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Chk1 Inhibition Ameliorates Alzheimer's Disease Pathogenesis and Cognitive Dysfunction Through CIP2A/PP2A Signaling
Wenting Hu1, Zhuoqun Wang1, Huiliang Zhang1
1Department of Pathophysiology, Key Laboratory of Ministry of Education for Neurological Disorders, School of Basic Medicine, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, China.
Abstract:
Alzheimer's disease (AD) is the most common neurodegenerative disease with limited therapeutic strategies. Cell cycle checkpoint protein kinase 1 (Chk1) is a Ser/Thr protein kinase which is activated in response to DNA damage, the latter which is an early event in AD. However, whether DNA damage-induced Chk1 activation participates in the development of AD and Chk1 inhibition ameliorates AD-like pathogenesis remain unclarified. Here, we demonstrate that Chk1 activity and the levels of protein phosphatase 2A (PP2A) inhibitory protein CIP2A are elevated in AD human brains, APP/PS1 transgenic mice, and primary neurons with Aβ treatment. Chk1 overexpression induces CIP2A upregulation, PP2A inhibition, tau and APP hyperphosphorylation, synaptic impairments, and cognitive memory deficit in mice. Moreover, Chk1 inhibitor (GDC0575) effectively increases PP2A activity, decreases tau phosphorylation, and inhibits Aβ overproduction in AD cell models. GDC0575 also reverses AD-like cognitive deficits and prevents neuron loss and synaptic impairments in APP/PS1 mice. In conclusion, our study uncovers a mechanism by which DNA damage-induced Chk1 activation promotes CIP2A-mediated tau and APP hyperphosphorylation and cognitive dysfunction in Alzheimer's disease and highlights the therapeutic potential of Chk1 inhibitors in AD.
Insights
Alzheimer's disease involves DNA damage activating Chk1, leading to cognitive decline. Inhibiting Chk1 (cell cycle checkpoint protein kinase 1) shows therapeutic potential for Alzheimer's disease.
Area of Science:
- Neuroscience
- Molecular Biology
- Pharmacology
Background:
- Alzheimer's disease (AD) is a prevalent neurodegenerative disorder with inadequate treatments.
- DNA damage, an early AD event, activates cell cycle checkpoint protein kinase 1 (Chk1).
Purpose of the Study:
- To investigate the role of DNA damage-induced Chk1 activation in AD pathogenesis.
- To evaluate the therapeutic efficacy of Chk1 inhibition in AD models.
Main Methods:
- Assessed Chk1 activity and CIP2A levels in human AD brains, APP/PS1 mice, and Aβ-treated neurons.
- Examined the effects of Chk1 overexpression and the Chk1 inhibitor GDC0575 in AD models.
- Evaluated cognitive function, neuronal loss, and synaptic integrity in treated mice.
Main Results:
- Elevated Chk1 activity and CIP2A levels were observed in AD models.
- Chk1 inhibition by GDC0575 reduced tau and APP hyperphosphorylation, and Aβ production.
- GDC0575 treatment improved cognitive deficits and prevented neuronal loss in APP/PS1 mice.
Conclusions:
- DNA damage-induced Chk1 activation promotes CIP2A-mediated tau and APP hyperphosphorylation in AD.
- Chk1 inhibition represents a promising therapeutic strategy for Alzheimer's disease.
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