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Oxidative deamination of lysine residues by polyphenols generates an equilibrium of aldehyde and 2-piperidinol products

Polyphenols, especially catechol-type polyphenols, exhibit lysyl oxidase–like activity and mediate oxidative deamination of lysine residues in proteins. Previous studies have shown that polyphenol-mediated oxidative deamination of lysine residues can be associated with altered electrical properties...

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Autores principales: Yamaguchi, Kosuke, Itakura, Masanori, Kitazawa, Roma, Lim, Sei-Young, Nagata, Koji, Shibata, Takahiro, Akagawa, Mitsugu, Uchida, Koji
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Biochemistry and Molecular Biology 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8387773/
https://www.ncbi.nlm.nih.gov/pubmed/34339739
http://dx.doi.org/10.1016/j.jbc.2021.101035
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author Yamaguchi, Kosuke
Itakura, Masanori
Kitazawa, Roma
Lim, Sei-Young
Nagata, Koji
Shibata, Takahiro
Akagawa, Mitsugu
Uchida, Koji
author_facet Yamaguchi, Kosuke
Itakura, Masanori
Kitazawa, Roma
Lim, Sei-Young
Nagata, Koji
Shibata, Takahiro
Akagawa, Mitsugu
Uchida, Koji
author_sort Yamaguchi, Kosuke
collection PubMed
description Polyphenols, especially catechol-type polyphenols, exhibit lysyl oxidase–like activity and mediate oxidative deamination of lysine residues in proteins. Previous studies have shown that polyphenol-mediated oxidative deamination of lysine residues can be associated with altered electrical properties of proteins and increased crossreactivity with natural immunoglobulin M antibodies. This interaction suggested that oxidized proteins could act as innate antigens and elicit an innate immune response. However, the structural basis for oxidatively deaminated lysine residues remains unclear. In the present study, to establish the chemistry of lysine oxidation, we characterized oxidation products obtained via incubation of the lysine analog N-biotinyl-5-aminopentylamine with eggshell membranes containing lysyl oxidase and identified a unique six-membered ring 2-piperidinol derivative equilibrated with a ring-open product (aldehyde) as the major product. By monitoring these aldehyde–2-piperidinol products, we evaluated the lysyl oxidase–like activity of polyphenols. We also observed that this reaction was mediated by some polyphenols, especially o-diphenolic-type polyphenols, in the presence of copper ions. Interestingly, the natural immunoglobulin M monoclonal antibody recognized these aldehyde–2-piperidinol products as an innate epitope. These findings establish the existence of a dynamic equilibrium of oxidized lysine and provide important insights into the chemopreventive function of dietary polyphenols for chronic diseases.
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spelling pubmed-83877732021-08-31 Oxidative deamination of lysine residues by polyphenols generates an equilibrium of aldehyde and 2-piperidinol products Yamaguchi, Kosuke Itakura, Masanori Kitazawa, Roma Lim, Sei-Young Nagata, Koji Shibata, Takahiro Akagawa, Mitsugu Uchida, Koji J Biol Chem Research Article Polyphenols, especially catechol-type polyphenols, exhibit lysyl oxidase–like activity and mediate oxidative deamination of lysine residues in proteins. Previous studies have shown that polyphenol-mediated oxidative deamination of lysine residues can be associated with altered electrical properties of proteins and increased crossreactivity with natural immunoglobulin M antibodies. This interaction suggested that oxidized proteins could act as innate antigens and elicit an innate immune response. However, the structural basis for oxidatively deaminated lysine residues remains unclear. In the present study, to establish the chemistry of lysine oxidation, we characterized oxidation products obtained via incubation of the lysine analog N-biotinyl-5-aminopentylamine with eggshell membranes containing lysyl oxidase and identified a unique six-membered ring 2-piperidinol derivative equilibrated with a ring-open product (aldehyde) as the major product. By monitoring these aldehyde–2-piperidinol products, we evaluated the lysyl oxidase–like activity of polyphenols. We also observed that this reaction was mediated by some polyphenols, especially o-diphenolic-type polyphenols, in the presence of copper ions. Interestingly, the natural immunoglobulin M monoclonal antibody recognized these aldehyde–2-piperidinol products as an innate epitope. These findings establish the existence of a dynamic equilibrium of oxidized lysine and provide important insights into the chemopreventive function of dietary polyphenols for chronic diseases. American Society for Biochemistry and Molecular Biology 2021-07-31 /pmc/articles/PMC8387773/ /pubmed/34339739 http://dx.doi.org/10.1016/j.jbc.2021.101035 Text en © 2021 The Authors https://creativecommons.org/licenses/by/4.0/This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Research Article
Yamaguchi, Kosuke
Itakura, Masanori
Kitazawa, Roma
Lim, Sei-Young
Nagata, Koji
Shibata, Takahiro
Akagawa, Mitsugu
Uchida, Koji
Oxidative deamination of lysine residues by polyphenols generates an equilibrium of aldehyde and 2-piperidinol products
title Oxidative deamination of lysine residues by polyphenols generates an equilibrium of aldehyde and 2-piperidinol products
title_full Oxidative deamination of lysine residues by polyphenols generates an equilibrium of aldehyde and 2-piperidinol products
title_fullStr Oxidative deamination of lysine residues by polyphenols generates an equilibrium of aldehyde and 2-piperidinol products
title_full_unstemmed Oxidative deamination of lysine residues by polyphenols generates an equilibrium of aldehyde and 2-piperidinol products
title_short Oxidative deamination of lysine residues by polyphenols generates an equilibrium of aldehyde and 2-piperidinol products
title_sort oxidative deamination of lysine residues by polyphenols generates an equilibrium of aldehyde and 2-piperidinol products
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8387773/
https://www.ncbi.nlm.nih.gov/pubmed/34339739
http://dx.doi.org/10.1016/j.jbc.2021.101035
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