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Chronic Dyrk1 Inhibition Delays the Onset of AD-Like Pathology in 3xTg-AD Mice
R Velazquez1, B Meechoovet2, A Ow1
1Neurodegenerative Disease Research Center, Biodesign Institute, Arizona State University, Tempe, AZ, 85281, USA.
Abstract:
There is a critical need for new treatment approaches that can slow or prevent the progression of Alzheimer's disease (AD). Targets that act simultaneously on multiple relevant pathways could have significant therapeutic potential. Dual-specificity tyrosine phosphorylation-regulated kinase 1A (Dyrk1a) phosphorylates both amyloid precursor protein (APP) and tau. Dyrk1a is upregulated in post-mortem brains of AD patients, and such elevated expression is associated with cognitive deficits. We previously demonstrated that small molecule inhibition of Dyrk1 is well-tolerated and reduces amyloid plaques and pathological forms of tau in 3xTg-AD mice if administered after formation of these pathologies. However, while insoluble forms of hyperphosphorylated tau were reduced by Dyrk1 inhibition, overt neurofibrillary tangle (NFT) pathology remained unchanged. Herein, we specifically test the hypothesis that inhibition of Dyrk1 prior to NFT formation will delay the onset of pathology. 3xTg-AD mice were treated chronically, beginning at 6 months of age, prior to NFT pathology. Mice were dosed daily for either 3 or 6 months and amyloid and tau pathology were assessed. We show that chronic Dyrk1 inhibition reduces insoluble forms of amyloid beta peptides (Aβ) and hyper-phosphorylated tau long-term and that these reductions are associated with dramatic delay in the onset of both amyloid plaques and NFTs. In addition, we show that DYR219, a potent and selective small molecule Dyrk1 inhibitor, induces degradation of Dyrk1a protein, likely contributing to the efficacy of this small molecule approach in vivo. Collectively, these results suggest that therapeutic strategies targeting tau phosphorylation will show the greatest effect if administered very early in the pathogenesis of AD.
Insights
Early inhibition of Dual-specificity tyrosine phosphorylation-regulated kinase 1A (Dyrk1a) delays Alzheimer
Area of Science:
- Neuroscience
- Pharmacology
- Biochemistry
Background:
- Alzheimer's disease (AD) requires novel treatments targeting multiple pathways.
- Dual-specificity tyrosine phosphorylation-regulated kinase 1A (Dyrk1a) is implicated in AD pathogenesis.
- Previous studies showed Dyrk1 inhibition reduced amyloid plaques and tau pathology post-formation.
Purpose of the Study:
- To investigate the therapeutic potential of inhibiting Dyrk1a *before* neurofibrillary tangle (NFT) formation.
- To determine if early Dyrk1a inhibition delays the onset of AD pathologies in a mouse model.
Main Methods:
- 3xTg-AD mice were treated with a Dyrk1 inhibitor (DYR219) starting at 6 months of age, before NFT pathology.
- Mice received daily treatment for 3 or 6 months.
- Amyloid and tau pathologies were assessed post-treatment.
Main Results:
- Chronic Dyrk1a inhibition significantly reduced insoluble amyloid-beta peptides and hyper-phosphorylated tau.
- Early treatment dramatically delayed the onset of both amyloid plaques and NFTs.
- The inhibitor DYR219 was found to induce Dyrk1a protein degradation.
Conclusions:
- Therapeutic strategies targeting tau phosphorylation are most effective when administered early in AD pathogenesis.
- Early intervention with Dyrk1a inhibitors shows promise for delaying AD progression.
- Dyrk1a inhibition represents a viable therapeutic strategy for Alzheimer's disease.
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