Altered Erythropoiesis in Mouse Models of Type 3 Hemochromatosis

Type 3 haemochromatosis (HFE3) is a rare genetic iron overload disease which ultimately lead to compromised organs functioning. HFE3 is caused by mutations in transferrin receptor 2 (TFR2) gene that codes for two main isoforms (Tfr2α and Tfr2β). Tfr2α is one of the hepatic regulators of iron inhibit...

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Main Authors: R. M. Pellegrino, F. Riondato, L. Ferbo, M. Boero, A. Palmieri, L. Osella, P. Pollicino, B. Miniscalco, G. Saglio, A. Roetto
Format: Article
Language:English
Published: Hindawi Limited 2017-01-01
Series:BioMed Research International
Online Access:http://dx.doi.org/10.1155/2017/2408941
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spelling doaj-30eab944f7aa43589215f5bdc06af6dc2020-11-24T23:14:30ZengHindawi LimitedBioMed Research International2314-61332314-61412017-01-01201710.1155/2017/24089412408941Altered Erythropoiesis in Mouse Models of Type 3 HemochromatosisR. M. Pellegrino0F. Riondato1L. Ferbo2M. Boero3A. Palmieri4L. Osella5P. Pollicino6B. Miniscalco7G. Saglio8A. Roetto9Department of Clinical and Biological Sciences, AOU San Luigi Gonzaga, University of Torino, Orbassano, Torino, ItalyDepartment of Veterinary Sciences, University of Torino, Grugliasco, Torino, ItalyDepartment of Clinical and Biological Sciences, AOU San Luigi Gonzaga, University of Torino, Orbassano, Torino, ItalyDepartment of Clinical and Biological Sciences, AOU San Luigi Gonzaga, University of Torino, Orbassano, Torino, ItalyDepartment of Clinical and Biological Sciences, AOU San Luigi Gonzaga, University of Torino, Orbassano, Torino, ItalyDepartment of Veterinary Sciences, University of Torino, Grugliasco, Torino, ItalyDepartment of Veterinary Sciences, University of Torino, Grugliasco, Torino, ItalyDepartment of Veterinary Sciences, University of Torino, Grugliasco, Torino, ItalyDepartment of Clinical and Biological Sciences, AOU San Luigi Gonzaga, University of Torino, Orbassano, Torino, ItalyDepartment of Clinical and Biological Sciences, AOU San Luigi Gonzaga, University of Torino, Orbassano, Torino, ItalyType 3 haemochromatosis (HFE3) is a rare genetic iron overload disease which ultimately lead to compromised organs functioning. HFE3 is caused by mutations in transferrin receptor 2 (TFR2) gene that codes for two main isoforms (Tfr2α and Tfr2β). Tfr2α is one of the hepatic regulators of iron inhibitor hepcidin. Tfr2β is an intracellular isoform of the protein involved in the regulation of iron levels in reticuloendothelial cells. It has been recently demonstrated that Tfr2 is also involved in erythropoiesis. This study aims to further investigate Tfr2 erythropoietic role by evaluating the erythropoiesis of two Tfr2 murine models wherein either one or both of Tfr2 isoforms have been selectively silenced (Tfr2 KI and Tfr2 KO). The evaluations were performed in bone marrow and spleen, in 14 days’ and 10 weeks’ old mice, to assess erythropoiesis in young versus adult animals. The lack of Tfr2α leads to macrocytosis with low reticulocyte number and increased hemoglobin values, together with an anticipation of adult BM erythropoiesis and an increased splenic erythropoiesis. On the other hand, lack of Tfr2β (Tfr2 KI mice) causes an increased and immature splenic erythropoiesis. Taken together, these data confirm the role of Tfr2α in modulation of erythropoiesis and of Tfr2β in favoring iron availability for erythropoiesis.http://dx.doi.org/10.1155/2017/2408941
collection DOAJ
language English
format Article
sources DOAJ
author R. M. Pellegrino
F. Riondato
L. Ferbo
M. Boero
A. Palmieri
L. Osella
P. Pollicino
B. Miniscalco
G. Saglio
A. Roetto
spellingShingle R. M. Pellegrino
F. Riondato
L. Ferbo
M. Boero
A. Palmieri
L. Osella
P. Pollicino
B. Miniscalco
G. Saglio
A. Roetto
Altered Erythropoiesis in Mouse Models of Type 3 Hemochromatosis
BioMed Research International
author_facet R. M. Pellegrino
F. Riondato
L. Ferbo
M. Boero
A. Palmieri
L. Osella
P. Pollicino
B. Miniscalco
G. Saglio
A. Roetto
author_sort R. M. Pellegrino
title Altered Erythropoiesis in Mouse Models of Type 3 Hemochromatosis
title_short Altered Erythropoiesis in Mouse Models of Type 3 Hemochromatosis
title_full Altered Erythropoiesis in Mouse Models of Type 3 Hemochromatosis
title_fullStr Altered Erythropoiesis in Mouse Models of Type 3 Hemochromatosis
title_full_unstemmed Altered Erythropoiesis in Mouse Models of Type 3 Hemochromatosis
title_sort altered erythropoiesis in mouse models of type 3 hemochromatosis
publisher Hindawi Limited
series BioMed Research International
issn 2314-6133
2314-6141
publishDate 2017-01-01
description Type 3 haemochromatosis (HFE3) is a rare genetic iron overload disease which ultimately lead to compromised organs functioning. HFE3 is caused by mutations in transferrin receptor 2 (TFR2) gene that codes for two main isoforms (Tfr2α and Tfr2β). Tfr2α is one of the hepatic regulators of iron inhibitor hepcidin. Tfr2β is an intracellular isoform of the protein involved in the regulation of iron levels in reticuloendothelial cells. It has been recently demonstrated that Tfr2 is also involved in erythropoiesis. This study aims to further investigate Tfr2 erythropoietic role by evaluating the erythropoiesis of two Tfr2 murine models wherein either one or both of Tfr2 isoforms have been selectively silenced (Tfr2 KI and Tfr2 KO). The evaluations were performed in bone marrow and spleen, in 14 days’ and 10 weeks’ old mice, to assess erythropoiesis in young versus adult animals. The lack of Tfr2α leads to macrocytosis with low reticulocyte number and increased hemoglobin values, together with an anticipation of adult BM erythropoiesis and an increased splenic erythropoiesis. On the other hand, lack of Tfr2β (Tfr2 KI mice) causes an increased and immature splenic erythropoiesis. Taken together, these data confirm the role of Tfr2α in modulation of erythropoiesis and of Tfr2β in favoring iron availability for erythropoiesis.
url http://dx.doi.org/10.1155/2017/2408941
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