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Tau induces PSD95-nNOS uncoupling and neurovascular dysfunction independent of neurodegeneration

Cerebrovascular abnormalities have emerged as a preclinical manifestation of Alzheimer’s disease and frontotemporal dementia, diseases characterized by accumulation of hyperphosphorylated forms of the microtubule associated protein tau. However, it is unclear if tau contributes to these neurovascula...

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Autores principales: Park, Laibaik, Hochrainer, Karin, Hattori, Yorito, Ahn, Sung Ji, Anfray, Antoine, Wang, Gang, Uekawa, Ken, Seo, James, Palfini, Victoria, Blanco, Ismary, Acosta, Diana, Eliezer, David, Zhou, Ping, Anrather, Josef, Iadecola, Costantino
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7896353/
https://www.ncbi.nlm.nih.gov/pubmed/32778793
http://dx.doi.org/10.1038/s41593-020-0686-7
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author Park, Laibaik
Hochrainer, Karin
Hattori, Yorito
Ahn, Sung Ji
Anfray, Antoine
Wang, Gang
Uekawa, Ken
Seo, James
Palfini, Victoria
Blanco, Ismary
Acosta, Diana
Eliezer, David
Zhou, Ping
Anrather, Josef
Iadecola, Costantino
author_facet Park, Laibaik
Hochrainer, Karin
Hattori, Yorito
Ahn, Sung Ji
Anfray, Antoine
Wang, Gang
Uekawa, Ken
Seo, James
Palfini, Victoria
Blanco, Ismary
Acosta, Diana
Eliezer, David
Zhou, Ping
Anrather, Josef
Iadecola, Costantino
author_sort Park, Laibaik
collection PubMed
description Cerebrovascular abnormalities have emerged as a preclinical manifestation of Alzheimer’s disease and frontotemporal dementia, diseases characterized by accumulation of hyperphosphorylated forms of the microtubule associated protein tau. However, it is unclear if tau contributes to these neurovascular alterations independent of neurodegeneration. We report that mice expressing mutated tau exhibit a selective suppression of neural activity-induced cerebral blood flow increases that precedes tau pathology and cognitive impairment. The dysfunction is attributable to reduced vasodilatation of intracerebral arterioles and is reversible by turning down tau production. Mechanistically, the failure of neurovascular coupling involves tau-induced dissociation of neuronal nitric oxide synthase from post synaptic-density-95 and reduced production of the potent vasodilator nitric oxide during glutamatergic synaptic activity. The data identify glutamatergic signaling dysfunction and nitric oxide deficiency as yet-undescribed early manifestations of tau pathobiology independent of neurodegeneration, and provide a mechanism for the neurovascular alterations observed in the preclinical stages of tauopathies.
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spelling pubmed-78963532021-02-20 Tau induces PSD95-nNOS uncoupling and neurovascular dysfunction independent of neurodegeneration Park, Laibaik Hochrainer, Karin Hattori, Yorito Ahn, Sung Ji Anfray, Antoine Wang, Gang Uekawa, Ken Seo, James Palfini, Victoria Blanco, Ismary Acosta, Diana Eliezer, David Zhou, Ping Anrather, Josef Iadecola, Costantino Nat Neurosci Article Cerebrovascular abnormalities have emerged as a preclinical manifestation of Alzheimer’s disease and frontotemporal dementia, diseases characterized by accumulation of hyperphosphorylated forms of the microtubule associated protein tau. However, it is unclear if tau contributes to these neurovascular alterations independent of neurodegeneration. We report that mice expressing mutated tau exhibit a selective suppression of neural activity-induced cerebral blood flow increases that precedes tau pathology and cognitive impairment. The dysfunction is attributable to reduced vasodilatation of intracerebral arterioles and is reversible by turning down tau production. Mechanistically, the failure of neurovascular coupling involves tau-induced dissociation of neuronal nitric oxide synthase from post synaptic-density-95 and reduced production of the potent vasodilator nitric oxide during glutamatergic synaptic activity. The data identify glutamatergic signaling dysfunction and nitric oxide deficiency as yet-undescribed early manifestations of tau pathobiology independent of neurodegeneration, and provide a mechanism for the neurovascular alterations observed in the preclinical stages of tauopathies. 2020-08-10 2020-09 /pmc/articles/PMC7896353/ /pubmed/32778793 http://dx.doi.org/10.1038/s41593-020-0686-7 Text en Users may view, print, copy, and download text and data-mine the content in such documents, for the purposes of academic research, subject always to the full Conditions of use:http://www.nature.com/authors/editorial_policies/license.html#terms
spellingShingle Article
Park, Laibaik
Hochrainer, Karin
Hattori, Yorito
Ahn, Sung Ji
Anfray, Antoine
Wang, Gang
Uekawa, Ken
Seo, James
Palfini, Victoria
Blanco, Ismary
Acosta, Diana
Eliezer, David
Zhou, Ping
Anrather, Josef
Iadecola, Costantino
Tau induces PSD95-nNOS uncoupling and neurovascular dysfunction independent of neurodegeneration
title Tau induces PSD95-nNOS uncoupling and neurovascular dysfunction independent of neurodegeneration
title_full Tau induces PSD95-nNOS uncoupling and neurovascular dysfunction independent of neurodegeneration
title_fullStr Tau induces PSD95-nNOS uncoupling and neurovascular dysfunction independent of neurodegeneration
title_full_unstemmed Tau induces PSD95-nNOS uncoupling and neurovascular dysfunction independent of neurodegeneration
title_short Tau induces PSD95-nNOS uncoupling and neurovascular dysfunction independent of neurodegeneration
title_sort tau induces psd95-nnos uncoupling and neurovascular dysfunction independent of neurodegeneration
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7896353/
https://www.ncbi.nlm.nih.gov/pubmed/32778793
http://dx.doi.org/10.1038/s41593-020-0686-7
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