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Stimulation of Hepatic Ferritinophagy Mitigates Irp2 Depletion-Induced Anemia

Background: Iron regulatory proteins (IRPs) maintain cellular iron homeostasis. Due to aberrant tissue-iron distribution, Irp2-deficient mice suffer microcytic anemia and neurodegeneration, while iron overload occurs in the liver and intestine. We previously found that Irp2 deficiency-induced Hif2 p...

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Autores principales: Liu, Yutong, Li, Yuxuan, Yang, Liu, Shen, Jiaqi, Zhao, Hongting, Dong, Weichen, Chang, Yanzhong, Qiao, Tong, Li, Kuanyu
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10044941/
https://www.ncbi.nlm.nih.gov/pubmed/36978814
http://dx.doi.org/10.3390/antiox12030566
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author Liu, Yutong
Li, Yuxuan
Yang, Liu
Shen, Jiaqi
Zhao, Hongting
Dong, Weichen
Chang, Yanzhong
Qiao, Tong
Li, Kuanyu
author_facet Liu, Yutong
Li, Yuxuan
Yang, Liu
Shen, Jiaqi
Zhao, Hongting
Dong, Weichen
Chang, Yanzhong
Qiao, Tong
Li, Kuanyu
author_sort Liu, Yutong
collection PubMed
description Background: Iron regulatory proteins (IRPs) maintain cellular iron homeostasis. Due to aberrant tissue-iron distribution, Irp2-deficient mice suffer microcytic anemia and neurodegeneration, while iron overload occurs in the liver and intestine. We previously found that Irp2 deficiency-induced Hif2 plays an important role in neurodegeneration. Methods: To test the role of Hif2 in Irp2 deficiency-induced anemia, we used Irp2 global knockout mice. Following Hif2 inhibition, routine blood tests, iron availability in bone marrow, histological assays, and biochemical analysis were performed to assess anemia improvement and tissue iron distribution. Results: We found that Hif2 inhibition improved anemia. The increased iron bioavailability for erythropoiesis was mainly derived from hepatic iron release, and secondly from enhanced intestinal absorption. We further demonstrate that nuclear receptor coactivator 4 (Ncoa4) was upregulated for iron release via the process of ferritinophagy. The released iron was utilized not only for intracellular Fe-S biogenesis but also for erythropoiesis after being exported from the liver to circulation. The hepatic iron export reduced hepcidin expression to further support iron absorption through the hepcidin-ferroportin axis to alleviate intestinal iron overload. Conclusion: Irp2 not only regulates cellular iron homeostasis but also tissue iron distribution by managing the involvement of Hif2-Ncoa4.
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spelling pubmed-100449412023-03-29 Stimulation of Hepatic Ferritinophagy Mitigates Irp2 Depletion-Induced Anemia Liu, Yutong Li, Yuxuan Yang, Liu Shen, Jiaqi Zhao, Hongting Dong, Weichen Chang, Yanzhong Qiao, Tong Li, Kuanyu Antioxidants (Basel) Article Background: Iron regulatory proteins (IRPs) maintain cellular iron homeostasis. Due to aberrant tissue-iron distribution, Irp2-deficient mice suffer microcytic anemia and neurodegeneration, while iron overload occurs in the liver and intestine. We previously found that Irp2 deficiency-induced Hif2 plays an important role in neurodegeneration. Methods: To test the role of Hif2 in Irp2 deficiency-induced anemia, we used Irp2 global knockout mice. Following Hif2 inhibition, routine blood tests, iron availability in bone marrow, histological assays, and biochemical analysis were performed to assess anemia improvement and tissue iron distribution. Results: We found that Hif2 inhibition improved anemia. The increased iron bioavailability for erythropoiesis was mainly derived from hepatic iron release, and secondly from enhanced intestinal absorption. We further demonstrate that nuclear receptor coactivator 4 (Ncoa4) was upregulated for iron release via the process of ferritinophagy. The released iron was utilized not only for intracellular Fe-S biogenesis but also for erythropoiesis after being exported from the liver to circulation. The hepatic iron export reduced hepcidin expression to further support iron absorption through the hepcidin-ferroportin axis to alleviate intestinal iron overload. Conclusion: Irp2 not only regulates cellular iron homeostasis but also tissue iron distribution by managing the involvement of Hif2-Ncoa4. MDPI 2023-02-24 /pmc/articles/PMC10044941/ /pubmed/36978814 http://dx.doi.org/10.3390/antiox12030566 Text en © 2023 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Liu, Yutong
Li, Yuxuan
Yang, Liu
Shen, Jiaqi
Zhao, Hongting
Dong, Weichen
Chang, Yanzhong
Qiao, Tong
Li, Kuanyu
Stimulation of Hepatic Ferritinophagy Mitigates Irp2 Depletion-Induced Anemia
title Stimulation of Hepatic Ferritinophagy Mitigates Irp2 Depletion-Induced Anemia
title_full Stimulation of Hepatic Ferritinophagy Mitigates Irp2 Depletion-Induced Anemia
title_fullStr Stimulation of Hepatic Ferritinophagy Mitigates Irp2 Depletion-Induced Anemia
title_full_unstemmed Stimulation of Hepatic Ferritinophagy Mitigates Irp2 Depletion-Induced Anemia
title_short Stimulation of Hepatic Ferritinophagy Mitigates Irp2 Depletion-Induced Anemia
title_sort stimulation of hepatic ferritinophagy mitigates irp2 depletion-induced anemia
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10044941/
https://www.ncbi.nlm.nih.gov/pubmed/36978814
http://dx.doi.org/10.3390/antiox12030566
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