P2RX7 inhibitor suppresses exosome secretion and disease phenotype in P301S tau transgenic mice

Abstract Background Neuronal accumulation of misfolded microtubule-associated protein tau is a hallmark of neuropathology in Alzheimer’s disease, frontotemporal dementia, and other tauopathies, and has been a therapeutic target. Microglia can spread tau pathology by secreting tau-containing exosomes...

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Main Authors: Zhi Ruan, Jean-Christophe Delpech, Srinidhi Venkatesan Kalavai, Alicia A. Van Enoo, Jianqiao Hu, Seiko Ikezu, Tsuneya Ikezu
Format: Article
Language:English
Published: BMC 2020-08-01
Series:Molecular Neurodegeneration
Subjects:
Online Access:http://link.springer.com/article/10.1186/s13024-020-00396-2
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spelling doaj-2a1a291cc9424f7d8922c6b52239d88a2020-11-25T03:35:24ZengBMCMolecular Neurodegeneration1750-13262020-08-0115111410.1186/s13024-020-00396-2P2RX7 inhibitor suppresses exosome secretion and disease phenotype in P301S tau transgenic miceZhi Ruan0Jean-Christophe Delpech1Srinidhi Venkatesan Kalavai2Alicia A. Van Enoo3Jianqiao Hu4Seiko Ikezu5Tsuneya Ikezu6Department of Pharmacology & Experimental Therapeutics, Boston University School of MedicineDepartment of Pharmacology & Experimental Therapeutics, Boston University School of MedicineDepartment of Pharmacology & Experimental Therapeutics, Boston University School of MedicineDepartment of Pharmacology & Experimental Therapeutics, Boston University School of MedicineDepartment of Pharmacology & Experimental Therapeutics, Boston University School of MedicineDepartment of Pharmacology & Experimental Therapeutics, Boston University School of MedicineDepartment of Pharmacology & Experimental Therapeutics, Boston University School of MedicineAbstract Background Neuronal accumulation of misfolded microtubule-associated protein tau is a hallmark of neuropathology in Alzheimer’s disease, frontotemporal dementia, and other tauopathies, and has been a therapeutic target. Microglia can spread tau pathology by secreting tau-containing exosomes, although the specific molecular target is yet to be identified for the therapeutic intervention. P2X purinoceptor 7 (P2RX7) is an ATP-gated cation channel, enriched in microglia and triggers exosome secretion. The purpose of the study is to examine the therapeutic effect of an orally applicable, CNS-penetrant P2RX7 specific inhibitor on the early disease stage of a tauopathy mouse model. Methods Three-months-old P301S tau mice were treated with P2RX7-specific inhibitor GSK1482160 or vehicle for 30 days, followed by behavioral, biochemical and immunohistochemical assessment. GSK1482160 was also tested for exosome secretion from primary cultured murine astrocytes, neurons and microglia in vitro. Results Oral administration of GSK1482160 significantly reduced accumulation of MC1+ and Alz50+ misfolded tau in hippocampal regions, which was accompanied with reduced accumulation of Tsg101, an exosome marker, in hippocampal neurons. Proximity ligation assay demonstrated complex formation of Alz50+ tau and Tsg101 in hippocampal neurons, which was reduced by GSK1482160. On the other hand, GSK1482160 had no effect on microglial ramification or CD68 expression, which was significantly enhanced in P301S mice, or pro/anti-inflammatory cytokine gene expression. Strikingly, GSK1482160-treated P301S mice show significantly improved working and contextual memory as determined by Y-maze and fear conditioning tests. GSK1482160 also significantly increased accumulation of Tsg101 and CD81 in microglia in vivo, suggesting its suppression of P2RX7-induced exosome secretion from microglia. This effect was confirmed in vitro, as ATP-induced secretion of tau-containing exosome was significantly suppressed by GSK1482160 treatment from primary murine microglia, but not from neurons or astrocytes. Discussion The oral administration of P2RX7 inhibition mitigates disease phenotypes in P301S mice, likely by suppressing release of microglial exosomes. P2RX7 could be a novel therapeutic target for the early stage tauopathy development.http://link.springer.com/article/10.1186/s13024-020-00396-2Alzheimer’s diseaseExosomeExtracellular vesiclesMicrogliaMicrotubule-associated protein tauP2X purinoceptor 7
