ER Stress and Iron Homeostasis: A New Frontier for the UPR

The C282Y mutation of HFE accounts for the majority of cases of the iron overload disease Hereditary Hemochromatosis (HH). The conformational changes introduced by this mutation impair the HFE association with β2-microglobulin (β2m) and the cell surface expressi...

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Main Authors: Susana J. Oliveira, Maria de Sousa, Jorge P. Pinto
Format: Article
Language:English
Published: Hindawi Limited 2011-01-01
Series:Biochemistry Research International
Online Access:http://dx.doi.org/10.1155/2011/896474
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spelling doaj-a4fbaa5b6d8545eda108475055bdc9ee2020-11-24T23:45:13ZengHindawi LimitedBiochemistry Research International2090-22472090-22552011-01-01201110.1155/2011/896474896474ER Stress and Iron Homeostasis: A New Frontier for the UPRSusana J. Oliveira0Maria de Sousa1Jorge P. Pinto2Instituto de Biologia Molecular e Celular, Universidade do Porto, Rua do Campo Alegre 823, 4150-180 Porto, PortugalInstituto de Biologia Molecular e Celular, Universidade do Porto, Rua do Campo Alegre 823, 4150-180 Porto, PortugalInstituto de Biologia Molecular e Celular, Universidade do Porto, Rua do Campo Alegre 823, 4150-180 Porto, PortugalThe C282Y mutation of HFE accounts for the majority of cases of the iron overload disease Hereditary Hemochromatosis (HH). The conformational changes introduced by this mutation impair the HFE association with β2-microglobulin (β2m) and the cell surface expression of the protein: with two major consequences. From a functional perspective, the ability of HFE to bind to transferrin receptors 1 and 2 is lost in the C282Y mutant, thus affecting hepcidin regulation. Also due to the faulty assembly with β2m, HFE-C282Y molecules remain in the endoplasmic reticulum (ER) as aggregates that undergo proteasomal degradation and activate an Unfolded Protein Response (UPR). UPR activation, regardless of the ER stress stimuli, was shown to reshape the expression profile of iron-related genes and to decrease MHC-I cell surface expression. The possibility of a HFE-C282Y-mediated interplay between the UPR and iron homeostasis influencing disease progression and the clinical heterogeneity among C282Y carriers is discussed. The responsiveness of the ER chaperone calreticulin to both ER and iron-induced oxidative stresses, and its correlation with HH patients’ phenotype, reinforce the interest of dissecting the UPR signaling/iron metabolism crosstalk and points to the potential clinical value of use of pharmacological chaperones in HFE-HH.http://dx.doi.org/10.1155/2011/896474
collection DOAJ
language English
format Article
sources DOAJ
author Susana J. Oliveira
Maria de Sousa
Jorge P. Pinto
spellingShingle Susana J. Oliveira
Maria de Sousa
Jorge P. Pinto
ER Stress and Iron Homeostasis: A New Frontier for the UPR
Biochemistry Research International
author_facet Susana J. Oliveira
Maria de Sousa
Jorge P. Pinto
author_sort Susana J. Oliveira
title ER Stress and Iron Homeostasis: A New Frontier for the UPR
title_short ER Stress and Iron Homeostasis: A New Frontier for the UPR
title_full ER Stress and Iron Homeostasis: A New Frontier for the UPR
title_fullStr ER Stress and Iron Homeostasis: A New Frontier for the UPR
title_full_unstemmed ER Stress and Iron Homeostasis: A New Frontier for the UPR
title_sort er stress and iron homeostasis: a new frontier for the upr
publisher Hindawi Limited
series Biochemistry Research International
issn 2090-2247
2090-2255
publishDate 2011-01-01
description The C282Y mutation of HFE accounts for the majority of cases of the iron overload disease Hereditary Hemochromatosis (HH). The conformational changes introduced by this mutation impair the HFE association with β2-microglobulin (β2m) and the cell surface expression of the protein: with two major consequences. From a functional perspective, the ability of HFE to bind to transferrin receptors 1 and 2 is lost in the C282Y mutant, thus affecting hepcidin regulation. Also due to the faulty assembly with β2m, HFE-C282Y molecules remain in the endoplasmic reticulum (ER) as aggregates that undergo proteasomal degradation and activate an Unfolded Protein Response (UPR). UPR activation, regardless of the ER stress stimuli, was shown to reshape the expression profile of iron-related genes and to decrease MHC-I cell surface expression. The possibility of a HFE-C282Y-mediated interplay between the UPR and iron homeostasis influencing disease progression and the clinical heterogeneity among C282Y carriers is discussed. The responsiveness of the ER chaperone calreticulin to both ER and iron-induced oxidative stresses, and its correlation with HH patients’ phenotype, reinforce the interest of dissecting the UPR signaling/iron metabolism crosstalk and points to the potential clinical value of use of pharmacological chaperones in HFE-HH.
url http://dx.doi.org/10.1155/2011/896474
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