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The Polymorphisms in GSTO Genes (GSTO1 rs4925, GSTO2 rs156697, and GSTO2 rs2297235) Affect the Risk for Testicular Germ Cell Tumor Development: A Pilot Study

Members of the omega class of glutathione transferases (GSTs), GSTO1, and GSTO2, catalyze a range of reduction reactions as a part of the antioxidant defense system. Polymorphisms of genes encoding antioxidant proteins and the resultant altered redox profile have already been associated with the inc...

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Autores principales: Petrovic, Milos, Simic, Tatjana, Djukic, Tatjana, Radic, Tanja, Savic-Radojevic, Ana, Zekovic, Milica, Durutovic, Otas, Janicic, Aleksandar, Milojevic, Bogomir, Kajmakovic, Boris, Zivkovic, Marko, Bojanic, Nebojsa, Bumbasirevic, Uros, Coric, Vesna
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10301167/
https://www.ncbi.nlm.nih.gov/pubmed/37374052
http://dx.doi.org/10.3390/life13061269
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author Petrovic, Milos
Simic, Tatjana
Djukic, Tatjana
Radic, Tanja
Savic-Radojevic, Ana
Zekovic, Milica
Durutovic, Otas
Janicic, Aleksandar
Milojevic, Bogomir
Kajmakovic, Boris
Zivkovic, Marko
Bojanic, Nebojsa
Bumbasirevic, Uros
Coric, Vesna
author_facet Petrovic, Milos
Simic, Tatjana
Djukic, Tatjana
Radic, Tanja
Savic-Radojevic, Ana
Zekovic, Milica
Durutovic, Otas
Janicic, Aleksandar
Milojevic, Bogomir
Kajmakovic, Boris
Zivkovic, Marko
Bojanic, Nebojsa
Bumbasirevic, Uros
Coric, Vesna
author_sort Petrovic, Milos
collection PubMed
description Members of the omega class of glutathione transferases (GSTs), GSTO1, and GSTO2, catalyze a range of reduction reactions as a part of the antioxidant defense system. Polymorphisms of genes encoding antioxidant proteins and the resultant altered redox profile have already been associated with the increased risk for testicular germ cell cancer (GCT) development. The aim of this pilot study was to assess the individual, combined, haplotype, and cumulative effect of GSTO1rs4925, GSTO2rs156697, and GSTO2rs2297235 polymorphisms with the risk for testicular GCT development, in 88 patients and 96 matched controls, through logistic regression models. We found that carriers of the GSTO1*C/A*C/C genotype exhibited an increased risk for testicular GCT development. Significant association with increased risk of testicular GCT was observed in carriers of GSTO2rs2297235*A/G*G/G genotype, and in carriers of combined GSTO2rs156697*A/G*G/G and GSTO2rs2297235*A/G*G/G genotypes. Haplotype H7 (GSTO1rs4925*C/GSTO2rs2297235*G/GSTO2rs156697*G) exhibited higher risk of testicular GCT, however, without significant association (p > 0.05). Finally, 51% of testicular GCT patients were the carriers of all three risk-associated genotypes, with 2.5-fold increased cumulative risk. In conclusion, the results of this pilot study suggest that GSTO polymorphisms might affect the protective antioxidant activity of GSTO isoenzymes, therefore predisposing susceptible individuals toward higher risk for testicular GCT development.
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spelling pubmed-103011672023-06-29 The Polymorphisms in GSTO Genes (GSTO1 rs4925, GSTO2 rs156697, and GSTO2 rs2297235) Affect the Risk for Testicular Germ Cell Tumor Development: A Pilot Study Petrovic, Milos Simic, Tatjana Djukic, Tatjana Radic, Tanja Savic-Radojevic, Ana Zekovic, Milica Durutovic, Otas Janicic, Aleksandar Milojevic, Bogomir Kajmakovic, Boris Zivkovic, Marko Bojanic, Nebojsa Bumbasirevic, Uros Coric, Vesna Life (Basel) Article Members of the omega class of glutathione transferases (GSTs), GSTO1, and GSTO2, catalyze a range of reduction reactions as a part of the antioxidant defense system. Polymorphisms of genes encoding antioxidant proteins and the resultant altered redox profile have already been associated with the increased risk for testicular germ cell cancer (GCT) development. The aim of this pilot study was to assess the individual, combined, haplotype, and cumulative effect of GSTO1rs4925, GSTO2rs156697, and GSTO2rs2297235 polymorphisms with the risk for testicular GCT development, in 88 patients and 96 matched controls, through logistic regression models. We found that carriers of the GSTO1*C/A*C/C genotype exhibited an increased risk for testicular GCT development. Significant association with increased risk of testicular GCT was observed in carriers of GSTO2rs2297235*A/G*G/G genotype, and in carriers of combined GSTO2rs156697*A/G*G/G and GSTO2rs2297235*A/G*G/G genotypes. Haplotype H7 (GSTO1rs4925*C/GSTO2rs2297235*G/GSTO2rs156697*G) exhibited higher risk of testicular GCT, however, without significant association (p > 0.05). Finally, 51% of testicular GCT patients were the carriers of all three risk-associated genotypes, with 2.5-fold increased cumulative risk. In conclusion, the results of this pilot study suggest that GSTO polymorphisms might affect the protective antioxidant activity of GSTO isoenzymes, therefore predisposing susceptible individuals toward higher risk for testicular GCT development. MDPI 2023-05-27 /pmc/articles/PMC10301167/ /pubmed/37374052 http://dx.doi.org/10.3390/life13061269 Text en © 2023 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
Petrovic, Milos
Simic, Tatjana
Djukic, Tatjana
Radic, Tanja
Savic-Radojevic, Ana
Zekovic, Milica
Durutovic, Otas
Janicic, Aleksandar
Milojevic, Bogomir
Kajmakovic, Boris
Zivkovic, Marko
Bojanic, Nebojsa
Bumbasirevic, Uros
Coric, Vesna
The Polymorphisms in GSTO Genes (GSTO1 rs4925, GSTO2 rs156697, and GSTO2 rs2297235) Affect the Risk for Testicular Germ Cell Tumor Development: A Pilot Study
title The Polymorphisms in GSTO Genes (GSTO1 rs4925, GSTO2 rs156697, and GSTO2 rs2297235) Affect the Risk for Testicular Germ Cell Tumor Development: A Pilot Study
title_full The Polymorphisms in GSTO Genes (GSTO1 rs4925, GSTO2 rs156697, and GSTO2 rs2297235) Affect the Risk for Testicular Germ Cell Tumor Development: A Pilot Study
title_fullStr The Polymorphisms in GSTO Genes (GSTO1 rs4925, GSTO2 rs156697, and GSTO2 rs2297235) Affect the Risk for Testicular Germ Cell Tumor Development: A Pilot Study
title_full_unstemmed The Polymorphisms in GSTO Genes (GSTO1 rs4925, GSTO2 rs156697, and GSTO2 rs2297235) Affect the Risk for Testicular Germ Cell Tumor Development: A Pilot Study
title_short The Polymorphisms in GSTO Genes (GSTO1 rs4925, GSTO2 rs156697, and GSTO2 rs2297235) Affect the Risk for Testicular Germ Cell Tumor Development: A Pilot Study
title_sort polymorphisms in gsto genes (gsto1 rs4925, gsto2 rs156697, and gsto2 rs2297235) affect the risk for testicular germ cell tumor development: a pilot study
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10301167/
https://www.ncbi.nlm.nih.gov/pubmed/37374052
http://dx.doi.org/10.3390/life13061269
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