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Semi-enzymatic acceleration of oxidative protein folding by N-methylated heteroaromatic thiols

We report the first example of a synthetic thiol-based compound that promotes oxidative protein folding upon 1-equivalent loading to the disulfide bonds in the client protein to afford the native form in over 70% yield. N-Methylation is a central post-translational processing of proteins in vivo for...

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Autores principales: Okada, Shunsuke, Matsumoto, Yosuke, Takahashi, Rikana, Arai, Kenta, Kanemura, Shingo, Okumura, Masaki, Muraoka, Takahiro
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10355094/
https://www.ncbi.nlm.nih.gov/pubmed/37476727
http://dx.doi.org/10.1039/d3sc01540h
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author Okada, Shunsuke
Matsumoto, Yosuke
Takahashi, Rikana
Arai, Kenta
Kanemura, Shingo
Okumura, Masaki
Muraoka, Takahiro
author_facet Okada, Shunsuke
Matsumoto, Yosuke
Takahashi, Rikana
Arai, Kenta
Kanemura, Shingo
Okumura, Masaki
Muraoka, Takahiro
author_sort Okada, Shunsuke
collection PubMed
description We report the first example of a synthetic thiol-based compound that promotes oxidative protein folding upon 1-equivalent loading to the disulfide bonds in the client protein to afford the native form in over 70% yield. N-Methylation is a central post-translational processing of proteins in vivo for regulating functions including chaperone activities. Despite the universally observed biochemical reactions in nature, N-methylation has hardly been utilized in the design, functionalization, and switching of synthetic bioregulatory agents, particularly folding promotors. As a biomimetic approach, we developed pyridinylmethanethiols to investigate the effects of N-methylation on the promotion of oxidative protein folding. For a comprehensive study on the geometrical effects, constitutional isomers of pyridinylmethanethiols with ortho-, meta-, and para-substitutions have been synthesized. Among the constitutional isomers, para-substituted pyridinylmethanethiol showed the fastest disulfide-bond formation of the client proteins to afford the native forms most efficiently. N-Methylation drastically increased the acidity and enhanced the oxidizability of the thiol groups in the pyridinylmethanethiols to enhance the folding promotion efficiencies. Among the isomers, para-substituted N-methylated pyridinylmethanethiol accelerated the oxidative protein folding reactions with the highest efficiency, allowing for protein folding promotion by 1-equivalent loading as a semi-enzymatic activity. This study will offer a novel bioinspired molecular design of synthetic biofunctional agents that are semi-enzymatically effective for the promotion of oxidative protein folding including biopharmaceuticals such as insulin in vitro by minimum loading.
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spelling pubmed-103550942023-07-20 Semi-enzymatic acceleration of oxidative protein folding by N-methylated heteroaromatic thiols Okada, Shunsuke Matsumoto, Yosuke Takahashi, Rikana Arai, Kenta Kanemura, Shingo Okumura, Masaki Muraoka, Takahiro Chem Sci Chemistry We report the first example of a synthetic thiol-based compound that promotes oxidative protein folding upon 1-equivalent loading to the disulfide bonds in the client protein to afford the native form in over 70% yield. N-Methylation is a central post-translational processing of proteins in vivo for regulating functions including chaperone activities. Despite the universally observed biochemical reactions in nature, N-methylation has hardly been utilized in the design, functionalization, and switching of synthetic bioregulatory agents, particularly folding promotors. As a biomimetic approach, we developed pyridinylmethanethiols to investigate the effects of N-methylation on the promotion of oxidative protein folding. For a comprehensive study on the geometrical effects, constitutional isomers of pyridinylmethanethiols with ortho-, meta-, and para-substitutions have been synthesized. Among the constitutional isomers, para-substituted pyridinylmethanethiol showed the fastest disulfide-bond formation of the client proteins to afford the native forms most efficiently. N-Methylation drastically increased the acidity and enhanced the oxidizability of the thiol groups in the pyridinylmethanethiols to enhance the folding promotion efficiencies. Among the isomers, para-substituted N-methylated pyridinylmethanethiol accelerated the oxidative protein folding reactions with the highest efficiency, allowing for protein folding promotion by 1-equivalent loading as a semi-enzymatic activity. This study will offer a novel bioinspired molecular design of synthetic biofunctional agents that are semi-enzymatically effective for the promotion of oxidative protein folding including biopharmaceuticals such as insulin in vitro by minimum loading. The Royal Society of Chemistry 2023-06-16 /pmc/articles/PMC10355094/ /pubmed/37476727 http://dx.doi.org/10.1039/d3sc01540h Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by/3.0/
spellingShingle Chemistry
Okada, Shunsuke
Matsumoto, Yosuke
Takahashi, Rikana
Arai, Kenta
Kanemura, Shingo
Okumura, Masaki
Muraoka, Takahiro
Semi-enzymatic acceleration of oxidative protein folding by N-methylated heteroaromatic thiols
title Semi-enzymatic acceleration of oxidative protein folding by N-methylated heteroaromatic thiols
title_full Semi-enzymatic acceleration of oxidative protein folding by N-methylated heteroaromatic thiols
title_fullStr Semi-enzymatic acceleration of oxidative protein folding by N-methylated heteroaromatic thiols
title_full_unstemmed Semi-enzymatic acceleration of oxidative protein folding by N-methylated heteroaromatic thiols
title_short Semi-enzymatic acceleration of oxidative protein folding by N-methylated heteroaromatic thiols
title_sort semi-enzymatic acceleration of oxidative protein folding by n-methylated heteroaromatic thiols
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10355094/
https://www.ncbi.nlm.nih.gov/pubmed/37476727
http://dx.doi.org/10.1039/d3sc01540h
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