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Orchestrated regulation of iron trafficking proteins in the kidney during iron overload facilitates systemic iron retention

The exact route of iron through the kidney and its regulation during iron overload are not completely elucidated. Under physiologic conditions, non-transferrin and transferrin bound iron passes the glomerular filter and is reabsorbed through kidney epithelial cells, so that hardly any iron is found...

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Autores principales: Weiss, Avital, Spektor, Lior, A. Cohen, Lyora, Lifshitz, Lena, Magid Gold, Inbar, Zhang, De-Liang, Truman-Rosentsvit, Marianna, Leichtmann-Bardoogo, Yael, Nyska, Abraham, Addadi, Sefi, Rouault, Tracey A., Meyron-Holtz, Esther G.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6188744/
https://www.ncbi.nlm.nih.gov/pubmed/30321179
http://dx.doi.org/10.1371/journal.pone.0204471
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author Weiss, Avital
Spektor, Lior
A. Cohen, Lyora
Lifshitz, Lena
Magid Gold, Inbar
Zhang, De-Liang
Truman-Rosentsvit, Marianna
Leichtmann-Bardoogo, Yael
Nyska, Abraham
Addadi, Sefi
Rouault, Tracey A.
Meyron-Holtz, Esther G.
author_facet Weiss, Avital
Spektor, Lior
A. Cohen, Lyora
Lifshitz, Lena
Magid Gold, Inbar
Zhang, De-Liang
Truman-Rosentsvit, Marianna
Leichtmann-Bardoogo, Yael
Nyska, Abraham
Addadi, Sefi
Rouault, Tracey A.
Meyron-Holtz, Esther G.
author_sort Weiss, Avital
collection PubMed
description The exact route of iron through the kidney and its regulation during iron overload are not completely elucidated. Under physiologic conditions, non-transferrin and transferrin bound iron passes the glomerular filter and is reabsorbed through kidney epithelial cells, so that hardly any iron is found in the urine. To study the route of iron reabsorption through the kidney, we analyzed the location and regulation of iron metabolism related proteins in kidneys of mice with iron overload, elicited by iron dextran injections. Transferrin Receptor 1 was decreased as expected, following iron overload. In contrast, the multi-ligand hetero-dimeric receptor-complex megalin/cubilin, which also mediates the internalization of transferrin, was highly up-regulated. Moreover, with increasing iron, intracellular ferritin distribution shifted in renal epithelium from an apical location to a punctate distribution throughout the epithelial cells. In addition, in contrast to many other tissues, the iron exporter ferroportin was not reduced by iron overload in the kidney. Iron accumulated mainly in interstitial macrophages, and more prominently in the medulla than in the cortex. This suggests that despite the reduction of Transferrin Receptor 1, alternative pathways may effectively mediate re-absorption of iron that cycles through the kidney during parenterally induced iron-overload. The most iron consuming process of the body, erythropoiesis, is regulated by the renal erythropoietin producing cells in kidney interstitium. We propose, that the efficient re-absorption of iron by the kidney, also during iron overload enables these cells to sense systemic iron and regulate its usage based on the systemic iron state.
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spelling pubmed-61887442018-10-26 Orchestrated regulation of iron trafficking proteins in the kidney during iron overload facilitates systemic iron retention Weiss, Avital Spektor, Lior A. Cohen, Lyora Lifshitz, Lena Magid Gold, Inbar Zhang, De-Liang Truman-Rosentsvit, Marianna Leichtmann-Bardoogo, Yael Nyska, Abraham Addadi, Sefi Rouault, Tracey A. Meyron-Holtz, Esther G. PLoS One Research Article The exact route of iron through the kidney and its regulation during iron overload are not completely elucidated. Under physiologic conditions, non-transferrin and transferrin bound iron passes the glomerular filter and is reabsorbed through kidney epithelial cells, so that hardly any iron is found in the urine. To study the route of iron reabsorption through the kidney, we analyzed the location and regulation of iron metabolism related proteins in kidneys of mice with iron overload, elicited by iron dextran injections. Transferrin Receptor 1 was decreased as expected, following iron overload. In contrast, the multi-ligand hetero-dimeric receptor-complex megalin/cubilin, which also mediates the internalization of transferrin, was highly up-regulated. Moreover, with increasing iron, intracellular ferritin distribution shifted in renal epithelium from an apical location to a punctate distribution throughout the epithelial cells. In addition, in contrast to many other tissues, the iron exporter ferroportin was not reduced by iron overload in the kidney. Iron accumulated mainly in interstitial macrophages, and more prominently in the medulla than in the cortex. This suggests that despite the reduction of Transferrin Receptor 1, alternative pathways may effectively mediate re-absorption of iron that cycles through the kidney during parenterally induced iron-overload. The most iron consuming process of the body, erythropoiesis, is regulated by the renal erythropoietin producing cells in kidney interstitium. We propose, that the efficient re-absorption of iron by the kidney, also during iron overload enables these cells to sense systemic iron and regulate its usage based on the systemic iron state. Public Library of Science 2018-10-15 /pmc/articles/PMC6188744/ /pubmed/30321179 http://dx.doi.org/10.1371/journal.pone.0204471 Text en https://creativecommons.org/publicdomain/zero/1.0/ This is an open access article, free of all copyright, and may be freely reproduced, distributed, transmitted, modified, built upon, or otherwise used by anyone for any lawful purpose. The work is made available under the Creative Commons CC0 (https://creativecommons.org/publicdomain/zero/1.0/) public domain dedication.
spellingShingle Research Article
Weiss, Avital
Spektor, Lior
A. Cohen, Lyora
Lifshitz, Lena
Magid Gold, Inbar
Zhang, De-Liang
Truman-Rosentsvit, Marianna
Leichtmann-Bardoogo, Yael
Nyska, Abraham
Addadi, Sefi
Rouault, Tracey A.
Meyron-Holtz, Esther G.
Orchestrated regulation of iron trafficking proteins in the kidney during iron overload facilitates systemic iron retention
title Orchestrated regulation of iron trafficking proteins in the kidney during iron overload facilitates systemic iron retention
title_full Orchestrated regulation of iron trafficking proteins in the kidney during iron overload facilitates systemic iron retention
title_fullStr Orchestrated regulation of iron trafficking proteins in the kidney during iron overload facilitates systemic iron retention
title_full_unstemmed Orchestrated regulation of iron trafficking proteins in the kidney during iron overload facilitates systemic iron retention
title_short Orchestrated regulation of iron trafficking proteins in the kidney during iron overload facilitates systemic iron retention
title_sort orchestrated regulation of iron trafficking proteins in the kidney during iron overload facilitates systemic iron retention
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6188744/
https://www.ncbi.nlm.nih.gov/pubmed/30321179
http://dx.doi.org/10.1371/journal.pone.0204471
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