LDLR expression and localization are altered in mouse and human cell culture models of Alzheimer's disease.

BACKGROUND: Alzheimer's disease (AD) is a chronic neurodegenerative disorder and the most common form of dementia. The major molecular risk factor for late-onset AD is expression of the epsilon-4 allele of apolipoprotein E (apoE), the major cholesterol transporter in the brain. The low-density...

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Main Authors: Jose F Abisambra, Tina Fiorelli, Jaya Padmanabhan, Peter Neame, Inge Wefes, Huntington Potter
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2010-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC2797391?pdf=render
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spelling doaj-21c355055680449696141c40328db0222020-11-24T21:46:41ZengPublic Library of Science (PLoS)PLoS ONE1932-62032010-01-0151e855610.1371/journal.pone.0008556LDLR expression and localization are altered in mouse and human cell culture models of Alzheimer's disease.Jose F AbisambraTina FiorelliJaya PadmanabhanPeter NeameInge WefesHuntington PotterBACKGROUND: Alzheimer's disease (AD) is a chronic neurodegenerative disorder and the most common form of dementia. The major molecular risk factor for late-onset AD is expression of the epsilon-4 allele of apolipoprotein E (apoE), the major cholesterol transporter in the brain. The low-density lipoprotein receptor (LDLR) has the highest affinity for apoE and plays an important role in brain cholesterol metabolism. METHODOLOGY/PRINCIPAL FINDINGS: Using RT-PCR and western blotting techniques we found that over-expression of APP caused increases in both LDLR mRNA and protein levels in APP transfected H4 neuroglioma cells compared to H4 controls. Furthermore, immunohistochemical experiments showed aberrant localization of LDLR in H4-APP neuroglioma cells, Abeta-treated primary neurons, and in the PSAPP transgenic mouse model of AD. Finally, immunofluorescent staining of LDLR and of gamma- and alpha-tubulin showed a change in LDLR localization preferentially away from the plasma membrane that was paralleled by and likely the result of a disruption of the microtubule-organizing center and associated microtubule network. CONCLUSIONS/SIGNIFICANCE: These data suggest that increased APP expression and Abeta exposure alters microtubule function, leading to reduced transport of LDLR to the plasma membrane. Consequent deleterious effects on apoE uptake and function will have implications for AD pathogenesis and/or progression.http://europepmc.org/articles/PMC2797391?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Jose F Abisambra
Tina Fiorelli
Jaya Padmanabhan
Peter Neame
Inge Wefes
Huntington Potter
spellingShingle Jose F Abisambra
Tina Fiorelli
Jaya Padmanabhan
Peter Neame
Inge Wefes
Huntington Potter
LDLR expression and localization are altered in mouse and human cell culture models of Alzheimer's disease.
PLoS ONE
author_facet Jose F Abisambra
Tina Fiorelli
Jaya Padmanabhan
Peter Neame
Inge Wefes
Huntington Potter
author_sort Jose F Abisambra
title LDLR expression and localization are altered in mouse and human cell culture models of Alzheimer's disease.
title_short LDLR expression and localization are altered in mouse and human cell culture models of Alzheimer's disease.
title_full LDLR expression and localization are altered in mouse and human cell culture models of Alzheimer's disease.
title_fullStr LDLR expression and localization are altered in mouse and human cell culture models of Alzheimer's disease.
title_full_unstemmed LDLR expression and localization are altered in mouse and human cell culture models of Alzheimer's disease.
title_sort ldlr expression and localization are altered in mouse and human cell culture models of alzheimer's disease.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2010-01-01
description BACKGROUND: Alzheimer's disease (AD) is a chronic neurodegenerative disorder and the most common form of dementia. The major molecular risk factor for late-onset AD is expression of the epsilon-4 allele of apolipoprotein E (apoE), the major cholesterol transporter in the brain. The low-density lipoprotein receptor (LDLR) has the highest affinity for apoE and plays an important role in brain cholesterol metabolism. METHODOLOGY/PRINCIPAL FINDINGS: Using RT-PCR and western blotting techniques we found that over-expression of APP caused increases in both LDLR mRNA and protein levels in APP transfected H4 neuroglioma cells compared to H4 controls. Furthermore, immunohistochemical experiments showed aberrant localization of LDLR in H4-APP neuroglioma cells, Abeta-treated primary neurons, and in the PSAPP transgenic mouse model of AD. Finally, immunofluorescent staining of LDLR and of gamma- and alpha-tubulin showed a change in LDLR localization preferentially away from the plasma membrane that was paralleled by and likely the result of a disruption of the microtubule-organizing center and associated microtubule network. CONCLUSIONS/SIGNIFICANCE: These data suggest that increased APP expression and Abeta exposure alters microtubule function, leading to reduced transport of LDLR to the plasma membrane. Consequent deleterious effects on apoE uptake and function will have implications for AD pathogenesis and/or progression.
url http://europepmc.org/articles/PMC2797391?pdf=render
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