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Published on: July 25, 2022
PP2 and piceatannol inhibit PrP106-126-induced iNOS activation mediated by CD36 in BV2 microglia
Siming Zhang1, Lifeng Yang, Mohammed Kouadir
1State Key Laboratories for Agrobiotechnology, Key Lab of Animal Epidemiology and Zoonosis, Ministry of Agriculture, National Animal Transmissible Spongiform Encephalopathy Laboratory, College of Veterinary Medicine, China Agricultural University, Beijing, China.
Abstract:
Prion diseases are a group of transmissible fatal neurodegenerative disorders of humans and animals, including bovine spongiform encephalopathy, scrapie, and Creutzfeldt-Jakob disease. Microglia, the resident macrophages of the central nervous system, are exquisitely sensitive to pathological tissue alterations, altering their morphology and phenotype to adopt a so-called activated state and perform immunological functions in response to pathophysiological brain insults. Although recent findings have provided valuable insights into the role microglia play in the proinflammatory events observed in prion, the intracellular signaling molecules responsible for the initiation of these responses remain to be elucidated. It seems that microglial activation involve PrP106-126 binding and the activation of cell surface immune and adhesion molecules such as CD36 and integrins, with the subsequent recruitment of Src family tyrosine kinases such as Fyn, Lyn, and Syk kinases. In the present study, we show that CD36 is involved in PrP106-126-induced microglial activation and that PP2 and piceatannol (Pic) can abrogate neurotoxic prion peptides-induced inducible nitric oxide synthase activation in microglia. These findings unveil a previously unrecognized role of PP2 and Pic as Src family kinase Fyn and the tyrosine kinase Syk inhibitor involved in neurotoxic prion peptides-microglia interactions, thus providing new insights into mechanisms underlying the activation of microglia by neurotoxic prion peptides.
Insights
This study reveals that CD36 is crucial for microglial activation by prion peptides. Inhibitors PP2 and piceatannol block this activation, offering new therapeutic targets for prion diseases.
Area of Science:
- Neuroscience
- Immunology
- Pathology
Background:
- Prion diseases are fatal neurodegenerative disorders affecting the central nervous system.
- Microglia, the brain's immune cells, activate in response to disease but the initiating signals are unclear.
- Prion peptide PrP106-126 binding to CD36 and integrins is implicated in microglial activation.
Purpose of the Study:
- To investigate the role of CD36 in prion peptide-induced microglial activation.
- To identify intracellular signaling molecules involved in this process.
- To explore potential inhibitors of prion-induced neuroinflammation.
Main Methods:
- Utilized microglial cell cultures.
- Examined the role of CD36 in response to PrP106-126 peptide.
- Assessed the inhibitory effects of PP2 and piceatannol (Pic) on inducible nitric oxide synthase (iNOS) activation.
Main Results:
- Confirmed CD36's involvement in PrP106-126-induced microglial activation.
- Demonstrated that PP2 and Pic inhibit PrP106-126-induced iNOS activation in microglia.
- Identified PP2 and Pic as inhibitors of Src family kinase Fyn and Syk kinase.
Conclusions:
- CD36 is a key mediator of microglial activation by neurotoxic prion peptides.
- PP2 and Pic act as inhibitors of Fyn and Syk kinases, respectively, in prion peptide-microglia interactions.
- These findings provide novel insights into the mechanisms of microglial activation in prion diseases and suggest potential therapeutic strategies.