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Deficiency of Calcium-Independent Phospholipase A2 Beta Induces Brain Iron Accumulation through Upregulation of Divalent Metal Transporter 1

Mutations in PLA2G6 have been proposed to be the cause of neurodegeneration with brain iron accumulation type 2. The present study aimed to clarify the mechanism underlying brain iron accumulation during the deficiency of calcium-independent phospholipase A2 beta (iPLA(2)β), which is encoded by the...

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Autores principales: Beck, Goichi, Shinzawa, Koei, Hayakawa, Hideki, Baba, Kousuke, Yasuda, Toru, Sumi-Akamaru, Hisae, Tsujimoto, Yoshihide, Mochizuki, Hideki
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4624760/
https://www.ncbi.nlm.nih.gov/pubmed/26506412
http://dx.doi.org/10.1371/journal.pone.0141629
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author Beck, Goichi
Shinzawa, Koei
Hayakawa, Hideki
Baba, Kousuke
Yasuda, Toru
Sumi-Akamaru, Hisae
Tsujimoto, Yoshihide
Mochizuki, Hideki
author_facet Beck, Goichi
Shinzawa, Koei
Hayakawa, Hideki
Baba, Kousuke
Yasuda, Toru
Sumi-Akamaru, Hisae
Tsujimoto, Yoshihide
Mochizuki, Hideki
author_sort Beck, Goichi
collection PubMed
description Mutations in PLA2G6 have been proposed to be the cause of neurodegeneration with brain iron accumulation type 2. The present study aimed to clarify the mechanism underlying brain iron accumulation during the deficiency of calcium-independent phospholipase A2 beta (iPLA(2)β), which is encoded by the PLA2G6 gene. Perl’s staining with diaminobenzidine enhancement was used to visualize brain iron accumulation. Western blotting was used to investigate the expression of molecules involved in iron homeostasis, including divalent metal transporter 1 (DMT1) and iron regulatory proteins (IRP1 and 2), in the brains of iPLA(2)β-knockout (KO) mice as well as in PLA2G6-knockdown (KD) SH-SY5Y human neuroblastoma cells. Furthermore, mitochondrial functions such as ATP production were examined. We have discovered for the first time that marked iron deposition was observed in the brains of iPLA(2)β-KO mice since the early clinical stages. DMT1 and IRP2 were markedly upregulated in all examined brain regions of aged iPLA(2)β-KO mice compared to age-matched wild-type control mice. Moreover, peroxidized lipids were increased in the brains of iPLA(2)β-KO mice. DMT1 and IRPs were significantly upregulated in PLA2G6-KD cells compared with cells treated with negative control siRNA. Degeneration of the mitochondrial inner membrane and decrease of ATP production were observed in PLA2G6-KD cells. These results suggest that the genetic ablation of iPLA(2)β increased iron uptake in the brain through the activation of IRP2 and upregulation of DMT1, which may be associated with mitochondrial dysfunction.
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spelling pubmed-46247602015-11-06 Deficiency of Calcium-Independent Phospholipase A2 Beta Induces Brain Iron Accumulation through Upregulation of Divalent Metal Transporter 1 Beck, Goichi Shinzawa, Koei Hayakawa, Hideki Baba, Kousuke Yasuda, Toru Sumi-Akamaru, Hisae Tsujimoto, Yoshihide Mochizuki, Hideki PLoS One Research Article Mutations in PLA2G6 have been proposed to be the cause of neurodegeneration with brain iron accumulation type 2. The present study aimed to clarify the mechanism underlying brain iron accumulation during the deficiency of calcium-independent phospholipase A2 beta (iPLA(2)β), which is encoded by the PLA2G6 gene. Perl’s staining with diaminobenzidine enhancement was used to visualize brain iron accumulation. Western blotting was used to investigate the expression of molecules involved in iron homeostasis, including divalent metal transporter 1 (DMT1) and iron regulatory proteins (IRP1 and 2), in the brains of iPLA(2)β-knockout (KO) mice as well as in PLA2G6-knockdown (KD) SH-SY5Y human neuroblastoma cells. Furthermore, mitochondrial functions such as ATP production were examined. We have discovered for the first time that marked iron deposition was observed in the brains of iPLA(2)β-KO mice since the early clinical stages. DMT1 and IRP2 were markedly upregulated in all examined brain regions of aged iPLA(2)β-KO mice compared to age-matched wild-type control mice. Moreover, peroxidized lipids were increased in the brains of iPLA(2)β-KO mice. DMT1 and IRPs were significantly upregulated in PLA2G6-KD cells compared with cells treated with negative control siRNA. Degeneration of the mitochondrial inner membrane and decrease of ATP production were observed in PLA2G6-KD cells. These results suggest that the genetic ablation of iPLA(2)β increased iron uptake in the brain through the activation of IRP2 and upregulation of DMT1, which may be associated with mitochondrial dysfunction. Public Library of Science 2015-10-27 /pmc/articles/PMC4624760/ /pubmed/26506412 http://dx.doi.org/10.1371/journal.pone.0141629 Text en © 2015 Beck et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Beck, Goichi
Shinzawa, Koei
Hayakawa, Hideki
Baba, Kousuke
Yasuda, Toru
Sumi-Akamaru, Hisae
Tsujimoto, Yoshihide
Mochizuki, Hideki
Deficiency of Calcium-Independent Phospholipase A2 Beta Induces Brain Iron Accumulation through Upregulation of Divalent Metal Transporter 1
title Deficiency of Calcium-Independent Phospholipase A2 Beta Induces Brain Iron Accumulation through Upregulation of Divalent Metal Transporter 1
title_full Deficiency of Calcium-Independent Phospholipase A2 Beta Induces Brain Iron Accumulation through Upregulation of Divalent Metal Transporter 1
title_fullStr Deficiency of Calcium-Independent Phospholipase A2 Beta Induces Brain Iron Accumulation through Upregulation of Divalent Metal Transporter 1
title_full_unstemmed Deficiency of Calcium-Independent Phospholipase A2 Beta Induces Brain Iron Accumulation through Upregulation of Divalent Metal Transporter 1
title_short Deficiency of Calcium-Independent Phospholipase A2 Beta Induces Brain Iron Accumulation through Upregulation of Divalent Metal Transporter 1
title_sort deficiency of calcium-independent phospholipase a2 beta induces brain iron accumulation through upregulation of divalent metal transporter 1
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4624760/
https://www.ncbi.nlm.nih.gov/pubmed/26506412
http://dx.doi.org/10.1371/journal.pone.0141629
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