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MazEF Toxin-Antitoxin System-Mediated DNA Damage Stress Response in Deinococcus radiodurans

Deinococcus radiodurans shows marked resistance to various types of DNA-damaging agents, including mitomycin C (MMC). A type II toxin-antitoxin (TA) system that responds to DNA damage stress was identified in D. radiodurans, comprising the toxin MazF-dr and the antitoxin MazE-dr. The cleavage specif...

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Autores principales: Dai, Jingli, Chen, Zijing, Hou, Jinfeng, Wang, Yudong, Guo, Miao, Cao, Jiajia, Wang, Liangyan, Xu, Hong, Tian, Bing, Zhao, Ye
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Frontiers Media S.A. 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7933679/
https://www.ncbi.nlm.nih.gov/pubmed/33679894
http://dx.doi.org/10.3389/fgene.2021.632423
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author Dai, Jingli
Chen, Zijing
Hou, Jinfeng
Wang, Yudong
Guo, Miao
Cao, Jiajia
Wang, Liangyan
Xu, Hong
Tian, Bing
Zhao, Ye
author_facet Dai, Jingli
Chen, Zijing
Hou, Jinfeng
Wang, Yudong
Guo, Miao
Cao, Jiajia
Wang, Liangyan
Xu, Hong
Tian, Bing
Zhao, Ye
author_sort Dai, Jingli
collection PubMed
description Deinococcus radiodurans shows marked resistance to various types of DNA-damaging agents, including mitomycin C (MMC). A type II toxin-antitoxin (TA) system that responds to DNA damage stress was identified in D. radiodurans, comprising the toxin MazF-dr and the antitoxin MazE-dr. The cleavage specificity of MazF-dr, an endoribonuclease, was previously characterized. Here, we further investigated the regulatory role of the MazEF system in the response to DNA damage stress in D. radiodurans. The crystal structure of D. radiodurans MazF (MazF-dr) was determined at a resolution of 1.3 Å and is the first structure of the toxin of the TA system of D. radiodurans. MazF-dr forms a dimer mediated by the presence of interlocked loops. Transcriptional analysis revealed 650 downregulated genes in the wild-type (WT) strain, but not in the mazEF mutant strain, which are potentially regulated by MazEF-dr in response to MMC treatment. Some of these genes are involved in membrane trafficking and metal ion transportation. Subsequently, compared with the WT strain, the mazEF mutant strain exhibited much lower MMC-induced intracellular iron concentrations, reactive oxygen species (ROS), and protein carbonylation levels. These results provide evidence that MazEF-mediated cell death in D. radiodurans might be caused by an increase in ROS accumulation upon DNA damage stress.
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spelling pubmed-79336792021-03-06 MazEF Toxin-Antitoxin System-Mediated DNA Damage Stress Response in Deinococcus radiodurans Dai, Jingli Chen, Zijing Hou, Jinfeng Wang, Yudong Guo, Miao Cao, Jiajia Wang, Liangyan Xu, Hong Tian, Bing Zhao, Ye Front Genet Genetics Deinococcus radiodurans shows marked resistance to various types of DNA-damaging agents, including mitomycin C (MMC). A type II toxin-antitoxin (TA) system that responds to DNA damage stress was identified in D. radiodurans, comprising the toxin MazF-dr and the antitoxin MazE-dr. The cleavage specificity of MazF-dr, an endoribonuclease, was previously characterized. Here, we further investigated the regulatory role of the MazEF system in the response to DNA damage stress in D. radiodurans. The crystal structure of D. radiodurans MazF (MazF-dr) was determined at a resolution of 1.3 Å and is the first structure of the toxin of the TA system of D. radiodurans. MazF-dr forms a dimer mediated by the presence of interlocked loops. Transcriptional analysis revealed 650 downregulated genes in the wild-type (WT) strain, but not in the mazEF mutant strain, which are potentially regulated by MazEF-dr in response to MMC treatment. Some of these genes are involved in membrane trafficking and metal ion transportation. Subsequently, compared with the WT strain, the mazEF mutant strain exhibited much lower MMC-induced intracellular iron concentrations, reactive oxygen species (ROS), and protein carbonylation levels. These results provide evidence that MazEF-mediated cell death in D. radiodurans might be caused by an increase in ROS accumulation upon DNA damage stress. Frontiers Media S.A. 2021-02-19 /pmc/articles/PMC7933679/ /pubmed/33679894 http://dx.doi.org/10.3389/fgene.2021.632423 Text en Copyright © 2021 Dai, Chen, Hou, Wang, Guo, Cao, Wang, Xu, Tian and Zhao. http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License (CC BY). The use, distribution or reproduction in other forums is permitted, provided the original author(s) and the copyright owner(s) are credited and that the original publication in this journal is cited, in accordance with accepted academic practice. No use, distribution or reproduction is permitted which does not comply with these terms.
spellingShingle Genetics
Dai, Jingli
Chen, Zijing
Hou, Jinfeng
Wang, Yudong
Guo, Miao
Cao, Jiajia
Wang, Liangyan
Xu, Hong
Tian, Bing
Zhao, Ye
MazEF Toxin-Antitoxin System-Mediated DNA Damage Stress Response in Deinococcus radiodurans
title MazEF Toxin-Antitoxin System-Mediated DNA Damage Stress Response in Deinococcus radiodurans
title_full MazEF Toxin-Antitoxin System-Mediated DNA Damage Stress Response in Deinococcus radiodurans
title_fullStr MazEF Toxin-Antitoxin System-Mediated DNA Damage Stress Response in Deinococcus radiodurans
title_full_unstemmed MazEF Toxin-Antitoxin System-Mediated DNA Damage Stress Response in Deinococcus radiodurans
title_short MazEF Toxin-Antitoxin System-Mediated DNA Damage Stress Response in Deinococcus radiodurans
title_sort mazef toxin-antitoxin system-mediated dna damage stress response in deinococcus radiodurans
topic Genetics
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7933679/
https://www.ncbi.nlm.nih.gov/pubmed/33679894
http://dx.doi.org/10.3389/fgene.2021.632423
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