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A Histone-Like Protein of Mycobacteria Possesses Ferritin Superfamily Protein-Like Activity and Protects against DNA Damage by Fenton Reaction

Iron is an essential metal for living organisms but its level must be strictly controlled in cells, because ferrous ion induces toxicity by generating highly active reactive oxygen, hydroxyl radicals, through the Fenton reaction. In addition, ferric ion shows low solubility under physiological condi...

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Autores principales: Takatsuka, Masaki, Osada-Oka, Mayuko, Satoh, Eisuke F., Kitadokoro, Kengo, Nishiuchi, Yukiko, Niki, Mamiko, Inoue, Masayasu, Iwai, Kazuhiro, Arakawa, Tetsuo, Shimoji, Yoshihiro, Ogura, Hisashi, Kobayashi, Kazuo, Rambukkana, Anura, Matsumoto, Sohkichi
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2011
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3116847/
https://www.ncbi.nlm.nih.gov/pubmed/21698192
http://dx.doi.org/10.1371/journal.pone.0020985
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author Takatsuka, Masaki
Osada-Oka, Mayuko
Satoh, Eisuke F.
Kitadokoro, Kengo
Nishiuchi, Yukiko
Niki, Mamiko
Inoue, Masayasu
Iwai, Kazuhiro
Arakawa, Tetsuo
Shimoji, Yoshihiro
Ogura, Hisashi
Kobayashi, Kazuo
Rambukkana, Anura
Matsumoto, Sohkichi
author_facet Takatsuka, Masaki
Osada-Oka, Mayuko
Satoh, Eisuke F.
Kitadokoro, Kengo
Nishiuchi, Yukiko
Niki, Mamiko
Inoue, Masayasu
Iwai, Kazuhiro
Arakawa, Tetsuo
Shimoji, Yoshihiro
Ogura, Hisashi
Kobayashi, Kazuo
Rambukkana, Anura
Matsumoto, Sohkichi
author_sort Takatsuka, Masaki
collection PubMed
description Iron is an essential metal for living organisms but its level must be strictly controlled in cells, because ferrous ion induces toxicity by generating highly active reactive oxygen, hydroxyl radicals, through the Fenton reaction. In addition, ferric ion shows low solubility under physiological conditions. To overcome these obstacles living organisms possess Ferritin superfamily proteins that are distributed in all three domains of life: bacteria, archaea, and eukaryotes. These proteins minimize hydroxyl radical formation by ferroxidase activity that converts Fe(2+) into Fe(3+) and sequesters iron by storing it as a mineral inside a protein cage. In this study, we discovered that mycobacterial DNA-binding protein 1 (MDP1), a histone-like protein, has similar activity to ferritin superfamily proteins. MDP1 prevented the Fenton reaction and protects DNA by the ferroxidase activity. The K (m) values of the ferroxidase activity by MDP1 of Mycobacterium bovis bacillus Calmette-Guérin (BCG-3007c), Mycobacterium tuberculosis (Rv2986c), and Mycobacterium leprae (ML1683; ML-LBP) were 0.292, 0.252, and 0.129 mM, respectively. Furthermore, one MDP1 molecule directly captured 81.4±19.1 iron atoms, suggesting the role of this protein in iron storage. This study describes for the first time a ferroxidase-iron storage protein outside of the ferritin superfamily proteins and the protective role of this bacterial protein from DNA damage.
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spelling pubmed-31168472011-06-22 A Histone-Like Protein of Mycobacteria Possesses Ferritin Superfamily Protein-Like Activity and Protects against DNA Damage by Fenton Reaction Takatsuka, Masaki Osada-Oka, Mayuko Satoh, Eisuke F. Kitadokoro, Kengo Nishiuchi, Yukiko Niki, Mamiko Inoue, Masayasu Iwai, Kazuhiro Arakawa, Tetsuo Shimoji, Yoshihiro Ogura, Hisashi Kobayashi, Kazuo Rambukkana, Anura Matsumoto, Sohkichi PLoS One Research Article Iron is an essential metal for living organisms but its level must be strictly controlled in cells, because ferrous ion induces toxicity by generating highly active reactive oxygen, hydroxyl radicals, through the Fenton reaction. In addition, ferric ion shows low solubility under physiological conditions. To overcome these obstacles living organisms possess Ferritin superfamily proteins that are distributed in all three domains of life: bacteria, archaea, and eukaryotes. These proteins minimize hydroxyl radical formation by ferroxidase activity that converts Fe(2+) into Fe(3+) and sequesters iron by storing it as a mineral inside a protein cage. In this study, we discovered that mycobacterial DNA-binding protein 1 (MDP1), a histone-like protein, has similar activity to ferritin superfamily proteins. MDP1 prevented the Fenton reaction and protects DNA by the ferroxidase activity. The K (m) values of the ferroxidase activity by MDP1 of Mycobacterium bovis bacillus Calmette-Guérin (BCG-3007c), Mycobacterium tuberculosis (Rv2986c), and Mycobacterium leprae (ML1683; ML-LBP) were 0.292, 0.252, and 0.129 mM, respectively. Furthermore, one MDP1 molecule directly captured 81.4±19.1 iron atoms, suggesting the role of this protein in iron storage. This study describes for the first time a ferroxidase-iron storage protein outside of the ferritin superfamily proteins and the protective role of this bacterial protein from DNA damage. Public Library of Science 2011-06-16 /pmc/articles/PMC3116847/ /pubmed/21698192 http://dx.doi.org/10.1371/journal.pone.0020985 Text en Takatsuka 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
Takatsuka, Masaki
Osada-Oka, Mayuko
Satoh, Eisuke F.
Kitadokoro, Kengo
Nishiuchi, Yukiko
Niki, Mamiko
Inoue, Masayasu
Iwai, Kazuhiro
Arakawa, Tetsuo
Shimoji, Yoshihiro
Ogura, Hisashi
Kobayashi, Kazuo
Rambukkana, Anura
Matsumoto, Sohkichi
A Histone-Like Protein of Mycobacteria Possesses Ferritin Superfamily Protein-Like Activity and Protects against DNA Damage by Fenton Reaction
title A Histone-Like Protein of Mycobacteria Possesses Ferritin Superfamily Protein-Like Activity and Protects against DNA Damage by Fenton Reaction
title_full A Histone-Like Protein of Mycobacteria Possesses Ferritin Superfamily Protein-Like Activity and Protects against DNA Damage by Fenton Reaction
title_fullStr A Histone-Like Protein of Mycobacteria Possesses Ferritin Superfamily Protein-Like Activity and Protects against DNA Damage by Fenton Reaction
title_full_unstemmed A Histone-Like Protein of Mycobacteria Possesses Ferritin Superfamily Protein-Like Activity and Protects against DNA Damage by Fenton Reaction
title_short A Histone-Like Protein of Mycobacteria Possesses Ferritin Superfamily Protein-Like Activity and Protects against DNA Damage by Fenton Reaction
title_sort histone-like protein of mycobacteria possesses ferritin superfamily protein-like activity and protects against dna damage by fenton reaction
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC3116847/
https://www.ncbi.nlm.nih.gov/pubmed/21698192
http://dx.doi.org/10.1371/journal.pone.0020985
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