collection DOAJ
language English
format Article
sources DOAJ
author Zhi Ruan
Jean-Christophe Delpech
Srinidhi Venkatesan Kalavai
Alicia A. Van Enoo
Jianqiao Hu
Seiko Ikezu
Tsuneya Ikezu
spellingShingle Zhi Ruan
Jean-Christophe Delpech
Srinidhi Venkatesan Kalavai
Alicia A. Van Enoo
Jianqiao Hu
Seiko Ikezu
Tsuneya Ikezu
P2RX7 inhibitor suppresses exosome secretion and disease phenotype in P301S tau transgenic mice
Molecular Neurodegeneration
Alzheimer’s disease
Exosome
Extracellular vesicles
Microglia
Microtubule-associated protein tau
P2X purinoceptor 7
author_facet Zhi Ruan
Jean-Christophe Delpech
Srinidhi Venkatesan Kalavai
Alicia A. Van Enoo
Jianqiao Hu
Seiko Ikezu
Tsuneya Ikezu
author_sort Zhi Ruan
title P2RX7 inhibitor suppresses exosome secretion and disease phenotype in P301S tau transgenic mice
title_short P2RX7 inhibitor suppresses exosome secretion and disease phenotype in P301S tau transgenic mice
title_full P2RX7 inhibitor suppresses exosome secretion and disease phenotype in P301S tau transgenic mice
title_fullStr P2RX7 inhibitor suppresses exosome secretion and disease phenotype in P301S tau transgenic mice
title_full_unstemmed P2RX7 inhibitor suppresses exosome secretion and disease phenotype in P301S tau transgenic mice
title_sort p2rx7 inhibitor suppresses exosome secretion and disease phenotype in p301s tau transgenic mice
publisher BMC
series Molecular Neurodegeneration
issn 1750-1326
publishDate 2020-08-01
description Abstract Background Neuronal accumulation of misfolded microtubule-associated protein tau is a hallmark of neuropathology in Alzheimer’s disease, frontotemporal dementia, and other tauopathies, and has been a therapeutic target. Microglia can spread tau pathology by secreting tau-containing exosomes, although the specific molecular target is yet to be identified for the therapeutic intervention. P2X purinoceptor 7 (P2RX7) is an ATP-gated cation channel, enriched in microglia and triggers exosome secretion. The purpose of the study is to examine the therapeutic effect of an orally applicable, CNS-penetrant P2RX7 specific inhibitor on the early disease stage of a tauopathy mouse model. Methods Three-months-old P301S tau mice were treated with P2RX7-specific inhibitor GSK1482160 or vehicle for 30 days, followed by behavioral, biochemical and immunohistochemical assessment. GSK1482160 was also tested for exosome secretion from primary cultured murine astrocytes, neurons and microglia in vitro. Results Oral administration of GSK1482160 significantly reduced accumulation of MC1+ and Alz50+ misfolded tau in hippocampal regions, which was accompanied with reduced accumulation of Tsg101, an exosome marker, in hippocampal neurons. Proximity ligation assay demonstrated complex formation of Alz50+ tau and Tsg101 in hippocampal neurons, which was reduced by GSK1482160. On the other hand, GSK1482160 had no effect on microglial ramification or CD68 expression, which was significantly enhanced in P301S mice, or pro/anti-inflammatory cytokine gene expression. Strikingly, GSK1482160-treated P301S mice show significantly improved working and contextual memory as determined by Y-maze and fear conditioning tests. GSK1482160 also significantly increased accumulation of Tsg101 and CD81 in microglia in vivo, suggesting its suppression of P2RX7-induced exosome secretion from microglia. This effect was confirmed in vitro, as ATP-induced secretion of tau-containing exosome was significantly suppressed by GSK1482160 treatment from primary murine microglia, but not from neurons or astrocytes. Discussion The oral administration of P2RX7 inhibition mitigates disease phenotypes in P301S mice, likely by suppressing release of microglial exosomes. P2RX7 could be a novel therapeutic target for the early stage tauopathy development.
topic Alzheimer’s disease
Exosome
Extracellular vesicles
Microglia
Microtubule-associated protein tau
P2X purinoceptor 7
url http://link.springer.com/article/10.1186/s13024-020-00396-2
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