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Structural and Biochemical Characterization of Thioredoxin-2 from Deinococcus radiodurans

Thioredoxin (Trx), a ubiquitous protein showing disulfide reductase activity, plays critical roles in cellular redox control and oxidative stress response. Trx is a member of the Trx system, comprising Trx, Trx reductase (TrxR), and a cognate reductant (generally reduced nicotinamide adenine dinucle...

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Autores principales: Kim, Min-Kyu, Zhao, Lei, Jeong, Soyoung, Zhang, Jing, Jung, Jong-Hyun, Seo, Ho Seong, Choi, Jong-il, Lim, Sangyong
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8615215/
https://www.ncbi.nlm.nih.gov/pubmed/34829714
http://dx.doi.org/10.3390/antiox10111843
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author Kim, Min-Kyu
Zhao, Lei
Jeong, Soyoung
Zhang, Jing
Jung, Jong-Hyun
Seo, Ho Seong
Choi, Jong-il
Lim, Sangyong
author_facet Kim, Min-Kyu
Zhao, Lei
Jeong, Soyoung
Zhang, Jing
Jung, Jong-Hyun
Seo, Ho Seong
Choi, Jong-il
Lim, Sangyong
author_sort Kim, Min-Kyu
collection PubMed
description Thioredoxin (Trx), a ubiquitous protein showing disulfide reductase activity, plays critical roles in cellular redox control and oxidative stress response. Trx is a member of the Trx system, comprising Trx, Trx reductase (TrxR), and a cognate reductant (generally reduced nicotinamide adenine dinucleotide phosphate, NADPH). Bacterial Trx1 contains only the Trx-fold domain, in which the active site CXXC motif that is critical for the disulfide reduction activity is located. Bacterial Trx2 contains an N-terminal extension, which forms a zinc-finger domain, including two additional CXXC motifs. The multi-stress resistant bacterium Deinococcus radiodurans encodes both Trx1 (DrTrx1) and Trx2 (DrTrx2), which act as members of the enzymatic antioxidant systems. In this study, we constructed Δdrtrx1 and Δdrtrx2 mutants and examined their survival rates under H(2)O(2) treated conditions. Both drtrx1 and drtrx2 genes were induced following H(2)O(2) treatment, and the Δdrtrx1 and Δdrtrx2 mutants showed a decrease in resistance toward H(2)O(2), compared to the wild-type. Native DrTrx1 and DrTrx2 clearly displayed insulin and DTNB reduction activity, whereas mutant DrTrx1 and DrTrx2, which harbors the substitution of conserved cysteine to serine in its active site CXXC motif, showed almost no reduction activity. Mutations in the zinc binding cysteines did not fully eliminate the reduction activities of DrTrx2. Furthermore, we solved the crystal structure of full-length DrTrx2 at 1.96 Å resolution. The N-terminal zinc-finger domain of Trx2 is thought to be involved in Trx-target interaction and, from our DrTrx2 structure, the orientation of the zinc-finger domain of DrTrx2 and its interdomain interaction, between the Trx-fold domain and the zinc-finger domain, is clearly distinguished from those of the other Trx2 structures.
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spelling pubmed-86152152021-11-26 Structural and Biochemical Characterization of Thioredoxin-2 from Deinococcus radiodurans Kim, Min-Kyu Zhao, Lei Jeong, Soyoung Zhang, Jing Jung, Jong-Hyun Seo, Ho Seong Choi, Jong-il Lim, Sangyong Antioxidants (Basel) Article Thioredoxin (Trx), a ubiquitous protein showing disulfide reductase activity, plays critical roles in cellular redox control and oxidative stress response. Trx is a member of the Trx system, comprising Trx, Trx reductase (TrxR), and a cognate reductant (generally reduced nicotinamide adenine dinucleotide phosphate, NADPH). Bacterial Trx1 contains only the Trx-fold domain, in which the active site CXXC motif that is critical for the disulfide reduction activity is located. Bacterial Trx2 contains an N-terminal extension, which forms a zinc-finger domain, including two additional CXXC motifs. The multi-stress resistant bacterium Deinococcus radiodurans encodes both Trx1 (DrTrx1) and Trx2 (DrTrx2), which act as members of the enzymatic antioxidant systems. In this study, we constructed Δdrtrx1 and Δdrtrx2 mutants and examined their survival rates under H(2)O(2) treated conditions. Both drtrx1 and drtrx2 genes were induced following H(2)O(2) treatment, and the Δdrtrx1 and Δdrtrx2 mutants showed a decrease in resistance toward H(2)O(2), compared to the wild-type. Native DrTrx1 and DrTrx2 clearly displayed insulin and DTNB reduction activity, whereas mutant DrTrx1 and DrTrx2, which harbors the substitution of conserved cysteine to serine in its active site CXXC motif, showed almost no reduction activity. Mutations in the zinc binding cysteines did not fully eliminate the reduction activities of DrTrx2. Furthermore, we solved the crystal structure of full-length DrTrx2 at 1.96 Å resolution. The N-terminal zinc-finger domain of Trx2 is thought to be involved in Trx-target interaction and, from our DrTrx2 structure, the orientation of the zinc-finger domain of DrTrx2 and its interdomain interaction, between the Trx-fold domain and the zinc-finger domain, is clearly distinguished from those of the other Trx2 structures. MDPI 2021-11-20 /pmc/articles/PMC8615215/ /pubmed/34829714 http://dx.doi.org/10.3390/antiox10111843 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Kim, Min-Kyu
Zhao, Lei
Jeong, Soyoung
Zhang, Jing
Jung, Jong-Hyun
Seo, Ho Seong
Choi, Jong-il
Lim, Sangyong
Structural and Biochemical Characterization of Thioredoxin-2 from Deinococcus radiodurans
title Structural and Biochemical Characterization of Thioredoxin-2 from Deinococcus radiodurans
title_full Structural and Biochemical Characterization of Thioredoxin-2 from Deinococcus radiodurans
title_fullStr Structural and Biochemical Characterization of Thioredoxin-2 from Deinococcus radiodurans
title_full_unstemmed Structural and Biochemical Characterization of Thioredoxin-2 from Deinococcus radiodurans
title_short Structural and Biochemical Characterization of Thioredoxin-2 from Deinococcus radiodurans
title_sort structural and biochemical characterization of thioredoxin-2 from deinococcus radiodurans
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8615215/
https://www.ncbi.nlm.nih.gov/pubmed/34829714
http://dx.doi.org/10.3390/antiox10111843
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