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Haptoglobin interacts with apolipoprotein E and beta-amyloid and influences their crosstalk

Authors :
Tommaso Piccoli
Maria Stefania Spagnuolo
Chiara Cupidi
Luisa Cigliano
Raffaele Maletta
Albino Carrizzo
Carlo Veronesi
Valeria La Marca
Amalia C. Bruni
Bernardetta Maresca
Paolo Abrescia
Maria Stefania, Spagnuolo
Bernardetta, Maresca
LA MARCA, Valeria
Albino, Carrizzo
Carlo, Veronesi
Chiara, Cupidi
Tommaso, Piccoli
Raffaele Giovanni, Maletta
Amalia Cecilia, Bruni
Abrescia, Paolo
Cigliano, Luisa
Spagnuolo MS
Maresca B
La Marca V
Carrizzo A
Veronesi C
Cupidi C
Piccoli T
Maletta RG
Bruni AC
Abrescia P
Cigliano L
Source :
ACS chemical neuroscience (2014). doi:10.1021/cn500099f, info:cnr-pdr/source/autori:Spagnuolo MS, Maresca B, La Marca V, Carrizzo A, Veronesi C, Cupidi C, Piccoli T, Maletta RG, Bruni AC, Abrescia P, Cigliano L/titolo:Haptoglobin Interacts with Apolipoprotein E and Beta-Amyloid and Influences Their Crosstalk/doi:10.1021%2Fcn500099f/rivista:ACS chemical neuroscience/anno:2014/pagina_da:/pagina_a:/intervallo_pagine:/volume
Publication Year :
2014

Abstract

Beta-amyloid accumulation in brain is a driving force for Alzheimer's disease pathogenesis. Apolipoprotein E (ApoE) represents a critical player in beta-amyloid homeostasis, but its role in disease progression is controversial. We previously reported that the acute-phase protein haptoglobin binds ApoE and impairs its function in cholesterol homeostasis. The major aims of this study were to characterize the binding of haptoglobin to beta-amyloid, and to evaluate whether haptoglobin affects ApoE binding to beta-amyloid. Haptoglobin is here reported to form a complex with beta-amyloid as shown by immunoblotting experiments with purified proteins, or by its immunoprecipitation in brain tissues from patients with Alzheimer's disease. The interaction between ApoE and beta-amyloid was previously shown to be crucial for limiting beta-amyloid neurotoxicity and for promoting its clearance. We demonstrate that haptoglobin, rather than impairing ApoE binding to beta-amyloid, promotes to a different extent the formation of the complex between beta-amyloid and ApoE2 or ApoE3 or ApoE4. Our data suggest that haptoglobin and ApoE functions in brain should be evaluated taking into account their mutual interaction with beta-amyloid. Hence, the risk of developing Alzheimer's disease might not only be linked to the different ApoE isoforms, but also rely on the level of critical ligands, such as haptoglobin.

Details

ISSN :
19487193
Volume :
5
Issue :
9
Database :
OpenAIRE
Journal :
ACS chemical neuroscience
Accession number :
edsair.doi.dedup.....6e117f6be0a7343561b0507fafba0638