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Updated: May 9, 2026

Molecular Modulation by Lentivirus-Delivered Specific shRNAs in Endoplasmic Reticulum Stressed Neurons
Published on: April 24, 2021
Silencing PP2A inhibitor by lenti-shRNA interference ameliorates neuropathologies and memory deficits in tg2576 mice
Gong-Ping Liu1, Wei Wei, Xin Zhou
1Department of Pathophysiology, Key Laboratory of the Ministry Education of China for Neurological Disease, Tongji Medical College, Huazhong University of Science and Technology, Wuhan, China.
Abstract:
Deficits of protein phosphatase-2A (PP2A) play a crucial role in tau hyperphosphorylation, amyloid overproduction, and synaptic suppression of Alzheimer's disease (AD), in which PP2A is inactivated by the endogenously increased inhibitory protein, namely inhibitor-2 of PP2A (I2(PP2A)). Therefore, in vivo silencing I2(PP2A) may rescue PP2A and mitigate AD neurodegeneration. By infusion of lentivirus-shRNA targeting I2(PP2A) (LV-siI2(PP2A)) into hippocampus and frontal cortex of 11-month-old tg2576 mice, we demonstrated that expression of LV-siI2(PP2A) decreased remarkably the elevated I2(PP2A) in both mRNA and protein levels. Simultaneously, the PP2A activity was restored with the mechanisms involving reduction of the inhibitory binding of I2(PP2A) to PP2A catalytic subunit (PP2AC), repression of the inhibitory Leu309-demethylation and elevation of PP2AC. Silencing I2(PP2A) induced a long-lasting attenuation of amyloidogenesis in tg2576 mice with inhibition of amyloid precursor protein hyperphosphorylation and β-secretase activity, whereas simultaneous inhibition of PP2A abolished the antiamyloidogenic effects of I2(PP2A) silencing. Finally, silencing I2(PP2A) could improve learning and memory of tg2576 mice with preservation of several memory-associated components. Our data reveal that targeting I2(PP2A) can efficiently rescue Aβ toxicities and improve the memory deficits in tg2576 mice, suggesting that I2(PP2A) could be a promising target for potential AD therapies.
Insights
Targeting inhibitor-2 of protein phosphatase-2A (I2(PP2A)) in Alzheimer's disease (AD) models reduces amyloid pathology and improves memory. Silencing I2(PP2A) restores PP2A activity, mitigating AD neurodegeneration and cognitive decline.
Area of Science:
- Neuroscience
- Biochemistry
- Molecular Biology
Background:
- Protein phosphatase-2A (PP2A) deficits are implicated in Alzheimer's disease (AD) pathogenesis, including tau hyperphosphorylation and amyloid-beta (Aβ) overproduction.
- PP2A inactivation by elevated inhibitor-2 of PP2A (I2(PP2A)) contributes to AD neurodegeneration.
Purpose of the Study:
- To investigate the therapeutic potential of in vivo silencing of I2(PP2A) to restore PP2A activity and ameliorate AD-related pathologies in a mouse model.
Main Methods:
- Lentivirus-shRNA targeting I2(PP2A) (LV-siI2(PP2A)) was infused into the hippocampus and frontal cortex of tg2576 mice.
- Changes in I2(PP2A) and PP2A activity, amyloidogenesis, protein phosphorylation, and cognitive function were assessed.
Main Results:
- LV-siI2(PP2A) significantly reduced I2(PP2A) mRNA and protein levels, restoring PP2A activity by decreasing I2(PP2A)-PP2A catalytic subunit (PP2AC) binding and increasing PP2AC levels.
- I2(PP2A) silencing attenuated amyloidogenesis by inhibiting amyloid precursor protein hyperphosphorylation and β-secretase activity.
- Cognitive deficits were improved in tg2576 mice with preserved memory-associated components.
Conclusions:
- Targeting I2(PP2A) effectively rescues Aβ toxicities and improves memory deficits in a mouse model of AD.
- I2(PP2A) represents a promising therapeutic target for Alzheimer's disease treatment.
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