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Enhancement of Chaperone Activity of Plant-Specific Thioredoxin through γ-Ray Mediated Conformational Change

AtTDX, a thioredoxin-like plant-specific protein present in Arabidospis is a thermo-stable and multi-functional enzyme. This enzyme is known to act as a thioredoxin and as a molecular chaperone depending upon its oligomeric status. The present study examines the effects of γ-irradiation on the struc...

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Autores principales: Lee, Seung Sik, Jung, Hyun Suk, Park, Soo-Kwon, Lee, Eun Mi, Singh, Sudhir, Lee, Yuno, Lee, Kyun Oh, Lee, Sang Yeol, Chung, Byung Yeoup
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2015
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4661877/
https://www.ncbi.nlm.nih.gov/pubmed/26580605
http://dx.doi.org/10.3390/ijms161126019
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author Lee, Seung Sik
Jung, Hyun Suk
Park, Soo-Kwon
Lee, Eun Mi
Singh, Sudhir
Lee, Yuno
Lee, Kyun Oh
Lee, Sang Yeol
Chung, Byung Yeoup
author_facet Lee, Seung Sik
Jung, Hyun Suk
Park, Soo-Kwon
Lee, Eun Mi
Singh, Sudhir
Lee, Yuno
Lee, Kyun Oh
Lee, Sang Yeol
Chung, Byung Yeoup
author_sort Lee, Seung Sik
collection PubMed
description AtTDX, a thioredoxin-like plant-specific protein present in Arabidospis is a thermo-stable and multi-functional enzyme. This enzyme is known to act as a thioredoxin and as a molecular chaperone depending upon its oligomeric status. The present study examines the effects of γ-irradiation on the structural and functional changes of AtTDX. Holdase chaperone activity of AtTDX was increased and reached a maximum at 10 kGy of γ-irradiation and declined subsequently in a dose-dependent manner, together with no effect on foldase chaperone activity. However, thioredoxin activity decreased gradually with increasing irradiation. Electrophoresis and size exclusion chromatography analysis showed that AtTDX had a tendency to form high molecular weight (HMW) complexes after γ-irradiation and γ-ray-induced HMW complexes were tightly associated with a holdase chaperone activity. The hydrophobicity of AtTDX increased with an increase in irradiation dose till 20 kGy and thereafter decreased further. Analysis of the secondary structures of AtTDX using far UV-circular dichroism spectra revealed that the irradiation remarkably increased the exposure of β-sheets and random coils with a dramatic decrease in α-helices and turn elements in a dose-dependent manner. The data of the present study suggest that γ-irradiation may be a useful tool for increasing holdase chaperone activity without adversely affecting foldase chaperone activity of thioredoxin-like proteins.
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spelling pubmed-46618772015-12-10 Enhancement of Chaperone Activity of Plant-Specific Thioredoxin through γ-Ray Mediated Conformational Change Lee, Seung Sik Jung, Hyun Suk Park, Soo-Kwon Lee, Eun Mi Singh, Sudhir Lee, Yuno Lee, Kyun Oh Lee, Sang Yeol Chung, Byung Yeoup Int J Mol Sci Article AtTDX, a thioredoxin-like plant-specific protein present in Arabidospis is a thermo-stable and multi-functional enzyme. This enzyme is known to act as a thioredoxin and as a molecular chaperone depending upon its oligomeric status. The present study examines the effects of γ-irradiation on the structural and functional changes of AtTDX. Holdase chaperone activity of AtTDX was increased and reached a maximum at 10 kGy of γ-irradiation and declined subsequently in a dose-dependent manner, together with no effect on foldase chaperone activity. However, thioredoxin activity decreased gradually with increasing irradiation. Electrophoresis and size exclusion chromatography analysis showed that AtTDX had a tendency to form high molecular weight (HMW) complexes after γ-irradiation and γ-ray-induced HMW complexes were tightly associated with a holdase chaperone activity. The hydrophobicity of AtTDX increased with an increase in irradiation dose till 20 kGy and thereafter decreased further. Analysis of the secondary structures of AtTDX using far UV-circular dichroism spectra revealed that the irradiation remarkably increased the exposure of β-sheets and random coils with a dramatic decrease in α-helices and turn elements in a dose-dependent manner. The data of the present study suggest that γ-irradiation may be a useful tool for increasing holdase chaperone activity without adversely affecting foldase chaperone activity of thioredoxin-like proteins. MDPI 2015-11-13 /pmc/articles/PMC4661877/ /pubmed/26580605 http://dx.doi.org/10.3390/ijms161126019 Text en © 2015 by the authors; licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons by Attribution (CC-BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Lee, Seung Sik
Jung, Hyun Suk
Park, Soo-Kwon
Lee, Eun Mi
Singh, Sudhir
Lee, Yuno
Lee, Kyun Oh
Lee, Sang Yeol
Chung, Byung Yeoup
Enhancement of Chaperone Activity of Plant-Specific Thioredoxin through γ-Ray Mediated Conformational Change
title Enhancement of Chaperone Activity of Plant-Specific Thioredoxin through γ-Ray Mediated Conformational Change
title_full Enhancement of Chaperone Activity of Plant-Specific Thioredoxin through γ-Ray Mediated Conformational Change
title_fullStr Enhancement of Chaperone Activity of Plant-Specific Thioredoxin through γ-Ray Mediated Conformational Change
title_full_unstemmed Enhancement of Chaperone Activity of Plant-Specific Thioredoxin through γ-Ray Mediated Conformational Change
title_short Enhancement of Chaperone Activity of Plant-Specific Thioredoxin through γ-Ray Mediated Conformational Change
title_sort enhancement of chaperone activity of plant-specific thioredoxin through γ-ray mediated conformational change
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4661877/
https://www.ncbi.nlm.nih.gov/pubmed/26580605
http://dx.doi.org/10.3390/ijms161126019
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