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Influence of Redox Imbalances on the Transposition of Insertion Sequences in Deinococcus geothermalis

The transposition of insertion sequence elements was evaluated among different Deinococcus geothermalis lineages, including the wild-type, a cystine importer-disrupted mutant, a complemented strain, and a cystine importer-overexpressed strain. Cellular growth reached early exponential growth at OD(6...

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Autores principales: Ye, Qianying, Lee, Chanjae, Shin, Eunjung, Lee, Sung-Jae
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8533066/
https://www.ncbi.nlm.nih.gov/pubmed/34679757
http://dx.doi.org/10.3390/antiox10101623
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author Ye, Qianying
Lee, Chanjae
Shin, Eunjung
Lee, Sung-Jae
author_facet Ye, Qianying
Lee, Chanjae
Shin, Eunjung
Lee, Sung-Jae
author_sort Ye, Qianying
collection PubMed
description The transposition of insertion sequence elements was evaluated among different Deinococcus geothermalis lineages, including the wild-type, a cystine importer-disrupted mutant, a complemented strain, and a cystine importer-overexpressed strain. Cellular growth reached early exponential growth at OD(600) 2.0 and late exponential growth at OD(600) 4.0. Exposing the cells to hydrogen peroxide (80–100 mM) resulted in the transposition of insertion sequences (ISs) in genes associated with the carotenoid biosynthesis pathway. Particularly, ISDge7 (an IS5 family member) and ISDge5 (an IS701 family member) from the cystine importer-disrupted mutant were transposed into phytoene desaturase (dgeo_0524) via replicative transposition. Further, the cystine importer-overexpressed strain Δdgeo_1985R showed transposition of both ISDge2 and ISDge5 elements. In contrast, IS transposition was not detected in the complementary strain. Interestingly, a cystine importer-overexpressing strain exhibited streptomycin resistance, indicating that point mutation occurred in the rpsL (dgeo_1873) gene encoding ribosomal protein S12. qRT-PCR analyses were then conducted to evaluate the expression of oxidative stress response genes, IS elements, and low-molecular-weight thiol compounds such as mycothiol and bacillithiol. Nevertheless, the mechanisms that trigger IS transposition in redox imbalance conditions remain unclear. Here, we report that the active transposition of different IS elements was affected by intracellular redox imbalances caused by cystine importer deficiencies or overexpression.
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spelling pubmed-85330662021-10-23 Influence of Redox Imbalances on the Transposition of Insertion Sequences in Deinococcus geothermalis Ye, Qianying Lee, Chanjae Shin, Eunjung Lee, Sung-Jae Antioxidants (Basel) Article The transposition of insertion sequence elements was evaluated among different Deinococcus geothermalis lineages, including the wild-type, a cystine importer-disrupted mutant, a complemented strain, and a cystine importer-overexpressed strain. Cellular growth reached early exponential growth at OD(600) 2.0 and late exponential growth at OD(600) 4.0. Exposing the cells to hydrogen peroxide (80–100 mM) resulted in the transposition of insertion sequences (ISs) in genes associated with the carotenoid biosynthesis pathway. Particularly, ISDge7 (an IS5 family member) and ISDge5 (an IS701 family member) from the cystine importer-disrupted mutant were transposed into phytoene desaturase (dgeo_0524) via replicative transposition. Further, the cystine importer-overexpressed strain Δdgeo_1985R showed transposition of both ISDge2 and ISDge5 elements. In contrast, IS transposition was not detected in the complementary strain. Interestingly, a cystine importer-overexpressing strain exhibited streptomycin resistance, indicating that point mutation occurred in the rpsL (dgeo_1873) gene encoding ribosomal protein S12. qRT-PCR analyses were then conducted to evaluate the expression of oxidative stress response genes, IS elements, and low-molecular-weight thiol compounds such as mycothiol and bacillithiol. Nevertheless, the mechanisms that trigger IS transposition in redox imbalance conditions remain unclear. Here, we report that the active transposition of different IS elements was affected by intracellular redox imbalances caused by cystine importer deficiencies or overexpression. MDPI 2021-10-15 /pmc/articles/PMC8533066/ /pubmed/34679757 http://dx.doi.org/10.3390/antiox10101623 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
Ye, Qianying
Lee, Chanjae
Shin, Eunjung
Lee, Sung-Jae
Influence of Redox Imbalances on the Transposition of Insertion Sequences in Deinococcus geothermalis
title Influence of Redox Imbalances on the Transposition of Insertion Sequences in Deinococcus geothermalis
title_full Influence of Redox Imbalances on the Transposition of Insertion Sequences in Deinococcus geothermalis
title_fullStr Influence of Redox Imbalances on the Transposition of Insertion Sequences in Deinococcus geothermalis
title_full_unstemmed Influence of Redox Imbalances on the Transposition of Insertion Sequences in Deinococcus geothermalis
title_short Influence of Redox Imbalances on the Transposition of Insertion Sequences in Deinococcus geothermalis
title_sort influence of redox imbalances on the transposition of insertion sequences in deinococcus geothermalis
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8533066/
https://www.ncbi.nlm.nih.gov/pubmed/34679757
http://dx.doi.org/10.3390/antiox10101623
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