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Polymerization of Oxidized DJ-1 via Noncovalent and Covalent Binding: Significance of Disulfide Bond Formation

[Image: see text] The reactive cysteine residue at position 106 (Cys106) of DJ-1 is preferentially oxidized under oxidative stress, generating oxidized DJ-1 (oxDJ-1). Oxidation of Cys106 to sulfinic acid changes the biologic action of DJ-1 and increases its cytoprotective properties. The similar act...

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Autores principales: Kobayashi, Mayuka, Muramatsu, Kana, Haruyama, Takamitsu, Uesugi, Haruka, Kikuchi, Ai, Konno, Hiroki, Noguchi, Noriko, Saito, Yoshiro
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Chemical Society 2019
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6648325/
https://www.ncbi.nlm.nih.gov/pubmed/31460051
http://dx.doi.org/10.1021/acsomega.9b00324
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author Kobayashi, Mayuka
Muramatsu, Kana
Haruyama, Takamitsu
Uesugi, Haruka
Kikuchi, Ai
Konno, Hiroki
Noguchi, Noriko
Saito, Yoshiro
author_facet Kobayashi, Mayuka
Muramatsu, Kana
Haruyama, Takamitsu
Uesugi, Haruka
Kikuchi, Ai
Konno, Hiroki
Noguchi, Noriko
Saito, Yoshiro
author_sort Kobayashi, Mayuka
collection PubMed
description [Image: see text] The reactive cysteine residue at position 106 (Cys106) of DJ-1 is preferentially oxidized under oxidative stress, generating oxidized DJ-1 (oxDJ-1). Oxidation of Cys106 to sulfinic acid changes the biologic action of DJ-1 and increases its cytoprotective properties. The similar activation step is known in peroxiredoxins (Prxs), in which oxidation of reactive Cys to sulfinic acid induces polymerization of Prxs and changes its enzyme characteristic from peroxidase to molecular chaperone. In the present study, oxDJ-1 was prepared and its polymerization and related amino acid residues were investigated. We found that oxDJ-1 formed a characteristic polymer with disulfide bonds and with noncovalent and covalent binding other than disulfide. The physiological concentration of glutathione resolved the polymer form of oxDJ-1, and glutathionylation of other two Cys residues, such as Cys 46 and 53, was detected. Mutant analysis indicated the necessity not only of Cys106 but also of Cys46 for the polymer formation. The cellular experiment demonstrated that the electrophilic quinone treatment induced a high-molecular-weight complex containing oxDJ-1. Dynamic polymerization of oxDJ-1 with a ring and a stacked structure was observed by an atomic force microscope. Collectively, these results clearly demonstrated the characteristic polymer formation of oxDJ-1 with a disulfide bond and noncovalent and covalent binding other than disulfide, which might be related to the biologic function of oxDJ-1.
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spelling pubmed-66483252019-08-27 Polymerization of Oxidized DJ-1 via Noncovalent and Covalent Binding: Significance of Disulfide Bond Formation Kobayashi, Mayuka Muramatsu, Kana Haruyama, Takamitsu Uesugi, Haruka Kikuchi, Ai Konno, Hiroki Noguchi, Noriko Saito, Yoshiro ACS Omega [Image: see text] The reactive cysteine residue at position 106 (Cys106) of DJ-1 is preferentially oxidized under oxidative stress, generating oxidized DJ-1 (oxDJ-1). Oxidation of Cys106 to sulfinic acid changes the biologic action of DJ-1 and increases its cytoprotective properties. The similar activation step is known in peroxiredoxins (Prxs), in which oxidation of reactive Cys to sulfinic acid induces polymerization of Prxs and changes its enzyme characteristic from peroxidase to molecular chaperone. In the present study, oxDJ-1 was prepared and its polymerization and related amino acid residues were investigated. We found that oxDJ-1 formed a characteristic polymer with disulfide bonds and with noncovalent and covalent binding other than disulfide. The physiological concentration of glutathione resolved the polymer form of oxDJ-1, and glutathionylation of other two Cys residues, such as Cys 46 and 53, was detected. Mutant analysis indicated the necessity not only of Cys106 but also of Cys46 for the polymer formation. The cellular experiment demonstrated that the electrophilic quinone treatment induced a high-molecular-weight complex containing oxDJ-1. Dynamic polymerization of oxDJ-1 with a ring and a stacked structure was observed by an atomic force microscope. Collectively, these results clearly demonstrated the characteristic polymer formation of oxDJ-1 with a disulfide bond and noncovalent and covalent binding other than disulfide, which might be related to the biologic function of oxDJ-1. American Chemical Society 2019-06-03 /pmc/articles/PMC6648325/ /pubmed/31460051 http://dx.doi.org/10.1021/acsomega.9b00324 Text en Copyright © 2019 American Chemical Society This is an open access article published under an ACS AuthorChoice License (http://pubs.acs.org/page/policy/authorchoice_termsofuse.html) , which permits copying and redistribution of the article or any adaptations for non-commercial purposes.
spellingShingle Kobayashi, Mayuka
Muramatsu, Kana
Haruyama, Takamitsu
Uesugi, Haruka
Kikuchi, Ai
Konno, Hiroki
Noguchi, Noriko
Saito, Yoshiro
Polymerization of Oxidized DJ-1 via Noncovalent and Covalent Binding: Significance of Disulfide Bond Formation
title Polymerization of Oxidized DJ-1 via Noncovalent and Covalent Binding: Significance of Disulfide Bond Formation
title_full Polymerization of Oxidized DJ-1 via Noncovalent and Covalent Binding: Significance of Disulfide Bond Formation
title_fullStr Polymerization of Oxidized DJ-1 via Noncovalent and Covalent Binding: Significance of Disulfide Bond Formation
title_full_unstemmed Polymerization of Oxidized DJ-1 via Noncovalent and Covalent Binding: Significance of Disulfide Bond Formation
title_short Polymerization of Oxidized DJ-1 via Noncovalent and Covalent Binding: Significance of Disulfide Bond Formation
title_sort polymerization of oxidized dj-1 via noncovalent and covalent binding: significance of disulfide bond formation
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6648325/
https://www.ncbi.nlm.nih.gov/pubmed/31460051
http://dx.doi.org/10.1021/acsomega.9b00324
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