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Specific Features of the Proteomic Response of Thermophilic Bacterium Geobacillus icigianus to Terahertz Irradiation

Studying the effects of terahertz (THz) radiation on the proteome of temperature-sensitive organisms is limited by a number of significant technical difficulties, one of which is maintaining an optimal temperature range to avoid thermal shock as much as possible. In the case of extremophilic species...

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Autores principales: Bannikova, Svetlana, Khlebodarova, Tamara, Vasilieva, Asya, Mescheryakova, Irina, Bryanskaya, Alla, Shedko, Elizaveta, Popik, Vasily, Goryachkovskaya, Tatiana, Peltek, Sergey
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9735757/
https://www.ncbi.nlm.nih.gov/pubmed/36499542
http://dx.doi.org/10.3390/ijms232315216
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author Bannikova, Svetlana
Khlebodarova, Tamara
Vasilieva, Asya
Mescheryakova, Irina
Bryanskaya, Alla
Shedko, Elizaveta
Popik, Vasily
Goryachkovskaya, Tatiana
Peltek, Sergey
author_facet Bannikova, Svetlana
Khlebodarova, Tamara
Vasilieva, Asya
Mescheryakova, Irina
Bryanskaya, Alla
Shedko, Elizaveta
Popik, Vasily
Goryachkovskaya, Tatiana
Peltek, Sergey
author_sort Bannikova, Svetlana
collection PubMed
description Studying the effects of terahertz (THz) radiation on the proteome of temperature-sensitive organisms is limited by a number of significant technical difficulties, one of which is maintaining an optimal temperature range to avoid thermal shock as much as possible. In the case of extremophilic species with an increased temperature tolerance, it is easier to isolate the effects of THz radiation directly. We studied the proteomic response to terahertz radiation of the thermophilic Geobacillus icigianus, persisting under wide temperature fluctuations with a 60 °C optimum. The experiments were performed with a terahertz free-electron laser (FEL) from the Siberian Center for Synchrotron and Terahertz Radiation, designed and employed by the Institute of Nuclear Physics of the SB of the RAS. A G. icigianus culture in LB medium was THz-irradiated for 15 min with 0.23 W/cm(2) and 130 μm, using a specially designed cuvette. The life cycle of this bacterium proceeds under conditions of wide temperature and osmotic fluctuations, which makes its enzyme systems stress-resistant. The expression of several proteins was shown to change immediately after fifteen minutes of irradiation and after ten minutes of incubation at the end of exposure. The metabolic systems of electron transport, regulation of transcription and translation, cell growth and chemotaxis, synthesis of peptidoglycan, riboflavin, NADH, FAD and pyridoxal phosphate cofactors, Krebs cycle, ATP synthesis, chaperone and protease activity, and DNA repair, including methylated DNA, take part in the fast response to THz radiation. When the response developed after incubation, the systems of the cell’s anti-stress defense, chemotaxis, and, partially, cell growth were restored, but the respiration and energy metabolism, biosynthesis of riboflavin, cofactors, peptidoglycan, and translation system components remained affected and the amino acid metabolism system was involved.
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spelling pubmed-97357572022-12-11 Specific Features of the Proteomic Response of Thermophilic Bacterium Geobacillus icigianus to Terahertz Irradiation Bannikova, Svetlana Khlebodarova, Tamara Vasilieva, Asya Mescheryakova, Irina Bryanskaya, Alla Shedko, Elizaveta Popik, Vasily Goryachkovskaya, Tatiana Peltek, Sergey Int J Mol Sci Article Studying the effects of terahertz (THz) radiation on the proteome of temperature-sensitive organisms is limited by a number of significant technical difficulties, one of which is maintaining an optimal temperature range to avoid thermal shock as much as possible. In the case of extremophilic species with an increased temperature tolerance, it is easier to isolate the effects of THz radiation directly. We studied the proteomic response to terahertz radiation of the thermophilic Geobacillus icigianus, persisting under wide temperature fluctuations with a 60 °C optimum. The experiments were performed with a terahertz free-electron laser (FEL) from the Siberian Center for Synchrotron and Terahertz Radiation, designed and employed by the Institute of Nuclear Physics of the SB of the RAS. A G. icigianus culture in LB medium was THz-irradiated for 15 min with 0.23 W/cm(2) and 130 μm, using a specially designed cuvette. The life cycle of this bacterium proceeds under conditions of wide temperature and osmotic fluctuations, which makes its enzyme systems stress-resistant. The expression of several proteins was shown to change immediately after fifteen minutes of irradiation and after ten minutes of incubation at the end of exposure. The metabolic systems of electron transport, regulation of transcription and translation, cell growth and chemotaxis, synthesis of peptidoglycan, riboflavin, NADH, FAD and pyridoxal phosphate cofactors, Krebs cycle, ATP synthesis, chaperone and protease activity, and DNA repair, including methylated DNA, take part in the fast response to THz radiation. When the response developed after incubation, the systems of the cell’s anti-stress defense, chemotaxis, and, partially, cell growth were restored, but the respiration and energy metabolism, biosynthesis of riboflavin, cofactors, peptidoglycan, and translation system components remained affected and the amino acid metabolism system was involved. MDPI 2022-12-02 /pmc/articles/PMC9735757/ /pubmed/36499542 http://dx.doi.org/10.3390/ijms232315216 Text en © 2022 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
Bannikova, Svetlana
Khlebodarova, Tamara
Vasilieva, Asya
Mescheryakova, Irina
Bryanskaya, Alla
Shedko, Elizaveta
Popik, Vasily
Goryachkovskaya, Tatiana
Peltek, Sergey
Specific Features of the Proteomic Response of Thermophilic Bacterium Geobacillus icigianus to Terahertz Irradiation
title Specific Features of the Proteomic Response of Thermophilic Bacterium Geobacillus icigianus to Terahertz Irradiation
title_full Specific Features of the Proteomic Response of Thermophilic Bacterium Geobacillus icigianus to Terahertz Irradiation
title_fullStr Specific Features of the Proteomic Response of Thermophilic Bacterium Geobacillus icigianus to Terahertz Irradiation
title_full_unstemmed Specific Features of the Proteomic Response of Thermophilic Bacterium Geobacillus icigianus to Terahertz Irradiation
title_short Specific Features of the Proteomic Response of Thermophilic Bacterium Geobacillus icigianus to Terahertz Irradiation
title_sort specific features of the proteomic response of thermophilic bacterium geobacillus icigianus to terahertz irradiation
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9735757/
https://www.ncbi.nlm.nih.gov/pubmed/36499542
http://dx.doi.org/10.3390/ijms232315216
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