Oxysterol-binding protein-1 (OSBP1) modulates processing and trafficking of the amyloid precursor protein

<p/> <p>Background</p> <p>Evidence from biochemical, epidemiological and genetic findings indicates that cholesterol levels are linked to amyloid-β (Aβ) production and Alzheimer's disease (AD). Oxysterols, which are cholesterol-derived ligands of the liver X receptors (L...

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Main Authors: Seabrook Guy R, Ray William J, Suon Sokreine, Guillily Maria, Chen Ci-Di, Cordy Joanna M, Zerbinatti Celina V, Abraham Carmela R, Wolozin Benjamin
Format: Article
Language:English
Published: BMC 2008-03-01
Series:Molecular Neurodegeneration
Online Access:http://www.molecularneurodegeneration.com/content/3/1/5
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spelling doaj-6e0f9850ed40464a907fe5a346d55b922020-11-24T20:48:13ZengBMCMolecular Neurodegeneration1750-13262008-03-0131510.1186/1750-1326-3-5Oxysterol-binding protein-1 (OSBP1) modulates processing and trafficking of the amyloid precursor proteinSeabrook Guy RRay William JSuon SokreineGuillily MariaChen Ci-DiCordy Joanna MZerbinatti Celina VAbraham Carmela RWolozin Benjamin<p/> <p>Background</p> <p>Evidence from biochemical, epidemiological and genetic findings indicates that cholesterol levels are linked to amyloid-β (Aβ) production and Alzheimer's disease (AD). Oxysterols, which are cholesterol-derived ligands of the liver X receptors (LXRs) and oxysterol binding proteins, strongly regulate the processing of amyloid precursor protein (APP). Although LXRs have been studied extensively, little is known about the biology of oxysterol binding proteins. Oxysterol-binding protein 1 (OSBP1) is a member of a family of sterol-binding proteins with roles in lipid metabolism, regulation of secretory vesicle generation and signal transduction, and it is thought that these proteins may act as sterol sensors to control a variety of sterol-dependent cellular processes.</p> <p>Results</p> <p>We investigated whether OSBP1 was involved in regulating APP processing and found that overexpression of OSBP1 downregulated the amyloidogenic processing of APP, while OSBP1 knockdown had the opposite effect. In addition, we found that OSBP1 altered the trafficking of APP-Notch2 dimers by causing their accumulation in the Golgi, an effect that could be reversed by treating cells with OSBP1 ligand, 25-hydroxycholesterol.</p> <p>Conclusion</p> <p>These results suggest that OSBP1 could play a role in linking cholesterol metabolism with intracellular APP trafficking and Aβ production, and more importantly indicate that OSBP1 could provide an alternative target for Aβ-directed therapeutic.</p> http://www.molecularneurodegeneration.com/content/3/1/5
collection DOAJ
language English
format Article
sources DOAJ
author Seabrook Guy R
Ray William J
Suon Sokreine
Guillily Maria
Chen Ci-Di
Cordy Joanna M
Zerbinatti Celina V
Abraham Carmela R
Wolozin Benjamin
spellingShingle Seabrook Guy R
Ray William J
Suon Sokreine
Guillily Maria
Chen Ci-Di
Cordy Joanna M
Zerbinatti Celina V
Abraham Carmela R
Wolozin Benjamin
Oxysterol-binding protein-1 (OSBP1) modulates processing and trafficking of the amyloid precursor protein
Molecular Neurodegeneration
author_facet Seabrook Guy R
Ray William J
Suon Sokreine
Guillily Maria
Chen Ci-Di
Cordy Joanna M
Zerbinatti Celina V
Abraham Carmela R
Wolozin Benjamin
author_sort Seabrook Guy R
title Oxysterol-binding protein-1 (OSBP1) modulates processing and trafficking of the amyloid precursor protein
title_short Oxysterol-binding protein-1 (OSBP1) modulates processing and trafficking of the amyloid precursor protein
title_full Oxysterol-binding protein-1 (OSBP1) modulates processing and trafficking of the amyloid precursor protein
title_fullStr Oxysterol-binding protein-1 (OSBP1) modulates processing and trafficking of the amyloid precursor protein
title_full_unstemmed Oxysterol-binding protein-1 (OSBP1) modulates processing and trafficking of the amyloid precursor protein
title_sort oxysterol-binding protein-1 (osbp1) modulates processing and trafficking of the amyloid precursor protein
publisher BMC
series Molecular Neurodegeneration
issn 1750-1326
publishDate 2008-03-01
description <p/> <p>Background</p> <p>Evidence from biochemical, epidemiological and genetic findings indicates that cholesterol levels are linked to amyloid-β (Aβ) production and Alzheimer's disease (AD). Oxysterols, which are cholesterol-derived ligands of the liver X receptors (LXRs) and oxysterol binding proteins, strongly regulate the processing of amyloid precursor protein (APP). Although LXRs have been studied extensively, little is known about the biology of oxysterol binding proteins. Oxysterol-binding protein 1 (OSBP1) is a member of a family of sterol-binding proteins with roles in lipid metabolism, regulation of secretory vesicle generation and signal transduction, and it is thought that these proteins may act as sterol sensors to control a variety of sterol-dependent cellular processes.</p> <p>Results</p> <p>We investigated whether OSBP1 was involved in regulating APP processing and found that overexpression of OSBP1 downregulated the amyloidogenic processing of APP, while OSBP1 knockdown had the opposite effect. In addition, we found that OSBP1 altered the trafficking of APP-Notch2 dimers by causing their accumulation in the Golgi, an effect that could be reversed by treating cells with OSBP1 ligand, 25-hydroxycholesterol.</p> <p>Conclusion</p> <p>These results suggest that OSBP1 could play a role in linking cholesterol metabolism with intracellular APP trafficking and Aβ production, and more importantly indicate that OSBP1 could provide an alternative target for Aβ-directed therapeutic.</p>
url http://www.molecularneurodegeneration.com/content/3/1/5
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