- No significant differences in brain PrPSc levels were observed between the strains at the clinical disease stage.
- C3H/HeJ macrophages were unresponsive to TLR4 agonists and certain PrP peptides, confirming impaired TLR4 signaling.
Conclusions:
- Innate immune activation through TLR signaling demonstrably interferes with scrapie infection progression.
- The results suggest that scrapie or its components can stimulate an innate immune response, even within the central nervous system.
- Impaired TLR signaling leads to accelerated prion disease pathogenesis, highlighting the protective role of the innate immune system.

