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Enhanced autophagic retrograde axonal transport by dynein intermediate chain upregulation improves Aβ clearance and cognitive function in APP/PS1 double transgenic mice

Autophagosome accumulation is observed in the distal axons of Alzheimer disease (AD) patients and AD animal models, suggesting that deficient retrograde transport and impaired autophagic clearance of beta-amyloid (A β) contribute to AD pathogenesis. Expression of the retrograde axonal transport-rela...

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Autores principales: Zhou, Fanlin, Xiong, Xiaomin, Li, Shijie, Liang, Jie, Zhang, Xiong, Tian, Mingyuan, Li, Xiaoju, Gao, Minna, Tang, Li, Li, Yu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Impact Journals 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7343509/
https://www.ncbi.nlm.nih.gov/pubmed/32584265
http://dx.doi.org/10.18632/aging.103382
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author Zhou, Fanlin
Xiong, Xiaomin
Li, Shijie
Liang, Jie
Zhang, Xiong
Tian, Mingyuan
Li, Xiaoju
Gao, Minna
Tang, Li
Li, Yu
author_facet Zhou, Fanlin
Xiong, Xiaomin
Li, Shijie
Liang, Jie
Zhang, Xiong
Tian, Mingyuan
Li, Xiaoju
Gao, Minna
Tang, Li
Li, Yu
author_sort Zhou, Fanlin
collection PubMed
description Autophagosome accumulation is observed in the distal axons of Alzheimer disease (AD) patients and AD animal models, suggesting that deficient retrograde transport and impaired autophagic clearance of beta-amyloid (A β) contribute to AD pathogenesis. Expression of the retrograde axonal transport-related protein dynein intermediate chain (DIC) is also reduced in AD patients, but the contributions of DIC to AD pathology remain elusive. This study investigated the effects of DIC expression levels on cognitive function, autophagosome axonal transport, and A β clearance in the APP/PS1 double transgenic mouse model of AD. Autophagic activity was enhanced in the hippocampus of young (3-month-old) AD mice, as evidenced by greater expression of autophagosome markers, lysosome markers, axonal transport motors (including DIC), and dynein regulatory proteins. The expression levels of autophagosome markers remained elevated, whereas those of autophagic and axonal transport proteins decreased progressively with age, accompanied by spatial learning and memory deficits, axonal autophagosome accumulation, and A β deposition. Knockdown of DIC exacerbated while overexpression improved axonal transport, autophagosome maturation, Aβ clearance, and spatial learning and memory in aged AD mice. Our study provides evidence that age-dependent failure of axonal autophagic flux contributes to AD-associated neuropathology and cognitive deficits, suggesting DIC as a potential therapeutic target for AD.
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spelling pubmed-73435092020-07-15 Enhanced autophagic retrograde axonal transport by dynein intermediate chain upregulation improves Aβ clearance and cognitive function in APP/PS1 double transgenic mice Zhou, Fanlin Xiong, Xiaomin Li, Shijie Liang, Jie Zhang, Xiong Tian, Mingyuan Li, Xiaoju Gao, Minna Tang, Li Li, Yu Aging (Albany NY) Research Paper Autophagosome accumulation is observed in the distal axons of Alzheimer disease (AD) patients and AD animal models, suggesting that deficient retrograde transport and impaired autophagic clearance of beta-amyloid (A β) contribute to AD pathogenesis. Expression of the retrograde axonal transport-related protein dynein intermediate chain (DIC) is also reduced in AD patients, but the contributions of DIC to AD pathology remain elusive. This study investigated the effects of DIC expression levels on cognitive function, autophagosome axonal transport, and A β clearance in the APP/PS1 double transgenic mouse model of AD. Autophagic activity was enhanced in the hippocampus of young (3-month-old) AD mice, as evidenced by greater expression of autophagosome markers, lysosome markers, axonal transport motors (including DIC), and dynein regulatory proteins. The expression levels of autophagosome markers remained elevated, whereas those of autophagic and axonal transport proteins decreased progressively with age, accompanied by spatial learning and memory deficits, axonal autophagosome accumulation, and A β deposition. Knockdown of DIC exacerbated while overexpression improved axonal transport, autophagosome maturation, Aβ clearance, and spatial learning and memory in aged AD mice. Our study provides evidence that age-dependent failure of axonal autophagic flux contributes to AD-associated neuropathology and cognitive deficits, suggesting DIC as a potential therapeutic target for AD. Impact Journals 2020-06-24 /pmc/articles/PMC7343509/ /pubmed/32584265 http://dx.doi.org/10.18632/aging.103382 Text en Copyright © 2020 Zhou et al. http://creativecommons.org/licenses/by/3.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY 3.0), which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are credited.
spellingShingle Research Paper
Zhou, Fanlin
Xiong, Xiaomin
Li, Shijie
Liang, Jie
Zhang, Xiong
Tian, Mingyuan
Li, Xiaoju
Gao, Minna
Tang, Li
Li, Yu
Enhanced autophagic retrograde axonal transport by dynein intermediate chain upregulation improves Aβ clearance and cognitive function in APP/PS1 double transgenic mice
title Enhanced autophagic retrograde axonal transport by dynein intermediate chain upregulation improves Aβ clearance and cognitive function in APP/PS1 double transgenic mice
title_full Enhanced autophagic retrograde axonal transport by dynein intermediate chain upregulation improves Aβ clearance and cognitive function in APP/PS1 double transgenic mice
title_fullStr Enhanced autophagic retrograde axonal transport by dynein intermediate chain upregulation improves Aβ clearance and cognitive function in APP/PS1 double transgenic mice
title_full_unstemmed Enhanced autophagic retrograde axonal transport by dynein intermediate chain upregulation improves Aβ clearance and cognitive function in APP/PS1 double transgenic mice
title_short Enhanced autophagic retrograde axonal transport by dynein intermediate chain upregulation improves Aβ clearance and cognitive function in APP/PS1 double transgenic mice
title_sort enhanced autophagic retrograde axonal transport by dynein intermediate chain upregulation improves aβ clearance and cognitive function in app/ps1 double transgenic mice
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7343509/
https://www.ncbi.nlm.nih.gov/pubmed/32584265
http://dx.doi.org/10.18632/aging.103382
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