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Tau deletion reduces plaque‐associated BACE1 accumulation and decelerates plaque formation in a mouse model of Alzheimer's disease

In Alzheimer's disease, BACE1 protease initiates the amyloidogenic processing of amyloid precursor protein (APP) that eventually results in synthesis of β‐amyloid (Aβ) peptide. Aβ deposition in turn causes accumulation of BACE1 in plaque‐associated dystrophic neurites, thereby potentiating prog...

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Autores principales: Peters, Finn, Salihoglu, Hazal, Pratsch, Katrin, Herzog, Etienne, Pigoni, Martina, Sgobio, Carmelo, Lichtenthaler, Stefan F, Neumann, Ulf, Herms, Jochen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6885735/
https://www.ncbi.nlm.nih.gov/pubmed/31701556
http://dx.doi.org/10.15252/embj.2019102345
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author Peters, Finn
Salihoglu, Hazal
Pratsch, Katrin
Herzog, Etienne
Pigoni, Martina
Sgobio, Carmelo
Lichtenthaler, Stefan F
Neumann, Ulf
Herms, Jochen
author_facet Peters, Finn
Salihoglu, Hazal
Pratsch, Katrin
Herzog, Etienne
Pigoni, Martina
Sgobio, Carmelo
Lichtenthaler, Stefan F
Neumann, Ulf
Herms, Jochen
author_sort Peters, Finn
collection PubMed
description In Alzheimer's disease, BACE1 protease initiates the amyloidogenic processing of amyloid precursor protein (APP) that eventually results in synthesis of β‐amyloid (Aβ) peptide. Aβ deposition in turn causes accumulation of BACE1 in plaque‐associated dystrophic neurites, thereby potentiating progressive Aβ deposition once initiated. Since systemic pharmacological BACE inhibition causes adverse effects in humans, it is important to identify strategies that specifically normalize overt BACE1 activity around plaques. The microtubule‐associated protein tau regulates axonal transport of proteins, and tau deletion rescues Aβ‐induced transport deficits in vitro. In the current study, long‐term in vivo two‐photon microscopy and immunohistochemistry were performed in tau‐deficient APPPS1 mice. Tau deletion reduced plaque‐associated axonal pathology and BACE1 accumulation without affecting physiological BACE1 expression distant from plaques. Thereby, tau deletion effectively decelerated formation of new plaques and reduced plaque compactness. The data revealed that tau reinforces Aβ deposition, presumably by contributing to accumulation of BACE1 in plaque‐associated dystrophies. Targeting tau‐dependent mechanisms could become a suitable strategy to specifically reduce overt BACE1 activity around plaques, thereby avoiding adverse effects of systemic BACE inhibition.
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spelling pubmed-68857352019-12-09 Tau deletion reduces plaque‐associated BACE1 accumulation and decelerates plaque formation in a mouse model of Alzheimer's disease Peters, Finn Salihoglu, Hazal Pratsch, Katrin Herzog, Etienne Pigoni, Martina Sgobio, Carmelo Lichtenthaler, Stefan F Neumann, Ulf Herms, Jochen EMBO J Articles In Alzheimer's disease, BACE1 protease initiates the amyloidogenic processing of amyloid precursor protein (APP) that eventually results in synthesis of β‐amyloid (Aβ) peptide. Aβ deposition in turn causes accumulation of BACE1 in plaque‐associated dystrophic neurites, thereby potentiating progressive Aβ deposition once initiated. Since systemic pharmacological BACE inhibition causes adverse effects in humans, it is important to identify strategies that specifically normalize overt BACE1 activity around plaques. The microtubule‐associated protein tau regulates axonal transport of proteins, and tau deletion rescues Aβ‐induced transport deficits in vitro. In the current study, long‐term in vivo two‐photon microscopy and immunohistochemistry were performed in tau‐deficient APPPS1 mice. Tau deletion reduced plaque‐associated axonal pathology and BACE1 accumulation without affecting physiological BACE1 expression distant from plaques. Thereby, tau deletion effectively decelerated formation of new plaques and reduced plaque compactness. The data revealed that tau reinforces Aβ deposition, presumably by contributing to accumulation of BACE1 in plaque‐associated dystrophies. Targeting tau‐dependent mechanisms could become a suitable strategy to specifically reduce overt BACE1 activity around plaques, thereby avoiding adverse effects of systemic BACE inhibition. John Wiley and Sons Inc. 2019-11-07 2019-12-02 /pmc/articles/PMC6885735/ /pubmed/31701556 http://dx.doi.org/10.15252/embj.2019102345 Text en © 2019 The Authors. Published under the terms of the CC BY NC ND 4.0 license This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Articles
Peters, Finn
Salihoglu, Hazal
Pratsch, Katrin
Herzog, Etienne
Pigoni, Martina
Sgobio, Carmelo
Lichtenthaler, Stefan F
Neumann, Ulf
Herms, Jochen
Tau deletion reduces plaque‐associated BACE1 accumulation and decelerates plaque formation in a mouse model of Alzheimer's disease
title Tau deletion reduces plaque‐associated BACE1 accumulation and decelerates plaque formation in a mouse model of Alzheimer's disease
title_full Tau deletion reduces plaque‐associated BACE1 accumulation and decelerates plaque formation in a mouse model of Alzheimer's disease
title_fullStr Tau deletion reduces plaque‐associated BACE1 accumulation and decelerates plaque formation in a mouse model of Alzheimer's disease
title_full_unstemmed Tau deletion reduces plaque‐associated BACE1 accumulation and decelerates plaque formation in a mouse model of Alzheimer's disease
title_short Tau deletion reduces plaque‐associated BACE1 accumulation and decelerates plaque formation in a mouse model of Alzheimer's disease
title_sort tau deletion reduces plaque‐associated bace1 accumulation and decelerates plaque formation in a mouse model of alzheimer's disease
topic Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6885735/
https://www.ncbi.nlm.nih.gov/pubmed/31701556
http://dx.doi.org/10.15252/embj.2019102345
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