| Literature DB >> 32291379 |
Waiian Leong1,2, Wei Xu1, Bo Wang1,2, Shuaiyun Gao1,2, Xiuyun Zhai1,2, Cuicui Wang1,2, Eric Gilson1,3,4, Jing Ye1,2, Yiming Lu1,2.
Abstract
Targeting of PP2A suggests a close link to tau-related cognitive and functional declines. However, little is known about how the expression of PP2A subunits and PP2A activity are dysregulated in the course of AD, precluding any specific targeting strategy for restoring PP2A in AD patients. Although the PP2A heterotrimer containing the regulatory subunit PR55/Bα (encoded by the PPP2R2A gene) is the major tau phosphatase, the involvement of other brain-specific PP2A regulatory subunits in tau dephosphorylation remains unknown. PR55/Bγ (encoded by the PPP2R2C gene) is a pivotal phosphatase in the brain, and single-nucleotide polymorphisms (SNPs) of PPP2R2C are involved in several mental disorders. By measuring the differential spatiotemporal expression patterns of PPP2R2C in Wt and transgenic AD mice, we revealed that PPP2R2C expression is downregulated in the aged AD mouse brain as compared to the Wt mouse brain. In cultured cells, PPP2R2C expression regulates PP2A activity and tau dephosphorylation. These results suggest that dysregulation of PPP2R2C expression may be involved in the onset of AD and that specifically targeting PPP2R2C expression or activity is a promising strategy against brain dementia disorders, including AD and other tauopathies.Entities:
Keywords: Alzheimer’s disease; PP2A phosphatase; PPP2R2C; tau phosphorylation
Mesh:
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Year: 2020 PMID: 32291379 PMCID: PMC7202491 DOI: 10.18632/aging.103048
Source DB: PubMed Journal: Aging (Albany NY) ISSN: 1945-4589 Impact factor: 5.682
Figure 1PPP2R2C regulates PP2A phosphatase activity. (A) Phosphatase activity combined with immunoprecipitation of PP2A was measured in SHSY5Y human neuroblastoma cell lines. Cells were either knocked down PPP2R2C expression by shRNA or overexpressed wildtype PPP2R2C by pWPIR-GFP lentivirus vector. Data are shown in mean+/-SEM, n=3, *p<0.05, ***p<0.001. (B) Representative image of immunoblots of indicated antibodies are shown in SHSY5Y cell lines after knockdown and overexpression PPP2R2C. (C) Quantification of the intensities of the protein bands from three independent immunoblots of (B). Data are shown in mean+/-SEM, n=3, *p<0.05.
Figure 2PPP2R2C are differentially expressed in mouse brain tissues throughout lifespan. (A) Quantitative RT-qPCRs for PPP2R2C were analyzed in wildtype mouse cortex, cerebellum, heart, liver, muscle, lung, skin and ovary at 2 time-points respectively (3 month and 12 month, n=9 each). Significance was tested between cortex, cerebellum, heart, lung, skin and ovary. Each measure represents the average fold-change expression of nine independent repetitions (Biological triplicate in technical RT duplicate) normalized to two housekeeping genes (β-actin and 36B4); ΔΔCt method). Mean+/-SEM with associated statistical significance are reported (*p<0.05, **p<0.01). (B) Representative image and the quantification from immunoblots of PPP2R2C antibody in wildtype (Wt) and transgenic (Tg) mouse cortex at different time-points of lifespan. Data are shown in mean+/-SEM, n=9 each condition, *p<0.05, **p<0.01. (C) Quantitative RT-qPCRs for PPP2R2C in wildtype (Wt) and transgenic (Tg) mouse cortex at different time-points of lifespan from 3 month to 18 months. Each measure represents the average fold-change expression of nine independent repetitions (Biological triplicate in technical RT duplicate) normalized to two housekeeping genes (β-actin and 36B4); ΔΔCt method). Mean+/-SEM with associated statistical significance are reported between 9, 12 and 16 month (*p<0.05, ***p<0.001).
Figure 3Detection of PPP2R2C expression in different neural cells isolated from mice brains. (A) Representative images of confocal sections from cultured primary cells (neural stem cell, NSC; astrocyte, Glia and neuron) isolated from wildtype newborn mouse brain, staining with of PPP2R2C antibody (red) and neural markers (green) and counterstained with DAPI (blue). (B) Quantification of the mean number of PPP2R2C foci per nucleus and Cytoplasm of (A) normalized to the number of nuclei. Data are presented at mean+/-SEM. (C) Quantitative RT-qPCRs analyzing PPP2R2C RNA level (n=3) and (D) Representative images of confocal sections staining with of PPP2R2C antibody (red) and neural markers (green) and couterstained with DAPI (blue) in glia cells isolated from wildtype newborn mouse brain after silencing of PPP2R2C. Scale bar 5 um, * p<0.05.
Figure 4PPP2R2C level regulates Tau phosphatase levels. (A) Representative image of immunoblots of indicated antibodies are shown in SHSY5Y cell lines after knockdown and overexpression PPP2R2C. (B) Quantification of the intensities of the protein bands from three independent immunoblots of (A). (C) Quantitative RT-qPCRs analyzing PPP2R2C mRNA level in SHSY5Y cell lines after knockdown PPP2R2C. Data are shown in mean+/-SEM, n=3, *p<0.05, **p<0.01.